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Simultaneous biodegradation of pyridine and quinoline by two mixed bacterial strains

机译:两种混合细菌菌株同时降解吡啶和喹啉

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摘要

Experiments were conducted to provide data on the effectiveness of bioaugmentation in the removal of pyridine and quinoline from different wastewaters. A pyridine-degrading bacterial strain (Paracoccus sp. BW001) and a quinoline-degrading strain (Pseudomonas sp. BW003) were isolated from the activated sludge of a coking wastewater treatment plant. In this study, a consortium of these two bacterial strains was used as inoculum to simultaneously degrade pyridine and quinoline in three types of wastewaters: sterile synthetic, domestic, and industrial. In addition, variation of the bacterial community structures during degradation was monitored by denaturing gradient gel electrophoresis and amplicon length heterogeneity polymerase chain reaction techniques. The results of our experiments indicate that pyridine and quinoline can be removed efficiently using this inoculum but that the degradation process results in the production of ammonium as a by-product. Also, in the two actual wastewaters investigated, we observed that several autochthonous strains of bacteria in both the domestic and industrial wastewater were tolerant of pyridine and quinoline and grew rapidly.
机译:进行实验以提供有关生物强化在从不同废水中去除吡啶和喹啉的有效性的数据。从焦化废水处理厂的活性污泥中分离出降解吡啶的细菌菌株(Paracoccus sp。BW001)和降解喹啉的菌株(Pseudomonas sp。BW003)。在这项研究中,这两个细菌菌株的联合体被用作接种物,以同时降解三种类型的废水中的吡啶和喹啉:无菌合成废水,生活废水和工业废水。另外,通过变性梯度凝胶电泳和扩增子长度异质性聚合酶链反应技术监测降解过程中细菌群落结构的变化。我们的实验结果表明,使用该接种物可有效去除吡啶和喹啉,但降解过程会导致副产物铵的产生。另外,在所研究的两种实际废水中,我们观察到生活和工业废水中的几种细菌均能耐受细菌和吡啶并喹啉的生长速度很快。

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