环境修复
微生物燃料电池
六价铬
地下水
浸出(土壤学)
土壤水分
吸附
环境化学
铬
化学
环境友好型
地下水修复
环境科学
环境工程
污染
土壤科学
电极
地质学
生态学
有机化学
岩土工程
物理化学
阳极
生物
作者
Tingting Zhang,Liyang Hu,Minglu Zhang,Mengyun Jiang,Heidelore Fiedler,Wenrong Bai,Xiaohui Wang,Dayi Zhang,Zetang Li
标识
DOI:10.1016/j.envpol.2019.06.051
摘要
Remediation of hexavalent chromium [Cr(VI)] has been widely studied for its high mobility and toxicity. As Cr(VI) migrates in natural environment, both soils and groundwater are contaminated simultaneously. In the present study, a novel reactor combining adsorption and microbial fuel cell (A-MFC) using Platanus acerifolia leaves was developed for removing Cr(VI) from groundwater and soils. When initial Cr(VI) concentration was 50 mg/L, the adsorption efficiency of A-MFC achieved 98% after 16 h. Afterwards, the leaves were used for fabricating an MFC-integrated leaching reactor. The A-MFC significantly improved the overall Cr(VI) removal efficiency through leaching and 40% of Cr(VI) in the soil column was removed. The electrical voltage and current of A-MFC reactor achieved averagely 343 mV and 141 μA to maintain the system operation without extra energy supply. This novel A-MFC reactor is an environmentally friendly technology which achieved efficient Cr(VI) removal from groundwater and soils using natural materials, proving the concept that integrated self-remediation of Cr(VI) in contaminated soil and groundwater with natural material and energy.
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