生物炭
环境修复
环境科学
土壤健康
镉
种植
种植制度
阳离子交换容量
生物量(生态学)
土壤污染
农学
土壤水分
农业
化学
污染
土壤有机质
土壤科学
生态学
热解
生物
有机化学
作者
Zihao Duan,Chang Chen,Chunlan Ni,Juan Xiong,Zhen Wang,Junxiong Cai,Wenfeng Tan
标识
DOI:10.1016/j.jhazmat.2023.130939
摘要
Cadmium (Cd) poses great threats to human health as a major contaminant in agricultural soil. Biochar shows great potential in the remediation of agricultural soil. However, it remains unclear whether the remediation effect of biochar on Cd pollution is affected by various cropping systems. Here, this study used 2007 paired observations from 227 peer-reviewed articles and employed hierarchical meta-analysis to investigate the response of three types of cropping systems to the remediation of Cd pollution by using biochar. As a result, biochar application significantly reduced the Cd content in soil, plant roots and edible parts of various cropping systems. The decrease in Cd level ranged from 24.9% to 45.0%. The feedstock, application rate, and pH of biochar as well as soil pH and cation exchange capacity were dominant factors for Cd remediation effect of biochar, and their relative importance all exceeded 37.4%. Lignocellulosic and herbal biochar were found to be suitable for all cropping systems, while the effects of manure, wood and biomass biochar were limited in cereal cropping systems. Furthermore, biochar exhibited a more long-lasting remediation effect on paddy soils than on dryland. This study provides new insights into the sustainable agricultural management of typical cropping systems.
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