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2013 | OriginalPaper | Buchkapitel

6. Terrestrial Ecosystems and Their Change

verfasst von : Anatoly Z. Shvidenko, Eric Gustafson, A. David McGuire, Vjacheslav I. Kharuk, Dmitry G. Schepaschenko, Herman H. Shugart, Nadezhda M. Tchebakova, Natalia N. Vygodskaya, Alexander A. Onuchin, Daniel J. Hayes, Ian McCallum, Shamil Maksyutov, Ludmila V. Mukhortova, Amber J. Soja, Luca Belelli-Marchesini, Julia A. Kurbatova, Alexander V. Oltchev, Elena I. Parfenova, Jacquelyn K. Shuman

Erschienen in: Regional Environmental Changes in Siberia and Their Global Consequences

Verlag: Springer Netherlands

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Abstract

This chapter considers the current state of Siberian terrestrial ecosystems, their spatial distribution, and major biometric characteristics. Ongoing climate change and the dramatic increase of accompanying anthropogenic pressure provide different but mostly negative impacts on Siberian ecosystems. Future climates of the region may lead to substantial drying on large territories, acceleration of disturbance regimes, deterioration of ecosystems, and positive feedback to global warming. The region requires urgent development and implementation of strategies of adaptation to, and mitigation of, negative consequences of climate change.

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Literatur
Zurück zum Zitat Aber JD, Ollinger SV, Federer CA, Reich PB, Goulden ML, Kicklighter DW, Melillo JM, Lathrop RG (1995) Predicting the effects of climate change on water yield and forest production in the northeastern United States. Clim Res 5:207–222 Aber JD, Ollinger SV, Federer CA, Reich PB, Goulden ML, Kicklighter DW, Melillo JM, Lathrop RG (1995) Predicting the effects of climate change on water yield and forest production in the northeastern United States. Clim Res 5:207–222
Zurück zum Zitat Achard F, Eva HD, Mollicone D, Beuchle R (2008) The effect of climate anomalies and human ignition factor on wildfires in Russian boreal forests. Philos Trans R Soc B Biol Sci 363:2331–2339 Achard F, Eva HD, Mollicone D, Beuchle R (2008) The effect of climate anomalies and human ignition factor on wildfires in Russian boreal forests. Philos Trans R Soc B Biol Sci 363:2331–2339
Zurück zum Zitat Ageenko AS (ed) (1969) Forests of the Russian Far East. Far Eastern Forestry Research Institute, Khabarovsk, 390 pp (in Russian) Ageenko AS (ed) (1969) Forests of the Russian Far East. Far Eastern Forestry Research Institute, Khabarovsk, 390 pp (in Russian)
Zurück zum Zitat Alexeyev VA, Birdsey RA (1998) Carbon storage in forests and peatlands of Russia. General technical report NE-244. USDA, Forest Service, Northeast Research Station, Radnor, PA, 137 pp Alexeyev VA, Birdsey RA (1998) Carbon storage in forests and peatlands of Russia. General technical report NE-244. USDA, Forest Service, Northeast Research Station, Radnor, PA, 137 pp
Zurück zum Zitat Alexeyev VA, Markov MV (2003) Statistical data about forest fund and change of productivity of forests of Russia during the second half of the 20th century. Saint Petersburg Forestry Research Institute, Saint Petersburg, 271 pp (in Russian) Alexeyev VA, Markov MV (2003) Statistical data about forest fund and change of productivity of forests of Russia during the second half of the 20th century. Saint Petersburg Forestry Research Institute, Saint Petersburg, 271 pp (in Russian)
Zurück zum Zitat Alo CA, Wang G (2008) Potential future changes of the terrestrial ecosystem based on climate projections by eight general circulation models. J Geophys Res G Biogeosci 113(1):G01004, 16 pp Alo CA, Wang G (2008) Potential future changes of the terrestrial ecosystem based on climate projections by eight general circulation models. J Geophys Res G Biogeosci 113(1):G01004, 16 pp
Zurück zum Zitat Anthoni PM, Law BE, Unsworth MH (1999) Carbon and water vapor exchange of an open-canopied ponderosa pine ecosystem. Agric Forest Meteorol 95:151–168 Anthoni PM, Law BE, Unsworth MH (1999) Carbon and water vapor exchange of an open-canopied ponderosa pine ecosystem. Agric Forest Meteorol 95:151–168
Zurück zum Zitat Antonovski MY, Ter-Mikaelian MT, Furyaev VV (1992) A spatial model of long-tem forest fire dynamics and its applications to forests in western Siberia. In: Shugart HH, Leemans R, Bonan GB (eds) A systems analysis of the global boreal forest. Cambridge University Press, New York, pp 373–403 Antonovski MY, Ter-Mikaelian MT, Furyaev VV (1992) A spatial model of long-tem forest fire dynamics and its applications to forests in western Siberia. In: Shugart HH, Leemans R, Bonan GB (eds) A systems analysis of the global boreal forest. Cambridge University Press, New York, pp 373–403
Zurück zum Zitat Arneth A, Kurbatova J, Kolle O, Shibistova OB, Lloyd J, Vygodskaya NN, Schulze ED (2002) Comparative ecosystem-atmosphere exchange of energy and mass in a European Russian and a central Siberian bog II. Interseasonal and interannual variability of CO2 fluxes. Tellus B Chem Phys Meteorol 54:514–530 Arneth A, Kurbatova J, Kolle O, Shibistova OB, Lloyd J, Vygodskaya NN, Schulze ED (2002) Comparative ecosystem-atmosphere exchange of energy and mass in a European Russian and a central Siberian bog II. Interseasonal and interannual variability of CO2 fluxes. Tellus B Chem Phys Meteorol 54:514–530
Zurück zum Zitat Bacastov R, Keeling CD (1973) Atmospheric carbon dioxide and radiocarbon in the natural carbon cycle: II. Changes from A.D. 1700–2070 as deducted from a geochemical model. In: Woodwell GM, Pekan EV (eds) Carbon and the biosphere. U.S. Atomic Energy Commission Series 30, Springfield, pp 86–135 Bacastov R, Keeling CD (1973) Atmospheric carbon dioxide and radiocarbon in the natural carbon cycle: II. Changes from A.D. 1700–2070 as deducted from a geochemical model. In: Woodwell GM, Pekan EV (eds) Carbon and the biosphere. U.S. Atomic Energy Commission Series 30, Springfield, pp 86–135
Zurück zum Zitat Baker DF, Law RM, Gurney KR, Rayner P, Peylin P, Denning AS, Bousquet P, Bruhwiler L, Chen YH, Ciais P, Fung IY, Heimann M, John J, Maki T, Maksyutov S, Masarie K, Prather M, Pak B, Taguchi S, Zhu Z (2006) TransCom 3 inversion intercomparison: impact of transport model errors on the interannual variability of regional CO2 fluxes, 1988–2003. Glob Biogeochem Cycles 20 (art no. GB1002). doi:10.1029/2004GB002439 17 pp Baker DF, Law RM, Gurney KR, Rayner P, Peylin P, Denning AS, Bousquet P, Bruhwiler L, Chen YH, Ciais P, Fung IY, Heimann M, John J, Maki T, Maksyutov S, Masarie K, Prather M, Pak B, Taguchi S, Zhu Z (2006) TransCom 3 inversion intercomparison: impact of transport model errors on the interannual variability of regional CO2 fluxes, 1988–2003. Glob Biogeochem Cycles 20 (art no. GB1002). doi:10.1029/2004GB002439 17 pp
Zurück zum Zitat Balshi MS, McGuire AD, Duffy P, Flannigan M, Walsh J, Melillo J (2009) Assessing the response of area burned to changing climate in western boreal North America using a multivariate adaptive regression splines (MARS) approach. Glob Chang Biol 15:578–600 Balshi MS, McGuire AD, Duffy P, Flannigan M, Walsh J, Melillo J (2009) Assessing the response of area burned to changing climate in western boreal North America using a multivariate adaptive regression splines (MARS) approach. Glob Chang Biol 15:578–600
Zurück zum Zitat Baranchikov YuN (2011) Siberian moth – a relentless modifier of taiga forest ecosystems in Northern Asia. In: Boreal forests in a changing world: challenges and needs for actions. IBFRA, Krasnoyarsk, pp 105–107 Baranchikov YuN (2011) Siberian moth – a relentless modifier of taiga forest ecosystems in Northern Asia. In: Boreal forests in a changing world: challenges and needs for actions. IBFRA, Krasnoyarsk, pp 105–107
Zurück zum Zitat Baranchikov YN, Kondakov YP, Petrenko ES (2001) Catastrophic outbreaks of Siberian silk moth in forests of Krasnoyarsk Kray. In: Lepeshev AA (ed) Safety of Russia. Regional problems of safety. Krasnoyarsk Kray. Znanie Publ, Moscow, pp 146–147 Baranchikov YN, Kondakov YP, Petrenko ES (2001) Catastrophic outbreaks of Siberian silk moth in forests of Krasnoyarsk Kray. In: Lepeshev AA (ed) Safety of Russia. Regional problems of safety. Krasnoyarsk Kray. Znanie Publ, Moscow, pp 146–147
Zurück zum Zitat Barber VA, Juday GP, Finney BP (2000) Reduced growth of Alaskan white spruce in the twentieth century from temperature-induced drought stress. Nature 405:668–673 Barber VA, Juday GP, Finney BP (2000) Reduced growth of Alaskan white spruce in the twentieth century from temperature-induced drought stress. Nature 405:668–673
Zurück zum Zitat Bartalev SA, Egorov VA, Loupian EA, Uvarov IA (2007) Multi-year circumpolar assessment of the area burnt on boreal ecosystems using SPOT-VEGETATION. Int J Remote Sens 28:1397–1404 Bartalev SA, Egorov VA, Loupian EA, Uvarov IA (2007) Multi-year circumpolar assessment of the area burnt on boreal ecosystems using SPOT-VEGETATION. Int J Remote Sens 28:1397–1404
Zurück zum Zitat Bazilevich NI (1993) Biological productivity of ecosystems of Northern Eurasia. Nauka, Moscow, 293 pp Bazilevich NI (1993) Biological productivity of ecosystems of Northern Eurasia. Nauka, Moscow, 293 pp
Zurück zum Zitat Beer C, Lucht W, Schmullius C, Shvidenko A (2006) Small net carbon dioxide uptake by Russian forests during 1981–1999. Geophys Res Lett 33(15):L15403, 4pp Beer C, Lucht W, Schmullius C, Shvidenko A (2006) Small net carbon dioxide uptake by Russian forests during 1981–1999. Geophys Res Lett 33(15):L15403, 4pp
Zurück zum Zitat Belelli-Marchesini L (2007) Analysis of the carbon cycle of steppe and old field ecosystems of Central Asia. PhD thesis, Italy University of Tuscia, Viterbo, 227 pp Belelli-Marchesini L (2007) Analysis of the carbon cycle of steppe and old field ecosystems of Central Asia. PhD thesis, Italy University of Tuscia, Viterbo, 227 pp
Zurück zum Zitat Belelli-Marchesini L, Papale D, Reichstein M, Vuichard N, Tchebakova N, Valentini R (2007) Carbon balance assessment of a natural steppe of southern Siberia by multiple constraint approach. Biogeosciences 4:581–595 Belelli-Marchesini L, Papale D, Reichstein M, Vuichard N, Tchebakova N, Valentini R (2007) Carbon balance assessment of a natural steppe of southern Siberia by multiple constraint approach. Biogeosciences 4:581–595
Zurück zum Zitat Bonan GB, Shugart HH (1989) Environmental factors and ecological processes in boreal forests. Ann Rev Ecol Syst 20:1–28 Bonan GB, Shugart HH (1989) Environmental factors and ecological processes in boreal forests. Ann Rev Ecol Syst 20:1–28
Zurück zum Zitat Bonan GB, Shugart HH, Urban DL (1990) The sensitivity of some high latitude boreal forests to climatic parameters. Clim Chang 16:9–31 Bonan GB, Shugart HH, Urban DL (1990) The sensitivity of some high latitude boreal forests to climatic parameters. Clim Chang 16:9–31
Zurück zum Zitat Borzenkova II, Zubakov VA (1984) The climate optimum of the Holocene as a model of the beginning of the 21st century. Russ Meteorol Hydrol 8:69–77 Borzenkova II, Zubakov VA (1984) The climate optimum of the Holocene as a model of the beginning of the 21st century. Russ Meteorol Hydrol 8:69–77
Zurück zum Zitat Budyko MI (1974) Climate change. Nauka, Leninggrad, 285 pp (in Russian) Budyko MI (1974) Climate change. Nauka, Leninggrad, 285 pp (in Russian)
Zurück zum Zitat Chapin Iii FS, McGuire AD, Randerson J, Pielke R Sr, Baldocchi D, Hobbie SE, Roulet N, Eugster W, Kasischke E, Rastetter EB, Zimov SA, Running SW (2000) Arctic and boreal ecosystems of western North America as components of the climate system. Glob Chang Biol 6:211–223 Chapin Iii FS, McGuire AD, Randerson J, Pielke R Sr, Baldocchi D, Hobbie SE, Roulet N, Eugster W, Kasischke E, Rastetter EB, Zimov SA, Running SW (2000) Arctic and boreal ecosystems of western North America as components of the climate system. Glob Chang Biol 6:211–223
Zurück zum Zitat Chen YH, Prinn RG (2006) Estimation of atmospheric methane emissions between 1996 and 2001 using a three-dimensional global chemical transport model. J Geophy Res D Atmos 111(10):D10307, 25 pp Chen YH, Prinn RG (2006) Estimation of atmospheric methane emissions between 1996 and 2001 using a three-dimensional global chemical transport model. J Geophy Res D Atmos 111(10):D10307, 25 pp
Zurück zum Zitat Chudnikov PI (1931) Impact of fire on regeneration of Urals Forests. Selkhozgiz (Agricultural State Publishing House), Moscow, 160 pp (in Russian) Chudnikov PI (1931) Impact of fire on regeneration of Urals Forests. Selkhozgiz (Agricultural State Publishing House), Moscow, 160 pp (in Russian)
Zurück zum Zitat Ciais P, Janssens I, Shvidenko A, Wirth C, Malhi Y, Grace J, Schulze ED, Heimann M, Phillips O, Dolman AJ (2005) The potential for rising CO2 to account for the observed uptake of carbon by tropical, temperate, and boreal forest biomes. SEB Exp Biol Series 109–149 Ciais P, Janssens I, Shvidenko A, Wirth C, Malhi Y, Grace J, Schulze ED, Heimann M, Phillips O, Dolman AJ (2005) The potential for rising CO2 to account for the observed uptake of carbon by tropical, temperate, and boreal forest biomes. SEB Exp Biol Series 109–149
Zurück zum Zitat Ciais P, Canadell JG, Luyssart S et al (2010) Can we reconcile atmospheric estimates of the Northern terrestrial carbon sink with land-based accounting? Curr Options Environ Sustain 2:1–6 Ciais P, Canadell JG, Luyssart S et al (2010) Can we reconcile atmospheric estimates of the Northern terrestrial carbon sink with land-based accounting? Curr Options Environ Sustain 2:1–6
Zurück zum Zitat Corradi C, Kolle O, Walter K, Zimov SA, Schulze ED (2005) Carbon dioxide and methane exchange of a north-east Siberian tussock tundra. Glob Chang Biol 11:1910–1925 Corradi C, Kolle O, Walter K, Zimov SA, Schulze ED (2005) Carbon dioxide and methane exchange of a north-east Siberian tussock tundra. Glob Chang Biol 11:1910–1925
Zurück zum Zitat Cramer W, Kicklighter DW, Bondeau A, Moore Iii B, Churkina G, Nemry B, Ruimy A, Schloss AL (1999) Comparing global models of terrestrial net primary productivity (NPP): overview and key results. Glob Chang Biol 5:1–15 Cramer W, Kicklighter DW, Bondeau A, Moore Iii B, Churkina G, Nemry B, Ruimy A, Schloss AL (1999) Comparing global models of terrestrial net primary productivity (NPP): overview and key results. Glob Chang Biol 5:1–15
Zurück zum Zitat Davidson EA, Janssens IA (2006) Temperature sensitivity of soil carbon decomposition and feedbacks to climate change. Nature 440:165–173 Davidson EA, Janssens IA (2006) Temperature sensitivity of soil carbon decomposition and feedbacks to climate change. Nature 440:165–173
Zurück zum Zitat Davis MB, Shaw RG (2001) Range shifts and adaptive responses to quaternary climate change. Science 292:673–679 Davis MB, Shaw RG (2001) Range shifts and adaptive responses to quaternary climate change. Science 292:673–679
Zurück zum Zitat de Graaff MA, van Groenigen KJ, Six J, Hungate B, van Kessel C (2006) Interactions between plant growth and soil nutrient cycling under elevated CO2: a meta-analysis. Glob Chang Biol 12:2077–2091 de Graaff MA, van Groenigen KJ, Six J, Hungate B, van Kessel C (2006) Interactions between plant growth and soil nutrient cycling under elevated CO2: a meta-analysis. Glob Chang Biol 12:2077–2091
Zurück zum Zitat De Vries W, Reinds GJ, Gundersen P, Sterba H (2006) The impact of nitrogen deposition on carbon sequestration in European forests and forest soils. Glob Chang Biol 12:1151–1173 De Vries W, Reinds GJ, Gundersen P, Sterba H (2006) The impact of nitrogen deposition on carbon sequestration in European forests and forest soils. Glob Chang Biol 12:1151–1173
Zurück zum Zitat Devi N, Hagedorn F, Moiseev P, Bugmann H, Shiyatov S, Mazepa V, Rigling A (2008) Expanding forests and changing growth forms of Siberian larch at the Polar Urals treeline during the 20th century. Glob Chang Biol 14:1581–1591 Devi N, Hagedorn F, Moiseev P, Bugmann H, Shiyatov S, Mazepa V, Rigling A (2008) Expanding forests and changing growth forms of Siberian larch at the Polar Urals treeline during the 20th century. Glob Chang Biol 14:1581–1591
Zurück zum Zitat Dixon RK, Brown S, Houghton RA, Solomon AM, Trexler MC, Wisniewski J (1994) Carbon pools and flux of global forest ecosystems. Science 263:185–190 Dixon RK, Brown S, Houghton RA, Solomon AM, Trexler MC, Wisniewski J (1994) Carbon pools and flux of global forest ecosystems. Science 263:185–190
Zurück zum Zitat Efremov D, Shvidenko A (2004) Long-period consequences of catastrophic fires in forests of the Russian Far East and their impacts on global processes. In Furyaev VV (ed) Forest fire management at ecoregional level. World Bank, Moscow, pp 66–73 (in Russian) Efremov D, Shvidenko A (2004) Long-period consequences of catastrophic fires in forests of the Russian Far East and their impacts on global processes. In Furyaev VV (ed) Forest fire management at ecoregional level. World Bank, Moscow, pp 66–73 (in Russian)
Zurück zum Zitat Epova VI, Pleshanov AS (1995) Zones of injuriousness of insects-phyllophagous of Asian Russia. Nauka, Novosibirsk, p 46 Epova VI, Pleshanov AS (1995) Zones of injuriousness of insects-phyllophagous of Asian Russia. Nauka, Novosibirsk, p 46
Zurück zum Zitat Ershov DV, Kovganenko KA, Sochilova EN (2009) GIS-tecnology for estimation of fire carbon emissions based on Terra-MODIS data and state forest account. Curr Probl Earth Obs Space 6(II):365–372 (in Russian) Ershov DV, Kovganenko KA, Sochilova EN (2009) GIS-tecnology for estimation of fire carbon emissions based on Terra-MODIS data and state forest account. Curr Probl Earth Obs Space 6(II):365–372 (in Russian)
Zurück zum Zitat Euskirchen ES, McGuire AD, Kicklighter DW, Zhuang Q, Clein JS, Dargaville RJ, Dye DG, Kimball JS, McDonald KC, Melillo JM, Romanovsky VE, Smith NV (2006) Importance of recent shifts in soil thermal dynamics on growing season length, productivity, and carbon sequestration in terrestrial high-latitude ecosystems. Glob Chang Biol 12:731–750 Euskirchen ES, McGuire AD, Kicklighter DW, Zhuang Q, Clein JS, Dargaville RJ, Dye DG, Kimball JS, McDonald KC, Melillo JM, Romanovsky VE, Smith NV (2006) Importance of recent shifts in soil thermal dynamics on growing season length, productivity, and carbon sequestration in terrestrial high-latitude ecosystems. Glob Chang Biol 12:731–750
Zurück zum Zitat Fedorov SV (1977) Studying of water balance elements in forest zone of the European area of the USSR. Hydrometeoizdat, Leningrad, 264 pp (in Russian) Fedorov SV (1977) Studying of water balance elements in forest zone of the European area of the USSR. Hydrometeoizdat, Leningrad, 264 pp (in Russian)
Zurück zum Zitat FAFMRF (2010) Report on forest pathological monitoring in forests of Russia in 2009. Federal Agency of Forest Management of Russian Federation, Moscow, 86 p FAFMRF (2010) Report on forest pathological monitoring in forests of Russia in 2009. Federal Agency of Forest Management of Russian Federation, Moscow, 86 p
Zurück zum Zitat Farber SK (2000) Formation of stands of East Siberia. Nauka, Novosibirsk, 433 pp (in Russian) Farber SK (2000) Formation of stands of East Siberia. Nauka, Novosibirsk, 433 pp (in Russian)
Zurück zum Zitat Feiziene D, Feiza V, Vaideliene A, Povilaitis V, Antanaitis S (2010) Soil surface carbon dioxide exchange rate as affected by soil texture, different long-term tillage application and weather. Zemdirbyste 97:25–42 Feiziene D, Feiza V, Vaideliene A, Povilaitis V, Antanaitis S (2010) Soil surface carbon dioxide exchange rate as affected by soil texture, different long-term tillage application and weather. Zemdirbyste 97:25–42
Zurück zum Zitat FFSR (1962) Forest fund of RSFSR (state by January 1, 1961). Main Forest Management Department of Council of Ministers of RSFSR. Moscow, 628 p (in Russian) FFSR (1962) Forest fund of RSFSR (state by January 1, 1961). Main Forest Management Department of Council of Ministers of RSFSR. Moscow, 628 p (in Russian)
Zurück zum Zitat FFSSR (2008) Regions of Russia. Social and economic indicators. Official edition. Federal Service of State Statistics, Moscow, 1000 pp (in Russian) FFSSR (2008) Regions of Russia. Social and economic indicators. Official edition. Federal Service of State Statistics, Moscow, 1000 pp (in Russian)
Zurück zum Zitat Filipchuk AN, Moiseev BN (2003) Assessment of atmospheric carbon uptake by vegetation cover in Russia. World climate conference, Moscow, 29 Sept–3 Oct, 503 p Filipchuk AN, Moiseev BN (2003) Assessment of atmospheric carbon uptake by vegetation cover in Russia. World climate conference, Moscow, 29 Sept–3 Oct, 503 p
Zurück zum Zitat Flannigan MD, Van Wagner CE (1991) Climate change and wildfire in Canada. Can J For Res 21:66–72 Flannigan MD, Van Wagner CE (1991) Climate change and wildfire in Canada. Can J For Res 21:66–72
Zurück zum Zitat Flannigan M, Stocks B, Turetsky M, Wotton M (2009) Impacts of climate change on fire activity and fire management in the circumboreal forest. Glob Chang Biol 15:549–560 Flannigan M, Stocks B, Turetsky M, Wotton M (2009) Impacts of climate change on fire activity and fire management in the circumboreal forest. Glob Chang Biol 15:549–560
Zurück zum Zitat Forster P, Ramaswamy V (2007) Changes in atmospheric constituents and in radiative forcing. In: Solomon S.e.a (ed) Climate change 2007: the physical science basis. Contribution of WG I to the fourth assessment report of the IPCC. Cambridge University Press, Cambridge Forster P, Ramaswamy V (2007) Changes in atmospheric constituents and in radiative forcing. In: Solomon S.e.a (ed) Climate change 2007: the physical science basis. Contribution of WG I to the fourth assessment report of the IPCC. Cambridge University Press, Cambridge
Zurück zum Zitat Fridland VM (1989) Soil map of the USSR. Committee on Cartography and Geodesy, Moscow, (in Russian) Fridland VM (1989) Soil map of the USSR. Committee on Cartography and Geodesy, Moscow, (in Russian)
Zurück zum Zitat Furyaev VV (1996) Rope of fire in process of forest development. Nauka, Novosibirsk, 252 pp Furyaev VV (1996) Rope of fire in process of forest development. Nauka, Novosibirsk, 252 pp
Zurück zum Zitat Furyaev VV, Vaganov EA, Tchebakova NM (2001) Effects of fire and climate on successions and structural changes in the Siberian boreal forest. Eurasian J For Res 2:1–15 Furyaev VV, Vaganov EA, Tchebakova NM (2001) Effects of fire and climate on successions and structural changes in the Siberian boreal forest. Eurasian J For Res 2:1–15
Zurück zum Zitat Geographical… (2007) Geographical studies in Siberia. In: Landscape hydrology: fundamental and practical research. Geo Publishing, Novosibirsk, 262 p Geographical… (2007) Geographical studies in Siberia. In: Landscape hydrology: fundamental and practical research. Geo Publishing, Novosibirsk, 262 p
Zurück zum Zitat Gerten D, Schaphoff S, Haberlandt U, Lucht W, Sitch S (2004) Terrestrial vegetation and water balance – hydrological evaluation of a dynamic global vegetation model. J Hydrol 286:249–270 Gerten D, Schaphoff S, Haberlandt U, Lucht W, Sitch S (2004) Terrestrial vegetation and water balance – hydrological evaluation of a dynamic global vegetation model. J Hydrol 286:249–270
Zurück zum Zitat Gifford RM (1994) The global carbon cycle: a viewpoint on the missing sink. Aust J Plant Physiol 21:1–15 Gifford RM (1994) The global carbon cycle: a viewpoint on the missing sink. Aust J Plant Physiol 21:1–15
Zurück zum Zitat Gillett NP, Weaver AJ, Zwiers FW, Flannigan MD (2004) Detecting the effect of climate change on Canadian forest fires. Geophys Res Lett 31:L18211 1–4 Gillett NP, Weaver AJ, Zwiers FW, Flannigan MD (2004) Detecting the effect of climate change on Canadian forest fires. Geophys Res Lett 31:L18211 1–4
Zurück zum Zitat Girardin MP, Mudelsee M (2008) Past and future changes in Canadian boreal wildfire activity. Ecol Appl 18:391–406 Girardin MP, Mudelsee M (2008) Past and future changes in Canadian boreal wildfire activity. Ecol Appl 18:391–406
Zurück zum Zitat Glagolev MV, Sirin AA, Lapshina ED, Filippov IV (2010) Carbonaceous greenhouse gases flux from West Siberian wetland ecosystems. Herald Tomsk State Polytech Univ 3(93):120–127 Glagolev MV, Sirin AA, Lapshina ED, Filippov IV (2010) Carbonaceous greenhouse gases flux from West Siberian wetland ecosystems. Herald Tomsk State Polytech Univ 3(93):120–127
Zurück zum Zitat Glagolev M, Kleptsova I, Filippov I, Maksyutov S, Machida T (2011) Regional methane emission from West Siberia mire landscapes. Environ Res Lett 6:045214 Glagolev M, Kleptsova I, Filippov I, Maksyutov S, Machida T (2011) Regional methane emission from West Siberia mire landscapes. Environ Res Lett 6:045214
Zurück zum Zitat Gordon C, Cooper C, Senior CA, Banks H, Gregory JM, Johns TC, Mitchell JFB, Wood RA (2000) The simulation of SST, sea ice extents and ocean heat transports in a version of the Hadley Centre coupled model without flux adjustments. Clim Dyn 16:147–168 Gordon C, Cooper C, Senior CA, Banks H, Gregory JM, Johns TC, Mitchell JFB, Wood RA (2000) The simulation of SST, sea ice extents and ocean heat transports in a version of the Hadley Centre coupled model without flux adjustments. Clim Dyn 16:147–168
Zurück zum Zitat Goulden ML, Munger JW, Fan SM, Daube BC, Wofsy SC (1996) Measurements of carbon sequestration by long-term eddy covariance: methods and a critical evaluation of accuracy. Glob Chang Biol 2:169–182 Goulden ML, Munger JW, Fan SM, Daube BC, Wofsy SC (1996) Measurements of carbon sequestration by long-term eddy covariance: methods and a critical evaluation of accuracy. Glob Chang Biol 2:169–182
Zurück zum Zitat Gurney KR, Law RM, Denning AS, Rayner PJ, Baker D, Bousquet P, Bruhwiler L, Chen YH, Clals P, Fan S, Fung IY, Gloor M, Heimann M, Higuchi K, John J, Maki T, Maksyutov S, Masarie K, Peylin P, Prather M, Pak BC, Randerson J, Sarmiento J, Taguchi S, Takahashi T, Yuen CW (2002) Towards robust regional estimates of CO2 sources and sinks using atmospheric transport models. Nature 415:626–630 Gurney KR, Law RM, Denning AS, Rayner PJ, Baker D, Bousquet P, Bruhwiler L, Chen YH, Clals P, Fan S, Fung IY, Gloor M, Heimann M, Higuchi K, John J, Maki T, Maksyutov S, Masarie K, Peylin P, Prather M, Pak BC, Randerson J, Sarmiento J, Taguchi S, Takahashi T, Yuen CW (2002) Towards robust regional estimates of CO2 sources and sinks using atmospheric transport models. Nature 415:626–630
Zurück zum Zitat Gurney KR, Law RM, Denning AS, Rayner PJ, Baker D, Bousquet P, Bruhwiler L, Chen YH, Ciais P, Fan S, Fung IY, Gloor M, Heimann M, Higuchi K, John J, Kowalczyk E, Maki T, Maksyutov S, Peylin P, Prather M, Pak BC, Sarmiento J, Taguchi S, Takahashi T, Yuen CW (2003) TransCom 3 CO2 inversion intercomparison: 1. Annual mean control results and sensitivity to transport and prior flux information. Tellus B Chem Phys Meteorol 55:555–579 Gurney KR, Law RM, Denning AS, Rayner PJ, Baker D, Bousquet P, Bruhwiler L, Chen YH, Ciais P, Fan S, Fung IY, Gloor M, Heimann M, Higuchi K, John J, Kowalczyk E, Maki T, Maksyutov S, Peylin P, Prather M, Pak BC, Sarmiento J, Taguchi S, Takahashi T, Yuen CW (2003) TransCom 3 CO2 inversion intercomparison: 1. Annual mean control results and sensitivity to transport and prior flux information. Tellus B Chem Phys Meteorol 55:555–579
Zurück zum Zitat Gurney KR, Baker D, Rayner P, Denning S (2008) Interannual variations in continental-scale net carbon exchange and sensitivity to observing networks estimated from atmospheric CO2 inversions for the period 1980 to 2005. Global Biogeochem Cycles 22:GB3025 Gurney KR, Baker D, Rayner P, Denning S (2008) Interannual variations in continental-scale net carbon exchange and sensitivity to observing networks estimated from atmospheric CO2 inversions for the period 1980 to 2005. Global Biogeochem Cycles 22:GB3025
Zurück zum Zitat Gustafson EJ, Shvidenko AZ, Sturtevant BR, Scheller RM (2010) Predicting global change effects on forest biomass and composition in south-central Siberia. Ecol Appl 20:700–715 Gustafson EJ, Shvidenko AZ, Sturtevant BR, Scheller RM (2010) Predicting global change effects on forest biomass and composition in south-central Siberia. Ecol Appl 20:700–715
Zurück zum Zitat Gustafson EJ, Sturtevant BR, Shvidenko AZ, Scheller RM (2011a) Using landscape disturbance and succession models to support forest management. Chapter 5. In: Li C, Lafortezza R, Chen J (eds) Landscape ecology in forest management and conservation. Challenges and solutions for global change. Higher Education Press and Springer, Beijing/New York, pp 99–118 Gustafson EJ, Sturtevant BR, Shvidenko AZ, Scheller RM (2011a) Using landscape disturbance and succession models to support forest management. Chapter 5. In: Li C, Lafortezza R, Chen J (eds) Landscape ecology in forest management and conservation. Challenges and solutions for global change. Higher Education Press and Springer, Beijing/New York, pp 99–118
Zurück zum Zitat Gustafson EJ, Shvidenko AZ, Sheller RM (2011b) Effectiveness of forest management strategy to mitigate effects of global change in south-central Siberia. Can J For Res 41:1405–1421 Gustafson EJ, Shvidenko AZ, Sheller RM (2011b) Effectiveness of forest management strategy to mitigate effects of global change in south-central Siberia. Can J For Res 41:1405–1421
Zurück zum Zitat Hamilton LS (2008) Forest and water. Food and Agriculture Organization of the United Nations, Rome, p 78 Hamilton LS (2008) Forest and water. Food and Agriculture Organization of the United Nations, Rome, p 78
Zurück zum Zitat Hayes DJ, McGuire AD, Kicklighter DW, Gurney KR, Burnside TJ, Melillo JM (2011) Is the northern high latitude land-based CO2 sink weakening? Global Biogeochem Cycles 25(3):GB3018. doi:10.1029/2010gb003813 Hayes DJ, McGuire AD, Kicklighter DW, Gurney KR, Burnside TJ, Melillo JM (2011) Is the northern high latitude land-based CO2 sink weakening? Global Biogeochem Cycles 25(3):GB3018. doi:10.​1029/​2010gb003813
Zurück zum Zitat Heinselman (1978) Fire intensity and frequency as factors in the disturbance and structure of northern ecosystems. In: Mooney HA, Bonnicksen TM, Christensen NL, et al (eds) Fire regimes and ecosystem properties. General technical report WO-26. USDA, Honolulu, pp 7–57 Heinselman (1978) Fire intensity and frequency as factors in the disturbance and structure of northern ecosystems. In: Mooney HA, Bonnicksen TM, Christensen NL, et al (eds) Fire regimes and ecosystem properties. General technical report WO-26. USDA, Honolulu, pp 7–57
Zurück zum Zitat Hudson JMG, Henry GHR (2009) Increased plant biomass in a high arctic heath community from 1981 to 2008. Ecology 90:2657–2663 Hudson JMG, Henry GHR (2009) Increased plant biomass in a high arctic heath community from 1981 to 2008. Ecology 90:2657–2663
Zurück zum Zitat IPCC (2001) Climate change 2001: mitigation. Contribution of working group III to the third assessment report of the intergovernmental panel on climate change. Cambridge University Press/IPCC, Cambridge, 881 p IPCC (2001) Climate change 2001: mitigation. Contribution of working group III to the third assessment report of the intergovernmental panel on climate change. Cambridge University Press/IPCC, Cambridge, 881 p
Zurück zum Zitat IPCC (2007a) In: Metz B, Davidson OR, Bosch PR, Dave R, Meyer LA (eds) Climate change 2007: mitigation. Contribution of working group III to the fourth assessment report of the intergovernmental panel on climate change. Cambridge University Press, Cambridge/New York IPCC (2007a) In: Metz B, Davidson OR, Bosch PR, Dave R, Meyer LA (eds) Climate change 2007: mitigation. Contribution of working group III to the fourth assessment report of the intergovernmental panel on climate change. Cambridge University Press, Cambridge/New York
Zurück zum Zitat IPCC (2007b) Climate change 2007: impact, adaptation and vulnerability. Chapter 4: Ecosystems, their properties, goods and services. Contribution of working group II to the fourth assessment report. Cambridge University Press, Cambridge, pp 211–272 IPCC (2007b) Climate change 2007: impact, adaptation and vulnerability. Chapter 4: Ecosystems, their properties, goods and services. Contribution of working group II to the fourth assessment report. Cambridge University Press, Cambridge, pp 211–272
Zurück zum Zitat Isaev AS (1991) Forecast of use and reproduction of forest resources by economic regions of the USSR by 2010. State Committee of USSR on Forest, Moscow, p 508 Isaev AS (1991) Forecast of use and reproduction of forest resources by economic regions of the USSR by 2010. State Committee of USSR on Forest, Moscow, p 508
Zurück zum Zitat Isaev AS (ed) (1997) Program of the extraordinary activities on biological struggle with pests in forests of Krasnoyarsk Krai. Federal Forest Service of Russia, Moscow, 157 pp (in Russian) Isaev AS (ed) (1997) Program of the extraordinary activities on biological struggle with pests in forests of Krasnoyarsk Krai. Federal Forest Service of Russia, Moscow, 157 pp (in Russian)
Zurück zum Zitat Isaev AS, Khebopros RG, Nedorezov LV, Kondakov YP, Kiselev VV, Sukhovolsky VG (2001) Population dynamics of forest pests. Nauka, Moscow, 374 pp Isaev AS, Khebopros RG, Nedorezov LV, Kondakov YP, Kiselev VV, Sukhovolsky VG (2001) Population dynamics of forest pests. Nauka, Moscow, 374 pp
Zurück zum Zitat Ivanova GA (1996) Extreme fire seasons in Evenkia forests. Siberian Ecol J 1:29–34 Ivanova GA (1996) Extreme fire seasons in Evenkia forests. Siberian Ecol J 1:29–34
Zurück zum Zitat Ivanova GA (1998–1999) The history of forest fire in Russia. Dendrochronologia 16–17, 147–161 Ivanova GA (1998–1999) The history of forest fire in Russia. Dendrochronologia 16–17, 147–161
Zurück zum Zitat Jenkinson DS, Adams DE, Wild A (1991) Model estimates of CO2 emissions from soil in response to global warming. Nature 351:304–306 Jenkinson DS, Adams DE, Wild A (1991) Model estimates of CO2 emissions from soil in response to global warming. Nature 351:304–306
Zurück zum Zitat Juday GP, Barber V, Duffy P, Linderholm H, Rupp S, Sparrow S, Vaganov Eu, Yarie J (2005) Forests, land management, and agriculture. Chapter 14. In: ACIA, Arctic climate impact assessment 2005, Cambridge University Press, pp 782–862 Juday GP, Barber V, Duffy P, Linderholm H, Rupp S, Sparrow S, Vaganov Eu, Yarie J (2005) Forests, land management, and agriculture. Chapter 14. In: ACIA, Arctic climate impact assessment 2005, Cambridge University Press, pp 782–862
Zurück zum Zitat Kabat P, Claussen M, Dirmeyer PA, Gash JHC, Bravo de Guenni L, Meybeck M, Pielke RA Sr, Vörösmarty CJ, Hutjes RWA, Lütkemeier S (eds) (2004) Vegetation, water, humans and the climate: a new perspective on an interactive system. Springer, Berlin, 566 pp Kabat P, Claussen M, Dirmeyer PA, Gash JHC, Bravo de Guenni L, Meybeck M, Pielke RA Sr, Vörösmarty CJ, Hutjes RWA, Lütkemeier S (eds) (2004) Vegetation, water, humans and the climate: a new perspective on an interactive system. Springer, Berlin, 566 pp
Zurück zum Zitat Kajii Y, Kato S, Streets DG, Tsai NY, Shvidenko A, Nilsson S, McCallum I, Minko NP, Abushenko N, Altyntsev D, Khodzer TV (2002) Boreal forest fires in Siberia in 1998: estimation of area burned and emissions of pollutants by advanced very high resolution radiometer satellite data. J Geophys Res D Atmos 107(24):ACH 4-1–ACH 4-8 art. no. 4745 Kajii Y, Kato S, Streets DG, Tsai NY, Shvidenko A, Nilsson S, McCallum I, Minko NP, Abushenko N, Altyntsev D, Khodzer TV (2002) Boreal forest fires in Siberia in 1998: estimation of area burned and emissions of pollutants by advanced very high resolution radiometer satellite data. J Geophys Res D Atmos 107(24):ACH 4-1–ACH 4-8 art. no. 4745
Zurück zum Zitat Kang S, Kimball JS, Running SW (2006) Simulating effects of fire disturbance and climate change on boreal forest productivity and evapotranspiration. Sci Total Environ 362:85–102 Kang S, Kimball JS, Running SW (2006) Simulating effects of fire disturbance and climate change on boreal forest productivity and evapotranspiration. Sci Total Environ 362:85–102
Zurück zum Zitat Kaplun F, Brumarova N, Vidyapin V (eds) (1994) New Russia. Information and statistical book. International Academy of Informatization, Moscow, 740 pp (in Russian) Kaplun F, Brumarova N, Vidyapin V (eds) (1994) New Russia. Information and statistical book. International Academy of Informatization, Moscow, 740 pp (in Russian)
Zurück zum Zitat Karelin DV, Zamolodchikov DG (2008) Carbon exchange in cryogenic ecosystems. Nauka, Moscow, 343 pp Karelin DV, Zamolodchikov DG (2008) Carbon exchange in cryogenic ecosystems. Nauka, Moscow, 343 pp
Zurück zum Zitat Kasischke ES, Turetsky MR (2006) Recent changes in the fire regime across the North American boreal region – spatial and temporal patterns of burning across Canada and Alaska. Geophys Res Lett 33:1–5 Kasischke ES, Turetsky MR (2006) Recent changes in the fire regime across the North American boreal region – spatial and temporal patterns of burning across Canada and Alaska. Geophys Res Lett 33:1–5
Zurück zum Zitat Kharuk VI, Im ST, Ranson KJ, Naurzbaev MM (2004) Temporal dynamics of larch in the forest-tundra ecotone. Dokl Earth Sci 398:1020–1023 Kharuk VI, Im ST, Ranson KJ, Naurzbaev MM (2004) Temporal dynamics of larch in the forest-tundra ecotone. Dokl Earth Sci 398:1020–1023
Zurück zum Zitat Kharuk VI, Ranson KJ, Im ST, Naurzbaev MM (2006) Forest-tundra larch forests and climatic tends. Russ J Ecol 37:291–298 Kharuk VI, Ranson KJ, Im ST, Naurzbaev MM (2006) Forest-tundra larch forests and climatic tends. Russ J Ecol 37:291–298
Zurück zum Zitat Kharuk V, Ranson K, Dvinskaya M (2007) Evidence of evergreen conifer invasion into larch dominated forests during recent decades in central Siberia. Eurasian J For Res 10:163–171 Kharuk V, Ranson K, Dvinskaya M (2007) Evidence of evergreen conifer invasion into larch dominated forests during recent decades in central Siberia. Eurasian J For Res 10:163–171
Zurück zum Zitat Kharuk VI, Dvinskaya ML, Im ST, Ranson KJ (2008) Tree vegetation of the forest-tundra ecotone in the western Sayan mountains and climatic trends. Russ J Ecol 39:8–13 Kharuk VI, Dvinskaya ML, Im ST, Ranson KJ (2008) Tree vegetation of the forest-tundra ecotone in the western Sayan mountains and climatic trends. Russ J Ecol 39:8–13
Zurück zum Zitat Kharuk VI, Ranson KJ, Im ST (2009) Climate-induced mountain tree line ecotone dynamics in southern Siberia. International conference on computational information technologies for environmental sciences CITES-2009, Krasnoyarsk, 5–15 July, p 83 Kharuk VI, Ranson KJ, Im ST (2009) Climate-induced mountain tree line ecotone dynamics in southern Siberia. International conference on computational information technologies for environmental sciences CITES-2009, Krasnoyarsk, 5–15 July, p 83
Zurück zum Zitat Kharuk VI, Im ST, Dvinskaya ML (2010a) Forest-tundra ecotone response to climate change in the western Sayan mountains, Siberia. Scand J For Res 25:224–233 Kharuk VI, Im ST, Dvinskaya ML (2010a) Forest-tundra ecotone response to climate change in the western Sayan mountains, Siberia. Scand J For Res 25:224–233
Zurück zum Zitat Kharuk VI, Im ST, Dvinskaya ML, Ranson KJ (2010b) Climate-induced mountain tree-line evolution in southern Siberia. Scand J For Res 25:446–454 Kharuk VI, Im ST, Dvinskaya ML, Ranson KJ (2010b) Climate-induced mountain tree-line evolution in southern Siberia. Scand J For Res 25:446–454
Zurück zum Zitat Kharuk VI, Ranson KJ, Im ST, Vdovin AS (2010c) Spatial distribution and temporal dynamics of high-elevation forest stands in southern Siberia. Glob Ecol Biogeogr 19:822–830 Kharuk VI, Ranson KJ, Im ST, Vdovin AS (2010c) Spatial distribution and temporal dynamics of high-elevation forest stands in southern Siberia. Glob Ecol Biogeogr 19:822–830
Zurück zum Zitat Khotinsky NA (1984) Holocene vegetation history. In: Velichko AA, Wright HE, Barnosky CW (eds) Late quaternary environments of the Soviet Union. University of Minnesota Press, Minneapolis, pp 179–200 Khotinsky NA (1984) Holocene vegetation history. In: Velichko AA, Wright HE, Barnosky CW (eds) Late quaternary environments of the Soviet Union. University of Minnesota Press, Minneapolis, pp 179–200
Zurück zum Zitat Kim H-S, Maksyutov S, Glagolev MV, Machida T, Patra PK, Sudo K, Inoue G (2011) Evaluation of methane emissions from West Siberian wetlands based on inverse modeling. Environ Res Lett 6:035201, 8pp Kim H-S, Maksyutov S, Glagolev MV, Machida T, Patra PK, Sudo K, Inoue G (2011) Evaluation of methane emissions from West Siberian wetlands based on inverse modeling. Environ Res Lett 6:035201, 8pp
Zurück zum Zitat King GA, Herstrom AA (1997) Holocene tree migration rates objectively determined from fossil pollen data. In: Huntley B et al (eds) Past and future rapid environmental changes: the spatial and evolutionary responses of terrestrial biota. Springer, New York, pp 91–101 King GA, Herstrom AA (1997) Holocene tree migration rates objectively determined from fossil pollen data. In: Huntley B et al (eds) Past and future rapid environmental changes: the spatial and evolutionary responses of terrestrial biota. Springer, New York, pp 91–101
Zurück zum Zitat Kirschbaum MUF (1993) A modelling study of the effects of changes in atmospheric CO2 concentration, temperature and atmospheric nitrogen input on soil organic carbon storage. Tellus Ser B 45 B:321–334 Kirschbaum MUF (1993) A modelling study of the effects of changes in atmospheric CO2 concentration, temperature and atmospheric nitrogen input on soil organic carbon storage. Tellus Ser B 45 B:321–334
Zurück zum Zitat Kirschbaum MU (1995) The temperature dependence of soil organic matter decomposition, and the effect of global warming on soil organic C storage. Soil Biol Biochem 27:753–760 Kirschbaum MU (1995) The temperature dependence of soil organic matter decomposition, and the effect of global warming on soil organic C storage. Soil Biol Biochem 27:753–760
Zurück zum Zitat Klimchenko AV (2007) Parameters of carbon cycle in restoration-age-specific row of larch forests with small shrubs and green mosses of northern taiga of Middle Siberia. PhD thesis, Institute of Forest of Siberian Branch, Russian Academy of Sciences, Krasnoyarsk, 21 pp (in Russian) Klimchenko AV (2007) Parameters of carbon cycle in restoration-age-specific row of larch forests with small shrubs and green mosses of northern taiga of Middle Siberia. PhD thesis, Institute of Forest of Siberian Branch, Russian Academy of Sciences, Krasnoyarsk, 21 pp (in Russian)
Zurück zum Zitat Knohl A, Kolle O, Minayeva TY, Milyukova IM, Vygodskaya NN, Foken T, Schulze ED (2002) Carbon dioxide exchange of a Russian boreal forest after disturbance by wind throw. Glob Chang Biol 8:231–246 Knohl A, Kolle O, Minayeva TY, Milyukova IM, Vygodskaya NN, Foken T, Schulze ED (2002) Carbon dioxide exchange of a Russian boreal forest after disturbance by wind throw. Glob Chang Biol 8:231–246
Zurück zum Zitat Knorre AA (2003) Using of registering structures to estimate annual production of phytocoenoses components in forest and swamp ecosystems of Yenisey Siberia. V.N. Sukachev Institute of Forest, Abstracts of PhD thesis, Krasnoyarsk, 24 pp (in Russian) Knorre AA (2003) Using of registering structures to estimate annual production of phytocoenoses components in forest and swamp ecosystems of Yenisey Siberia. V.N. Sukachev Institute of Forest, Abstracts of PhD thesis, Krasnoyarsk, 24 pp (in Russian)
Zurück zum Zitat Kolesnikov BP (1956) Cedar forests of the Far East. Transactions of the Far Eastern branch of the Academy of Sciences of the USSR. Ser Bot 2(4), 264 pp (in Russian) Kolesnikov BP (1956) Cedar forests of the Far East. Transactions of the Far Eastern branch of the Academy of Sciences of the USSR. Ser Bot 2(4), 264 pp (in Russian)
Zurück zum Zitat Kondakov YP (1987) Phytocenotic specifics of outbreaks of needle- and leaf-eating insects in forests of Siberia. In: Vladyshevsky DV, Petrenko ES (eds) Ecological assessment of habitats of forest animals. Nauka, Novosibirsk, pp 29–40 Kondakov YP (1987) Phytocenotic specifics of outbreaks of needle- and leaf-eating insects in forests of Siberia. In: Vladyshevsky DV, Petrenko ES (eds) Ecological assessment of habitats of forest animals. Nauka, Novosibirsk, pp 29–40
Zurück zum Zitat Kudeyarov VN, Kurganova IN (1998) Carbon dioxide emissions and net primary production of Russian terrestrial ecosystems. Biol Fertil Soils 27:246–250 Kudeyarov VN, Kurganova IN (1998) Carbon dioxide emissions and net primary production of Russian terrestrial ecosystems. Biol Fertil Soils 27:246–250
Zurück zum Zitat Kulikov AN (ed) (1998) Forest fires in Russian Far East. Project’s report WWE RU1029, Khabarovsk Kulikov AN (ed) (1998) Forest fires in Russian Far East. Project’s report WWE RU1029, Khabarovsk
Zurück zum Zitat Kullman L (2007) Tree line population monitoring of Pinus sylvestris in the Swedish Scandes, 1973–2005: Implications for tree line theory and climate change ecology. J Ecol 95:41–52 Kullman L (2007) Tree line population monitoring of Pinus sylvestris in the Swedish Scandes, 1973–2005: Implications for tree line theory and climate change ecology. J Ecol 95:41–52
Zurück zum Zitat Kurbatova J, Arneth A, Vygodskaya NN, Kolle O, Varlargin AV, Milyukova IM, Tchebakova NM, Schulze ED, Lloyd J (2002) Comparative ecosystem-atmosphere exchange of energy and mass in a European Russian and a central Siberian bog I. Interseasonal and interannual variability of energy and latent heat fluxes during the snowfree period. Tellus B Chem Phys Meteorol 54:497–513 Kurbatova J, Arneth A, Vygodskaya NN, Kolle O, Varlargin AV, Milyukova IM, Tchebakova NM, Schulze ED, Lloyd J (2002) Comparative ecosystem-atmosphere exchange of energy and mass in a European Russian and a central Siberian bog I. Interseasonal and interannual variability of energy and latent heat fluxes during the snowfree period. Tellus B Chem Phys Meteorol 54:497–513
Zurück zum Zitat Kurz WA, Apps MJ, Stocks BJ (1995) Global climate change: disturbance regimes and biospheric feedbacks of temperate and boreal forests. In: Woodwell G (ed) Biotic feedbacks in the global climate system: will the warming speed the warming? Oxford University Press, Oxford, pp 119–1333 Kurz WA, Apps MJ, Stocks BJ (1995) Global climate change: disturbance regimes and biospheric feedbacks of temperate and boreal forests. In: Woodwell G (ed) Biotic feedbacks in the global climate system: will the warming speed the warming? Oxford University Press, Oxford, pp 119–1333
Zurück zum Zitat Kurz WA, Stinson G, Rampley GJ, Dymond CC, Neilson ET (2008a) Risk of natural disturbances makes future contribution of Canada’s forests to the global carbon cycle highly uncertain. Proc Natl Acad Sci U S A 105:1551–1555 Kurz WA, Stinson G, Rampley GJ, Dymond CC, Neilson ET (2008a) Risk of natural disturbances makes future contribution of Canada’s forests to the global carbon cycle highly uncertain. Proc Natl Acad Sci U S A 105:1551–1555
Zurück zum Zitat Kurz WA, Dymond CC, Stinson G, Rampley GJ, Neilson ET, Caroll AL, Ebata T, Safranyik L (2008b) Mountain pine beetle and forest carbon feedback to climate change. Nature 452:987–990 Kurz WA, Dymond CC, Stinson G, Rampley GJ, Neilson ET, Caroll AL, Ebata T, Safranyik L (2008b) Mountain pine beetle and forest carbon feedback to climate change. Nature 452:987–990
Zurück zum Zitat Lapenis A, Shvidenko A, Shepaschenko D, Nilsson S, Aiyyer A (2005) Acclimation of Russian forests to recent changes in climate. Glob Chang Biol 11:2090–2102 Lapenis A, Shvidenko A, Shepaschenko D, Nilsson S, Aiyyer A (2005) Acclimation of Russian forests to recent changes in climate. Glob Chang Biol 11:2090–2102
Zurück zum Zitat Lavrenko EM, Sochava VB (eds) (1956) Vegetation cover of the USSR. Academy of Sciences of the USSR, Moscow/Leningrad, 460 pp (in Russian) Lavrenko EM, Sochava VB (eds) (1956) Vegetation cover of the USSR. Academy of Sciences of the USSR, Moscow/Leningrad, 460 pp (in Russian)
Zurück zum Zitat le Goff H, Flannigan MD, Bergeron Y (2009) Potential changes in monthly fire risk in the eastern Canadian boreal forest under future climate change. Can J For Res 39:2369–2380 le Goff H, Flannigan MD, Bergeron Y (2009) Potential changes in monthly fire risk in the eastern Canadian boreal forest under future climate change. Can J For Res 39:2369–2380
Zurück zum Zitat Le Mer J, Roger P (2001) Production, oxidation, emission, and consumption of methane by soils: a review. Eur J Soil Biol 37:25–50 Le Mer J, Roger P (2001) Production, oxidation, emission, and consumption of methane by soils: a review. Eur J Soil Biol 37:25–50
Zurück zum Zitat Lebedev AV, Gorbatenko VM, Krasnoschekov UN, Reshetkova NB, Protopopov VV (1974) Environmental role of forests of the lake Baikal basin. Nauka, Novosibirsk, 215 pp (In Russian) Lebedev AV, Gorbatenko VM, Krasnoschekov UN, Reshetkova NB, Protopopov VV (1974) Environmental role of forests of the lake Baikal basin. Nauka, Novosibirsk, 215 pp (In Russian)
Zurück zum Zitat Lenton TM, Held H, Kriegler JW, Lucht W, Rahmstorf S, Schellnhuber HJ (2008) Tipping elements in the earth climate system. PNAS 105(6):1786–1793 Lenton TM, Held H, Kriegler JW, Lucht W, Rahmstorf S, Schellnhuber HJ (2008) Tipping ­elements in the earth climate system. PNAS 105(6):1786–1793
Zurück zum Zitat Liski J, Karjalainen T, Pussinen A, Nabuurs GJ, Kauppi P (2000) Trees as carbon sinks and sources in the European Union. Environ Sci Policy 3:91–97 Liski J, Karjalainen T, Pussinen A, Nabuurs GJ, Kauppi P (2000) Trees as carbon sinks and sources in the European Union. Environ Sci Policy 3:91–97
Zurück zum Zitat Liu J (2010) Investigation in forest and water relations with an emphasis on China. IUFRO world congress 2010, Seoul Liu J (2010) Investigation in forest and water relations with an emphasis on China. IUFRO world congress 2010, Seoul
Zurück zum Zitat Lloyd AH, Bunn AG (2007) Responses of the circumpolar boreal forest to 20th century climate variability. Environ Res Lett 4:045013 Lloyd AH, Bunn AG (2007) Responses of the circumpolar boreal forest to 20th century climate variability. Environ Res Lett 4:045013
Zurück zum Zitat Lloyd J, Shibistova O, Zolotoukhine D, Kolle O, Arneth A, Wirth C, Styles JM, Tchebakova NM, Schulze ED (2002) Seasonal and annual variations in the photosynthetic productivity and carbon balance of a central Siberian pine forest. Tellus B Chem Phys Meteorol 54:590–610 Lloyd J, Shibistova O, Zolotoukhine D, Kolle O, Arneth A, Wirth C, Styles JM, Tchebakova NM, Schulze ED (2002) Seasonal and annual variations in the photosynthetic productivity and ­carbon balance of a central Siberian pine forest. Tellus B Chem Phys Meteorol 54:590–610
Zurück zum Zitat Luyssaert S, Ciais P, Piao SL, Schulze ED, Jung M, Zaehle S, Schelhaas MJ, Reichstein M, Churkina G, Papale D, Abril G, Beer C, Grace J, Loustau D, Matteucci G, Magnani F, Nabuurs GJ, Verbeeck H, Sulkava M, van der Werf GR, Janssens IA (2010) The European carbon balance. Part 3: Forests. Glob Chang Biol 16:1429–1450 Luyssaert S, Ciais P, Piao SL, Schulze ED, Jung M, Zaehle S, Schelhaas MJ, Reichstein M, Churkina G, Papale D, Abril G, Beer C, Grace J, Loustau D, Matteucci G, Magnani F, Nabuurs GJ, Verbeeck H, Sulkava M, van der Werf GR, Janssens IA (2010) The European carbon ­balance. Part 3: Forests. Glob Chang Biol 16:1429–1450
Zurück zum Zitat Lyons WA, Nelson TE, Williams ER, Cramer JA, Turner TR (1998) Enhanced positive cloud-to-ground lightning in thunderstorms ingesting smoke from fires. Science 282:77–80 Lyons WA, Nelson TE, Williams ER, Cramer JA, Turner TR (1998) Enhanced positive cloud-to-ground lightning in thunderstorms ingesting smoke from fires. Science 282:77–80
Zurück zum Zitat Magnani F, Mencuccini M, Borghetti M, Berbigier P, Berninger F, Delzon S, Grelle A, Hari P, Jarvis PG, Kolari P, Kowalski AS, Lankreijer H, Law BE, Lindroth A, Loustau D, Manca G, Moncrieff JB, Rayment M, Tedeschi V, Valentini R, Grace J (2007) The human footprint in the carbon cycle of temperate and boreal forests. Nature 447:848–850 Magnani F, Mencuccini M, Borghetti M, Berbigier P, Berninger F, Delzon S, Grelle A, Hari P, Jarvis PG, Kolari P, Kowalski AS, Lankreijer H, Law BE, Lindroth A, Loustau D, Manca G, Moncrieff JB, Rayment M, Tedeschi V, Valentini R, Grace J (2007) The human footprint in the carbon cycle of temperate and boreal forests. Nature 447:848–850
Zurück zum Zitat Maksyutov S, Machida T, Mukai H, Patra PK, Nakazawa T, Inoue G (2003) Effect of recent observations on Asian CO2 flux estimates by transport model inversions. Tellus B Chem Phys Meteorol 55:522–529 Maksyutov S, Machida T, Mukai H, Patra PK, Nakazawa T, Inoue G (2003) Effect of recent observations on Asian CO2 flux estimates by transport model inversions. Tellus B Chem Phys Meteorol 55:522–529
Zurück zum Zitat Manko UI, Gladkova GA (2001) Drying of spruce in the context of global degradation of dark coniferous forest. Dalnauka, Vladivostok, 231 pp Manko UI, Gladkova GA (2001) Drying of spruce in the context of global degradation of dark coniferous forest. Dalnauka, Vladivostok, 231 pp
Zurück zum Zitat Manö S, Andreae MO (1994) Emission of methyl bromide from biomass burning. Science 263:1255–1257 Manö S, Andreae MO (1994) Emission of methyl bromide from biomass burning. Science 263:1255–1257
Zurück zum Zitat McClelland JW, Holmes RM, Peterson BJ, Amon R, Brabets T, Cooper L, Gibson J, Gordeev VV, Guay C, Milburn D, Staples R, Raymond PA, Shiklomanov I, Striegl R, Zhulidov A, Gurtovaya T, Zimov S (2008) Development of Pan-Arctic database for river chemistry. Eos 89:217–218 McClelland JW, Holmes RM, Peterson BJ, Amon R, Brabets T, Cooper L, Gibson J, Gordeev VV, Guay C, Milburn D, Staples R, Raymond PA, Shiklomanov I, Striegl R, Zhulidov A, Gurtovaya T, Zimov S (2008) Development of Pan-Arctic database for river chemistry. Eos 89:217–218
Zurück zum Zitat McGuire AD, Chapin Iii FS, Walsh JE, Wirth C (2006) Integrated regional changes in arctic climate feedbacks: implications for the global climate system. Annu Rev Environ Resour 31:61–91 McGuire AD, Chapin Iii FS, Walsh JE, Wirth C (2006) Integrated regional changes in arctic climate feedbacks: implications for the global climate system. Annu Rev Environ Resour 31:61–91
Zurück zum Zitat McGuire AD, Anderson LG, Christensen TR, Scott D, Laodong G, Hayes DJ, Martin H, Lorenson TD, Macdonald RW, Nigel R (2009) Sensitivity of the carbon cycle in the Arctic to climate change. Ecol Monogr 79(4):523–555 McGuire AD, Anderson LG, Christensen TR, Scott D, Laodong G, Hayes DJ, Martin H, Lorenson TD, Macdonald RW, Nigel R (2009) Sensitivity of the carbon cycle in the Arctic to climate change. Ecol Monogr 79(4):523–555
Zurück zum Zitat McGuire AD, Hayes DJ, Kicklighter DW, Manizza M, Zhuang Q, Chen M, Follows MJ, Gurney KR, McClelland JW, Melillo JM, Peterson BJ, Prinn R (2010a) An analysis of the carbon balance of the Arctic Basin from 1997 to 2006. Tellus 62B:455–474. doi:10.1111/j.1600-0889.2010.00497.x McGuire AD, Hayes DJ, Kicklighter DW, Manizza M, Zhuang Q, Chen M, Follows MJ, Gurney KR, McClelland JW, Melillo JM, Peterson BJ, Prinn R (2010a) An analysis of the carbon balance of the Arctic Basin from 1997 to 2006. Tellus 62B:455–474. doi:10.​1111/​j.​1600-0889.​2010.​00497.​x
Zurück zum Zitat McGuire AD, Hayes DJ, Kicklighter DW, Zhuang Q, Chen M, Gurney RK e a (2010b) Analysis of the carbon balance of boreal Asia from 1997 to 2006. In: Proceedings of the international conference on environmental observations, modeling and information system ENVIROMIS, Tomsk, Russia, 5–11 July, 2010, pp 53–58 McGuire AD, Hayes DJ, Kicklighter DW, Zhuang Q, Chen M, Gurney RK e a (2010b) Analysis of the carbon balance of boreal Asia from 1997 to 2006. In: Proceedings of the international conference on environmental observations, modeling and information system ENVIROMIS, Tomsk, Russia, 5–11 July, 2010, pp 53–58
Zurück zum Zitat Meleshko VP, Katsov VM, Govorkova VA (2008) Climate of Russia in the XXI century. 3. Future climate changes obtained from an ensemble of the coupled atmosphere-ocean GCM CMIP3. Meteorol Hydrol 9:5–22 Meleshko VP, Katsov VM, Govorkova VA (2008) Climate of Russia in the XXI century. 3. Future climate changes obtained from an ensemble of the coupled atmosphere-ocean GCM CMIP3. Meteorol Hydrol 9:5–22
Zurück zum Zitat Mladenoff DJ (2004) LANDIS and forest landscape models. Ecol Model 180:7–19 Mladenoff DJ (2004) LANDIS and forest landscape models. Ecol Model 180:7–19
Zurück zum Zitat Mokhov I, Chernokulsky AV, Shkolnik IM (2006) Regional model assessment of fire risks under global climate change. Dokl Earth Sci 411A(9):1485–1488 Mokhov I, Chernokulsky AV, Shkolnik IM (2006) Regional model assessment of fire risks under global climate change. Dokl Earth Sci 411A(9):1485–1488
Zurück zum Zitat Mokhov II, Chernokul’Skii AV, Akperov MG, Dufresne JL, Le Treut H (2009) Variations in the characteristics of cyclonic activity and cloudiness in the atmosphere of extratropical latitudes of the Northern Hemisphere based from model calculations compared with the data of the reanalysis and satellite data. Dokl Earth Sci 424:147–150 Mokhov II, Chernokul’Skii AV, Akperov MG, Dufresne JL, Le Treut H (2009) Variations in the characteristics of cyclonic activity and cloudiness in the atmosphere of extratropical latitudes of the Northern Hemisphere based from model calculations compared with the data of the reanalysis and satellite data. Dokl Earth Sci 424:147–150
Zurück zum Zitat Monserud RA, Leemans R (1992) Comparing global vegetation maps with the Kappa statistic. Ecol Model 62:275–293 Monserud RA, Leemans R (1992) Comparing global vegetation maps with the Kappa statistic. Ecol Model 62:275–293
Zurück zum Zitat Monserud RA, Tchebakova NM, Kolchugina TP, Denissenko OV (1996) Change in Siberian phytomass predicted for global warming. Silva Fenn 30:185–200 Monserud RA, Tchebakova NM, Kolchugina TP, Denissenko OV (1996) Change in Siberian phytomass predicted for global warming. Silva Fenn 30:185–200
Zurück zum Zitat Morishita T, Hatano R, Desyatkin RV (2003) CH4 flux in an Alas ecosystem formed by forest disturbance near Yakutsk, Eastern Siberia, Russia. Soil Sci Plant Nutr 49:369–377 Morishita T, Hatano R, Desyatkin RV (2003) CH4 flux in an Alas ecosystem formed by forest disturbance near Yakutsk, Eastern Siberia, Russia. Soil Sci Plant Nutr 49:369–377
Zurück zum Zitat Mukhortova LV, Evgrafova SI (2005) Dynamics of organic matter decomposition and microflora composition of forest litter in artificial biogeocenoses. Proc Russ Acad Sci (Biol) 6:731–737 Mukhortova LV, Evgrafova SI (2005) Dynamics of organic matter decomposition and microflora composition of forest litter in artificial biogeocenoses. Proc Russ Acad Sci (Biol) 6:731–737
Zurück zum Zitat Nilsson S, Vaganov EA, Shvidenko AZ, Stolbovoi V, Rozhkov VA, MacCallum I, Ionas M (2003) Carbon budget of vegetation ecosystems of Russia. Dokl Earth Sci 393:1281–1283 Nilsson S, Vaganov EA, Shvidenko AZ, Stolbovoi V, Rozhkov VA, MacCallum I, Ionas M (2003) Carbon budget of vegetation ecosystems of Russia. Dokl Earth Sci 393:1281–1283
Zurück zum Zitat Olchev A, Ibrom A, Ross T, Falk U, Rakkibu G, Radler K, Grote S, Kreilein H, Gravenhorst G (2008) A modelling approach for simulation of water and carbon dioxide exchange between multi-species tropical rain forest and the atmosphere. Ecol Model 212:122–130 Olchev A, Ibrom A, Ross T, Falk U, Rakkibu G, Radler K, Grote S, Kreilein H, Gravenhorst G (2008) A modelling approach for simulation of water and carbon dioxide exchange between multi-species tropical rain forest and the atmosphere. Ecol Model 212:122–130
Zurück zum Zitat Olchev A, Novenko E, Desherevskaya O, Krasnorutskaya K, Kurbatova J (2009) Effects of climatic changes on carbon dioxide and water vapor fluxes in boreal forest ecosystems of European part of Russia. Environ Res Lett 4:045007 (8 pp) Olchev A, Novenko E, Desherevskaya O, Krasnorutskaya K, Kurbatova J (2009) Effects of climatic changes on carbon dioxide and water vapor fluxes in boreal forest ecosystems of European part of Russia. Environ Res Lett 4:045007 (8 pp)
Zurück zum Zitat Oltchev A, Cermak J, Nadezhdina N, Tatarinov F, Tishenko A, Ibrom A, Gravenhorst G (2002) Transpiration of a mixed forest stand: field measurements and simulation using SVAT models. Boreal Environ Res 7:389–397 Oltchev A, Cermak J, Nadezhdina N, Tatarinov F, Tishenko A, Ibrom A, Gravenhorst G (2002) Transpiration of a mixed forest stand: field measurements and simulation using SVAT models. Boreal Environ Res 7:389–397
Zurück zum Zitat Onuchin AA (2009) Hydrological role of forest ecosystems of boreal zone. In: Proceedings of the international conference on ecological and geographical aspects of forest forming process, 23–25 Sept 2009, Krasnoyarsk, pp 11–14 Onuchin AA (2009) Hydrological role of forest ecosystems of boreal zone. In: Proceedings of the international conference on ecological and geographical aspects of forest forming process, 23–25 Sept 2009, Krasnoyarsk, pp 11–14
Zurück zum Zitat Onuchin AA, Burenina TA (2008) Hydrological role of forests in Siberia. In: Prescott AP, Barkely TU (eds) Trends in water research. Nova, New York, pp 67–92 Onuchin AA, Burenina TA (2008) Hydrological role of forests in Siberia. In: Prescott AP, Barkely TU (eds) Trends in water research. Nova, New York, pp 67–92
Zurück zum Zitat Onuchin A, Balzter H, Borisova H, Blyth E (2006) Climatic and geographic patterns of river runoff formation in Northern Eurasia. Adv Water Resour 29:1314–1327 Onuchin A, Balzter H, Borisova H, Blyth E (2006) Climatic and geographic patterns of river runoff formation in Northern Eurasia. Adv Water Resour 29:1314–1327
Zurück zum Zitat Onuchin A, Burenina T, Gaparov K, Zyrukina N (2009) Land use impacts on river hydrological regimes in Northern Asia. In: Proceedings of the international conference “Hydroinformatics in hydrology, hydrogeology and water resources”, Hyderabad, India, 6–12 September, pp 163–170 Onuchin A, Burenina T, Gaparov K, Zyrukina N (2009) Land use impacts on river hydrological regimes in Northern Asia. In: Proceedings of the international conference “Hydroinformatics in hydrology, hydrogeology and water resources”, Hyderabad, India, 6–12 September, pp 163–170
Zurück zum Zitat Orlov DS, Biryukova ON, Sukhanova NI (1996) Organic matter in soils of the Russian Federation. Nauka, Moscow, 254 pp (in Russian) Orlov DS, Biryukova ON, Sukhanova NI (1996) Organic matter in soils of the Russian Federation. Nauka, Moscow, 254 pp (in Russian)
Zurück zum Zitat Pacala S, Birdsey RA, Bridgham SD, Conant RT, Davis K, Hales B, Hougthon RA, Jenkins JC, Johnston M, Marland G, Paustian K (2009) The North American carbon budget past and present. Chapter 3. In: The first state of the carbon cycle report (SOCCR). The North American carbon budget and implications for the global carbon cycle. National Oceanic and Atmospheric Administration, National Climatic Data Center, Asheville, NC pp 29–36 Pacala S, Birdsey RA, Bridgham SD, Conant RT, Davis K, Hales B, Hougthon RA, Jenkins JC, Johnston M, Marland G, Paustian K (2009) The North American carbon budget past and present. Chapter 3. In: The first state of the carbon cycle report (SOCCR). The North American carbon budget and implications for the global carbon cycle. National Oceanic and Atmospheric Administration, National Climatic Data Center, Asheville, NC pp 29–36
Zurück zum Zitat Pan Y, Birdsey R, Fang J, Hougthon R, Kaippi PE, Kurz AA, Phillips OL, Shvidenko A, Lewis SL, Canadell JG, Ciais P, Jackson RB, Pacala SW, McGuire AD, Piao S, Rautianen A, Sitch S, Hayes D (2011) A large and persistent carbon sink in the world’s forests. Science 333:988–993 Pan Y, Birdsey R, Fang J, Hougthon R, Kaippi PE, Kurz AA, Phillips OL, Shvidenko A, Lewis SL, Canadell JG, Ciais P, Jackson RB, Pacala SW, McGuire AD, Piao S, Rautianen A, Sitch S, Hayes D (2011) A large and persistent carbon sink in the world’s forests. Science 333:988–993
Zurück zum Zitat Patra PK, Gurney KR, Denning AS, Maksyutov S, Nakazawa T, Baker D, Bousquet P, Bruhwiler L, Chen YH, Ciais P, Fan S, Fung I, Gloor M, Heimann M, Higuchi K, John J, Law RM, Maki T, Pak BC, Peylin P, Prather M, Rayner PJ, Sarmiento J, Taguchi S, Takahashi T, Yuen CW (2006) Sensitivity of inverse estimation of annual mean CO2 sources and sinks to ocean-only sites versus all-sites observational networks. Geophys Res Lett 33:L05814 Patra PK, Gurney KR, Denning AS, Maksyutov S, Nakazawa T, Baker D, Bousquet P, Bruhwiler L, Chen YH, Ciais P, Fan S, Fung I, Gloor M, Heimann M, Higuchi K, John J, Law RM, Maki T, Pak BC, Peylin P, Prather M, Rayner PJ, Sarmiento J, Taguchi S, Takahashi T, Yuen CW (2006) Sensitivity of inverse estimation of annual mean CO2 sources and sinks to ocean-only sites versus all-sites observational networks. Geophys Res Lett 33:L05814
Zurück zum Zitat Peng C, Apps MJ (1999) Modelling the response of net primary productivity (NPP) of boreal forest ecosystems to changes in climate and fire disturbance regimes. Ecol Model 122:175–193 Peng C, Apps MJ (1999) Modelling the response of net primary productivity (NPP) of boreal forest ecosystems to changes in climate and fire disturbance regimes. Ecol Model 122:175–193
Zurück zum Zitat Pleshanov AS (1982) Insects-defoliators of larch forests of East Siberia. Nauka, Novosibirsk, 209 pp Pleshanov AS (1982) Insects-defoliators of larch forests of East Siberia. Nauka, Novosibirsk, 209 pp
Zurück zum Zitat Pleshikov FI (ed) (2002) Forest ecosystems of the Yenisey Meridian. Publ. House of SB RAN, Novosibirsk Pleshikov FI (ed) (2002) Forest ecosystems of the Yenisey Meridian. Publ. House of SB RAN, Novosibirsk
Zurück zum Zitat Polykarpov NP, Tchebakova NP, Nazimova DI (1986) Climate and mountain forests of Southern Siberia. Nauka, Novosbirsk, 225 pp (in Russian) Polykarpov NP, Tchebakova NP, Nazimova DI (1986) Climate and mountain forests of Southern Siberia. Nauka, Novosbirsk, 225 pp (in Russian)
Zurück zum Zitat Popov LV (1982) Southern taiga forests of Middle Siberia. Irkutsk State University, Irkutsk, 330 pp (in Russian) Popov LV (1982) Southern taiga forests of Middle Siberia. Irkutsk State University, Irkutsk, 330 pp (in Russian)
Zurück zum Zitat Protopopov VV, Lebedev AV, Bizyukin VV (1991) Water protective role of forests of the lake Baikal basin. In: Proceedings of the scientific conference on problems of water resources of the Far Eastern economic region and Zabaikalie. Hydrometeoizdat, St. Petersburg, pp 298–310 Protopopov VV, Lebedev AV, Bizyukin VV (1991) Water protective role of forests of the lake Baikal basin. In: Proceedings of the scientific conference on problems of water resources of the Far Eastern economic region and Zabaikalie. Hydrometeoizdat, St. Petersburg, pp 298–310
Zurück zum Zitat Purves D, Pacala S (2008) Predictive models of forest dynamics. Science 320:1452–1453 Purves D, Pacala S (2008) Predictive models of forest dynamics. Science 320:1452–1453
Zurück zum Zitat Quegan S, Beer C, Shvidenko A, McCallum I, Handoh IC, Peylin P, Rödenbeck C, Lucht W, Nilsson S, Schmullius C (2011) Estimating the carbon balance of central Siberia using a landscape-ecosystem approach, atmospheric inversion and dynamic global vegetation models. Glob Chang Biol 17:351–365 Quegan S, Beer C, Shvidenko A, McCallum I, Handoh IC, Peylin P, Rödenbeck C, Lucht W, Nilsson S, Schmullius C (2011) Estimating the carbon balance of central Siberia using a landscape-ecosystem approach, atmospheric inversion and dynamic global vegetation models. Glob Chang Biol 17:351–365
Zurück zum Zitat Raich JW, Nadelhoffer KJ (1989) Belowground carbon allocation in forest ecosystems: global trends. Ecology 70:1346–1354 Raich JW, Nadelhoffer KJ (1989) Belowground carbon allocation in forest ecosystems: global trends. Ecology 70:1346–1354
Zurück zum Zitat Raich JW, Potter CS, Bhagawati D (2002) Interannual variability in global soil respiration, 1980–1994. Glob Chang Biol 8:800–812 Raich JW, Potter CS, Bhagawati D (2002) Interannual variability in global soil respiration, 1980–1994. Glob Chang Biol 8:800–812
Zurück zum Zitat Raich JW, Schlesinger WH (1992) The global carbon dioxide flux in soil respiration and its relationship to vegetation and climate. Tellus 44B: 81–99 Raich JW, Schlesinger WH (1992) The global carbon dioxide flux in soil respiration and its relationship to vegetation and climate. Tellus 44B: 81–99
Zurück zum Zitat Rautiainen A, Wernick I, Waggoner PE, Ausubel JH, Kauppi PE (2011) A national and international analysis of changing forest density. PLoS One 6:e19577 Rautiainen A, Wernick I, Waggoner PE, Ausubel JH, Kauppi PE (2011) A national and international analysis of changing forest density. PLoS One 6:e19577
Zurück zum Zitat Rehfeldt GE, Tchebakova NM, Parfenova EI (2004) Genetic responses to climate and climate-change in conifers of the temperate and boreal forests. Recent Res Dev Genet Breed 1:113–130 Rehfeldt GE, Tchebakova NM, Parfenova EI (2004) Genetic responses to climate and climate-change in conifers of the temperate and boreal forests. Recent Res Dev Genet Breed 1:113–130
Zurück zum Zitat Rizzo B, Wiken E (1992) Assessing the sensitivity of Canada’s ecosystems to climatic change. Clim Chang 21:37–55 Rizzo B, Wiken E (1992) Assessing the sensitivity of Canada’s ecosystems to climatic change. Clim Chang 21:37–55
Zurück zum Zitat Röser C, Montagnani L, Schulze ED, Mollicone D, Kolle O, Meroni M, Papale D, Marchesini LB, Federici S, Valentini R (2002) Net CO2 exchange rates in three different successional stages of the “Dark Taiga” of central Siberia. Tellus B Chem Phys Meteorol 54:642–654 Röser C, Montagnani L, Schulze ED, Mollicone D, Kolle O, Meroni M, Papale D, Marchesini LB, Federici S, Valentini R (2002) Net CO2 exchange rates in three different successional stages of the “Dark Taiga” of central Siberia. Tellus B Chem Phys Meteorol 54:642–654
Zurück zum Zitat Rozhkov AS (1965) Outbreaks of Siberian silk moth and measures of their control. Nauka, Moscow, 180 pp Rozhkov AS (1965) Outbreaks of Siberian silk moth and measures of their control. Nauka, Moscow, 180 pp
Zurück zum Zitat Rozhkov VA, Wagner VB, Kogut VM (1996) Soil carbon estimates and soil carbon map for Russia. International Institute for Applied Systems Analysis, Laxenburg, 44 pp Rozhkov VA, Wagner VB, Kogut VM (1996) Soil carbon estimates and soil carbon map for Russia. International Institute for Applied Systems Analysis, Laxenburg, 44 pp
Zurück zum Zitat Santoro M, Beer C, Cartus O, Schmullius C, Shvidenko A, McCallum I, Wegmüller U, Wiesmann A (2011) Retrieval of growing stock volume in boreal forest using hyper-temporal series of Envisat ASAR ScanSAR backscatter measurements. Remote Sens Environ 115:490–507 Santoro M, Beer C, Cartus O, Schmullius C, Shvidenko A, McCallum I, Wegmüller U, Wiesmann A (2011) Retrieval of growing stock volume in boreal forest using hyper-temporal series of Envisat ASAR ScanSAR backscatter measurements. Remote Sens Environ 115:490–507
Zurück zum Zitat Scheller RM, Mladenoff DJ (2007) An ecological classification of forest landscape simulation models: tools and strategies for understanding broad-scale forested ecosystems. Landsc Ecol 22:491–505 Scheller RM, Mladenoff DJ (2007) An ecological classification of forest landscape simulation models: tools and strategies for understanding broad-scale forested ecosystems. Landsc Ecol 22:491–505
Zurück zum Zitat Scheller RM, Domingo JB, Sturtevant BR, Williams JS, Rudy A, Gustafson EJ, Mladenoff DJ (2007) Design, development, and application of LANDIS-II, a spatial landscape simulation model with flexible temporal and spatial resolution. Ecol Model 201:409–419 Scheller RM, Domingo JB, Sturtevant BR, Williams JS, Rudy A, Gustafson EJ, Mladenoff DJ (2007) Design, development, and application of LANDIS-II, a spatial landscape simulation model with flexible temporal and spatial resolution. Ecol Model 201:409–419
Zurück zum Zitat Schepaschenko D, McCallum I, Shvidenko A, Fritz S, Kraxner F, Obersteiner M (2010) A new hybrid land cover dataset for Russia: a methodology for integrating statistics, remote sensing and in-situ information. J Land Use Sci 6(4):245–259. doi:10.1080/1747423X.2010.511681, Published online 22 December 2010 Schepaschenko D, McCallum I, Shvidenko A, Fritz S, Kraxner F, Obersteiner M (2010) A new hybrid land cover dataset for Russia: a methodology for integrating statistics, remote sensing and in-situ information. J Land Use Sci 6(4):245–259. doi:10.​1080/​1747423X.​2010.​511681, Published online 22 December 2010
Zurück zum Zitat Schepaschenko DG, Shvidenko AZ, Mukhortova LV, Schepaschenko MV (2011) Soil in the estimation of biospheric role of terrestrial ecosystems of Russia. In: Aparin BF (ed) International conference V.V. Dokuchaev 165 anniversary. Resource potential of soils – basis of food and ecological safety of Russia, Saint Petersburg State University, Saint Petersburg, 1–4 March, pp 511–512 Schepaschenko DG, Shvidenko AZ, Mukhortova LV, Schepaschenko MV (2011) Soil in the estimation of biospheric role of terrestrial ecosystems of Russia. In: Aparin BF (ed) International conference V.V. Dokuchaev 165 anniversary. Resource potential of soils – basis of food and ecological safety of Russia, Saint Petersburg State University, Saint Petersburg, 1–4 March, pp 511–512
Zurück zum Zitat Scherbakov IP (1975) Forest cover of North-East of the USSR. Nauka Publisher, Novosibirsk, 344 p (in Russian) Scherbakov IP (1975) Forest cover of North-East of the USSR. Nauka Publisher, Novosibirsk, 344 p (in Russian)
Zurück zum Zitat Schimel DS, Parton WJ, Kittel TGF, Ojima DS, Cole CV (1990) Grassland biogeochemistry: links to atmospheric processes. Clim Chang 17:13–25 Schimel DS, Parton WJ, Kittel TGF, Ojima DS, Cole CV (1990) Grassland biogeochemistry: links to atmospheric processes. Clim Chang 17:13–25
Zurück zum Zitat Schmid HP, Grimmond CSB, Cropley F, Offerle B, Su HB (2000) Measurements of CO2 and energy fluxes over a mixed hardwood forest in the mid-western United States. Agr Forest Meteorol 103:357–374 Schmid HP, Grimmond CSB, Cropley F, Offerle B, Su HB (2000) Measurements of CO2 and energy fluxes over a mixed hardwood forest in the mid-western United States. Agr Forest Meteorol 103:357–374
Zurück zum Zitat Schmullius C, Santoro M (2005) SIBERIA-II. Multi-sensor concepts for greenhouse gas accounting of Northern Eurasia, Contract Number EVG1-CT-2001–0048, EC Deliverable, Final report, 167 pp Schmullius C, Santoro M (2005) SIBERIA-II. Multi-sensor concepts for greenhouse gas accounting of Northern Eurasia, Contract Number EVG1-CT-2001–0048, EC Deliverable, Final report, 167 pp
Zurück zum Zitat Schneider MK, Lüscher A, Richter M, Aeschlimann U, Hartwig UA, Blum H, Frossard E, Nösberger J (2004) Ten years of free-air CO2 enrichment altered the mobilization of N from soil in Lolium perenne L. swards. Glob Chang Biol 10:1377–1388 Schneider MK, Lüscher A, Richter M, Aeschlimann U, Hartwig UA, Blum H, Frossard E, Nösberger J (2004) Ten years of free-air CO2 enrichment altered the mobilization of N from soil in Lolium perenne L. swards. Glob Chang Biol 10:1377–1388
Zurück zum Zitat Schulze ED (2002) Understanding global change: lessons learnt from the European landscape. J Veg Sci 13:403–412 Schulze ED (2002) Understanding global change: lessons learnt from the European landscape. J Veg Sci 13:403–412
Zurück zum Zitat Schulze ED, Lloyd J, Kelliher FM, Wirth C, Rebmann C, Luhker B, Mund M, Knohl A, Milyukova IM, Schulze W, Ziegler W, Varlagin AB, Sogachev AF, Valentini R, Dore S, Grigoriev S, Kolle O, Panfyorov MI, Tchebakova N, Vygodskaya NN (1999) Productivity of forests in the Eurosiberian boreal region and their potential to act as a carbon sink – a synthesis. Glob Chang Biol 5:703–722 Schulze ED, Lloyd J, Kelliher FM, Wirth C, Rebmann C, Luhker B, Mund M, Knohl A, Milyukova IM, Schulze W, Ziegler W, Varlagin AB, Sogachev AF, Valentini R, Dore S, Grigoriev S, Kolle O, Panfyorov MI, Tchebakova N, Vygodskaya NN (1999) Productivity of forests in the Eurosiberian boreal region and their potential to act as a carbon sink – a synthesis. Glob Chang Biol 5:703–722
Zurück zum Zitat Schuur EAG, Vogel JG, Crummer KG, Lee H, Sickman JO, Osterkamp TE (2009) The effect of permafrost thaw on old carbon release and net carbon exchange from tundra. Nature 459:556–559 Schuur EAG, Vogel JG, Crummer KG, Lee H, Sickman JO, Osterkamp TE (2009) The effect of permafrost thaw on old carbon release and net carbon exchange from tundra. Nature 459:556–559
Zurück zum Zitat Schwikowski M, Eichler A, Kalugin I, Ovtchinnikov D, Papina T (2009) Past climate variability in the Altai. Pages News 17:44–45 Schwikowski M, Eichler A, Kalugin I, Ovtchinnikov D, Papina T (2009) Past climate variability in the Altai. Pages News 17:44–45
Zurück zum Zitat Sedykh VN (1990) Thermal effect in the forest forming process of West Siberia. In: Processes of transfer in natural and artificial covers of the Earth. Tjumen, pp 10–25 (in Russian) Sedykh VN (1990) Thermal effect in the forest forming process of West Siberia. In: Processes of transfer in natural and artificial covers of the Earth. Tjumen, pp 10–25 (in Russian)
Zurück zum Zitat Sedykh VN (2009) Forest forming process. Nauka, Novosibirsk, 163 pp (in Russian) Sedykh VN (2009) Forest forming process. Nauka, Novosibirsk, 163 pp (in Russian)
Zurück zum Zitat Shaver GR, Billings WD, Chapin FSI, Giblin AE, Nadelhoffer KJ, Oechel WC, Rastetter EB (1992) Global change and the carbon balance of arctic ecosystems. Bioscience 42:433–441 Shaver GR, Billings WD, Chapin FSI, Giblin AE, Nadelhoffer KJ, Oechel WC, Rastetter EB (1992) Global change and the carbon balance of arctic ecosystems. Bioscience 42:433–441
Zurück zum Zitat Sheingauz AS (2001) Forest complex of Khabarovsk Kray. RIOTIP, Kabarovsk, 103 pp (in Russian) Sheingauz AS (2001) Forest complex of Khabarovsk Kray. RIOTIP, Kabarovsk, 103 pp (in Russian)
Zurück zum Zitat Sheingauz AS (2008) Selected works. FEB RAS, Khabarovsk, 654 pp (in Russian) Sheingauz AS (2008) Selected works. FEB RAS, Khabarovsk, 654 pp (in Russian)
Zurück zum Zitat Sheshukov MA (1967) On classification of forest fire based on extent of burnt areas. Forestry For Manage 1:53–57 (in Russian) Sheshukov MA (1967) On classification of forest fire based on extent of burnt areas. Forestry For Manage 1:53–57 (in Russian)
Zurück zum Zitat Shibistova O, Lloyd J, Zrazhevskaya G, Arneth A, Kolle O, Knohl A, Astrakhantceva N, Shijneva I, Schmerler J (2002) Annual ecosystem respiration budget for a Pinus sylvestris stand in central Siberia. Tellus B Chem Phys Meteorol 54:568–589 Shibistova O, Lloyd J, Zrazhevskaya G, Arneth A, Kolle O, Knohl A, Astrakhantceva N, Shijneva I, Schmerler J (2002) Annual ecosystem respiration budget for a Pinus sylvestris stand in central Siberia. Tellus B Chem Phys Meteorol 54:568–589
Zurück zum Zitat Shiklomanov IA, Krestovsky OI (1988) Influence of forests and forest reclamation practice on streamflow and water balance. In: Reynolds ERC, Thompson FB (eds) Forests, climate, and hydrology: regional impacts. United Nations University Press, Tokyo, pp 78–116 Shiklomanov IA, Krestovsky OI (1988) Influence of forests and forest reclamation practice on streamflow and water balance. In: Reynolds ERC, Thompson FB (eds) Forests, climate, and hydrology: regional impacts. United Nations University Press, Tokyo, pp 78–116
Zurück zum Zitat Shiyatov SG (2003) Rates of change in the upper tree line ecotone in the Polar Ural Mountains. Pages News 11:8–10 Shiyatov SG (2003) Rates of change in the upper tree line ecotone in the Polar Ural Mountains. Pages News 11:8–10
Zurück zum Zitat Shiyatov SG, Terent’ev MM, Fomin VV, Zimmermann NE (2007) Altitudinal and horizontal shifts of the upper boundaries of open and closed forests in the Polar Urals in the 20th century. Russ J Ecol 4(38):223–227 Shiyatov SG, Terent’ev MM, Fomin VV, Zimmermann NE (2007) Altitudinal and horizontal shifts of the upper boundaries of open and closed forests in the Polar Urals in the 20th century. Russ J Ecol 4(38):223–227
Zurück zum Zitat Shugart HH (2000) Importance of structure in the longer-term dynamics of landscapes. J Geophys Res D Atmos 105:20065–20075 Shugart HH (2000) Importance of structure in the longer-term dynamics of landscapes. J Geophys Res D Atmos 105:20065–20075
Zurück zum Zitat Shugart HH, West DC (1980) Forest succession models. Bioscience 30:308–313 Shugart HH, West DC (1980) Forest succession models. Bioscience 30:308–313
Zurück zum Zitat Shugart HH, Leemans R, Bonan GB (eds) (1992) A systems analysis of the global boreal forest. Cambridge University Press, Cambridge, 542 pp Shugart HH, Leemans R, Bonan GB (eds) (1992) A systems analysis of the global boreal forest. Cambridge University Press, Cambridge, 542 pp
Zurück zum Zitat Shuman JK, Krankina ON, Shugart HH (2011) Validation of the dynamic forest gap model FAREAST across Russia ecological applications (in preparation) Shuman JK, Krankina ON, Shugart HH (2011) Validation of the dynamic forest gap model FAREAST across Russia ecological applications (in preparation)
Zurück zum Zitat Shumilova LV (1962) Botanical geography of Siberia. Tomsk State University, Tomsk, 440 pp (in Russian) Shumilova LV (1962) Botanical geography of Siberia. Tomsk State University, Tomsk, 440 pp (in Russian)
Zurück zum Zitat Shvidenko A, Goldammer JG (2001) Fire situation in Russia. Int Fire News 24:41–59 Shvidenko A, Goldammer JG (2001) Fire situation in Russia. Int Fire News 24:41–59
Zurück zum Zitat Shvidenko A, Nilsson S (2000a) Fire and the carbon budget of Russian forests. In: Kasischke ES, Stock BJ (eds) Fire, climate change, and carbon cycling in the boreal forest. Springer, New York, pp 289–311 Shvidenko A, Nilsson S (2000a) Fire and the carbon budget of Russian forests. In: Kasischke ES, Stock BJ (eds) Fire, climate change, and carbon cycling in the boreal forest. Springer, New York, pp 289–311
Zurück zum Zitat Shvidenko AZ, Nilsson S (2000b) Extent, distribution, and ecological role of fire in Russian forests. In: Kasischke ES, Stocks BJ (eds) Fire, climate change, and carbon cycling in the boreal forest. Springer, New York, pp 132–150 Shvidenko AZ, Nilsson S (2000b) Extent, distribution, and ecological role of fire in Russian forests. In: Kasischke ES, Stocks BJ (eds) Fire, climate change, and carbon cycling in the boreal forest. Springer, New York, pp 132–150
Zurück zum Zitat Shvidenko A, Nilsson S (2002) Dynamics of Russian forests and the carbon budget in 1961–1998: an assessment based on long-term forest inventory data. Clim Chang 55:5–37 Shvidenko A, Nilsson S (2002) Dynamics of Russian forests and the carbon budget in 1961–1998: an assessment based on long-term forest inventory data. Clim Chang 55:5–37
Zurück zum Zitat Shvidenko A, Nilsson S (2003) A synthesis of the impact of Russian forests on the global carbon budget for 1961–1998. Tellus B Chem Phys Meteorol 55:391–415 Shvidenko A, Nilsson S (2003) A synthesis of the impact of Russian forests on the global carbon budget for 1961–1998. Tellus B Chem Phys Meteorol 55:391–415
Zurück zum Zitat Shvidenko AZ, Strakhov VV, Nilsson S, Sedykh VN, Sokolov VA, Efremov DE (2000) Spatial scale of productivity of Russian forests. For Manage Inf 1–2:7–23 (in Russian) Shvidenko AZ, Strakhov VV, Nilsson S, Sedykh VN, Sokolov VA, Efremov DE (2000) Spatial scale of productivity of Russian forests. For Manage Inf 1–2:7–23 (in Russian)
Zurück zum Zitat Shvidenko A, Strakhov V, Nilsson S, Sedykh V, Sokolov V. Efremov D (2001) Productivity of forests of Russia. 3. Spatial scale of productivity’s assessment. Forest Management Information, Moscow 1–2, pp 7–23 (in Russian) Shvidenko A, Strakhov V, Nilsson S, Sedykh V, Sokolov V. Efremov D (2001) Productivity of forests of Russia. 3. Spatial scale of productivity’s assessment. Forest Management Information, Moscow 1–2, pp 7–23 (in Russian)
Zurück zum Zitat Shvidenko A, Schepaschenko D, Nilsson S, Bouloui Y (2007a) Semi-empirical models for assessing biological productivity of Northern Eurasian forests. Ecol Model 204:163–179 Shvidenko A, Schepaschenko D, Nilsson S, Bouloui Y (2007a) Semi-empirical models for assessing biological productivity of Northern Eurasian forests. Ecol Model 204:163–179
Zurück zum Zitat Shvidenko AZ, Schepaschenko D, Nilsson S (2007b) Materials to knowledge of current productivity of Russian forest ecosystems. In: Basic problems for going over to sustainable forest management of Russia – forest inventory and forest organization. V.N. Sukachev Institute of Forest SB RAS, Krasnoyarsk, pp 7–37 Shvidenko AZ, Schepaschenko D, Nilsson S (2007b) Materials to knowledge of current productivity of Russian forest ecosystems. In: Basic problems for going over to sustainable forest management of Russia – forest inventory and forest organization. V.N. Sukachev Institute of Forest SB RAS, Krasnoyarsk, pp 7–37
Zurück zum Zitat Shvidenko AZ, Schepashchenko DG, Vaganov EA, Nilsson S (2008) Net primary production of forest ecosystems of Russia: a new estimate. Dokl Earth Sci 421A(6):1009–1012 Shvidenko AZ, Schepashchenko DG, Vaganov EA, Nilsson S (2008) Net primary production of forest ecosystems of Russia: a new estimate. Dokl Earth Sci 421A(6):1009–1012
Zurück zum Zitat Shvidenko A, Schepaschenko D, McCallum I (2010a) Bottom-up inventory of the carbon fluxes in Northern Eurasia for comparison with GOSAT level 4 products. Unpublished manuscript. International Institute for Applied Systems Analysis, Laxenburg, 210 p Shvidenko A, Schepaschenko D, McCallum I (2010a) Bottom-up inventory of the carbon fluxes in Northern Eurasia for comparison with GOSAT level 4 products. Unpublished manuscript. International Institute for Applied Systems Analysis, Laxenburg, 210 p
Zurück zum Zitat Shvidenko A, Schepaschenko D, McCallum I, Nilsson S (2010b) Can the uncertainty of full carbon accounting of forest ecosystems be made acceptable to policymakers? Clim Chang 103:137–157 Shvidenko A, Schepaschenko D, McCallum I, Nilsson S (2010b) Can the uncertainty of full carbon accounting of forest ecosystems be made acceptable to policymakers? Clim Chang 103:137–157
Zurück zum Zitat Shvidenko A, Schepaschenko D, Vaganov EA, Sukhinin AI, Maksyutov SS, McCallum I, Lakyda IP (2011) Impacts of vegetation fires of 1998–2010 in Russia on ecosystems and global carbon budget. Proc Russ Acad Sci (Doklady RAN) 441(2):544–588 Shvidenko A, Schepaschenko D, Vaganov EA, Sukhinin AI, Maksyutov SS, McCallum I, Lakyda IP (2011) Impacts of vegetation fires of 1998–2010 in Russia on ecosystems and global carbon budget. Proc Russ Acad Sci (Doklady RAN) 441(2):544–588
Zurück zum Zitat Sitch S, Smith B, Prentice IC, Arneth A, Bondeau A, Cramer W, Kaplan JO, Levis S, Lucht W, Sykes MT, Thonicke K, Venevsky S (2003) Evaluation of ecosystem dynamics, plant geography and terrestrial carbon cycling in the LPJ dynamic global vegetation model. Glob Chang Biol 9:161–185 Sitch S, Smith B, Prentice IC, Arneth A, Bondeau A, Cramer W, Kaplan JO, Levis S, Lucht W, Sykes MT, Thonicke K, Venevsky S (2003) Evaluation of ecosystem dynamics, plant geography and terrestrial carbon cycling in the LPJ dynamic global vegetation model. Glob Chang Biol 9:161–185
Zurück zum Zitat Smith TM, Shugart HH (1993) The transient response of terrestrial carbon storage to a perturbed climate. Nature 361:523–526 Smith TM, Shugart HH (1993) The transient response of terrestrial carbon storage to a perturbed climate. Nature 361:523–526
Zurück zum Zitat Soja AJ, Cofer WR, Shugart HH, Sukhinin AI, Stackhouse PW Jr, McRae DJ, Conard SG (2004) Estimating fire emissions and disparities in boreal Siberia (1998–2002). J Geophys Res D: Atmos 109:D14S06 Soja AJ, Cofer WR, Shugart HH, Sukhinin AI, Stackhouse PW Jr, McRae DJ, Conard SG (2004) Estimating fire emissions and disparities in boreal Siberia (1998–2002). J Geophys Res D: Atmos 109:D14S06
Zurück zum Zitat Soja AJ, Tchebakova NM, French NHF, Flannigan MD, Shugart HH, Stocks BJ, Sukhinin AI, Parfenova EI, Chapin Iii FS, Stackhouse PW Jr (2007) Climate-induced boreal forest change: predictions versus current observations. Glob Planet Change 56:274–296 Soja AJ, Tchebakova NM, French NHF, Flannigan MD, Shugart HH, Stocks BJ, Sukhinin AI, Parfenova EI, Chapin Iii FS, Stackhouse PW Jr (2007) Climate-induced boreal forest change: predictions versus current observations. Glob Planet Change 56:274–296
Zurück zum Zitat Sokolova GA, Teteryatnikova EP (2002) Estimation of dynamics of forests of Russian Far East and Eastern Siberia caused by natural and anthropogenic factors. Research report. Far Eastern Research Forestry Institute, Khabarovsk, 180 p (in Russian) Sokolova GA, Teteryatnikova EP (2002) Estimation of dynamics of forests of Russian Far East and Eastern Siberia caused by natural and anthropogenic factors. Research report. Far Eastern Research Forestry Institute, Khabarovsk, 180 p (in Russian)
Zurück zum Zitat Solomon AM, Leemans R (1990) Climatic change and landscape ecological response: issues and analysis. In: Boer MM, de Groot RS (eds) Landscape ecological impact of climatic change. Ios Press, Amsterdam, pp 293–316 Solomon AM, Leemans R (1990) Climatic change and landscape ecological response: issues and analysis. In: Boer MM, de Groot RS (eds) Landscape ecological impact of climatic change. Ios Press, Amsterdam, pp 293–316
Zurück zum Zitat Stireman JO et al (2005) Climatic unpredictability and parasitism of caterpillars: implications of global warming. PNAS 102(48):17384–17387 Stireman JO et al (2005) Climatic unpredictability and parasitism of caterpillars: implications of global warming. PNAS 102(48):17384–17387
Zurück zum Zitat Stocks BJ, Fosberg MA, Lynham TJ, Mearns L, Wotton BM, Yang Q, Jin JZ, Lawrence K, Hartley GR, Mason JA, McKenney DW (1998) Climate change and forest fire potential in Russian and Canadian boreal forests. Clim Chang 38:1–13 Stocks BJ, Fosberg MA, Lynham TJ, Mearns L, Wotton BM, Yang Q, Jin JZ, Lawrence K, Hartley GR, Mason JA, McKenney DW (1998) Climate change and forest fire potential in Russian and Canadian boreal forests. Clim Chang 38:1–13
Zurück zum Zitat Sukachev VN (1972) Selected scientific works, vol 1: Foundations of forest typology and biogeocenology. Nauka, Leningrad, 418 pp (in Russian) Sukachev VN (1972) Selected scientific works, vol 1: Foundations of forest typology and biogeocenology. Nauka, Leningrad, 418 pp (in Russian)
Zurück zum Zitat Sukhinin AI (2009) Airspace monitoring of catastrophic fires in forests of East Siberia. Unpublished report. Institute of Forest of Siberian Branch of the Russian Academy of Sciences, Krasnoyarsk, 91 p (in Russian) Sukhinin AI (2009) Airspace monitoring of catastrophic fires in forests of East Siberia. Unpublished report. Institute of Forest of Siberian Branch of the Russian Academy of Sciences, Krasnoyarsk, 91 p (in Russian)
Zurück zum Zitat Tchebakova NM, Kolle O, Zolotuknine DA, Lloyd J, Arneth A, Parfenova EI, Schulze E-D (2002) Annual and seasonal dynamics of energy and mass exchange in a middle taiga pine forest. In: Pleshikov FI (ed) Forest ecosystems of the Yenisei meridian. Siberian Branch of Russian Academy of Sciences Publishing House, Novosibirsk, pp 252–264 Tchebakova NM, Kolle O, Zolotuknine DA, Lloyd J, Arneth A, Parfenova EI, Schulze E-D (2002) Annual and seasonal dynamics of energy and mass exchange in a middle taiga pine forest. In: Pleshikov FI (ed) Forest ecosystems of the Yenisei meridian. Siberian Branch of Russian Academy of Sciences Publishing House, Novosibirsk, pp 252–264
Zurück zum Zitat Tchebakova NM, Rehfeldt GE, Parfenova EI (2003) Distribution of vegetation zones and populations of Larix sibirica and Pinus sylvestris in central Siberia under climate warming. Siberian Ecol J 6:677–686 (in Russian) Tchebakova NM, Rehfeldt GE, Parfenova EI (2003) Distribution of vegetation zones and populations of Larix sibirica and Pinus sylvestris in central Siberia under climate warming. Siberian Ecol J 6:677–686 (in Russian)
Zurück zum Zitat Tchebakova NM, Parfenova EI, Soja AJ (2009) Effects of climate, permafrost and fire on vegetation change in Siberia in a changing climate. Environ Res Lett 4:045013, 10 pp Tchebakova NM, Parfenova EI, Soja AJ (2009) Effects of climate, permafrost and fire on vegetation change in Siberia in a changing climate. Environ Res Lett 4:045013, 10 pp
Zurück zum Zitat Tchebakova NM, Rehfeldt GE, Parfenova EI (2010) Vegetation zones to climate types: effects of climate warming on Siberian ecosystems. In: Osawa A, Zyranova OA, Matsurura Y et al (eds) Permafrost ecosystems: Siberian larch forests. Springer, Berlin, pp 427–447 Tchebakova NM, Rehfeldt GE, Parfenova EI (2010) Vegetation zones to climate types: effects of climate warming on Siberian ecosystems. In: Osawa A, Zyranova OA, Matsurura Y et al (eds) Permafrost ecosystems: Siberian larch forests. Springer, Berlin, pp 427–447
Zurück zum Zitat Tchebakova NM, Vygodskaya NN, Arneth A, Belelli-Marchesini L, Corradi C, Kurbatova JA, Parfenova EI, Valentini R, Vaganov EA, Schulze E-D (2011) Energy and mass exchange and productivity of major ecosystems in central Siberia based on the eddy covariance method. Biol Bull (submitted) Tchebakova NM, Vygodskaya NN, Arneth A, Belelli-Marchesini L, Corradi C, Kurbatova JA, Parfenova EI, Valentini R, Vaganov EA, Schulze E-D (2011) Energy and mass exchange and productivity of major ecosystems in central Siberia based on the eddy covariance method. Biol Bull (submitted)
Zurück zum Zitat Thornley JHM, Fowler D, Cannell MGR (1991) Terrestrial carbon storage resulting from CO2 and nitrogen fertilization in temperate grasslands. Plant Cell Environ 14:1007–1011 Thornley JHM, Fowler D, Cannell MGR (1991) Terrestrial carbon storage resulting from CO2 and nitrogen fertilization in temperate grasslands. Plant Cell Environ 14:1007–1011
Zurück zum Zitat Titlianova AA, Tisarzhova M (1991) Regimes of the biological turnover. Nauka, Novosibirsk, 150 pp Titlianova AA, Tisarzhova M (1991) Regimes of the biological turnover. Nauka, Novosibirsk, 150 pp
Zurück zum Zitat Tumel VF (1939) Changes in the soils and permafrost regimes following vegetation cover burning. Academy of Sciences of the USSR, Moscow/Leningrad. Reports of the Permafrost Commission, Issue VIII, pp 3–80 (in Russian) Tumel VF (1939) Changes in the soils and permafrost regimes following vegetation cover burning. Academy of Sciences of the USSR, Moscow/Leningrad. Reports of the Permafrost Commission, Issue VIII, pp 3–80 (in Russian)
Zurück zum Zitat Udra IF (1988) Settling and migration of woody plants in temperate belt of Eurasia. Naukova Dumka, Kiev, 200 pp (in Russian) Udra IF (1988) Settling and migration of woody plants in temperate belt of Eurasia. Naukova Dumka, Kiev, 200 pp (in Russian)
Zurück zum Zitat Urban DL, Shugart HH (1992) Individual-based models of forest succession. In: Glenn-Lewin DC, Peet RK, Veblen TT (eds) Plant succession: theory and prediction. Chapman & Hall, London, pp 249–293 Urban DL, Shugart HH (1992) Individual-based models of forest succession. In: Glenn-Lewin DC, Peet RK, Veblen TT (eds) Plant succession: theory and prediction. Chapman & Hall, London, pp 249–293
Zurück zum Zitat Urban DL, Bonan GB, Smith TM, Shugart HH (1991) Spatial applications of gap models. For Ecol Manage 42:95–110 Urban DL, Bonan GB, Smith TM, Shugart HH (1991) Spatial applications of gap models. For Ecol Manage 42:95–110
Zurück zum Zitat Usoltsev VA, Voronov MP, Chasovskikh VP (2011) Net primary production of forests of Ural: methods and results of automized estimation. Ecology 4:334–343 (in Russian) Usoltsev VA, Voronov MP, Chasovskikh VP (2011) Net primary production of forests of Ural: methods and results of automized estimation. Ecology 4:334–343 (in Russian)
Zurück zum Zitat Vaganov EA, Arbatskaya MK, Shashkin AV (1996) History of climate and fire frequency in central part of Krasnoyarsk Kray. 2. Dendrochronological analysis of interdependence of ibcrement of trees, climate and fire frequency. Siberian Ecol J 1:19–28 Vaganov EA, Arbatskaya MK, Shashkin AV (1996) History of climate and fire frequency in central part of Krasnoyarsk Kray. 2. Dendrochronological analysis of interdependence of ibcrement of trees, climate and fire frequency. Siberian Ecol J 1:19–28
Zurück zum Zitat Valentini R, Matteucci G, Dolman AJ, Schulze ED, Rebmann C, Moors EJ, Granier A, Gross P, Jensen NO, Pilegaard K, Lindroth A, Grelle A, Bernhofer C, Grünwald T, Aubinet M, Ceulemans R, Kowalski AS, Vesala T, Rannik Ü, Berbigier P, Loustau D, Guomundsson J, Thorgeirsson H, Ibrom A, Morgenstern K, Clement R, Moncrieff J, Montagnani L, Minerbi S, Jarvis PG (2000) Respiration as the main determinant of carbon balance in European forests. Nature 404:861–865 Valentini R, Matteucci G, Dolman AJ, Schulze ED, Rebmann C, Moors EJ, Granier A, Gross P, Jensen NO, Pilegaard K, Lindroth A, Grelle A, Bernhofer C, Grünwald T, Aubinet M, Ceulemans R, Kowalski AS, Vesala T, Rannik Ü, Berbigier P, Loustau D, Guomundsson J, Thorgeirsson H, Ibrom A, Morgenstern K, Clement R, Moncrieff J, Montagnani L, Minerbi S, Jarvis PG (2000) Respiration as the main determinant of carbon balance in European forests. Nature 404:861–865
Zurück zum Zitat Van Der Werf GR, Randerson JT, Giglio L, Collatz GJ, Kasibhatla PS, Arellano AF Jr (2006) Interannual variability of global biomass burning emissions from 1997 to 2004. Atmos Chem Phys Discuss 6:3175–3226 Van Der Werf GR, Randerson JT, Giglio L, Collatz GJ, Kasibhatla PS, Arellano AF Jr (2006) Interannual variability of global biomass burning emissions from 1997 to 2004. Atmos Chem Phys Discuss 6:3175–3226
Zurück zum Zitat Vaschuk LN, Shvidenko AZ (2006) Dynamics of forests of Irkutsk region. Federal Agency of Forest Management, Irkutsk, 392 pp (in Russian) Vaschuk LN, Shvidenko AZ (2006) Dynamics of forests of Irkutsk region. Federal Agency of Forest Management, Irkutsk, 392 pp (in Russian)
Zurück zum Zitat Vasiliev SV, Titlyanova AA, Velichko AA (eds) (2001) West Siberian peatlands and carbon cycle: past and present. In: Proceedings of the international field symposium. Russian Academy of Sciences, Novosibirsk 250 pp Vasiliev SV, Titlyanova AA, Velichko AA (eds) (2001) West Siberian peatlands and carbon cycle: past and present. In: Proceedings of the international field symposium. Russian Academy of Sciences, Novosibirsk 250 pp
Zurück zum Zitat Vedrova EF (2002) Intensity of mineralisation flux in forest ecosystems. In: Pleshikov FI (ed) Forest ecosystems of Enisey meridian. SB RAS, Novosibirsk, pp 248–252 Vedrova EF (2002) Intensity of mineralisation flux in forest ecosystems. In: Pleshikov FI (ed) Forest ecosystems of Enisey meridian. SB RAS, Novosibirsk, pp 248–252
Zurück zum Zitat Vivchar A (2010) Wildfires in Russia in 2000–2008: estimates of burnt areas using the satellite MODIS MCD45 data. Remote Sens Lett 2:81–90 Vivchar A (2010) Wildfires in Russia in 2000–2008: estimates of burnt areas using the satellite MODIS MCD45 data. Remote Sens Lett 2:81–90
Zurück zum Zitat Vogt KA, Grier CC, Vogt DJ (1986) Production, turnover, and nutrient dynamics of above- and belowground detritus of world forests. Adv Ecol Res 15:303–377 Vogt KA, Grier CC, Vogt DJ (1986) Production, turnover, and nutrient dynamics of above- and belowground detritus of world forests. Adv Ecol Res 15:303–377
Zurück zum Zitat Volney MJ, Fleming RA (2007) Spruce budworm (Choristoneura spp.) biotype reactions to forest and climate characteristics. Glob Chang Biol 13(8):1630–1643 Volney MJ, Fleming RA (2007) Spruce budworm (Choristoneura spp.) biotype reactions to forest and climate characteristics. Glob Chang Biol 13(8):1630–1643
Zurück zum Zitat Voronkov NA (1988) Role of forests in water protection. Hydrometeoizdat, Leningrad, 286 pp (in Russian) Voronkov NA (1988) Role of forests in water protection. Hydrometeoizdat, Leningrad, 286 pp (in Russian)
Zurück zum Zitat Vtyurina OP, Sokolov VA (2009) Dynamics of forests. In Semechkin IV (ed) Management of sustainability in Krasnoyarsk krai. Institute of Forest SB RAS, Krasnoyarsk, pp 103–123 Vtyurina OP, Sokolov VA (2009) Dynamics of forests. In Semechkin IV (ed) Management of sustainability in Krasnoyarsk krai. Institute of Forest SB RAS, Krasnoyarsk, pp 103–123
Zurück zum Zitat Vygodskaya NN (1981) Solar radiation regime and structure of mountain forest. Gidrometeoizdat, Leningrad, 261 pp (in Russian) Vygodskaya NN (1981) Solar radiation regime and structure of mountain forest. Gidrometeoizdat, Leningrad, 261 pp (in Russian)
Zurück zum Zitat Vygodskaya N, Schulze E-D, Tchebakova N, Karpachevskii L, Kozlov D, Sidorov K, Panfyorov M, Shaposhnikov E, Solnzeva O, Minaeva T, Jeltuchin A, Wirth C, Pugachevskii A (2002) Climatic control of stand thinning in unmanaged spruce forests of the southern taiga in European Russia. Tellus 54B(5):443–461 Vygodskaya N, Schulze E-D, Tchebakova N, Karpachevskii L, Kozlov D, Sidorov K, Panfyorov M, Shaposhnikov E, Solnzeva O, Minaeva T, Jeltuchin A, Wirth C, Pugachevskii A (2002) Climatic control of stand thinning in unmanaged spruce forests of the southern taiga in European Russia. Tellus 54B(5):443–461
Zurück zum Zitat Vygodskaya NN, Groisman PY, Tchebakova NM, Kurbatova JA, Panfyorov O, Parfenova EI, Sogachev AF (2007) Ecosystems and climate interactions in the boreal zone of northern Eurasia. Environ Res Lett 2:045033, 7 pp Vygodskaya NN, Groisman PY, Tchebakova NM, Kurbatova JA, Panfyorov O, Parfenova EI, Sogachev AF (2007) Ecosystems and climate interactions in the boreal zone of northern Eurasia. Environ Res Lett 2:045033, 7 pp
Zurück zum Zitat Weishampel JF, Urban DL, Shugart HH, Smith JB (1992) Semivariograms from a forest transect gap model compared with remotely sensed data. J Veg Sci 3:521–526 Weishampel JF, Urban DL, Shugart HH, Smith JB (1992) Semivariograms from a forest transect gap model compared with remotely sensed data. J Veg Sci 3:521–526
Zurück zum Zitat Wirth C, Schulze ED, Schulze W, von Stunzner-Karbe D, Ziegler W, Miljukova IM, Sogatchev A, Varlagin AB, Panvyorov M, Grigoriev S, Kusnetzova W, Siry M, Hardes G, Zimmermann R, Vygodskaya NN (1999) Above-ground biomass and structure of pristine Siberian Scots pine forests as controlled by competition and fire. Oecologia 121:66–80 Wirth C, Schulze ED, Schulze W, von Stunzner-Karbe D, Ziegler W, Miljukova IM, Sogatchev A, Varlagin AB, Panvyorov M, Grigoriev S, Kusnetzova W, Siry M, Hardes G, Zimmermann R, Vygodskaya NN (1999) Above-ground biomass and structure of pristine Siberian Scots pine forests as controlled by competition and fire. Oecologia 121:66–80
Zurück zum Zitat Wirth C, Czimczik CI, Schulze ED (2002) Beyond annual budgets: carbon flux at different temporal scales in fire-prone Siberian Scots pine forests. Tellus B Chem Phys Meteorol 54:611–630 Wirth C, Czimczik CI, Schulze ED (2002) Beyond annual budgets: carbon flux at different temporal scales in fire-prone Siberian Scots pine forests. Tellus B Chem Phys Meteorol 54:611–630
Zurück zum Zitat Woodward FI, Lomas MR (2004) Vegetation dynamics – simulating responses to climatic change. Biol Rev Camb Philos Soc 79:643–670 Woodward FI, Lomas MR (2004) Vegetation dynamics – simulating responses to climatic change. Biol Rev Camb Philos Soc 79:643–670
Zurück zum Zitat Yan H, Shugart HH (2005) FAREAST: a forest gap model to simulate dynamics and patterns of eastern Eurasian forests. J Biogeogr 32:1641–1658 Yan H, Shugart HH (2005) FAREAST: a forest gap model to simulate dynamics and patterns of eastern Eurasian forests. J Biogeogr 32:1641–1658
Zurück zum Zitat Yefremov DF, Shvidenko AZ (2004) Long-term ecological consequences of catastrophic forest fires in forests of Far East and their contribution to global processes. In: Forest fire management at ecoregional level. World Bank, Publishing house “Alex”, Moscow, pp 66–73 Yefremov DF, Shvidenko AZ (2004) Long-term ecological consequences of catastrophic forest fires in forests of Far East and their contribution to global processes. In: Forest fire management at ecoregional level. World Bank, Publishing house “Alex”, Moscow, pp 66–73
Zurück zum Zitat Yurchenko GI, Turova GI, Kuzmin EA (2003) Consequences of outbreaks of Siberian silk moth in Far Eastern conifer-broadleaves forests. Science background of use and reproduction of forest resources of Far East. Trans Far-Eastern Res For Inst 36:176–193 Yurchenko GI, Turova GI, Kuzmin EA (2003) Consequences of outbreaks of Siberian silk moth in Far Eastern conifer-broadleaves forests. Science background of use and reproduction of forest resources of Far East. Trans Far-Eastern Res For Inst 36:176–193
Zurück zum Zitat Zamolodchikov DG, Karelin DV, Ivaschenko AI, Oechel WC, Hastings SJ (2003) CO2 flux measurements in Russian Far East tundra using eddy covariance and closed chamber techniques. Tellus B Chem Phys Meteorol 55:879–892 Zamolodchikov DG, Karelin DV, Ivaschenko AI, Oechel WC, Hastings SJ (2003) CO2 flux measurements in Russian Far East tundra using eddy covariance and closed chamber techniques. Tellus B Chem Phys Meteorol 55:879–892
Zurück zum Zitat Zavarzin GA (ed) (2007) Carbon pools and fluxes in terrestrial ecosystems of Russia. Nauka, Moscow, 315 pp (in Russian) Zavarzin GA (ed) (2007) Carbon pools and fluxes in terrestrial ecosystems of Russia. Nauka, Moscow, 315 pp (in Russian)
Zurück zum Zitat Zhang YH, Wooster MJ, Tutubalina O, Perry GLW (2003) Monthly burned area and forest fire carbon emission estimates for the Russian Federation from SPOT VGT. Remote Sens Environ 87:1–15 Zhang YH, Wooster MJ, Tutubalina O, Perry GLW (2003) Monthly burned area and forest fire carbon emission estimates for the Russian Federation from SPOT VGT. Remote Sens Environ 87:1–15
Zurück zum Zitat Zhu X, Zhuang Q, Chen M, Sirin A, Melillo J, Kickligther D, Sokolov A, Song L (2011) Rising methane emissions in response to climate change in the Northern Eurasia during the 21st century. Environ Res Lett 6:045211. doi:10.1088/1748-9326/6/4/045211 Zhu X, Zhuang Q, Chen M, Sirin A, Melillo J, Kickligther D, Sokolov A, Song L (2011) Rising methane emissions in response to climate change in the Northern Eurasia during the 21st century. Environ Res Lett 6:045211. doi:10.​1088/​1748-9326/​6/​4/​045211
Zurück zum Zitat Zhuang Q, Melillo JM, Kicklighter DW, Prinn RG, McGuire AD, Steudler PA, Felzer BS, Hu S (2004) Methane fluxes between terrestrial ecosystems and the atmosphere at northern high latitudes during the past century: a retrospective analysis with a process-based biogeochemistry model. Global Biogeochem Cycles 18(GB3010):1–23 Zhuang Q, Melillo JM, Kicklighter DW, Prinn RG, McGuire AD, Steudler PA, Felzer BS, Hu S (2004) Methane fluxes between terrestrial ecosystems and the atmosphere at northern high latitudes during the past century: a retrospective analysis with a process-based biogeochemistry model. Global Biogeochem Cycles 18(GB3010):1–23
Zurück zum Zitat Zhuang Q, Melillo JM, Sarofim MC, Kicklighter DW, McGuire AD, Felzer BS, Sokolov A, Prinn RG, Steudler PA, Hu S (2006) CO2 and CH4 exchanges between land ecosystems and the atmosphere in northern high latitudes over the 21st century. Geophys Res Lett 33(17):L17403, 5 pp Zhuang Q, Melillo JM, Sarofim MC, Kicklighter DW, McGuire AD, Felzer BS, Sokolov A, Prinn RG, Steudler PA, Hu S (2006) CO2 and CH4 exchanges between land ecosystems and the atmosphere in northern high latitudes over the 21st century. Geophys Res Lett 33(17):L17403, 5 pp
Zurück zum Zitat Zhuang Q, Melillo JM, McGuire AD, Kicklighter DW, Prinn RG, Steudler PA, Felzer BS, Hu S (2007) Net emissions of CH4 and CO2 in Alaska: implications for the region’s greenhouse gas budget. Ecol Appl 17:203–212 Zhuang Q, Melillo JM, McGuire AD, Kicklighter DW, Prinn RG, Steudler PA, Felzer BS, Hu S (2007) Net emissions of CH4 and CO2 in Alaska: implications for the region’s greenhouse gas budget. Ecol Appl 17:203–212
Zurück zum Zitat Zhukov AB (ed) (1969) Forests of Ural, Siberia and Far East, vol 4, Forests of the USSR. Nauka Publisher, Moscow, 768 pp (in Russian) Zhukov AB (ed) (1969) Forests of Ural, Siberia and Far East, vol 4, Forests of the USSR. Nauka Publisher, Moscow, 768 pp (in Russian)
Metadaten
Titel
Terrestrial Ecosystems and Their Change
verfasst von
Anatoly Z. Shvidenko
Eric Gustafson
A. David McGuire
Vjacheslav I. Kharuk
Dmitry G. Schepaschenko
Herman H. Shugart
Nadezhda M. Tchebakova
Natalia N. Vygodskaya
Alexander A. Onuchin
Daniel J. Hayes
Ian McCallum
Shamil Maksyutov
Ludmila V. Mukhortova
Amber J. Soja
Luca Belelli-Marchesini
Julia A. Kurbatova
Alexander V. Oltchev
Elena I. Parfenova
Jacquelyn K. Shuman
Copyright-Jahr
2013
Verlag
Springer Netherlands
DOI
https://doi.org/10.1007/978-94-007-4569-8_6