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Variation of microbial communities and functional genes during the biofilm formation in raw water distribution systems and associated effects on the transformation of nitrogen pollutants

机译:生物膜形成过程中的微生物群落和功能基因的变异及对氮污染物转化的相关影响

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摘要

This study aimed to investigate the variation of microbial communities and functional genes during the biofilm formation in raw water distribution systems without prechlorination and associated effects on the transformation of nitrogen pollutants by using a designed model pipe system. The results showed the transformation of nitrogen pollutants was obvious during the biofilm formation. The richness and diversity of the microbial communities changed significantly. The higher abundance of Nitrospirae in biofilm samples significantly contributed to biological nitrification. In particular, the stable content of Bacteroidetes in the biofilm and soluble microbial products released by the biomass might have enhanced the increase in dissolved organic nitrogen. In addition, the variation tendency of nitrogen functional gene abundances and their strong effects on NH4 (+)-N, NO2 (-)-N, and NO3 (-)-N transformation were clearly observed. These findings provide new insights into the evolution of microbial communities and functional genes during the initial operation period of real-world raw water distribution pipes and highlight management and possible safety issues in the subsequent water treatment process.
机译:本研究旨在探讨在原料水分配系统中生物膜形成过程中微生物群落和功能基因的变化,而无需使用设计的模型管道系统,对氮污染物的转化相关的影响。结果表明,在生物膜形成期间,氮污染物的转化显而易见。微生物社区的丰富性和多样性显着变化。生物膜样品中的氮素较高大量有助于生物硝化。特别地,生物质释放的生物膜和可溶性微生物产物中的稳定含量可能提高了溶解的有机氮的增加。此外,清楚地观察到氮功能基因丰度的变化趋势及其对NH 4(+) - N,NO 2( - ) - N和NO3( - ) - N转化的强效应。这些发现在现实世界原料水分配管的初始操作期间,在初始运行期间,在初始运作期间对微生物群落和功能基因的演变提供了新的见解,并在随后的水处理过程中突出了管理和可能的安全问题。

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