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Identification of removal principles and involved bacteria in microbial fuel cells for sulfide removal and electricity generation

机译:确定微生物燃料电池中用于硫化物去除和发电的去除原理和涉及的细菌

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摘要

Simultaneous sulfide and organics removals with electricity generation can be achieved in microbial fuel cells (MFCs). In present research, principles of sulfide removal as well as the involved bacteria in the MFCs with sulfide and glucose as the complex substrate are investigated. Results indicated that electrochemical and biological oxidations are the main effects for sulfide removal. Community analysis shows a great diversity of bacteria on the anode surface, including the exoelectrogenic bacteria and sulfur-related bacteria. They are present in greater abundance than those in the MFCs fed with only sulfide and responsible for the effective electricity generation and sulfide oxidation in our proposed MFCs. The results are conducive to reveal the interactions between the pollutants and microbes in aspects of pollutants removals and energy recovery in the MFCs for sulfide removal.
机译:在微生物燃料电池(MFCs)中,可以同时去除硫化物和有机物。在本研究中,研究了以硫化物和葡萄糖为复杂底物的MFC中硫化物的去除原理以及所涉及的细菌。结果表明,电化学和生物氧化是去除硫化物的主要作用。群落分析表明,阳极表面的细菌种类繁多,包括放生电细菌和与硫有关的细菌。与仅添加硫化物的MFC中相比,它们的含量更高,并且在我们建议的MFC中负责有效的发电和硫化物氧化。结果有助于揭示污染物与微生物之间的相互作用,包括在MFC中用于硫化物去除的污染物去除和能量回收方面。

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