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首页> 外文期刊>Journal of the Taiwan Institute of Chemical Engineers >Feasibility study of simultaneous bioelectricity generation and dye decolorization using naturally occurring decolorizers
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Feasibility study of simultaneous bioelectricity generation and dye decolorization using naturally occurring decolorizers

机译:使用天然脱色剂同时进行生物电发电和染料脱色的可行性研究

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摘要

This first-attempt study tended to uncover microbial characteristics of simultaneous bioelectricity generation and dye decolorization in air-cathode single-chamber microbial fuel cells (MFCs) using indigenous dye decolorizers (e.g., Acinetobacter johnsonii NIUx72, Enterobacter cancerogenus BYm30, Klebsiella pneumoniae ZMd31). Batch experimental results showed that supplementation of azo dye C.I. reactive blue 160 (RBu 160) simultaneously stimulated dye decolorization and bioelectricity generation for ZMd31. However, such additions of RBu 160 repressed bacterial activity of A. johnsonii NIUx72, E. cancerogenus BYm30 for power production in MFC. Apparently, selecting appropriate electrochemically active microbes is inevitably top-priority for simultaneous bioelectricity generation and dye decolorization in MFCs.
机译:这项首次尝试的研究倾向于揭示使用本地染料脱色剂(例如,约翰逊不动杆菌NIUx72,致癌肠杆菌BYm30,肺炎克雷伯氏菌ZMd31)在空气阴极单腔微生物燃料电池(MFC)中同时产生生物电和染料脱色的微生物特征。分批实验结果表明,偶氮染料C.I.的添加。活性蓝160(RBu 160)同时刺激ZMd31的染料脱色和生物电产生。但是,RBu 160的这种添加抑制了约翰逊曲霉NIUx72,致癌性大肠杆菌BYm30的细菌活性,从而在MFC中产生电能。显然,选择合适的电化学活性微生物不可避免地是同时发生MFC中生物电产生和染料脱色的首要任务。

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