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Effectiveness of biochar on degraded irrigated soils in Southeast Kazakhstan | ||
Caspian Journal of Environmental Sciences | ||
مقالات آماده انتشار، اصلاح شده برای چاپ، انتشار آنلاین از تاریخ 04 اسفند 1403 اصل مقاله (914.17 K) | ||
نوع مقاله: Research Paper | ||
شناسه دیجیتال (DOI): 10.22124/cjes.2025.8478 | ||
نویسندگان | ||
Ainur Doszhanova1؛ Zh. O. Ospanbayev* 2؛ А.S. Sembayeva2؛ М.D. Bekbauov1؛ D.T. Kazkeyev1؛ K.A. Myrzabek1 | ||
1Kazakh National Agrarian Research University, Almaty, Kazakhstan | ||
2Kazakh Research Institute of Agriculture and Plant Growing, Almalybak, Kazakhstan | ||
چکیده | ||
The article reports on field studies investigating the impact of different doses of birch biochar on the agro-physical and agrochemical properties of degraded irrigated soils in the Akdalinsky irrigation massif in Southeast Kazakhstan. Applying biochar at rates of 15-20 ton ha-1 as part of the primary soil treatment enhances soil bulk density. It increases the proportion of agriculturally valuable and water-stable aggregates in the plow layer. Notable improvements were observed in the content of labile humus and available phosphorus. These enhancements in soil properties lead to increased productivity in rice crop rotations due to both the immediate and residual effects of biochar application under moldboard plowing. Rice and spring wheat yields rise mainly due to improved tillering, while soybean yields benefit from increased pod formation. | ||
کلیدواژهها | ||
Biochar؛ Irrigated agriculture؛ Crop yields؛ Soil fertility؛ Salinity | ||
مراجع | ||
Ahmed, A, Gariepy, Y & Raghavan, V 2017, Influence of wood-derived biochar on the compactibility and strength of silt loam soil. International Agrophysics, 31: 149-155.
Akhtar, SS, Li, G, Andersen, MN & Liu, F 2014, Biochar enhances yield and quality of tomato under reduced irrigation. Agricultural Water Management, 138: 37-44.
Al Wabel, MI, Hussain, Q, Usman, ARA, Ahmad, M, Abduljabbar, S, Sallam, S & Abdulazeem, YS 2018, Impact of biochar properties on soil conditions and agricultural sustainability: A Review. Land Degradation & Development, 29: 2124-2161.
Barnes, RT, Gallagher, ME, Masiello, CA, Liu, A & Dugan, B 2014, Biochar-Induced changes in soil hydraulic conductivity and dissolved nutrient fluxes constrained by laboratory experiments. PLoS ONE, 9: e108340.
Busscher, WJ, Novak, JM, Evans, DE, Watts, DW, Niandou, MAS & Ahmedna, M 2010, Influence of pecan biochar on physical properties of a norfolk loamy sand." Soil Science, 175: 10-14.
Busscher, WJ, Novak, JM, Evans, DE, Watts, DW, Niandou, MAS & Ahmedna, M 2010, Influence of pecan biochar on physical properties of a norfolk loamy sand. Soil Science, 175: 10-14.
Cayuela, ML, van Zwieten, L, Singh, BP, Jeffery, S, Roig, A, Sánchez Monedero, MA 2014, Biochar’s role in mitigating soil nitrous oxide emissions: A Review and Meta-Analysis. Agriculture, Ecosystems & Environment, 191: 5-16.
Chan, KY, Van Zwieten, L, Meszaros, I, Downie, A & Joseph, S 2008, Agronomic values of green waste biochar as a soil amendment." Soil Research, 45: 629-634.
Concept of the Republic of Kazakhstan's Transition to a "Green Economy," 2013, Astana, Kazakhstan.
Dempster, DN, Gleeson, DB, Solaiman, ZM, Jones, DL & Murphy, DV 2012, Decreased soil microbial biomass and nitrogen mineralisation with eucalyptus biochar addition to a coarse textured soil. Plant and Soil, 354: 311-324.
Dempster, DN, Jones, DL & Murphy, DM 2012, Clay and biochar amendments decreased inorganic but not dissolved organic nitrogen leaching in soil. Soil Research, 50: 216-221.
Field, JL, Keske, CMH, Birch, GL, Defoort, MW & Cotrufo, MF 2013, Distributed biochar and bioenergy coproduction: a regionally specific case study of environmental benefits and economic impacts. GCB Bioenergy, 5: 177-191.
Gaskin, JW, Speir, RA, Harris, K, Das, KC, Lee, RD, Morris, LA & Fisher, DS 2010, Effect of peanut hull and pine chip biochar on soil nutrients, corn nutrient status, and yield. Agronomy Journal, 102: 623-633.
Guo, XX, Liu, HT & Zhang, J 2019, The role of biochar in organic waste composting and soil improvement: A Review. Waste Management, pp. 884-899.
Haider, G, Steffens, D, Moser, G, Müller, C & Kammann, CI 2017, Biochar reduced nitrate leaching and improved soil moisture content without yield improvements in a four-year field study. Agricultural Ecosystems & Environment, 237: 80-94.
Herath, H, Camps Arbestain, M & Hedley, M 2013, Effect of biochar on soil physical properties in two contrasting soils: an alfisol and an andisol. Geoderma, 209: 188-197.
Herath, H, Camps Arbestain, M & Hedley, M 2013, Effect of biochar on soil physical properties in two contrasting soils: an alfisol and an andisol. Geoderma, 209: 188-197.
Jeffery, S, Abalos, D, Prodana, M, Bastos, AC, van Groenigen, JW, Hungate, BA, Verheijen, F 2017, Biochar boosts tropical but not temperate crop yields. Environmental Research Letters, 12. Article 053001.
Jeffery, S, Verheijen, FGA, Kammann, C & Abalos, D 2016, Biochar effects on methane emissions from soils: A meta-analysis. Soil Biology and Biochemistry, 101: 251-258.
Kammann, C, Linsel, S, Gößling, J & H-W, K 2011, Influence of biochar on drought tolerance of chenopodium quinoa willd and on soil-plant relations. Plant and Soil, 345: 195-210.
Karhu, K, Mattila, T, Bergström, I & Regina, K 2011, Biochar addition to agricultural soil increased ch4 uptake and water holding capacity—Results from a short-term pilot field study. Agriculture, Ecosystems & Environment, 140: 309-313.
Kornenko, VA, Voina, TN & Mamytov, ZhU 1977, Soils of the akdalinsky massif. Alma-ata, "Science" KazSSR, 180 p.
Kozybaeva, FE, Beiseyeva, GB & Azhikina, NZh 1914, The role of biochar in improving and maintaining the fertility of dark chestnut soils. Journal of Soil Science and Agrochemistry, 2: 41-53.
Kwan, RA, Kalashnikov, AA, Paramonov, AI & Kaldarova, SM 2011, Water resources and prospects for their use in irrigation in the Republic of Kazakhstan. Water Management of Kazakhstan, 3.
Lehmann, J & Joseph, S 2009, Biochar for Environmental Management: Science and Technology, 1st ed., Lehmann, J, Ed., Earthscan: London, UK, pp. 1-9.
Lehmann, J & Joseph, S 2012, Biochar for environmental management: Science and technology. Earthscan: Sterling, VA, USA, pp. 127-146.
Lehmann, J 2007, A Handful of Carbon. Nature, 447: 143-144.
Lehmann, J, da Silva, JP, Steiner, C, Nehls, T, Zech, W & Glaser, B 2003, "Nutrient availability and leaching in an archaeological anthrosol and a ferralsol of the central amazon basin: fertilizer, manure, and charcoal amendments." Plant and Soil, 249: 343-357.
Lehmann, J, Gaunt, J & Rondon, M 2006, Biochar sequestration in terrestrial ecosystems: A review. Mitigation and Adaptation Strategies for Global Change, 11: 395-419.
Lim, TJ, Spokas, KA, Feyereisen, G & Novak, JM 2016, Predicting the impact of biochar additions on soil hydraulic properties. Chemosphere, 142: 136-144.
Liu, Z, Dugan, B, Masiello, CA & Gonnermann, HM 2017, Biochar particle size, shape, and porosity act together to influence soil water properties." PLoS ONE, 12: 1-19.
Masiello, CM, Dugan, B, Brewer, C, Spokas, KA, Novak, JM, Liu, Z & Sorrenti, G 2015, "Biochar effects on soil hydrology." in biochar for environmental management, 2nd ed., Lehmann, J, Joseph, S, Eds., Routledge: New York, NY, USA, pp. 543-562.
Montanarella, L & Lugato, E 2013, The application of biochar in the EU: Challenges and opportunities, Review. Agronomy, 3: 462-473.
Nebytov, VG 2005, Changes in the ph of leached chernozem upon its agricultural use and field-protective afforestation. Soil Science, 6: 656-664.
O’Toole, A & Rasse, D 2016, Biochar: Soil carbon and fertility. In Encyclopedia of Soil Science, 3rd ed., Rattan, L, Ed., Taylor and Francis: New York, NY, USA, pp. 193-197.
Obia, A, Børresen, T, Martinsen, V, Cornelissen, G & Mulder, J 2017, Effect of biochar on crust formation, penetration resistance, and hydraulic properties of two coarse-textured tropical soils. Soil & Tillage Research, 170: 114-121.
Obia, A, Børresen, T, Martinsen, V, Cornelissen, G, Mulder, J 2017, Effect of biochar on crust formation, penetration resistance, and hydraulic properties of two coarse-textured tropical soils. Soil & Tillage Research, 170: 114-121.
Obia, A, Mulder, J, Martinsen, V, Cornelissen, G & Børresen, T 2016, In situ effects of biochar on aggregation, water retention, and porosity in light-textured tropical soils. Soil & Tillage Research, 155: 35-44.
Omondi, MO, Xia, X, Nahayo, A, Liu, X, Korai, PK & Pan, G 2016, Quantification of biochar effects on soil hydrological properties using meta-analysis of literature data. Geoderma, 274: 28-34.
Peake, LR, Reid, BJ & Tang, X 2014, Quantifying the influence of biochar on the physical and hydrological properties of dissimilar soils. Geoderma, 235: 182-190.
Rasse, DP, Budai, A, O’Toole, A, Ma, X, Rumpel, C & Abiven, S 2017, Persistence in soil of miscanthus biochar under laboratory and field conditions. PLoS ONE, 12: e0184383.
Rondon, MA, Lehmann, J, Ramírez, J & Hurtado, M 2007, Biological nitrogen fixation by common beans (Phaseolus vulgaris L.) increases with biochar additions. Biology and Fertility of Soils, 43: 699-708.
Sarkulova, ZhS 2019, Impact of mining and metallurgical enterprises on soil-ecological functions and methods of rehabilitation of contaminated soils in ridder, East Kazakhstan. PhD Dissertation, Almaty, 144 p.
Shein, LO & Karpachevsky, EV 2007, Theories and methods of soil physics. Moscow: Grif and K, 616 p.
Singh, BP, Hatton, BJ, Singh, B, Cowie, AL & Kathuria, A 2010, Influence of biochars on nitrous oxide emission and nitrogen leaching from two contrasting soils. Journal of Environmental Quality, 39: 1224-1235.
Spokas, K & Reicosky, DC 2009, Impacts of sixteen different biochars on soil greenhouse gas production. Annals of Environmental Science, 3: 179-193.
Steiner, C, Das, KC, Melear, N & Lakly, D 2010, Reducing nitrogen losses during poultry litter composting using biochar. Journal of Environmental Quality, 39: 1236-1242.
Strategy and Incentives for Reducing Emissions of GHGs from the Agricultural Sector 2010, Norwegian Environment Department, Oslo, Norway.
Subedi, R, Bertora, C, Zavattaro, L & Grignani, C 2017, Crop response to soils amended with biochar: expected benefits and unintended risks. Italian Journal of Agronomy, 12: 161-173.
Sun, F & Lu, S 2014, Biochars improve aggregate stability, water retention, and pore-space properties of clayey soil. Journal of Plant Nutrition and Soil Science, 177: 26-33.
Tulesheva, A, Yessimov, B 2024, Role of soil biota in the formation of soil fertility in agricultural landscapes of Akmola region, Kazakhstan, Caspian Journal of Environmental Sciences, 22: 1191.-1197.
Vadyunina, AF & Korchagina, ZA 1973, Methods for investigating the physical properties of soils and soils. Moscow, Higher School, pp. 72-75.
Wang, YF, Kang, SZ, Li, FS & Zhang, XT 2021, Modified water-nitrogen productivity function based on response of water sensitive index to nitrogen for hybrid maize under drip fertigation. Agricultural Water Management, 245: Article 106566.
Yu, OY, Raichle, B & Sink, S 2013, Impact of biochar on the water holding capacity of loamy sand soil. International Journal of Energy and Environmental Engineering, 4: 1-9.
Zhang, J & You, C 2013, Water holding capacity and absorption properties of wood chars. Energy & Fuels, 27: 2643-2648.
Zhang, YJ, Lin, F, Wang, XF, Zou, JW & Liu, SW 2016, Annual accounting of net greenhouse gas balance response to biochar addition in a coastal saline bioenergy cropping system in China. Soil & Tillage Research, 158: 39-48.
Zong, Y, Chen, D & Lu, S 2014, Impact of biochars on swell-shrinkage behavior, mechanical strength, and surface cracking of clayey soil. Journal of Plant Nutrition and Soil Science, 177: 2643-2648. | ||
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