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首页> 外文期刊>Environmental Science and Pollution Research >Rapid establishment of phenol- and quinoline-degrading consortia driven by the scoured cake layer in an anaerobic baffled ceramic membrane bioreactor
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Rapid establishment of phenol- and quinoline-degrading consortia driven by the scoured cake layer in an anaerobic baffled ceramic membrane bioreactor

机译:在厌氧膨胀的陶瓷膜生物反应器中迅速建立由臭氧蛋白膜层的冲洗蛋糕层驱动的苯酚和喹啉降解的联盟

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摘要

Although toxic and refractory organics, such as phenol and quinoline, are decomposed by anaerobic bacteria, the establishment of specific degrading consortia is a relatively slow process. An anaerobic membrane bioreactor allows for complete biomass retention that can aid the establishment of phenol- and quinoline-degrading consortia. In this study, the anaerobic digestion of phenol (500 mg L-1) and quinoline (50 mg L-1) was investigated using an anaerobic baffled ceramic membrane bioreactor (ABCMBR). The results showed that, within 30 days, 99% of phenol, 98% of quinoline and 88% of chemical oxygen demand (COD) were removed. The substrate utilisation rates of the cake layer for phenol and quinoline, and specific methanogenic activity of the cake layer, were 7.58 mg phenol g(-1) mixed liquor volatile suspended solids (MLVSS) day(-1), 8.23 mg quinoline g(-1) MLVSS day(-1) and 0.55 g CODCH4 g(-1) MLVSS day(-1), respectively. The contribution of the cake layer to the removals of phenol and quinoline was extremely underestimated because the uncounted scoured cake layer was disregarded. Syntrophus was the key population for phenol and quinoline degradation, and it was more abundant in the cake layer than in the bulk sludge. The highly active scattered cake layer sped up the establishment of phenol- and quinoline-degrading consortia in the ABCMBR.
机译:虽然有毒和难治物有机物,例如苯酚和喹啉,但厌氧细菌分解,但特异性降解的组成的建立是相对缓慢的过程。厌氧膜生物反应器允许完全生物质保留,以帮助建立酚类和喹啉降解的联盟。在该研究中,使用厌氧膨胀的陶瓷膜生物反应器(ABCMBR)研究了苯酚(500mg L-1)和喹啉(50mg L-1)的厌氧消化。结果表明,在30天内,99%的苯酚,98%的喹啉和88%的化学需氧量(COD)。酚类和喹啉的滤饼层的基板利用率,以及滤饼层的特异性甲状腺活性,为7.58mg苯酚G(-1)混合液挥发性悬浮固体(MLVS)天(-1),8.23mg喹啉G( -1)MLVSS日(-1)和0.55g CODCH4 G(-1)MLVS日(-1)。蛋糕层与苯酚和喹啉去除的贡献非常低估,因为无铅饼干层被忽略了。 Syntrophus是苯酚和喹啉降解的关键群体,在蛋糕层中比在块状污泥中更丰富。高活跃的散射蛋糕层加快了ABCMBR中的酚类和喹啉降解的联盟的建立。

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