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Research Article

Assessment of soil organic carbon stocks in relation to variation in physiography under sub-mountainous Shiwalik ranges of lower Himalayas, India

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References

  • Masson-Delmotte V, Zhai P, Portner HO, et al. Global warming of 1.5 °C. An IPCC special report on the impacts of global warming of 1.5 °C above pre-industrial levels and related global greenhouse gas emission pathways, in the context of strengthening the global response to the threat of climate change, sustainable development and efforts to eradicate poverty. Geneva (Switzerland): World Meteorological Organization; 2018.
  • Sahoo UK, Singh SL, Gogoi A, et al. Active and passive soil organic carbon pools as affected by different land use types in Mizoram, Northeast India. Plos One. 2019;14(7):e0219969–16. pone.0219969. doi:10.1371/journal.
  • Grandy AS, Robertson GP. Land-use intensity effects on soil organic carbon accumulation rates and mechanisms. Ecosystem. 2007;10(1):59–74. doi:10.1007/s10021-006-9010-y.
  • Singh BR, Lal R. The potential of soil carbon sequestration through improved management practices in Norway. Environ Dev Sustain. 2005;7(1):161–184. doi:10.1007/s10668-003-6372-6.
  • Benbi DK, Chand M. Quantifying the effect of soil organic matter on indigenous soil N supply and wheat productivity in semi-arid sub-tropical India. Nutr Cycl Agroecosyst. 2007;79(2):103–112. doi:10.1007/s10705-007-9100-z.
  • Lal R. Enhancing crop yields in the developing countries through restoration of the soil organic carbon pool in agricultural lands. Land Degrad Dev. 2006;17(2):197–209. doi:10.1002/ldr.696.
  • Dhaliwal SS, Naresh RK, Mandal A, et al. Dynamics and transformations of micronutrients in agricultural soils as influenced by organic matter build-up: A Review. Environ Sustain Indic. 2019;1–2:1–10. doi:10.1016/j.indic.2019.100007.
  • Eaton N, Mcgoff M, Byrne KA. The impact of agricultural land cover change on soil organic carbon stocks in Ireland. In Greenhouse-gas budget of soils under changing climate and land use (burn out). 2007. Journal of Soil Science and Environmental Management Variability of soil organic carbon with landforms and land use in the Usambara Mountains of Tanzania. p. 75–80.
  • Mandal A, Toor AS, Dhaliwal SS. Assessment of sequestered organic carbon and its pools under different agricultural land-uses in semi-arid soils of south-western Punjab. J Soil Sci Plant Nutr. 2020;20(1):259–273. doi:10.1007/s42729-019-00137-5.
  • Kukal SS, Kaur M, Bawa SS, et al. Water-drop stability of natural soil aggregates from different land uses after treatment with polyvinyl alcohol. Catena. 2007;70(3):475–479. doi:10.1016/j.catena.2006.11.013.
  • Yang Y, Tilman D, Furey G, et al. Soil carbon sequestration accelerated by restoration of grassland biodiversity. NPJ Quantum Inf. 2019;10(1):718. doi:10.1038/s41467-019-08636.
  • Fissore C, Dalzell BJ, Berhe AA, et al. Influence of topography on soil organic carbon dynamics in a Southern California grassland. Catena. 2017;149(1):140–149. doi:10.1016.
  • Post WM, Kwon KC. Soil carbon sequestration and land-use change: processes and potential. Glob Change Biol. 2000;6(3):317–327. doi: 10.1046/j.1365-2486.2000.00308.x.
  • Saha D, Kukal SS, Sharma S. Land use impacts on SOC fractions and aggregate stability in typic Ustochrept of Northwest India. Plant Soil. 2011;339(1–2):457–470. doi:10.1007/s11104-010-0602-0.
  • Eynard A, Schumacher TE, Lindstrom MJ, et al. Aggregate sizes and stability in cultivated South Dakota Prairie Ustolls and Usterts. Soil Sci Soc Am J. 2004;68(4):1360–1365. doi:10.2136/sssaj2004.1360.
  • Dhaliwal SS, Naresh RK, Gupta RK, et al. Effect of tillage and straw return on carbon footprints, soil organic carbon fractions and soil microbial community in different textured soils under rice-wheat rotation-a review. Rev Environ Sci Biotechnol. 2019;19(1):103–115. doi:10.1007/s11157-019-09520-1.
  • Mandal A, Majumder A, Dhaliwal SS, et al. Impact of agricultural management practices on soil carbon sequestration and its monitoring through simulation models and remote sensing techniques: A Review. Crit Rev Environ Sci Technol. 2020:1–49. doi:10.1080/10643389.2020.1811590.
  • Powers JS, Corre MD, Twine TE, et al. Geographic bias of field observations of soil carbon stocks with tropical land-use changes precludes spatial extrapolation. Proc Natl Acad Sci U S A. 2011;108(15):6318–6322. doi:10.1073/pnas.1016774108.
  • Gruneberg E, Schoning I, Hessenmoller D, et al. Organic layer and clay content controlsoil organic carbon stocks in density fractions of differently managed German beech forests. For Ecol Manage. 2013;303:1–10. doi:10.1016/j.foreco.2013.03.014.
  • Oueslati I, Allamano P, Bonifacio E, et al. Vegetation and topographic control on spatial variability of soil organic carbon. Pedosphere. 2013;23(1):48–58. doi:10.1016/S1002-0160(12)60079-4.
  • Singh MJ, Khera LL. Soil erodibility indices under different land uses in lower Shiwalik. J Trop Ecol. 2008;49(2):113–119.
  • Morgan RPC. Soil erosion and conservation. 3rd ed. Blackwell Publishing, Oxford, 2005. p. 304.
  • Toy TJ, Foster GR, Renard KG. Soil erosion: processes, prediction, measurement and control. New York (NY): Wiley; 2002. p. 338.
  • Gupta N, Kukal SS, Bawa SS, et al. Soil organic carbon and aggregation under poplar-based agroforestry system in relation to tree age and soil type. Agrofor Syst. 2009;76(1):27–35. doi:10.1007/s10457-009-9219-9.
  • Olk DC, Dancel MC, Moscoso E, et al. Accumulation of lignin residues in organic matter fractions of lowland rice soils: a pyrolysis-GC-MS study. Soil Sci. 2002;167(9):590–606. doi:10.1097/00010694-200209000-00004.
  • Majumder B, Mandal B, Bandyopadhyay PK. Soil organic carbon pools and productivity in relation to nutrient management in a 20-year-old rice-berseem agroecosystem. Biol Fertil Soils. 2008;44(3):451–461. doi:10.1007/s00374-007-0226-6.
  • Bhattacharyya T, Pal DK, Mandal C. Organic carbon stock in Indian soils and their geographical distribution. Curr Sci. 2000;79(5):655–660.
  • Mandal B, Majumder B, Bandyopadhyay PK, et al. The potential of cropping systems and soil amendments for carbon sequestration in soils under long-term experiments in subtropical India. Glob Change Biol. 2007;13(2):357–369. doi:10.1111/j.1365-2486.2006.01309.x.
  • Walkley A, Black CA. An examination of the Degtjareff method for determining soil organic matter and a proposed modification of the chromic acid titration method. Soil Sci. 1934;37(1):27–38.
  • Chan KY. Soil particulate organic carbon under different land use and management. Soil Use Manage. 2001;17(4):217–221. doi:10.1111/j.1475-2743.2001.tb00030.x.
  • Ball DF. Loss-on-ignition as an estimate of organic matter and organic carbon in non-calcareous soils. J Soil Sci. 1964;15(1):84–92. doi:10.1111/j.1365-2389.1964.tb00247.x.
  • Manik N, Pengilley SM, Field G, et al. Soil and crop management practices to minimize the impact of waterlogging on crop productivity. Front Plant Sci. 2019;10(10):140–163. doi:10.3389/fpls.2019.00140.
  • Sahrawat KL. Organic matter accumulation in submerged soils. Adv Agronomy. 2004;81:169–201. doi:10.1016/S0065-2113(03)81004-0.
  • Ono K, Mano M, Han GH, et al. Environmental controls on fallow carbon dioxide flux in a single-crop rice paddy, Japan. Land Degrad Develop. 2015;26(4):331–339. doi:10.1002/ldr.2211.
  • Singh Y, Singh B, Ladha JK, et al. Effects of residue decomposition on productivity and soil fertility in rice-wheat rotation. Soil Sci Soc Am J. 2004;68(3):854–864. doi:10.2136/sssaj2004.8540.
  • Garcia-Pausas J, Casals P, Romanyà J, et al. Seasonal patterns of belowground biomass and productivity in mountain grasslands in the Pyrenees. Plant Soil. 2011;340(1–2):315–326. doi:10.1007/s11104-010-0601-1.
  • Dhaliwal SS, Naresh RK, Gupta RK, et al. Long term effects of intensive rice-wheat and agroforestry based cropping systems on build-up of nutrients and budgets in alluvial soils of Punjab, India. Archieves Agronomy Soil Sci. 2019;66(3):330–342. doi:10.1080/03650340.2019.1614564.
  • Gu C, Liu Y, Mohamed I, et al. Dynamic changes of soil surface organic carbon under different mulching practices in citrus orchards on sloping lands. Plos One. 2016;11(12):e0168384–226. doi:10.1371/journal.pone.0168384.
  • Sarkhot DV, Jokela EJ, Comerford NB. Surface soil carbon size–density fractions altered by loblolly pine families and forest management intensity for a Spodosol in the southeastern US. Plant Soil. 2008;307(1–2):99–111. doi:10.1007/s11104-008-9587-3.
  • Fendorf S, Francis C, Lobell D, et al. Spatial variation in microbial processes controlling carbon mineralization within soils and sediments. U.S. Department of Energy Office of Science, Office of Biological and Environmental Research, Terrestrial Ecosystem Program. 2017.p. 1–13
  • Benbi DK, Brar K, Toor AS, et al. Soil carbon pools under poplar-based agroforestry, rice-wheat and maize-wheat cropping systems in semi-arid India. Nutr Cycl Agroecosyst. 2012;92(1):107–118. doi:10.1007/s10705-011-9475-8.
  • Benbi DK, Toor AS, Kumar S. Management of organic amendments in rice-wheat cropping system determines the pool where carbon is sequestered. Plant Soil. 2012 360(1–2):145–162. doi:10.1007/s11104-012-1226-3.
  • Bierke A, Kaiser K, Guggenberger G. Crop residue management effects on organic matter in paddy soils - the lignin component. Geoderma. 2008;146(1–2):48–57. doi:10.1016/j.geoderma.2008.05.004.
  • Okon MA, Osuji GE, Uzoho BU, et al. Soil organic carbon storage as affected by physiographic positions on a Caternary Landscape in an ultisol in Owerri, Southeastern. Int J Res Agric Forestry. 2014;1(2):18–22.

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