首页> 外文期刊>Journal of Environmental Science and Health, Part B: Pesticides, Food Contaminants, and Agricultural Wastes >Reductive dechlorination of chlorophenols in estuarine sediments of Lake Shinji and Lake Nakaumi
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Reductive dechlorination of chlorophenols in estuarine sediments of Lake Shinji and Lake Nakaumi

机译:真治湖和中海湖河口沉积物中氯酚的还原脱氯

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Dechlorination of all mono- and dichlorophenol isomers in anaerobic sediment samples of estuarine Lake Shinji and Lake Nakaumi was examined to characterize the chlorophenol-dechlorinating microbial communities in the environments with different salinity levels. Dechlorination was observed only in 2-chlorophenol (2-CP), 3-chlorophenol (3-CP) and 2,6-dichlorophenol (2,6-DCP), and in 2-CP and 2,6-DCP in the Lake Shinji and Nakaumi sediment, respectively. In the sediment of Lake Shinji, the highest activity was observed without adding sodium chloride and sulfate, whereas in the Lake Nakaumi sediment, the highest activity was at 0.7 % of sodium chloride and 6.0 mM of sodium sulfate. The chlorophenols were degraded to benzoate via phenol in both sediments under methanogenic conditions. Benzoate then disappeared from the cultures. All microbial consortia enriched with each monochlorophenol dechlorinated 2-CP, but showed different substrate specificities for dichlorophenols as follows: 2-CP-enriched consortium dechlorinated 2,3-dichlorophenol and 2,6-DCP, 3-CP-enriched consortium dechlorinated all dichlorophenol isomers, and 4-chlorophenol-enriched consortium dechlorinated 2,4-dichlorophenol and 2,6-DCP. Maintenance of the population by halorespiration was suggested in the dechlorination of 2-CP.
机译:考察了河口真治湖和中海湖厌氧沉积物样品中所有一氯和二氯苯酚异构体的脱氯能力,以表征不同盐度环境中氯苯酚脱氯微生物群落的特征。湖中仅在2-氯苯酚(2-CP),3-氯苯酚(3-CP)和2,6-二氯苯酚(2,6-DCP)中以及在2-CP和2,6-DCP中观察到脱氯Shinji和Nakaumi沉积物分别。在不添加氯化钠和硫酸盐的情况下,在新治湖的沉积物中观察到了最高的活性,而在中海湖的沉积物中,在0.7%的氯化钠和6.0mM的硫酸钠下,活性最高。在产甲烷条件下,两种沉积物中的氯酚都通过苯酚降解为苯甲酸酯。苯甲酸盐从文化中消失了。所有微生物群落均富集了每个一氯酚脱氯的2-CP,但对二氯酚显示出不同的底物特异性,如下所示:富含2-CP的联合脱氯的2,3-二氯酚和2,6-DCP,富含3-CP的聚合对所有二氯酚进行脱氯异构体,以及富含4-氯苯酚的财团将2,4-二氯苯酚和2,6-DCP脱氯。建议在2-CP脱氯中通过呼吸作用维持种群。

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