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首页> 外文期刊>Environmental Science and Pollution Research >Dechlorination and organohalide-respiring bacteria dynamics in sediment samples of the Yangtze Three Gorges Reservoir
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Dechlorination and organohalide-respiring bacteria dynamics in sediment samples of the Yangtze Three Gorges Reservoir

机译:长江三峡水库底泥样品中脱氯和呼吸有机卤化物的动力学

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Several groups of bacteria such as Dehalococ-coides spp., Dehalobacter spp., Desulfomonile spp., Desul-furomonas spp., or Desulfitobacterium spp. are able to dehalogenate chlorinated pollutants such as chloroethenes, chlorobenzenes, orpolychlorinated biphenyls under anaerobic conditions. In order to assess the dechlorination potential in Yangtze sediment samples, the presence and activity of the reductively dechlorinating bacteria were studied in anaerobic batch tests. Eighteen sediment samples were taken in the Three Gorges Reservoir catchment area of the Yangtze River, including the tributaries Jialing River, Daning River, and Xiangxi River. Polymerase chain reaction analysis indicated the presence of dechlorinating bacteria in most samples, with varying dechlorinating microbial community compositions at different sampling locations. Subsequently, anaerobic reductive dechlorination of tetrachloroethene (PCE) was tested after the addition of electron donors. Most cultures dechlorinated PCE completely to ethene via cis-dichloroethene (cis-DCE) or trans-dichloroethene. Dehalogenating activity corresponded to increasing numbers of Dehalobacter spp., Desulfomonile spp., Desulfitobacterium spp., or Dehalococcoides spp. If no bacteria of the genus Dehalococcoides spp. were present in the sediment, reductive dechlorination stopped at cis-DCE. Our results demonstrate the presence of viable dechlorinating bacteria in Yangtze samples, indicating their relevance for pollutant turnover.
机译:几类细菌,例如Dehalococ-coides spp。,Dehalobacter spp。,Desulfomonile spp。,Desul-furomonas spp。或Desulfitobacterium spp。能够在厌氧条件下使氯化污染物(如氯乙烯,氯苯或多氯联苯)脱卤。为了评估扬子沉积物样品中的脱氯潜力,在厌氧分批测试中研究了还原性脱氯细菌的存在和活性。在长江三峡水库集水区,包括支流嘉陵江,大宁河和湘西河,采集了18个沉积物样品。聚合酶链反应分析表明,大多数样品中都存在脱氯细菌,并且在不同采样位置存在不同的脱氯微生物群落组成。随后,在添加电子给体后测试了四氯乙烯(PCE)的厌氧还原性脱氯。大多数培养物通过顺式二氯乙烯(cis-DCE)或反式二氯乙烯将PCE完全脱氯为乙烯。脱卤活性对应于Dehalobacter spp。,Desulfonmonile spp。,Desulfitobacter spp。或Dehalococcoides spp的数量增加。如果没有Dehalococcoides spp属细菌。在沉淀物中存在,还原脱氯在顺式DCE处停止。我们的结果表明,扬子样本中存在有活力的脱氯细菌,表明它们与污染物周转有关。

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