合成和应用生物炭与各种添加剂,以改善受盐分影响的土壤和提高作物产量

Tirunima Patle, Sanjay K. Sharma, S.K. Trivedi, Avinash Singh Tomar
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摘要

土壤盐碱化是影响土壤质量和作物生产力的重要非生物制约因素,对作物产量有直接影响。在保持环境完整性的同时,确保盐碱地的可持续利用至关重要。为此,必须探索和实施既能提高生产力又不会对生态系统造成危害的方法。本研究调查了生物炭、同时接种生物群落(哈氏毛霉菌和荧光假单胞菌)和石膏对鹰嘴豆土壤性质和生长参数的影响。在所有处理中,75%的石膏+生物炭@20t/ha 和生物群@2kg/ha 的组合对降低 pH 值(9.32 降至 7.61)、EC 值(3.65 降至 1.6 dSm-1)和 SAR 值(24.22 降至 5.9 Cmolc (+) kg-1)的影响最大。因此,鹰嘴豆的芽和根的长度以及干物质的总体产量都有显著提高。
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Synthesis and application of biochar in conjunction with various amendments to improve salt-affected soil and crop productivity
Soil salinity is an important abiotic constraint that affects soil quality and crop productivity and has a direct impact on crop yields. Ensuring the sustainable use of saline soils while maintaining environmental integrity is of utmost importance. To achieve this, it is essential to explore and implement methods that can enhance productivity without causing harm to the ecosystem. In the current study, the effect of biochar, Simultaneous inoculation of biomes (Trichoderma harzanium and Pseudomonas fluorescence) and gypsum on soil properties and growth parameters of chickpea was investigated. Of all treatments, the combination of 75 percent GR + biochar@20t/ha and biome @2kg/ha had the greatest effect on lowering pH (9.32 to 7.61), EC (3.65 to 1.6 dSm-1) and SAR (24.22 to 5.9 Cmolc (+) kg-1). As a result, there was a notable improvement in the length of chickpea shoots and roots as well as the overall production of dry matter.
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