生物炭
环境修复
零价铁
六价铬
化学
环境化学
土壤污染
铬
修正案
植物毒性
污染
核化学
土壤水分
环境科学
农学
吸附
土壤科学
热解
有机化学
生物
法学
生态学
政治学
作者
Huijie Su,Zhanqiang Fang,Po Keung Eric Tsang,Liuchun Zheng,Wen Cheng,Jianzhang Fang,Dongye Zhao
标识
DOI:10.1016/j.jhazmat.2016.07.039
摘要
In this study, a kind of high-efficiency and low-cost biochar-supported zero-valent iron nanoparticles ([email protected]) was synthesised and used in the remediation of Cr(VI)-contaminated soil. The remediation tests indicated that the immobilisation efficiency of Cr(VI) and Crtotal was 100% and 91.94%, respectively, by 8 g [email protected] per kg soil for 15 d of remediation. Further investigations showed that exchangeable Cr was almost completely converted to Fe-Mn oxides and organic matter. Moreover, [email protected] could effectively improve soil fertility and reduce the leachability of Fe caused by nZVI. At the same time, the cabbage mustard growth experiments indicated that the phytotoxicity of Cr(VI) and Fe in the seedlings was effectively decreased by [email protected] treatment, and that the cabbage mustard growth was enhanced.
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