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Deciphering the Anode-Enhanced Azo Dye Degradation in Anaerobic Baffled Reactors Integrating With Microbial Fuel Cells

机译:厌氧折流板反应器与微生物燃料电池集成中阳极增强偶氮染料的降解

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摘要

Microbial anode respiration in microbial fuel cells (MFCs) can enhance the degradations of many electron acceptor-type contaminants which are presumed to be competitive to anode respiration. The mechanisms underlying those counterintuitive processes are important for MFCs application but are unclear. This study integrated MFCs with anaerobic baffled reactor (ABR), termed MFC-ABR, to enhance the reduction of azo dye acid orange-7 (AO-7). Compare with ABR, MFC-ABR enhanced the degradation of AO-7, especially at high AO-7 concentration (800 mg/L). Acute toxicity test suggested a higher detoxication efficiency in MFC-ABR. Higher microbial viability, dehydrogenase activity and larger sludge granule size were also observed in MFC-ABR. MFC-ABR significantly enriched and reshaped the microbial communities relative to ABR. Bacteria with respiratory versatility, e.g., Pseudomonas, Geobacter, and Shewanella, were significantly enriched. Functional prediction showed that six metabolism functions (manganese-, iron-, fumarate- and nitrate-respiration, oil bioremediation and chemoheterotrophy) were significantly stimulated while methanogenesis, sulfate-respiration, hydrogen-oxidation were suppressed in MFC-ABR relative to ABR. The results provided important information for understanding the role of microbial anode respiration in contaminated environments.
机译:微生物燃料电池(MFCs)中的微生物阳极呼吸可增强许多电子受体型污染物的降解,这些污染物被认为与阳极呼吸竞争。这些违反直觉的过程的机制对于MFC应用很重要,但尚不清楚。这项研究将MFC与称为MFC-ABR的厌氧折流板反应器(ABR)集成在一起,以增强偶氮染料酸性橙7(AO-7)的还原。与ABR相比,MFC-ABR增强了AO-7的降解,特别是在高AO-7浓度(800 mg / L)下。急性毒性试验表明,MFC-ABR具有更高的脱毒效率。在MFC-ABR中还观察到更高的微生物生存力,脱氢酶活性和更大的污泥颗粒尺寸。 MFC-ABR相对于ABR显着丰富和重塑了微生物群落。具有呼吸通用性的细菌,例如假单胞菌,地球细菌和希瓦氏菌,明显富集。功能预测表明,MFC-ABR相对于ABR,六种代谢功能(锰,铁,富马酸盐和硝酸盐的呼吸作用,油类生物修复作用和化学趋化作用)被显着刺激,而甲烷生成,硫酸盐呼吸作用,氢氧化作用受到抑制。结果为了解微生物阳极呼吸在受污染环境中的作用提供了重要信息。

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