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Study on community structure of microbial consortium for the degradation of viscose fiber wastewater

机译:降解黏胶纤维废水的微生物群落结构研究

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Background: Enrichment culture was applied to obtain microbial consortium from activated sludge samples collected from biodegradation system, a chemical fiber plant in Hebei Province, China. Bacterial composition and community dynamic variation were assessed employing denaturing gradient gel electrophoresis fingerprinting technology based on amplified 16S rRNA genes in the entire process of enrichment culture for viscose fiber wastewater. Results: Four bacteria named as VF01, VF02, VF03, and VF04 were isolated from the microbial consortium adopting the spray-plate method. The DNA bands of these four bacteria were corresponded to the predominant DNA bands in the electrophoresis pattern. VF01, VF02, VF03, and VF04 were phylogenetically closed to Bacillus licheniformis, Bacillus subtilis, Paracoccus tibetensis, and Pseudomonas sp. by sequence analysis, respectively. The degradation effects for COD_(Cr) of single isolated strain, mixed strains, and microbial consortium (VF) originally screened from viscose fiber wastewater were determined. The degradation ability was as follows: microbial consortium (VF) mixed strains single isolated strain. Microbial consortium (VF) showed the optimum degradation rate of COD_(Cr) of 87% on 14th day. Degradation of pollutants sped up by bio-augmentation of four strains. The molecular weight distribution of organic matter showed that viscose fiber wastewater contained a certain amount of large molecular organic matter, which could be decomposed into smaller molecular substances by microbial consortium (VF). Conclusions: The microbial consortium (VF) obtained from enrichment culture exhibited great potential for COD_(Cr) degradation. The screened strains had bio-augmentation functions and the addition of a mixture of four bacteria could speed up the degradation rate of pollutants.
机译:背景:通过从中国河北省化纤厂生物降解系统收集的活性污泥样品中进行富集培养,获得微生物群。在变性粘胶纤维废水富集培养的整个过程中,基于变性的16S rRNA基因,采用变性梯度凝胶电泳指纹图谱技术评估细菌的组成和群落动态变化。结果:采用喷板法从微生物菌群中分离出四种细菌,分别为VF01,VF02,VF03和VF04。这四种细菌的DNA条带与电泳图中的主要DNA条带相对应。 VF01,VF02,VF03和VF04在系统发育上不接触地衣芽孢杆菌,枯草芽孢杆菌,西藏副球菌和假单胞菌。分别通过序列分析。确定了最初从粘胶纤维废水中筛选出的单个分离菌株,混合菌株和微生物联盟(VF)对COD_(Cr)的降解作用。降解能力如下:微生物联盟(VF)>混合菌株>单个分离菌株。微生物联盟(VF)在第14天的最佳COD_(Cr)降解率达87%。四种菌株的生物增强作用加速了污染物的降解。有机物的分子量分布表明,粘胶纤维废水中含有一定量的大分子有机物,可被微生物财团(VF)分解为较小的分子物质。结论:通过富集培养获得的微生物财团(VF)具有降解COD_(Cr)的巨大潜力。筛选的菌株具有生物增强功能,并且添加四种细菌的混合物可以加快污染物的降解速度。

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