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Molecular analysis of halophilic bacterial community for high-rate denitrification of saline industrial wastewater

机译:盐菌细菌群落对含盐工业废水进行高速反硝化的分子分析

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A denitrification system for saline wastewater utilizing halophilic denitrifying bacteria has not been developed so far. In this study, denitrification performance and microbial community under various saline conditions were investigated using denitrifying sludge acclimated under low-salinity condition for a few years as seed sludge. A continuous denitrification experiment showed that denitrification performance and microbial community at 10% salinity was higher than that at 1% salinity. The microbial community in the denitrification sludge that was acclimated under low salinity was monitored by terminal-restriction fragment length polymorphism (T-RFLP) analysis during acclimation to high-salinity condition. T-RFLP profiles and clone analysis based on 16S rRNA-encoding genes in the sludge of the denitrification system with 10% salinity indicated that the γ-Proteobacteria, particularly Halomonas spp., were predominant species, suggesting that these bacterial members were possibly responsible for a high denitrification activity under high-salinity conditions. Furthermore, the investigation of denitrification performance under various saline conditions revealed that 4–10% salinity results in the highest denitrification rate, indicating that this salinity was optimal for predominant bacterial species to exhibit denitrification activity. These results indicate the possibility that an appropriate denitrification system for saline wastewater can be designed using acclimated sludge with a halophilic community.
机译:迄今为止,尚未开发出利用嗜盐的反硝化细菌的盐水废水的反硝化系统。在这项研究中,使用在低盐度条件下适应了几年的反硝化污泥作为种子污泥,研究了在各种盐分条件下的反硝化性能和微生物群落。连续反硝化实验表明,盐度为10%时反硝化性能和微生物群落高于盐度为1%时的反硝化性能和微生物群落。在适应高盐度条件下,通过末端限制性片段长度多态性(T-RFLP)分析监测了在低盐度下适应的反硝化污泥中的微生物群落。盐度为10%的反硝化系统污泥中基于16S rRNA编码基因的T-RFLP图谱和克隆分析表明,γ-变形杆菌,特别是Halomonas spp。是主要菌种,表明这些细菌可能是造成细菌繁殖的原因。在高盐度条件下具有很高的反硝化活性。此外,在各种盐水条件下对反硝化性能的研究表明,盐度为4%至10%会导致最高的反硝化率,这表明该盐度是主要细菌物种具有反硝化活性的最佳选择。这些结果表明,可以使用具有嗜盐菌群落的适应性污泥设计适用于盐类废水的反硝化系统。

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