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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Enhanced wastewater treatment efficiency through microbially catalyzed oxidation and reduction: Synergistic effect of biocathode microenvironment
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Enhanced wastewater treatment efficiency through microbially catalyzed oxidation and reduction: Synergistic effect of biocathode microenvironment

机译:通过微生物催化的氧化和还原提高废水处理效率:生物阴极微环境的协同效应

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摘要

Microbially catalyzed treatment of wastewater was evaluated in both the anode and cathode chambers in dual chambered microbial fuel cell (MFC) under varying biocathode microenvironment. MFC operation with aerobic biocathode showed significant increment in both TDS (cathode, 90.2 ± 1%; anode, 39.7 ± 0.5%) and substrate (cathode, 98.07 ± 0.06%; anode, 96.2 ± 0.3%) removal compared to anaerobic biocathode and abiotic cathode operations (COD, 80.25 ± 0.3%; TDS, 30.5 ± 1.2%). Microbially catalyzed reduction of protons and electrons at cathode will be higher during aerobic biocathode operation which leads to gradual substrate removal resulting in stable bio-potential for longer periods facilitating salts removal. Bio-electro catalytic behavior showed higher exchange current density during aerobic biocathode operation resulting in induced electrochemical oxidation which supports the enhanced treatment. Anaerobic biocathode operation depicted relatively less TDS removal (anode, 16.35%; cathode, 16.04%) in both the chambers in spite of good substrate degradation (anode, 84%; cathode, 87.39%). Both the chambers during anaerobic biocathode operation competed as electron donors resulting in negligible bio-potential development.
机译:在变化的生物阴极微环境下,在双室微生物燃料电池(MFC)的阳极室和阴极室中对微生物催化处理的废水进行了评估。与好氧生物阴极和非生物燃料相比,使用好氧生物阴极的MFC操作显示TDS(阴极为90.2±1%;阳极为39.7±0.5%)和底物(阴极为98.07±0.06%;阳极为96.2±0.3%)的去除率均显着增加。阴极操作(COD,80.25±0.3%; TDS,30.5±1.2%)。在好氧生物阴极操作过程中,阴极处的质子和电子的微生物催化还原将更高,这导致逐渐去除底物,从而在更长时间内保持稳定的生物电势,从而有利于盐的去除。在有氧生物阴极操作期间,生物电催化行为显示出更高的交换电流密度,从而导致诱导的电化学氧化,从而支持了增强的处理。尽管底物降解良好(阳极为84%;阴极为87.39%),但厌氧生物阴极操作显示两个腔室中的TDS去除率相对较低(阳极为16.35%;阴极为16.04%)。在厌氧生物阴极操作过程中,两个腔室都作为电子供体竞争,导致生物电位的发展可忽略不计。

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