生物炭
肥料
芒属
碱土
农学
化学
土壤pH值
修正案
土壤改良剂
土壤水分
土壤盐分
环境科学
生物量(生态学)
生物能源
生物燃料
土壤科学
热解
生物
生物技术
有机化学
法学
政治学
作者
Kang He,Yan Xu,Guo He,Xuhong Zhao,Congpeng Wang,Shengjun Li,Gongke Zhou,Ruibo Hu
标识
DOI:10.1016/j.scitotenv.2023.164811
摘要
Biochar amendment has been proven as an effective measure in the remediation of degraded soils, but few reports were focused on the interactive effects and mechanisms of biochar and fertilizer co-application in the amelioration of saline-alkaline soils. In this study, different biochar and fertilizer combinations were applied to investigate the interactive effect on fertilizer use efficiency, soil properties, and Miscanthus growth in a coastal saline-alkaline soil. Compared to the fertilizer or acidic biochar application alone, the combined application of acidic biochar and fertilizer significantly improved soil nutrient availability, ameliorated soil properties in rhizosphere soil. Meanwhile, the bacterial community structure and soil enzyme activities were considerably ameliorated. Additionally, the activities of anti-oxidant enzymes were substantially enhanced and the expression of abiotic stress-associated genes was significantly up-regulated in Miscanthus plants. Ultimately, the combined application of acidic biochar and fertilizer significantly enhanced Miscanthus growth and biomass accumulation in the saline-alkaline soil. Overall, our findings suggest that the combined application of acidic biochar and fertilizer represents a feasible and effective approach for improving plant productivity in saline-alkaline soils.
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