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Efficient Removal of Butachlor and Change in Microbial Community Structure in Single-Chamber Microbial Fuel Cells

机译:有效去除丁草胺和单室微生物燃料电池中微生物群落结构的变化

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摘要

Microbial electrochemical technology provides an inexhaustible supply of electron acceptors, allowing electroactive microorganisms to generate biocurrent and accelerate the removal of organics. The treatment of wastewater contaminated by butachlor, which is a commonly used chloroacetamide herbicide in paddy fields, is a problem in agricultural production. In this study, butachlor was found to be removed efficiently (90 ± 1%) and rapidly (one day) in constructed single-chamber microbial fuel cells (MFCs). After the addition of sodium acetate to MFCs with butachlor as the sole carbon source, electricity generation was recovered instead of increasing the degradation efficiency of butachlor. Meanwhile, the microbial community structure was changed in anodic and cathodic biofilms after the addition of butachlor, following the bioelectrochemical degradation of butachlor. High-throughput sequencing showed the proliferation of and in MFCs with butachlor as the sole carbon source and of in MFCs with butachlor and sodium acetate as concomitant carbon sources. These species possess the ability to oxidize different substituents of butachlor and have important potential use for the bioremediation of wastewater, sediments, and soils.
机译:微生物电化学技术提供了不竭的电子受体,使电活性微生物能够产生生物电流并加速有机物的去除。在稻田中,通常被氯乙酰胺除草剂使用的丁草胺污染的废水的处理是一个问题。在这项研究中,发现丁草胺在构造的单室微生物燃料电池(MFCs)中被有效地去除(90±1%)并且迅速(一天)被去除。将乙酸钠添加到以丁草胺为唯一碳源的MFC中后,可以恢复发电,而不是增加丁草胺的降解效率。同时,随着丁草胺的生物电化学降解,添加丁草胺后,阳极和阴极生物膜中的微生物群落结构发生了变化。高通量测序显示以丁草胺为唯一碳源的MFC中和以丁草胺和乙酸钠为伴随碳源的MFC中的增殖。这些物种具有氧化丁草胺不同取代基的能力,并且在废水,沉积物和土壤的生物修复中具有重要的潜在用途。

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