Skip to main content
Erschienen in: Environmental Management 5/2017

11.01.2017

Soil Organic Carbon Fractions and Stocks Respond to Restoration Measures in Degraded Lands by Water Erosion

verfasst von: Xiaodong Nie, Zhongwu Li, Jinquan Huang, Bin Huang, Haibing Xiao, Guangming Zeng

Erschienen in: Environmental Management | Ausgabe 5/2017

Einloggen

Aktivieren Sie unsere intelligente Suche, um passende Fachinhalte oder Patente zu finden.

search-config
loading …

Abstract

Assessing the degree to which degraded soils can be recovered is essential for evaluating the effects of adopted restoration measures. The objective of this study was to determine the restoration of soil organic carbon under the impact of terracing and reforestation. A small watershed with four typical restored plots (terracing and reforestation (four different local plants)) and two reference plots (slope land with natural forest (carbon-depleted) and abandoned depositional land (carbon-enriched)) in subtropical China was studied. The results showed that soil organic carbon, dissolved organic carbon and microbial biomass carbon concentrations in the surface soil (10 cm) of restored lands were close to that in abandoned depositional land and higher than that in natural forest land. There was no significant difference in soil organic carbon content among different topographic positions of the restored lands. Furthermore, the soil organic carbon stocks in the upper 60 cm soils of restored lands, which were varied between 50.08 and 62.21 Mg C ha−1, were higher than 45.90 Mg C ha−1 in natural forest land. Our results indicated that the terracing and reforestation could greatly increase carbon sequestration and accumulation and decrease carbon loss induced by water erosion. And the combination measures can accelerate the restoration of degraded soils when compared to natural forest only. Forest species almost have no impact on the total amount of soil organic carbon during restoration processes, but can significantly influence the activity and stability of soil organic carbon. Combination measures which can provide suitable topography and continuous soil organic carbon supply could be considered in treating degraded soils caused by water erosion.

Sie haben noch keine Lizenz? Dann Informieren Sie sich jetzt über unsere Produkte:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Literatur
Zurück zum Zitat Amundson R (2001) The carbon budget in soils. Annu Rev Earth Pl Sci 29:535–562CrossRef Amundson R (2001) The carbon budget in soils. Annu Rev Earth Pl Sci 29:535–562CrossRef
Zurück zum Zitat Ayoubi S, Karchegani PM, Mosaddeghi MR, Honarjoo N (2012) Soil aggregation and organic carbon as affected by topography and land use change in western Iran. Soil Till Res 121:18–26CrossRef Ayoubi S, Karchegani PM, Mosaddeghi MR, Honarjoo N (2012) Soil aggregation and organic carbon as affected by topography and land use change in western Iran. Soil Till Res 121:18–26CrossRef
Zurück zum Zitat Bailey VL, Smith JL, Bolton H (2002) Fungal-to-bacterial ratios in soils investigated for enhanced C sequestration. Soil Biol Biochem 34:997–1007CrossRef Bailey VL, Smith JL, Bolton H (2002) Fungal-to-bacterial ratios in soils investigated for enhanced C sequestration. Soil Biol Biochem 34:997–1007CrossRef
Zurück zum Zitat Bakker MM, Govers G, van Doorn A, Quetier F, Chouvardas D, Rounsevell M (2008) The response of soil erosion and sediment export to land-use change in four areas of Europe: the importance of landscape pattern. Geomorphology 98:213–226CrossRef Bakker MM, Govers G, van Doorn A, Quetier F, Chouvardas D, Rounsevell M (2008) The response of soil erosion and sediment export to land-use change in four areas of Europe: the importance of landscape pattern. Geomorphology 98:213–226CrossRef
Zurück zum Zitat Bremner JM (1996) Total nitrogen. In: Sparks DL (ed) Methods of soil analysis: chemical methods. Soil Science Society of America Inc., Madison, pp 1085–1086 Bremner JM (1996) Total nitrogen. In: Sparks DL (ed) Methods of soil analysis: chemical methods. Soil Science Society of America Inc., Madison, pp 1085–1086
Zurück zum Zitat Cookson WR, Osman M, Marschner P, Abaye DA, Clark I, Murphy DV, Stockdale EA, Watson CA (2007) Controls on soil nitrogen cycling and microbial community composition across land use and incubation temperature. Soil Biol Biochem 39:744–756CrossRef Cookson WR, Osman M, Marschner P, Abaye DA, Clark I, Murphy DV, Stockdale EA, Watson CA (2007) Controls on soil nitrogen cycling and microbial community composition across land use and incubation temperature. Soil Biol Biochem 39:744–756CrossRef
Zurück zum Zitat de Blecourt M, Hansel VM, Brumme R, Corre MD, Veldkamp E (2014) Soil redistribution by terracing alleviates soil organic carbon losses caused by forest conversion to rubber plantation. Forest Ecol Manag 313:26–33CrossRef de Blecourt M, Hansel VM, Brumme R, Corre MD, Veldkamp E (2014) Soil redistribution by terracing alleviates soil organic carbon losses caused by forest conversion to rubber plantation. Forest Ecol Manag 313:26–33CrossRef
Zurück zum Zitat Don A, Schumacher J, Freibauer A (2011) Impact of tropical land‐use change on soil organic carbon stocks–a meta‐analysis. Global Change Biol 17:1658–1670CrossRef Don A, Schumacher J, Freibauer A (2011) Impact of tropical land‐use change on soil organic carbon stocks–a meta‐analysis. Global Change Biol 17:1658–1670CrossRef
Zurück zum Zitat Fattet M, Fu Y, Ghestem M, Ma W, Foulonneau M, Nespoulous J, Le Bissonnais Y, Stokes A (2011) Effects of vegetation type on soil resistance to erosion: relationship between aggregate stability and shear strength. Catena 87:60–69CrossRef Fattet M, Fu Y, Ghestem M, Ma W, Foulonneau M, Nespoulous J, Le Bissonnais Y, Stokes A (2011) Effects of vegetation type on soil resistance to erosion: relationship between aggregate stability and shear strength. Catena 87:60–69CrossRef
Zurück zum Zitat Fernández-Romero ML, Lozano-García B, Parras-Alcántara L (2014) Topography and land use change effects on the soil organic carbon stock of forest soils in Mediterranean natural areas. Agr Ecosyst Environ 195:1–9CrossRef Fernández-Romero ML, Lozano-García B, Parras-Alcántara L (2014) Topography and land use change effects on the soil organic carbon stock of forest soils in Mediterranean natural areas. Agr Ecosyst Environ 195:1–9CrossRef
Zurück zum Zitat Fontaine S, Barot S, Barré P, Bdioui N, Mary B, Rumpel C (2007) Stability of organic carbon in deep soil layers controlled by fresh carbon supply. Nature 450:277–280CrossRef Fontaine S, Barot S, Barré P, Bdioui N, Mary B, Rumpel C (2007) Stability of organic carbon in deep soil layers controlled by fresh carbon supply. Nature 450:277–280CrossRef
Zurück zum Zitat Gajananda K (2007) Soil organic carbon and microbial activity: East Antarctica. Eur J Soil Sci 58:704–713CrossRef Gajananda K (2007) Soil organic carbon and microbial activity: East Antarctica. Eur J Soil Sci 58:704–713CrossRef
Zurück zum Zitat Gee GW, Bauder JW (1986) Particle size analysis. In: Klute A (ed) Methods of soil analysis, 2nd edn. Soil Science Society of America Inc., Madison, pp 383–411 Gee GW, Bauder JW (1986) Particle size analysis. In: Klute A (ed) Methods of soil analysis, 2nd edn. Soil Science Society of America Inc., Madison, pp 383–411
Zurück zum Zitat Golchin A, Asgari H (2008) Land use effects on soil quality indicators in north-eastern Iran. Aust J Soil Res 46:27–36CrossRef Golchin A, Asgari H (2008) Land use effects on soil quality indicators in north-eastern Iran. Aust J Soil Res 46:27–36CrossRef
Zurück zum Zitat Houghton RA, Skole DL, Nobre CA, Hackler JL, Lawrence K, Chomentowski WH (2000) Annual fluxes or carbon from deforestation and regrowth in the Brazilian Amazon. Nature 403:301–304CrossRef Houghton RA, Skole DL, Nobre CA, Hackler JL, Lawrence K, Chomentowski WH (2000) Annual fluxes or carbon from deforestation and regrowth in the Brazilian Amazon. Nature 403:301–304CrossRef
Zurück zum Zitat Huang J, Li Z, Nie X, Zhang J, Tang Z, Ma W, Yu W, Zeng G (2014) Microbial responses to soil rewetting in erosional and depositional environments in relation to the organic carbon dynamics. Geomorphology 204:256–264CrossRef Huang J, Li Z, Nie X, Zhang J, Tang Z, Ma W, Yu W, Zeng G (2014) Microbial responses to soil rewetting in erosional and depositional environments in relation to the organic carbon dynamics. Geomorphology 204:256–264CrossRef
Zurück zum Zitat IPCC (2003) Good practice guidance for land use, land-use change and forestry. Institute for Global Environmental Strategies (IGES), Hayama IPCC (2003) Good practice guidance for land use, land-use change and forestry. Institute for Global Environmental Strategies (IGES), Hayama
Zurück zum Zitat Islam KR, Weil RR (2000) Land use effects on soil quality in a tropical forest ecosystem of Bangladesh. Agr Ecosyst Environ 79:9–16CrossRef Islam KR, Weil RR (2000) Land use effects on soil quality in a tropical forest ecosystem of Bangladesh. Agr Ecosyst Environ 79:9–16CrossRef
Zurück zum Zitat Jin K, Cornelis WM, Schiette W, Lu J, Buysse T, Baert G, Wu H, Yao Y, Cai D, Jin J (2008) Redistribution and loss of soil organic carbon by overland flow under various soil management practices on the Chinese Loess Plateau. Soil Use Manage 24:181–191CrossRef Jin K, Cornelis WM, Schiette W, Lu J, Buysse T, Baert G, Wu H, Yao Y, Cai D, Jin J (2008) Redistribution and loss of soil organic carbon by overland flow under various soil management practices on the Chinese Loess Plateau. Soil Use Manage 24:181–191CrossRef
Zurück zum Zitat Kuzyakov Y, Domanski G (2000) Carbon input by plants into the soil. J Plant Nutr Soil Sc 163:421–431CrossRef Kuzyakov Y, Domanski G (2000) Carbon input by plants into the soil. J Plant Nutr Soil Sc 163:421–431CrossRef
Zurück zum Zitat Lal R (2003) Soil erosion and the global carbon budget. Environ Int 29:437–450CrossRef Lal R (2003) Soil erosion and the global carbon budget. Environ Int 29:437–450CrossRef
Zurück zum Zitat Lal R (2004a) Soil carbon sequestration impacts on global climate change and food security. Science 304:1623–1627CrossRef Lal R (2004a) Soil carbon sequestration impacts on global climate change and food security. Science 304:1623–1627CrossRef
Zurück zum Zitat Lal R (2004b) Soil carbon sequestration to mitigate climate change. Geoderma 123:1–22CrossRef Lal R (2004b) Soil carbon sequestration to mitigate climate change. Geoderma 123:1–22CrossRef
Zurück zum Zitat Lemenih M, Itanna F (2004) Soil carbon stocks and turnovers in various vegetation types and arable lands along an elevation gradient in southern Ethiopia. Geoderma 123:177–188CrossRef Lemenih M, Itanna F (2004) Soil carbon stocks and turnovers in various vegetation types and arable lands along an elevation gradient in southern Ethiopia. Geoderma 123:177–188CrossRef
Zurück zum Zitat Li Y, Shao M (2006) Change of soil physical properties under long-term natural vegetation restoration in the Loess Plateau of China. J Arid Environ 64:77–96CrossRef Li Y, Shao M (2006) Change of soil physical properties under long-term natural vegetation restoration in the Loess Plateau of China. J Arid Environ 64:77–96CrossRef
Zurück zum Zitat Lu S, Meng P, Zhang J, Yin C, Sun S (2015) Changes in soil organic carbon and total nitrogen in croplands converted to walnut-based agroforestry systems and orchards in southeastern Loess Plateau of China. Environ Monit Asses 187:1–9CrossRef Lu S, Meng P, Zhang J, Yin C, Sun S (2015) Changes in soil organic carbon and total nitrogen in croplands converted to walnut-based agroforestry systems and orchards in southeastern Loess Plateau of China. Environ Monit Asses 187:1–9CrossRef
Zurück zum Zitat Mchunu C, Chaplot V (2012) Land degradation impact on soil carbon losses through water erosion and CO2 emissions. Geoderma 177:72–79CrossRef Mchunu C, Chaplot V (2012) Land degradation impact on soil carbon losses through water erosion and CO2 emissions. Geoderma 177:72–79CrossRef
Zurück zum Zitat Parras-Alcántara L, Martín-Carrillo M, Lozano-García B (2013) Impacts of land use change in soil carbon and nitrogen in a Mediterranean agricultural area (Southern Spain). Solid Earth 4:167–177CrossRef Parras-Alcántara L, Martín-Carrillo M, Lozano-García B (2013) Impacts of land use change in soil carbon and nitrogen in a Mediterranean agricultural area (Southern Spain). Solid Earth 4:167–177CrossRef
Zurück zum Zitat Paul KI, Polglase PJ, Nyakuengama JG, Khanna PK (2002) Change in soil carbon following afforestation. Forest Ecol Manag 168:241–257CrossRef Paul KI, Polglase PJ, Nyakuengama JG, Khanna PK (2002) Change in soil carbon following afforestation. Forest Ecol Manag 168:241–257CrossRef
Zurück zum Zitat Post WM, Kwon KC (2000) Soil carbon sequestration and land-use change: processes and potential. Global Change Biol 6:317–327CrossRef Post WM, Kwon KC (2000) Soil carbon sequestration and land-use change: processes and potential. Global Change Biol 6:317–327CrossRef
Zurück zum Zitat Sattler D, Murray LT, Kirchner A, Lindner A (2014) Influence of soil and topography on aboveground biomass accumulation and carbon stocks of afforested pastures in South East Brazil. Ecol Eng 73:126–131CrossRef Sattler D, Murray LT, Kirchner A, Lindner A (2014) Influence of soil and topography on aboveground biomass accumulation and carbon stocks of afforested pastures in South East Brazil. Ecol Eng 73:126–131CrossRef
Zurück zum Zitat Schiettecatte W, Gabriels D, Cornelis WM, Hofman G (2008) Enrichment of organic carbon in sediment transport by interrill and rill erosion processes. Soil Sci Soc Am J 72:50–55CrossRef Schiettecatte W, Gabriels D, Cornelis WM, Hofman G (2008) Enrichment of organic carbon in sediment transport by interrill and rill erosion processes. Soil Sci Soc Am J 72:50–55CrossRef
Zurück zum Zitat Shi ZH, Fang NF, Wu FZ, Wang L, Yue BJ, Wu GL (2012) Soil erosion processes and sediment sorting associated with transport mechanisms on steep slopes. J Hydrol 454:123–130CrossRef Shi ZH, Fang NF, Wu FZ, Wang L, Yue BJ, Wu GL (2012) Soil erosion processes and sediment sorting associated with transport mechanisms on steep slopes. J Hydrol 454:123–130CrossRef
Zurück zum Zitat Six J, Frey SD, Thiet RK, Batten KM (2006) Bacterial and fungal contributions to carbon sequestration in agroecosystems. Soil Sci Soc Am J 70:555–569CrossRef Six J, Frey SD, Thiet RK, Batten KM (2006) Bacterial and fungal contributions to carbon sequestration in agroecosystems. Soil Sci Soc Am J 70:555–569CrossRef
Zurück zum Zitat Su YZ, Liu WJ, Yang R, Chang XX (2009) Changes in soil aggregate, carbon, and nitrogen storages following the conversion of cropland to alfalfa forage land in the marginal oasis of Northwest China. Environ Manage 43:1061–1070CrossRef Su YZ, Liu WJ, Yang R, Chang XX (2009) Changes in soil aggregate, carbon, and nitrogen storages following the conversion of cropland to alfalfa forage land in the marginal oasis of Northwest China. Environ Manage 43:1061–1070CrossRef
Zurück zum Zitat Sylvia DM, Fuhrmann JJ, Hartel PG, Zuberer A (2005) Principles and applications of soil microbiology, 2nd edn. Pearson Education Inc., Upper Saddle River, NJ Sylvia DM, Fuhrmann JJ, Hartel PG, Zuberer A (2005) Principles and applications of soil microbiology, 2nd edn. Pearson Education Inc., Upper Saddle River, NJ
Zurück zum Zitat Verma BC, Datta SP, Rattan RK, Singh AK (2010) Monitoring changes in soil organic carbon pools, nitrogen, phosphorus, and sulfur under different agricultural management practices in the tropics. Environ Monit Asses 171:579–593CrossRef Verma BC, Datta SP, Rattan RK, Singh AK (2010) Monitoring changes in soil organic carbon pools, nitrogen, phosphorus, and sulfur under different agricultural management practices in the tropics. Environ Monit Asses 171:579–593CrossRef
Zurück zum Zitat Vleeshouwers LM, Verhagen A (2002) Carbon emission and sequestration by agricultural land use: a model study for Europe. Global Change Biol 8:519–530CrossRef Vleeshouwers LM, Verhagen A (2002) Carbon emission and sequestration by agricultural land use: a model study for Europe. Global Change Biol 8:519–530CrossRef
Zurück zum Zitat Walkley A, Black IA (1934) An examination of the Degtjareff method for determining soil organic matter, and a proposed modification of the chromic acid titration method. Soil Sci 37:29–38CrossRef Walkley A, Black IA (1934) An examination of the Degtjareff method for determining soil organic matter, and a proposed modification of the chromic acid titration method. Soil Sci 37:29–38CrossRef
Zurück zum Zitat Walter RC, Merritts DJ (2008) Natural streams and the legacy of water-powered mills. Science 319:299–304CrossRef Walter RC, Merritts DJ (2008) Natural streams and the legacy of water-powered mills. Science 319:299–304CrossRef
Zurück zum Zitat Wang H, Guan D, Zhang R, Chen Y, Hu Y, Xiao L (2014a) Soil aggregates and organic carbon affected by the land use change from rice paddy to vegetable field. Ecol Eng 70:206–211CrossRef Wang H, Guan D, Zhang R, Chen Y, Hu Y, Xiao L (2014a) Soil aggregates and organic carbon affected by the land use change from rice paddy to vegetable field. Ecol Eng 70:206–211CrossRef
Zurück zum Zitat Wang X, Cammeraat ELH, Cerli C, Kalbitz K (2014b) Soil aggregation and the stabilization of organic carbon as affected by erosion and deposition. Soil Biol Biochem 72:55–65CrossRef Wang X, Cammeraat ELH, Cerli C, Kalbitz K (2014b) Soil aggregation and the stabilization of organic carbon as affected by erosion and deposition. Soil Biol Biochem 72:55–65CrossRef
Zurück zum Zitat Wu J, Joergensen RG, Pommerening B, Chaussod R, Brookes PC (1990) Measurement of soil microbial biomass C by fumigation-extraction—an automated procedure. Soil Biol Biochem 22:1167–1169CrossRef Wu J, Joergensen RG, Pommerening B, Chaussod R, Brookes PC (1990) Measurement of soil microbial biomass C by fumigation-extraction—an automated procedure. Soil Biol Biochem 22:1167–1169CrossRef
Zurück zum Zitat Yannelli FA, Tabeni S, Mastrantonio LE, Vezzani N (2014) Assessing degradation of abandoned farmlands for conservation of the Monte Desert biome in Argentina. Environ manage 53:231–239CrossRef Yannelli FA, Tabeni S, Mastrantonio LE, Vezzani N (2014) Assessing degradation of abandoned farmlands for conservation of the Monte Desert biome in Argentina. Environ manage 53:231–239CrossRef
Zurück zum Zitat Zhang JH, Li FC, Wang Y, Xiong DH (2014) Soil organic carbon stock and distribution in cultivated land converted to grassland in a subtropical region of China. Environ Manage 53:274–283CrossRef Zhang JH, Li FC, Wang Y, Xiong DH (2014) Soil organic carbon stock and distribution in cultivated land converted to grassland in a subtropical region of China. Environ Manage 53:274–283CrossRef
Zurück zum Zitat Zia-ur-Rehman M, Murtaza G, Qayyum MF, Rizwan MAS, Akmal F, Khalid H (2016) Degraded soils: origin, types and management. Soil science: agricultural and environmental prospectives. Springer International, Switzerland, pp 23–65CrossRef Zia-ur-Rehman M, Murtaza G, Qayyum MF, Rizwan MAS, Akmal F, Khalid H (2016) Degraded soils: origin, types and management. Soil science: agricultural and environmental prospectives. Springer International, Switzerland, pp 23–65CrossRef
Zurück zum Zitat Zuazo VHD, Raya AM, Ruiz JA (2004) Nutrient losses by runoff and sediment from the taluses of orchard terraces. Water Air Soil Poll 153:355–373CrossRef Zuazo VHD, Raya AM, Ruiz JA (2004) Nutrient losses by runoff and sediment from the taluses of orchard terraces. Water Air Soil Poll 153:355–373CrossRef
Metadaten
Titel
Soil Organic Carbon Fractions and Stocks Respond to Restoration Measures in Degraded Lands by Water Erosion
verfasst von
Xiaodong Nie
Zhongwu Li
Jinquan Huang
Bin Huang
Haibing Xiao
Guangming Zeng
Publikationsdatum
11.01.2017
Verlag
Springer US
Erschienen in
Environmental Management / Ausgabe 5/2017
Print ISSN: 0364-152X
Elektronische ISSN: 1432-1009
DOI
https://doi.org/10.1007/s00267-016-0817-9

Weitere Artikel der Ausgabe 5/2017

Environmental Management 5/2017 Zur Ausgabe