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Degradation and biotoxicity of azo dyes using indigenous bacteria-acclimated microbial fuel cells (MFCs)

机译:使用土着细菌驯化的微生物燃料电池(MFC)的偶氮染料的降解和生物毒性

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This study explored a bioenergy platform of biodegradability and toxicity evaluation through microbial fuel cells (MFCs) modules for simultaneous decolorization and bioelectricity generation. The most appropriate decolorizer consortia NIU pond exhibited the extent of decolorization: Sunset Yellow FCF (93 %), Allura Red (96.6 %), and Tartrazine (91.41 %) in 3, 8, 12 h respectively. The ranking for bioelectricity generation in MFCs (unit: mW m-2) (Sunset Yellow FCF Degradation) was hot spring water (46.42) hot spring soil (22.17) NIU pond (17.75) NIU soil (7.89). In the presence of the dye, power density was increased by 88 %, 84 % and 27 % for NP, HS, and HW, respectively. Acclimation process was inspected in terms of bioenergy-extracting capability to evaluate toxicity potency of model dyes. According to metagenomics analysis upon microbial populations before and after acclimation, indigenous microbial community was only predominated by Pseudomonas monteilii and of Bacillus pumilus. Significant increased biodiversity was evolved under selection of dye stress. After acclimation, community ecology in the consortia contained Klebsiella, Citrobacter, Enterococcus faecalis, Lactobacillus lactis, and Escherichia shigella. Tandem mass spectrometric analysis pointed out sunset yellow ECF was gradually degraded and decolorized intermediates steadily accumulated. MFC modules were promising platforms to select candidate biodecolorizers from microbial populations.
机译:本研究探讨了通过微生物燃料电池(MFCS)模块进行生物能量和毒性评估的生物能量平台,用于同时脱色和生物电路。最合适的脱色剂组成牛池展示:日落黄FCF(93%),血浆红色(96.6%),分别为3,8,12小时的塔拉鸟(91.41%)。 MFCS(单位:MW M-2)中生物电力产生的排名(日落黄色FCF降解)是温泉水(46.42)&温泉土壤(22.17)&牛池(17.75)&牛土(7.89)。在染料存在下,NP,HS和HW的功率密度分别增加了88%,84%和27%。在生物能量提取能力方面检查了适应过程,以评估模型染料的毒性效力。根据驯化前后微生物种群的偏见群体分析,土着微生物群落仅受蒙特利氏菌和芽孢杆菌占据占主导地位的。在选择染料胁迫下,在染料胁迫下进化了显着增加的生物多样性。在驯化后,Commortia的社区生态含有Klebsiella,Citrobacter,肠球菌粪,乳酸杆菌乳酸乳酸乳酸和大肠杆菌。串联质谱分析指出日落黄色ECF逐渐降解和脱色中间体稳定积累。 MFC模块是有希望的平台,以从微生物种群中选择候选生物群。

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