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Biodegradation of anthraquinone dyes: Interactive assessment upon biodecolorization, biosorption and biotoxicity using dual-chamber microbial fuel cells (MFCs)

机译:蒽醌染料的生物降解:使用双腔微生物燃料电池(MFC)对生物焦化,生物吸附和生物毒性的交互式评估

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摘要

In this work, indigenous microbial consortium was employed to degrade four (4) anthraquinone dyes. Apart from biodecolorization, the interactive effects of biosorption and biotoxicity via microbial fuel cells (MFCs) were investigated thereby suggesting feasible strategies to assess toxicities of anthraquinone dyes. Serial microbial acclimatization upon indigenous mixed consortia was first implemented to obtain optimal consortia for decolorization. The well-acclimated consortium was capable to degrade 50 mg L-1 Acid blue 62 (AB62) at 47.07 +/- 1.411 mg L-1 h(-1). The ranking of decolorization performance at 50 mg L-1 was AB62 Acid Blue 25 (AB25) Acid Blue 40 (AB40) Reactive Blue 19 (RB19). The appreciably decreased rates of decolorization at higher concentrations (300 mg L-1) was mainly biosorption due to dye inhibition. However, as power densities in MFCs at 300 mg L-1 were still not significantly attenuated, indicating that dyes at such levels were still under threshold of toxicity for bioenergy extraction. After decolorization, considerable increases in power generation were exhibited due to accumulated degraded intermediates as electron shuttles. Microbial community analysis suggested that an increase in species diversity and abundance of both dye-decolorizing and electroactive bacteria was revealed after the consortium underwent successful serial acclimation.
机译:在这项工作中,采用土着微生物联盟来降解四(4)个蒽醌染料。除了生物焦化,还研究了通过微生物燃料电池(MFC)的生物吸附和生物毒性的互动效果,从而表明评估蒽醌染料的毒性的可行策略。第一次实施土着混合结合时的连续微生物适应性化以获得脱色的最佳组分。良好适应的联盟能够在47.07 +/- 1.411mg L-1 H(-1)下降解50mg L-1酸蓝62(AB62)。 50mg L-1的脱色性能的排名是AB62酸蓝25(AB25)>酸蓝40(AB40)>反应性蓝19(RB19)。在较高浓度下显着降低的脱色率(300mg L-1)主要是由于染料抑制引起的生物吸附。然而,由于<300mg L-1的MFCs中的功率密度仍未显着衰减,表明这种水平的染料仍处于生物能量提取的毒性阈值下。在脱色之后,由于累积的降解的中间体作为电子穿梭,发电的显着增加。微生物群落分析表明,在联盟经历了成功的连续适应后,揭示了物种多样性和染料脱色和电活性细菌的丰富。

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