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Continuous treatment of Acid Red B with activated sludge bioaugmented by a yeast Candida tropicalis TL-F1 and microbial community dynamics

机译:用酵母念珠菌TL-F1和微生物群落动态的酵母污泥连续治疗酸红B.

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Continuous treatment of Acid Red B (ARB) with activated sludge (AS) bioaugmented by an azo-degrading yeast Candida tropicalis TL-F1 under aerobic conditions was investigated in the form of sequencing batch tests. Dynamics of both bacterial and fungal communities were analyzed using polymerase chain reaction followed by denaturing gradient gel electrophoresis (PCR-DGGE) method. The results showed that bioaugmentation with the yeast TL-F1 improved the performance of AS for continuously decolorizing, degrading and detoxifying ARB. Meanwhile, the AS systems bioaugmented by the yeast TL-F1 showed higher sludge concentration and better AS settleability. The result of PCR-DGGE suggested that microbial communities of both bacteria and fungi shifted due to treatment of ARB and bioaugmentation. Some dominant bacteria and fungi were identified as probably efficient degraders of ARB or its decolorization byproducts. Furthermore, the yeast TL-F1 was found as one of the dominant fungi in all the three bioaugmented systems, suggesting that bioaugmentation was successful due to the colonization of the yeast TL-F1 in AS systems.
机译:通过测序分批试验的形式研究了通过在有氧条件下的偶氮降解酵母念珠菌TL-F1的活性污泥(AS)的酸红B(ARB)的连续处理。使用聚合酶链式反应分析了细菌和真菌社区的动态,然后通过变性梯度凝胶电泳(PCR-DGGE)方法。结果表明,酵母T1-F1的生物沉积改善了用于连续脱色,降解和排毒arb的性能。同时,随着酵母TL-F1的生物化的系统显示出更高的污泥浓度,并且作为可沉降性更好。 PCR-DGGE的结果表明,由于ARB和生物沉积的治疗,细菌和真菌的微生物群落转移。一些显性细菌和真菌被鉴定为arb的有效降解或其脱色副产品。此外,酵母TL-F1被发现作为所有三种生物化系统中的主要真菌之一,表明生物沉积成​​本是成功的,因为酵母TL-F1作为系统的定植。

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