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Long‐term biochar application promoted soil aggregate‐associated potassium availability and maize potassium uptake

作者:Zhengrong Bao, Wanning Dai, Xu Su, Zunqi Liu, Zhengfeng An, Qiang Sun, Hang Jing, Li Lin, Yixuan Chen, Jun Meng · 发表于:GCB Bioenergy · 年份:2024 · DOI:10.1111/gcbb.13134 · 被引用次数:31 · 研究领域:Clay minerals and soil interactions、Soil Carbon and Nitrogen Dynamics、Soil Management and Crop Yield

Abstract Biochar is an effective ameliorator for soil quality improvement and nutrient reuse from biomass; however, the effect of biochar application on soil potassium (K) availability, plant K uptake, and the underlying mechanisms have not been well‐elucidated. To address this, the variation in the soil K forms, soil aggregate stability, and aggregate‐associated K concentration, as well as maize K uptake, were investigated in a field experiment after 9 years of biochar amendment. The treatments included no biochar and NPK fertilizer (CK); NPK fertilizer treatment (F); biochar applied annually at the rate of 2.625 t ha −1 (C 1 ), and biochar applied annually at rate of 2.625 t ha −1 with NPK fertilizers (C 1 F); one‐time biochar applied with NPK fertilizers, with biochar rate of 31.5 (C 2 F) and 47.25 t ha −1 (C 3 F). The results showed that after 9 years of field application, biochar inhibited the downward K migration to the deeper layer, thus increasing water‐soluble potassium (WSK), exchangeable potassium (EK), non‐exchangeable potassium (NEK), and total potassium (TK) in 0–20 cm soil, with C 1 F exhibiting better performance than C 2 F and C 3 F. Biochar also increased aggregate‐associated EK, NEK, and TK pools, mainly due to an increase in the macroaggregate proportion (>0.25 mm). Biochar amendment promoted maize K uptake by an average of 35.69%, the path analysis indicated that the positive effect was an outcome of the synergetic effect of the increase in surface soi...