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2019 | OriginalPaper | Buchkapitel

13. Ecoservice Role of Earthworm (Lumbricidae) Casts in Grow of Soil Buffering Capacity of Remediated Lands Within Steppe Zone, Ukraine

verfasst von : Sergiy Nazimov, Iryna Loza, Yurii Kul’bachko, Oleg Didur, Oleksandr Pakhomov, Angelina Kryuchkova, Maria Shulman, Tatiana Zamesova

Erschienen in: Climate Change, Food Security and Natural Resource Management

Verlag: Springer International Publishing

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Abstract

This work is devoted to investigate the ecoservice role of soil saprophages in the formation of sustainable man-made ecosystems under forest plantations. The investigation allowed effect of earthworm casting activities on soil buffering against solution with different pH levels and copper compounds to be detected within the territory remediated after coal mining (Western Donbass, Ukraine). Assays of pH-buffering capacity and copper immobilization/mobilization performed on earthworm casts and artificial remediated soil. Ecosystem effectiveness of soil saprophages (earthworms, Lumbricidae) was shown to be effected on increase of acid-alkaline (pH-buffering) buffering capacity in remediated soil. The study results prove that acid-alkaline buffering capacity of earthworm casts was significantly higher than that of remediated soil and subsoil by 17.9% and 20.8%, respectively. Effectiveness of copper immobilization reflecting degree of soil stability to copper contamination was increased from 23.1% to 39.2%, respectively. Thus, earthworm ecoservice activity had positive changes on environmental conditions of remediated soil and naturalization of artificial edaphotopes within remediated lands in Steppe zone. Environmental quality of remediated soil enriched in earthworm casts was confirmed to be improved.

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Literatur
Zurück zum Zitat Aira, M., Monroy, F., & Domínguez, J. (2003). Effects of two species of Earthworms (Allolobophora spp.) on soil systems: A microfaunal and biochemical analysis. Pedobiologia, 47(5–6), 877–881. Aira, M., Monroy, F., & Domínguez, J. (2003). Effects of two species of Earthworms (Allolobophora spp.) on soil systems: A microfaunal and biochemical analysis. Pedobiologia, 47(5–6), 877–881.
Zurück zum Zitat Aira, M., Lazcano, C., Gómez-Brandón, M., et al. (2010). Ageing effects of casts of Aporrectodea caliginosa on soil microbial community structure and activity. Applied Soil Ecology, 46(1), 143–146.CrossRef Aira, M., Lazcano, C., Gómez-Brandón, M., et al. (2010). Ageing effects of casts of Aporrectodea caliginosa on soil microbial community structure and activity. Applied Soil Ecology, 46(1), 143–146.CrossRef
Zurück zum Zitat Arranz-González, J. C. (2011). Suelos mineros asociados a la minería de carbón a cielo abierto en España: una revision. Boletín Geológico y Minero, 122(2), 171–186. Arranz-González, J. C. (2011). Suelos mineros asociados a la minería de carbón a cielo abierto en España: una revision. Boletín Geológico y Minero, 122(2), 171–186.
Zurück zum Zitat Atkinson Kendall, E. (1989). An introduction to numerical analysis. New York: Wiley. Atkinson Kendall, E. (1989). An introduction to numerical analysis. New York: Wiley.
Zurück zum Zitat Behnassi, M., Shahid, S. A., & Gopichandran, R. (2014). Agricultural and food system – Global change nexus: Dynamics and policy implications. In M. Behnassi et al. (Eds.), Science, policy and politics of modern agricultural system (pp. 3–13). Dodrecht: Springer Science+Business Media.CrossRef Behnassi, M., Shahid, S. A., & Gopichandran, R. (2014). Agricultural and food system – Global change nexus: Dynamics and policy implications. In M. Behnassi et al. (Eds.), Science, policy and politics of modern agricultural system (pp. 3–13). Dodrecht: Springer Science+Business Media.CrossRef
Zurück zum Zitat Böhm, C., Quinkenstein, A., Freese, D., et al. (2009). Kurzumtriebsplantage auf Niederlausitzer Rekultivierungsflächen: Wachstumsverlauf von vierjährigen Robinien. AFZDerWald, 10(64), 532–533. Böhm, C., Quinkenstein, A., Freese, D., et al. (2009). Kurzumtriebsplantage auf Niederlausitzer Rekultivierungsflächen: Wachstumsverlauf von vierjährigen Robinien. AFZDerWald, 10(64), 532–533.
Zurück zum Zitat Böhm, C., Quinkenstein, A., Freese, D., et al. (2011). Assessing the short rotation woody biomass production on marginal post-mining areas. Journal of Forest Science, 57(7), 303–311.CrossRef Böhm, C., Quinkenstein, A., Freese, D., et al. (2011). Assessing the short rotation woody biomass production on marginal post-mining areas. Journal of Forest Science, 57(7), 303–311.CrossRef
Zurück zum Zitat Bottinelli, N., Henry-des-Tureaux, T., Hallaire, V., et al. (2010). Earthworms accelerate soil porosity turnover under watering conditions. Geoderma, 156(1–2), 43–47.CrossRef Bottinelli, N., Henry-des-Tureaux, T., Hallaire, V., et al. (2010). Earthworms accelerate soil porosity turnover under watering conditions. Geoderma, 156(1–2), 43–47.CrossRef
Zurück zum Zitat Butt, K. R., & Lowe, C. N. (2011). Controlled cultivation of endogeic and anecic Earthworms. In A. Karaca (Ed.), Biology of Earthworms (Soil Biology 24) (pp. 107–121). Berlin Heidelberg: Springer.CrossRef Butt, K. R., & Lowe, C. N. (2011). Controlled cultivation of endogeic and anecic Earthworms. In A. Karaca (Ed.), Biology of Earthworms (Soil Biology 24) (pp. 107–121). Berlin Heidelberg: Springer.CrossRef
Zurück zum Zitat Chapra, C. S. (2012). Applied numerical methods with MATLAB® for engineers and scientists. New York: McGraw-Hill. Chapra, C. S. (2012). Applied numerical methods with MATLAB® for engineers and scientists. New York: McGraw-Hill.
Zurück zum Zitat Choosai, C., Jouquet, P., Hanboonsong, Y., et al. (2010). Effects of earthworms on soil properties and rice production in the rainfed paddy fields of Northeast Thailand. Applied Soil Ecology, 3(45), 298–303.CrossRef Choosai, C., Jouquet, P., Hanboonsong, Y., et al. (2010). Effects of earthworms on soil properties and rice production in the rainfed paddy fields of Northeast Thailand. Applied Soil Ecology, 3(45), 298–303.CrossRef
Zurück zum Zitat Cooke, J. A., & Johnson, M. S. (2002). Ecological restoration of land with particular reference to the mining of metals and industrial minerals: A review of theory and practice. Environmental Reviews, 10(1), 41–71.CrossRef Cooke, J. A., & Johnson, M. S. (2002). Ecological restoration of land with particular reference to the mining of metals and industrial minerals: A review of theory and practice. Environmental Reviews, 10(1), 41–71.CrossRef
Zurück zum Zitat Didur, O., Loza, I., Kul’bachko, Y. (2011). Environmental impact of excretorial activity of earthworms (Lumbricidae) on the buffering capacity of remediated soils. In: Proceeding of NATO ARW “Environmental and Food Security and Safety in Southeast Europe and Ukraine”, Dnipropetrovsk, 16–19 May 2011. Didur, O., Loza, I., Kul’bachko, Y. (2011). Environmental impact of excretorial activity of earthworms (Lumbricidae) on the buffering capacity of remediated soils. In: Proceeding of NATO ARW “Environmental and Food Security and Safety in Southeast Europe and Ukraine”, Dnipropetrovsk, 16–19 May 2011.
Zurück zum Zitat Didur, O., Loza, I., Kul’bachko, Y., et al. (2013). Environmental impact of Earthworm (Lumbricidae) excretory activity on pH-buffering capacity of remediated soil. Visnyk of Dnipropetrovsk University. Biology, Ecology, 62, 140–145. Didur, O., Loza, I., Kul’bachko, Y., et al. (2013). Environmental impact of Earthworm (Lumbricidae) excretory activity on pH-buffering capacity of remediated soil. Visnyk of Dnipropetrovsk University. Biology, Ecology, 62, 140–145.
Zurück zum Zitat Gamkalo, Z. G. (2005). Role of organic fertilizer in optimization of the acid-base properties of gray forest soils of Western forest-steppe zone of Ukraine. Agronomical Chemistry and Soil Science, 66, 53–58. Gamkalo, Z. G. (2005). Role of organic fertilizer in optimization of the acid-base properties of gray forest soils of Western forest-steppe zone of Ukraine. Agronomical Chemistry and Soil Science, 66, 53–58.
Zurück zum Zitat Ilyin, V. B. (1995). Estimation of soils buffering capacity to heavy metal contamination. Agrochemistry, 10, 109–113. Ilyin, V. B. (1995). Estimation of soils buffering capacity to heavy metal contamination. Agrochemistry, 10, 109–113.
Zurück zum Zitat Jones, C. G., Lawton, J. H., & Shachak, M. (1994). Organisms as ecosystem engineers. Oikos, 69, 373–386.CrossRef Jones, C. G., Lawton, J. H., & Shachak, M. (1994). Organisms as ecosystem engineers. Oikos, 69, 373–386.CrossRef
Zurück zum Zitat Kul’bachko, Y., Loza, I., Pakhomov, O., et al. (2014). Tropho-methabolic activity of earthworms (Lumbricidae) as zoogenic factor maintaining the stability of remediated soil against copper contamination. Visnyk of Dnipropetrovsk University. Biology, Ecology, 22(2), 104–109. Kul’bachko, Y., Loza, I., Pakhomov, O., et al. (2014). Tropho-methabolic activity of earthworms (Lumbricidae) as zoogenic factor maintaining the stability of remediated soil against copper contamination. Visnyk of Dnipropetrovsk University. Biology, Ecology, 22(2), 104–109.
Zurück zum Zitat Kul’bachko, Y., Loza, I., Pakhomov, O., et al. (2011). The zooecological remediation of technogen faulted soil in the industrial region of the Ukraine Steppe Zone. In M. Behnassi, A. S. Shahid, & J. D’Silva (Eds.), Sustainable agricultural development: Recent approaches in resources management and environmentally-balanced production enhancement (pp. 115–123). Dordrecht: Springer.CrossRef Kul’bachko, Y., Loza, I., Pakhomov, O., et al. (2011). The zooecological remediation of technogen faulted soil in the industrial region of the Ukraine Steppe Zone. In M. Behnassi, A. S. Shahid, & J. D’Silva (Eds.), Sustainable agricultural development: Recent approaches in resources management and environmentally-balanced production enhancement (pp. 115–123). Dordrecht: Springer.CrossRef
Zurück zum Zitat Lavelle, P., Decaëns, T., Aubert, M., et al. (2006). Soil invertebrates and ecosystem services. European Journal of Soil Biology, 42(1), 3–15.CrossRef Lavelle, P., Decaëns, T., Aubert, M., et al. (2006). Soil invertebrates and ecosystem services. European Journal of Soil Biology, 42(1), 3–15.CrossRef
Zurück zum Zitat Milcu, A., Partsch, S., Langel, R., et al. (2006). The response of decomposers (earthworms, springtails and microorganisms) to variations in species and functional group diversity of plants. Oikos, 112(3), 513–524.CrossRef Milcu, A., Partsch, S., Langel, R., et al. (2006). The response of decomposers (earthworms, springtails and microorganisms) to variations in species and functional group diversity of plants. Oikos, 112(3), 513–524.CrossRef
Zurück zum Zitat Mtui, G. Y. S., Mligo, C., Mutakyahwa, M. K. D., et al. (2006). Vegetation structure and heavy metal uptake by plants in the mining-impacted and non mining-impacted sites of Southern Lake Victoria wetlands. Tanzania Journal of Science, 32(2), 39–49. Mtui, G. Y. S., Mligo, C., Mutakyahwa, M. K. D., et al. (2006). Vegetation structure and heavy metal uptake by plants in the mining-impacted and non mining-impacted sites of Southern Lake Victoria wetlands. Tanzania Journal of Science, 32(2), 39–49.
Zurück zum Zitat Novitskiy, M. L. (2011). Granulometric composition of fine soil of sulfide solids and man-made substrates of mine piles. Bulletin of the Nikitsky Botanical Garden, 103, 85–87. Novitskiy, M. L. (2011). Granulometric composition of fine soil of sulfide solids and man-made substrates of mine piles. Bulletin of the Nikitsky Botanical Garden, 103, 85–87.
Zurück zum Zitat Orlov, D. S. (1994). Soil ecological monitoring. Moscow: MSU. Orlov, D. S. (1994). Soil ecological monitoring. Moscow: MSU.
Zurück zum Zitat Orlov, D. S., Sadovnikova, L. K., & Sukhanova, L. I. (2005). Soil chemistry. Moscow: Higher Sch. Orlov, D. S., Sadovnikova, L. K., & Sukhanova, L. I. (2005). Soil chemistry. Moscow: Higher Sch.
Zurück zum Zitat Pakhomov, A. E., Kulbachko, Y. L., & Didur, O. A. (2009). Study of ecological interrelations of bigeminate-legged millipeds (Diplopoda) and artificial mixed soils as their habitat in experimental conditions. In I. Apostol, D. L. Barry, W. G. Coldewey, & D. W. G. Reimer (Eds.), Optimization of disaster forecasting and prevention measures in the context of human and social dynamics (pp. 163–171). Amsterdam: IOS Press. Pakhomov, A. E., Kulbachko, Y. L., & Didur, O. A. (2009). Study of ecological interrelations of bigeminate-legged millipeds (Diplopoda) and artificial mixed soils as their habitat in experimental conditions. In I. Apostol, D. L. Barry, W. G. Coldewey, & D. W. G. Reimer (Eds.), Optimization of disaster forecasting and prevention measures in the context of human and social dynamics (pp. 163–171). Amsterdam: IOS Press.
Zurück zum Zitat Pampura, T. V., Pinsky, D. L., Ostroumov, V. E., et al. (1993). Experimental study of buffering capacity of soil at copper and zinc contamination. Eurasian Soil Science+, 25(10), 104–110. Pampura, T. V., Pinsky, D. L., Ostroumov, V. E., et al. (1993). Experimental study of buffering capacity of soil at copper and zinc contamination. Eurasian Soil Science+, 25(10), 104–110.
Zurück zum Zitat Pecharová, E., & Hrabankova, M. (2006). A concept for reconstructing the post-mining region under the Lisbon strategy. Ekológia, 25(3), 194–205. Pecharová, E., & Hrabankova, M. (2006). A concept for reconstructing the post-mining region under the Lisbon strategy. Ekológia, 25(3), 194–205.
Zurück zum Zitat Pecharova, E., Hezina, T., Prochazka, J., et al. (2001). Restoration of spoil heaps in Northwestern Bohemia using wetlands. In J. Vymazal (Ed.), Transformations of nutrients in natural and constructed wetlands (pp. 129–142). Leiden: Backhuys Publishers. Pecharova, E., Hezina, T., Prochazka, J., et al. (2001). Restoration of spoil heaps in Northwestern Bohemia using wetlands. In J. Vymazal (Ed.), Transformations of nutrients in natural and constructed wetlands (pp. 129–142). Leiden: Backhuys Publishers.
Zurück zum Zitat Pecharová, E., Martis, M., Kašparová, I., et al. (2011). Environmental approach to methods of regeneration of disturbed landscapes. Journal of Landscape Studies, 4(2), 71–80. Pecharová, E., Martis, M., Kašparová, I., et al. (2011). Environmental approach to methods of regeneration of disturbed landscapes. Journal of Landscape Studies, 4(2), 71–80.
Zurück zum Zitat Pokarzhevsky, A. D. (1985). Geochemical ecology of terrestrial animals. Moscow: Nauka. Pokarzhevsky, A. D. (1985). Geochemical ecology of terrestrial animals. Moscow: Nauka.
Zurück zum Zitat Ripl, W., Pokorny, J., Eiseltova, M., et al. (1994). Holistic approach to structure the function of wetlands and their degradation. In M. Eiseltova (Ed.), Restoration of lake ecosystems – A holistic approach (pp. 16–35). Oxford: IWRB Publ. Ripl, W., Pokorny, J., Eiseltova, M., et al. (1994). Holistic approach to structure the function of wetlands and their degradation. In M. Eiseltova (Ed.), Restoration of lake ecosystems – A holistic approach (pp. 16–35). Oxford: IWRB Publ.
Zurück zum Zitat Safonov, A. I. (2005). Phytogeochemistry of copper in man-made environment. Problems of Ecology and Nature Protection of Technogenic Region, 5, 68–74. Safonov, A. I. (2005). Phytogeochemistry of copper in man-made environment. Problems of Ecology and Nature Protection of Technogenic Region, 5, 68–74.
Zurück zum Zitat Sklenicka, P., Prikryl, I., & Svoboda, I. (2004). Non-productive principles of landscape rehabilitation after long-term opencast mining in north-west Bohemia. Journal-South African Institute of Mining and Metallurgy, 104(2), 83–88. Sklenicka, P., Prikryl, I., & Svoboda, I. (2004). Non-productive principles of landscape rehabilitation after long-term opencast mining in north-west Bohemia. Journal-South African Institute of Mining and Metallurgy, 104(2), 83–88.
Zurück zum Zitat Skousen, J., Sencindiver, J., Owens, K., et al. (1998). Physical properties of minesoils in West Virginia and their influence on wastewater treatment. Journal of Environmental Quality, 27(3), 633–639.CrossRef Skousen, J., Sencindiver, J., Owens, K., et al. (1998). Physical properties of minesoils in West Virginia and their influence on wastewater treatment. Journal of Environmental Quality, 27(3), 633–639.CrossRef
Zurück zum Zitat Striganova, B. R. (1980). Feeding of soil saprophages. Moscow: Nauka. Striganova, B. R. (1980). Feeding of soil saprophages. Moscow: Nauka.
Zurück zum Zitat Strzyszcz, Z. (1996). Recultivation and landscaping in areas after brown-coal mining in Middle-East European countries. Water Air and Soil Pollution, 91, 145–157.CrossRef Strzyszcz, Z. (1996). Recultivation and landscaping in areas after brown-coal mining in Middle-East European countries. Water Air and Soil Pollution, 91, 145–157.CrossRef
Zurück zum Zitat Thassitou, P. K., & Arvanitoyannis, I. S. (2001). Bioremediation: a novel approach to food waste management. Trends in Food Science & Technology, 12(5–6), 185–196.CrossRef Thassitou, P. K., & Arvanitoyannis, I. S. (2001). Bioremediation: a novel approach to food waste management. Trends in Food Science & Technology, 12(5–6), 185–196.CrossRef
Zurück zum Zitat Truskavetskiy, R. S. (2003). Buffering capacity of soils and their main functions. Kharkiv: New Word. Truskavetskiy, R. S. (2003). Buffering capacity of soils and their main functions. Kharkiv: New Word.
Zurück zum Zitat van Emden, H. (2008). Statistics for terrified biologists. Oxford: Blackwell Publishing. van Emden, H. (2008). Statistics for terrified biologists. Oxford: Blackwell Publishing.
Zurück zum Zitat Wang, Y., Dawson, R., Han, D., et al. (2001). Landscape ecological planning and design of degraded mining land. Land Degradation and Development, 12(5), 449–459.CrossRef Wang, Y., Dawson, R., Han, D., et al. (2001). Landscape ecological planning and design of degraded mining land. Land Degradation and Development, 12(5), 449–459.CrossRef
Zurück zum Zitat Weiss, N. A. (2012). Introductory statistics. Boston: Addison-Wesley. Weiss, N. A. (2012). Introductory statistics. Boston: Addison-Wesley.
Zurück zum Zitat Zar, J. H. (2010). Biostatistical analysis. Upper Saddle River: Pearson Prentice-Hall. Zar, J. H. (2010). Biostatistical analysis. Upper Saddle River: Pearson Prentice-Hall.
Metadaten
Titel
Ecoservice Role of Earthworm (Lumbricidae) Casts in Grow of Soil Buffering Capacity of Remediated Lands Within Steppe Zone, Ukraine
verfasst von
Sergiy Nazimov
Iryna Loza
Yurii Kul’bachko
Oleg Didur
Oleksandr Pakhomov
Angelina Kryuchkova
Maria Shulman
Tatiana Zamesova
Copyright-Jahr
2019
DOI
https://doi.org/10.1007/978-3-319-97091-2_13