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Published in: Environmental Earth Sciences 14/2019

01-07-2019 | Original Article

Reclamation of coalmine spoils with topsoil, grass, and legume: a case study from India

Authors: Sneha Kumari, Subodh Kumar Maiti

Published in: Environmental Earth Sciences | Issue 14/2019

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Abstract

Accretion of carbon (C) and nitrogen (N) content in reclaimed mine soil is a major objective to restore mine soil fertility. The present study investigated the impact of grass and legume seeding in fertility enhancement, nutrient accumulation, and accretion of C and N pool during the early stages of reclamation. Four land covers were studied—unreclaimed mine spoil dump, topsoil dump, and 2-year-old coal mine spoil dumps revegetated with legume (Stylosanthes hamata) and grass (Cenchrus ciliaris). Results showed that above- and below-ground biomass of legumes as well as biomass C and N contents were significantly higher than grass. Reclaimed mine soils under legumes cover had greater soil organic matter (SOM) (42%), soil organic carbon (SOC) (66%), available N (79%), and total N (62%) than the applied topsoil. The rates of SOC (1.57 Mg SOC ha−1 year−1) and total N (0.47 Mg N ha−1 year−1) accumulation were higher under legume than the grass. Soil CO2 flux was in the order of legume (2.34 ± 0.27 µmol CO2 m−2 s−1) > grass (2.17 ± 0.19 µmol CO2 m−2 s−1) > topsoil (1.23 ± 0.19 µmol CO2 m−2 s−1). Total cost of reclamation was US$ 6761 ha−1, out of which 59% was contributed by technical reclamation and 41% by biological reclamation which includes aftercare and maintenance for 2 years. Legumes showed advantages over the grass species to restore mine soil fertility. Therefore, this study recommends the application of legumes as an initial colonizer to reclaim coal mine spoils.

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Literature
go back to reference Agbenin JO, Adeniyi T (2005) The microbial biomass properties of a savanna soil under improved grass and legume pastures in northern Nigeria. Agric Ecosyst Environ 109:245–254CrossRef Agbenin JO, Adeniyi T (2005) The microbial biomass properties of a savanna soil under improved grass and legume pastures in northern Nigeria. Agric Ecosyst Environ 109:245–254CrossRef
go back to reference Ahirwal J, Maiti SK (2016) Assessment of soil properties of different land uses generated due to surface coal mining activities in tropical Sal (Shorea robusta) forest, India. CATENA 140:155–163CrossRef Ahirwal J, Maiti SK (2016) Assessment of soil properties of different land uses generated due to surface coal mining activities in tropical Sal (Shorea robusta) forest, India. CATENA 140:155–163CrossRef
go back to reference Ahirwal J, Maiti SK (2018a) Assessment of soil carbon pool, carbon sequestration and soil CO2 flux in unreclaimed and reclaimed coal mine spoils. Environ Earth Sci 77:9CrossRef Ahirwal J, Maiti SK (2018a) Assessment of soil carbon pool, carbon sequestration and soil CO2 flux in unreclaimed and reclaimed coal mine spoils. Environ Earth Sci 77:9CrossRef
go back to reference Ahirwal J, Maiti SK (2018b) Development of Technosol properties and recovery of carbon stock after 16 years of revegetation on coal mine degraded lands, India. CATENA 166:114–123CrossRef Ahirwal J, Maiti SK (2018b) Development of Technosol properties and recovery of carbon stock after 16 years of revegetation on coal mine degraded lands, India. CATENA 166:114–123CrossRef
go back to reference Ahirwal J, Maiti SK, Reddy MS (2017a) Development of carbon nitrogen and phosphate stocks of reclaimed coal mine soil within 8 years after forestation with Prosopis juliflora (Sw.) Dc. CATENA 156:42–50CrossRef Ahirwal J, Maiti SK, Reddy MS (2017a) Development of carbon nitrogen and phosphate stocks of reclaimed coal mine soil within 8 years after forestation with Prosopis juliflora (Sw.) Dc. CATENA 156:42–50CrossRef
go back to reference Ahirwal J, Maiti SK, Singh AK (2017b) Changes in ecosystem carbon pool and soil CO2 flux following post-mine reclamation in dry tropical environment, India. Sci Total Environ 583:153–162CrossRef Ahirwal J, Maiti SK, Singh AK (2017b) Changes in ecosystem carbon pool and soil CO2 flux following post-mine reclamation in dry tropical environment, India. Sci Total Environ 583:153–162CrossRef
go back to reference Alday JG, Marrs RH, Martínez-Ruiz C (2008) The influence of aspect on the early growth dynamics of hydroseeded species in coal reclamation areas. Appl Veg Sci 11(3):405–412CrossRef Alday JG, Marrs RH, Martínez-Ruiz C (2008) The influence of aspect on the early growth dynamics of hydroseeded species in coal reclamation areas. Appl Veg Sci 11(3):405–412CrossRef
go back to reference Alday JG, Marrs RH, Martínez-Ruiz C (2012) Soil and vegetation development during early succession on restored coal wastes: a six-year permanent plot study. Plant Soil 353:305–320CrossRef Alday JG, Marrs RH, Martínez-Ruiz C (2012) Soil and vegetation development during early succession on restored coal wastes: a six-year permanent plot study. Plant Soil 353:305–320CrossRef
go back to reference Banning NC, Grant CD, Jones DL, Murphy DV (2008) Recovery of soil organic matter, organic matter turnover and nitrogen cycling in a post-mining forest rehabilitation chronosequence. Soil Biol Biochem 40:2021–2031CrossRef Banning NC, Grant CD, Jones DL, Murphy DV (2008) Recovery of soil organic matter, organic matter turnover and nitrogen cycling in a post-mining forest rehabilitation chronosequence. Soil Biol Biochem 40:2021–2031CrossRef
go back to reference Blake GR, Hartge KH (1986) Bulk density. In: Methods of soil analysis: part 1—physical and mineralogical methods, pp 363–375 Blake GR, Hartge KH (1986) Bulk density. In: Methods of soil analysis: part 1—physical and mineralogical methods, pp 363–375
go back to reference Boldt-Burisch K, Gerke HH, Schneider BU, Hüttl RF (2013) Root system development of Lotus corniculatus L. in calcareous sands with embedded finer-textured fragments in an initial soil. Plant Soil 368:281–296CrossRef Boldt-Burisch K, Gerke HH, Schneider BU, Hüttl RF (2013) Root system development of Lotus corniculatus L. in calcareous sands with embedded finer-textured fragments in an initial soil. Plant Soil 368:281–296CrossRef
go back to reference Boldt-Burisch K, Naeth MA, Schneider BU, Huttl RF (2015) Linkage between root system of three pioneer plant species and soil nitrogen during early reclamation of a mine site in Lusatia, Germany. Restor Ecol 23:357–365CrossRef Boldt-Burisch K, Naeth MA, Schneider BU, Huttl RF (2015) Linkage between root system of three pioneer plant species and soil nitrogen during early reclamation of a mine site in Lusatia, Germany. Restor Ecol 23:357–365CrossRef
go back to reference Bond-Lamberty B, Thomson A (2010) Temperature-associated increases in the global soil respiration record. Nature 464:579–582CrossRef Bond-Lamberty B, Thomson A (2010) Temperature-associated increases in the global soil respiration record. Nature 464:579–582CrossRef
go back to reference Burger J, Graves D, Angel P, Davis V, Zipper C (2005) The forestry reclamation approach. In: Adams MB (ed) The Forestry Reclamation Approach: guide to successful reforestation of mined lands. Gen. Tech. Rep. NRS-169. US Department of Agriculture, Forest Service, Northern Research Station, Newtown Square, pp 1–8 Burger J, Graves D, Angel P, Davis V, Zipper C (2005) The forestry reclamation approach. In: Adams MB (ed) The Forestry Reclamation Approach: guide to successful reforestation of mined lands. Gen. Tech. Rep. NRS-169. US Department of Agriculture, Forest Service, Northern Research Station, Newtown Square, pp 1–8
go back to reference Cadisch G, Schunke RM, Giller KE (1994) Nitrogen cycling in a pure grass pasture and a grass-legume mixture on a red latosol in Brazil. Trop Grassl 28:43–52 Cadisch G, Schunke RM, Giller KE (1994) Nitrogen cycling in a pure grass pasture and a grass-legume mixture on a red latosol in Brazil. Trop Grassl 28:43–52
go back to reference Chandra D (1992) Jharia coalfields. Geological Society of India (GSI), Bangalore, p 149 Chandra D (1992) Jharia coalfields. Geological Society of India (GSI), Bangalore, p 149
go back to reference Donahue RL, Miller RW, Shickluna JC (1990) Soils: an introduction to soils and plant growth, 5th edn. Prentice-Hall of India Pvt Ltd, New Delhi, India Donahue RL, Miller RW, Shickluna JC (1990) Soils: an introduction to soils and plant growth, 5th edn. Prentice-Hall of India Pvt Ltd, New Delhi, India
go back to reference Dubach M, Russelle MP (1994) Forage legume roots and nodules and their role in nitrogen transfer. Agron J 86:259–266CrossRef Dubach M, Russelle MP (1994) Forage legume roots and nodules and their role in nitrogen transfer. Agron J 86:259–266CrossRef
go back to reference Eisenhauer N, Bebler H, Engels C, Gleixner G, Habekost M, Milcu A, Weigelt A (2010) Plant diversity effects on soil microorganisms support the singular hypothesis. Ecology 91:485–496CrossRef Eisenhauer N, Bebler H, Engels C, Gleixner G, Habekost M, Milcu A, Weigelt A (2010) Plant diversity effects on soil microorganisms support the singular hypothesis. Ecology 91:485–496CrossRef
go back to reference Fornara DA, Tilman D (2008) Plant functional composition influences rates of soil carbon and nitrogen accumulation. J Ecol 96(2):314–322CrossRef Fornara DA, Tilman D (2008) Plant functional composition influences rates of soil carbon and nitrogen accumulation. J Ecol 96(2):314–322CrossRef
go back to reference Fustec JF, Lesuffleur S, Mahieu Cliquet JB (2010) Nitrogen rhizodeposition of legumes. A review. Agron Sustain Dev 30:57–66CrossRef Fustec JF, Lesuffleur S, Mahieu Cliquet JB (2010) Nitrogen rhizodeposition of legumes. A review. Agron Sustain Dev 30:57–66CrossRef
go back to reference Georgen E, Chambers JC, Blank R (2009) Effects of water and nitrogen availability on nitrogen contribution by the legume Lupinus argenteus Pursh. Appl Soil Ecol 42:200–208CrossRef Georgen E, Chambers JC, Blank R (2009) Effects of water and nitrogen availability on nitrogen contribution by the legume Lupinus argenteus Pursh. Appl Soil Ecol 42:200–208CrossRef
go back to reference Gonzaga MI, Mackowiak C, de Almeida AQ, de Carvalho Junior JI, Andrade KR (2018) Positive and negative effects of biochar from coconut husks, orange bagasse and pine wood chips on maize (Zea mays L.) growth and nutrition. CATENA 162:414–420CrossRef Gonzaga MI, Mackowiak C, de Almeida AQ, de Carvalho Junior JI, Andrade KR (2018) Positive and negative effects of biochar from coconut husks, orange bagasse and pine wood chips on maize (Zea mays L.) growth and nutrition. CATENA 162:414–420CrossRef
go back to reference Hattenschwiler S, Tiunov AV, Scheu S (2005) Biodiversity and litter decomposition in terrestrial ecosystems. Annu Rev Ecol Evol Syst 36:191–218CrossRef Hattenschwiler S, Tiunov AV, Scheu S (2005) Biodiversity and litter decomposition in terrestrial ecosystems. Annu Rev Ecol Evol Syst 36:191–218CrossRef
go back to reference Jackson ML (1973) Soil chemical analysis. PHI Pvt. Ltd, New Delhi Jackson ML (1973) Soil chemical analysis. PHI Pvt. Ltd, New Delhi
go back to reference Li RS, Daniels WL (1994) Nitrogen accumulation and form over time in young mine soils. J Environ Qual 23:166–172CrossRef Li RS, Daniels WL (1994) Nitrogen accumulation and form over time in young mine soils. J Environ Qual 23:166–172CrossRef
go back to reference Maiti SK (2012) Ecorestoration of the coalmine degraded lands. Springer, New York Maiti SK (2012) Ecorestoration of the coalmine degraded lands. Springer, New York
go back to reference Maiti SK, Ahirwal J (2017) Ecological restoration of coal mine degraded lands using a grass-legume mixture—a case study from India. In: Hu Z (ed) Land reclamation in ecological fragile areas. Proceedings of the 2nd international symposium on land reclamation and ecological restoration. CRC Press, p 13 Maiti SK, Ahirwal J (2017) Ecological restoration of coal mine degraded lands using a grass-legume mixture—a case study from India. In: Hu Z (ed) Land reclamation in ecological fragile areas. Proceedings of the 2nd international symposium on land reclamation and ecological restoration. CRC Press, p 13
go back to reference Maiti SK, Ghose MK (2005) Ecological restoration of acidic coal mine overburden dumps-an Indian case study. Land Contamin Reclam 13:361–369CrossRef Maiti SK, Ghose MK (2005) Ecological restoration of acidic coal mine overburden dumps-an Indian case study. Land Contamin Reclam 13:361–369CrossRef
go back to reference Maiti SK, Maiti D (2015) Ecological restoration of waste dumps by topsoil blanketing, coir-matting and seeding with grass-legume mixture. Ecol Eng 77:74–84CrossRef Maiti SK, Maiti D (2015) Ecological restoration of waste dumps by topsoil blanketing, coir-matting and seeding with grass-legume mixture. Ecol Eng 77:74–84CrossRef
go back to reference Maiti SK, Saxena NC (1998) Biological reclamation of coal mine spoils without topsoil: an amendment study with domestic raw sewage and grass-legume mixture. Int J Surf Min Reclam Environ 12:87–90CrossRef Maiti SK, Saxena NC (1998) Biological reclamation of coal mine spoils without topsoil: an amendment study with domestic raw sewage and grass-legume mixture. Int J Surf Min Reclam Environ 12:87–90CrossRef
go back to reference Menyailo OV, Hungate BA, Zech W (2002) The effect of single tree species on soil microbial activities related to C and N cycling in the Siberian artificial afforestation experiment: tree species and soil microbial activities. Plant Soil 242:183–196CrossRef Menyailo OV, Hungate BA, Zech W (2002) The effect of single tree species on soil microbial activities related to C and N cycling in the Siberian artificial afforestation experiment: tree species and soil microbial activities. Plant Soil 242:183–196CrossRef
go back to reference MOC (2018) Annual report 2017–2018. Ministry of Coal, Government of India MOC (2018) Annual report 2017–2018. Ministry of Coal, Government of India
go back to reference Montanez A, Danso SKA, Hardarson G (1995) The effect of temperature on nodulation and nitrogen fixation by five Bradyrhizobium japonicum strains. Appl Soil Ecol 2(3):165–174CrossRef Montanez A, Danso SKA, Hardarson G (1995) The effect of temperature on nodulation and nitrogen fixation by five Bradyrhizobium japonicum strains. Appl Soil Ecol 2(3):165–174CrossRef
go back to reference Mukhopadhyay S, Maiti SK (2014) Soil CO2 flux in grassland, afforested land and reclaimed coalmine overburden dumps: a case study. Land Degrad Dev 25:216–227CrossRef Mukhopadhyay S, Maiti SK (2014) Soil CO2 flux in grassland, afforested land and reclaimed coalmine overburden dumps: a case study. Land Degrad Dev 25:216–227CrossRef
go back to reference Mukhopadhyay S, Maiti SK, Masto RE (2014) Development of mine soil quality index (MSQI) for evaluation of reclamation success: a chronosequence study. Ecol Eng 71:10–20CrossRef Mukhopadhyay S, Maiti SK, Masto RE (2014) Development of mine soil quality index (MSQI) for evaluation of reclamation success: a chronosequence study. Ecol Eng 71:10–20CrossRef
go back to reference Nelson DW, Sommers LE (1996) Total carbon, organic carbon, and organic matter. In: Sparks DL et al (eds) Methods of soil analysis. Part 3, chemical methods, 3rd edn. SSSA Book Series 5. ASA and SSSA, Madison, pp 961–1010 Nelson DW, Sommers LE (1996) Total carbon, organic carbon, and organic matter. In: Sparks DL et al (eds) Methods of soil analysis. Part 3, chemical methods, 3rd edn. SSSA Book Series 5. ASA and SSSA, Madison, pp 961–1010
go back to reference Olsen SR, Sommers LE (1982) Phosphorus. In: Page AL, Miller RH, Keeney DR (eds) Methods of soil analysis. American Society of Agronomy, Madison, pp 403–427 Olsen SR, Sommers LE (1982) Phosphorus. In: Page AL, Miller RH, Keeney DR (eds) Methods of soil analysis. American Society of Agronomy, Madison, pp 403–427
go back to reference Sheoran V, Sheoran AS, Poonia P (2010) Soil reclamation of abandoned mine land by revegetation: a Review. Int J Soil Sediment Water 3:1–13 Sheoran V, Sheoran AS, Poonia P (2010) Soil reclamation of abandoned mine land by revegetation: a Review. Int J Soil Sediment Water 3:1–13
go back to reference Shrestha RK, Lal R (2006) Ecosystem carbon budgeting and soil carbon sequestration in reclaimed mine soil. Environ Int 32:781–796CrossRef Shrestha RK, Lal R (2006) Ecosystem carbon budgeting and soil carbon sequestration in reclaimed mine soil. Environ Int 32:781–796CrossRef
go back to reference Shrestha RK, Lal R (2011) Changes in physical and chemical properties of soil after surface mining and reclamation. Geoderma 3–4:168–176CrossRef Shrestha RK, Lal R (2011) Changes in physical and chemical properties of soil after surface mining and reclamation. Geoderma 3–4:168–176CrossRef
go back to reference Singh AN, Zeng DH, Chen FS (2006) Effect of young woody plantations on carbon and nutrient accretion rates in a redeveloping soil on coalmine spoil in a dry tropical environment, India. Land Degrad Dev 17:13–21CrossRef Singh AN, Zeng DH, Chen FS (2006) Effect of young woody plantations on carbon and nutrient accretion rates in a redeveloping soil on coalmine spoil in a dry tropical environment, India. Land Degrad Dev 17:13–21CrossRef
go back to reference Spehn EM, Scherer-Lorenzen M, Schmid B, Hector A, Caldeira MC, Dimitrakopoulos PG, Schulze ED (2002) The role of legumes as a component of biodiversity in a cross-European study of grassland biomass nitrogen. Oikos 98:205–218CrossRef Spehn EM, Scherer-Lorenzen M, Schmid B, Hector A, Caldeira MC, Dimitrakopoulos PG, Schulze ED (2002) The role of legumes as a component of biodiversity in a cross-European study of grassland biomass nitrogen. Oikos 98:205–218CrossRef
go back to reference Subbiah BV, Asija GL (1956) A rapid procedure for the determination of available nitrogen in soils. Curr Sci 25:259–260 Subbiah BV, Asija GL (1956) A rapid procedure for the determination of available nitrogen in soils. Curr Sci 25:259–260
go back to reference Tripathi N, Singh RS, Hills CD (2016) Soil carbon development in rejuvenated Indian coal mine spoil. Ecol Eng 90:482–490CrossRef Tripathi N, Singh RS, Hills CD (2016) Soil carbon development in rejuvenated Indian coal mine spoil. Ecol Eng 90:482–490CrossRef
go back to reference Ussiri DA, Lal R (2008) Method for determining coal carbon in the reclaimed minesoils contaminated with coal. Soil Sci Soc Am J 72:231–237CrossRef Ussiri DA, Lal R (2008) Method for determining coal carbon in the reclaimed minesoils contaminated with coal. Soil Sci Soc Am J 72:231–237CrossRef
go back to reference WRB (World Reference Base) (2014) World Reference Base for Soil Resources, International soil classification system for naming soils and creating legends for soil maps. World Soil Resources Reports No. 106. 2015, p 192 WRB (World Reference Base) (2014) World Reference Base for Soil Resources, International soil classification system for naming soils and creating legends for soil maps. World Soil Resources Reports No. 106. 2015, p 192
go back to reference Yang Y, Yang J, Zhao T, Huang X, Zhao P (2016) Ecological restoration of highway slope by covering with straw-mat and seeding with grass–legume mixture. Ecol Eng 90:68–76CrossRef Yang Y, Yang J, Zhao T, Huang X, Zhao P (2016) Ecological restoration of highway slope by covering with straw-mat and seeding with grass–legume mixture. Ecol Eng 90:68–76CrossRef
go back to reference Zipper CE, Burger JA, Skousen JG, Angel PN, Barton CD, Davis V, Franklin JA (2011) Restoring forests and associated ecosystem services on Appalachian coal surface mines. Environ Manag 47:751–765CrossRef Zipper CE, Burger JA, Skousen JG, Angel PN, Barton CD, Davis V, Franklin JA (2011) Restoring forests and associated ecosystem services on Appalachian coal surface mines. Environ Manag 47:751–765CrossRef
Metadata
Title
Reclamation of coalmine spoils with topsoil, grass, and legume: a case study from India
Authors
Sneha Kumari
Subodh Kumar Maiti
Publication date
01-07-2019
Publisher
Springer Berlin Heidelberg
Published in
Environmental Earth Sciences / Issue 14/2019
Print ISSN: 1866-6280
Electronic ISSN: 1866-6299
DOI
https://doi.org/10.1007/s12665-019-8446-2

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