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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Characterization and variation of microbial community structure during the anaerobic treatment of N, N-dimethylformamide-containing wastewater by UASB with artificially mixed consortium
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Characterization and variation of microbial community structure during the anaerobic treatment of N, N-dimethylformamide-containing wastewater by UASB with artificially mixed consortium

机译:用UASB与人工混合联盟uASB对N,N-二甲基甲酰胺含废水的厌氧处理过程中微生物群落结构的表征及变化

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摘要

A lab-scale UASB was operated successfully to anaerobically treat wastewater containing approximately 2000 mg L-1 N, N-dimethylformamide (DMF) by artificially mixing anaerobic granular sludge with DMF-degrading activated sludge. DMF was effectively degraded by the UASB under a low OLR of 1.63-4.22 g COD L-1 d(-1), with over 96% DMF removal efficiency and a high methane production rate. However, the DMF-degrading ability gradually weakened along with increases in the OLR. The analysis of the microbial community structure by high-throughput sequencing revealed a decline in the abundance of the facultatively anaerobic DMF-hydrolyzing bacteria originating from activated sludge with increasing OLR, further deteriorating the methanogenic degradation of DMF. When the OLR was lowered again, the slow growth of those facultative anaerobes recovered, and slight improvements in the removal were noted. Methylotrophic methanogens utilized the intermediate products from the hydrolysis of DMF, which kept increasing in abundance throughout the entire experimental period.
机译:通过用DMF降解的活性污泥人工混合厌氧颗粒污泥,成功地将实验室尺寸的uasb成功运行到含有约2000mg1 -1n,N-二甲基甲酰胺(DMF)的废水。 UASB在1.63-4.22g COD L-1 D(-1)的低OLR下有效地降解了DMF,具有超过96%的DMF去除效率和高甲烷的生产率。然而,DMF降解能力随着OLR的增加而逐渐削弱。通过高通量测序分析微生物群落结构揭示了源自活化污泥的散热性厌氧DMF水解细​​菌的差异,进一步恶化了DMF的甲状腺炎降解。当再次降低OLR时,应注意,回收的伴随的伴随厌氧菌缓慢,并注意到去除的微小改善。甲基嗜型甲烷基因使用来自DMF的水解的中间产物,在整个实验期内保持丰富的丰度。

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