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The influence of corncob-based biochar on remediation of arsenic and cadmium in yellow soil and cinnamon soil

机译:玉米芯生物炭对黄壤和肉桂土壤中砷和镉的修复作用

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Biochar plays a significant role in soil remediation. However, the simultaneous immobilization mechanism and relationship of biochar to cations and anions have never been clear. We designed a batch incubation experiment to investigate the impact of corncob-based biochars to cadmium (Cd) and arsenic (As) contaminations in yellow soil and cinnamon soil, and analyze the relationships among biochars physicochemical characteristics (surface area: SA, total pore volume: TV, average pore size: AV and the C/O rate), soil properties, metals immobilization and microbial diversity indices. Results showed that the modified biochars (inorganic-modified biochar: BCTD) had a good effect on heavy metals immobilization and transformed acid extractable and reducible fraction into the residual fraction. Total nitrogen, organic matter and available potassium increased in both soils after biochar application. The principal component analysis presented that the smaller C/O rate was favorable to As stabilization; the SA and TV of biochar were negatively correlated with the leaching concentration of Cd. The larger surface area, higher porosity and organic matters of biochar were more beneficial to soil microbial diversity. This work not only can demonstrate remediation mechanisms of heavy metals contaminated soil by biochars, but also gain an application of biochars technology in the recycling and reutilize of agricultural waste, and provide a clear strategy for heavy metals contaminated soil, especially As and Cd.
机译:生物炭在土壤修复中起着重要作用。然而,同时固定化机制以及生物炭与阳离子和阴离子之间的关系一直不清楚。我们设计了一个分批孵化实验,以研究玉米芯生物炭对黄色土壤和肉桂土壤中镉(Cd)和砷(As)污染的影响,并分析生物炭理化特性之间的关系(表面积:SA,总孔体积) :电视,平均孔径:AV和C / O速率),土壤特性,金属固定化和微生物多样性指数。结果表明,改性生物炭(无机改性生物炭:BCTD)对重金属固定化具有良好的效果,可将酸可萃取和可还原级分转化为残留级分。施用生物炭后,两种土壤中的总氮,有机质和有效钾均增加。主成分分析表明,较小的C / O速率有利于砷的稳定。生物炭的SA和TV与Cd的浸出负相关。较大的表面积,较高的孔隙度和生物炭的有机质更有利于土壤微生物的多样性。这项工作不仅可以证明生物炭对重金属污染土壤的修复机理,而且还可以将生物炭技术应用于农业废弃物的回收和再利用,为重金属污染的土壤,尤其是砷和镉提供了明确的策略。

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