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The Potential of Microbial Fuel Cells for Remediation of Heavy Metals from Soil and Water—Review of Application

机译:微生物燃料电池从土壤和水中修复重金属的潜力-应用综述

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摘要

The global energy crisis and heavy metal pollution are the common problems of the world. It is noted that the microbial fuel cell (MFC) has been developed as a promising technique for sustainable energy production and simultaneously coupled with the remediation of heavy metals from water and soil. This paper reviewed the performances of MFCs for heavy metal removal from soil and water. Electrochemical and microbial biocatalytic reactions synergistically resulted in power generation and the high removal efficiencies of several heavy metals in wastewater, such as copper, hexavalent chromium, mercury, silver, thallium. The coupling system of MFCs and microbial electrolysis cells (MECs) successfully reduced cadmium and lead without external energy input. Moreover, the effects of pH and electrode materials on the MFCs in water were discussed. In addition, the remediation of heavy metal-contaminated soil by MFCs were summarized, noting that plant-MFC performed very well in the heavy metal removal.
机译:全球能源危机和重金属污染是世界上的普遍问题。应当指出,微生物燃料电池(MFC)已经被开发为用于可持续能源生产的有前途的技术,并且同时与从水和土壤中重金属的修复相结合。本文综述了MFCs从土壤和水中去除重金属的性能。电化学和微生物生物催化反应协同产生能量,并产生废水中多种重金属(例如铜,六价铬,汞,银,th)的高去除效率。 MFC和微生物电解池(MEC)的耦合系统成功地减少了镉和铅,而无需外部能量输入。此外,还讨论了pH和电极材料对水中MFC的影响。另外,总结了MFCs对重金属污染土壤的修复,指出植物MFC在重金属去除方面表现非常好。

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