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Simultaneous removal and high tolerance of norfloxacin with electricity generation in microbial fuel cell and its antibiotic resistance genes quantification

机译:微生物燃料电池中发电及其抗生素抗性基因的同时去除和高耐受诺氟沙星及其抗生素抗性基因定量

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摘要

Norfloxacin (NFLX) is a synthetic antibiotic widely used in the treatment of infectious diseases. In this work, the performance of microbial fuel cells (MFCs) toward NFLX degradation, electricity production and the antibiotics resistances genes (ARGs) generation was investigated. NFLX degradation efficiency and COD removal reached 65.5% and 94.5% respectively. The increase in NFLX concentration (128 mg/L) had no significant influence on NFLX degradation efficiency, COD removal and MFCs voltage output while the electricity was successfully generated. The quantitative polymerase chain reaction (qPCR) indicated low absolute abundances of ARGs (mdtk, mdtm, and pmra) compared with the traditional wastewater treatment plants (WWTPs). Anodic bacteria can survive in the presence of high NFLX concentration and sustain its degradation and electricity production. In terms of NFLX degradation, COD removal, diminished ARGs generation and simultaneous energy production, MFC seems to be a promising technology for antibiotics wastewater treatment with a potential to overcome the ARGs challenge.
机译:NORFLOXACIN(NFLX)是一种合成抗生素,广泛用于治疗传染病。在这项工作中,研究了微生物燃料电池(MFC)对NFLX降解,发电和抗生素电阻基因(ARGS)产生的性能。 NFLX降解效率和COD去除率分别达到65.5%和94.5%。 NFLX浓度(128mg / L)的增加对NFLX劣化效率,COD去除和MFCS电压输出没有显着影响,同时成功产生了电力。与传统的废水处理厂(WWTPS)相比,定量聚合酶链反应(QPCR)表明args(MDTK,MDTM和PMRA)的低绝对丰度。阳极细菌可以在高NFLX浓度存在下存活,并维持其降解和电力生产。就NFLX降解而言,COD去除,args生成和同时能量产量减少,MFC似乎是抗生素废水处理的有希望的技术,潜力克服争论挑战。

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