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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Photocathode optimization and microbial community in the solar-illuminated bio-photoelectrochemical system for nitrofurazone degradation
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Photocathode optimization and microbial community in the solar-illuminated bio-photoelectrochemical system for nitrofurazone degradation

机译:光电阴极优化和微生物群落在太阳能发光生物光电化学系统中的硝基脲硫腙降解

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摘要

To further enhance the bio-photoelectrochemical system (BPES) performance for nitrofurazone (NFZ) degradation and current output, the g-C3N4/CdS photocathode was optimized, and microbial community shift from inoculation to the BPES was analyzed. Results showed that photocathode with g-C3N4/CdS (mass ratio of 1:9) loading of 7.5 mg/cm(2) exhibited the best performance, with NFZ removal of 83.14% (within 4 h) and current of similar to 9 mA in the BPES. Proteobacteria accounted for the largest proportion: 66.53% (inoculation), 71.89% (microbial electrolysis cell (MEC) anode), 74.67% (BPES anode) and 57.31% (BPES cathode), respectively. In addition, Geobacter was the most dominant genus in MEC and BPES anode and cathode, which occupied 31.64%, 67.73% and 41.34%, respectively. The microbial compositions of BPES anode and cathode were similar, but different from that of MEC anode. Notably, Rhodopseudomonas, a photosynthetic species, was detected in the BPES. Cognition of microbial community in the BPES is important for advancing its development.
机译:为了进一步增强硝基脲(NFZ)降解和电流输出的生物光电化学系统(BPES)性能,优化了G-C3N4 / Cds光电阴极,分析了从接种对BP的微生物群落转变。结果表明,具有G-C3N4 / Cds的光电阴极(质量比为1:9)载荷为7.5mg / cm(2),表现出最佳性能,NFZ除去83.14%(4小时内),电流与9 mA相似在BPES中。植物癌占最大的比例:66.53%(接种),71.89%(微生物电解槽(MEC)阳极),74.67%(BPES阳极)和57.31%(BPES阴极)。此外,Geobacter是MEC和BPES阳极和阴极中最占优势的属性,分别占31.64%,67.73%和41.34%。 BPES阳极和阴极的微生物组合物相似,但与MEC阳极不同。值得注意的是,在BPE中检测到rhodopseudomonas一种光合物种。对BPES中微生物群落的认知对于推动其发展是重要的。

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