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在淡水、厌氧沉积物泥浆中,适应二氯苯酚的微生物对五氯苯酚进行区域特异性脱氯。

Regiospecific dechlorination of pentachlorophenol by dichlorophenol-adapted microorganisms in freshwater, anaerobic sediment slurries.

作者信息

Bryant F O, Hale D D, Rogers J E

机构信息

Technology Applications, Inc., Athens, Georgia.

出版信息

Appl Environ Microbiol. 1991 Aug;57(8):2293-301. doi: 10.1128/aem.57.8.2293-2301.1991.

DOI:10.1128/aem.57.8.2293-2301.1991
PMID:1768102
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC183566/
Abstract

The reductive dechlorination of pentachlorophenol (PCP) was investigated in anaerobic sediments that contained nonadapted or 2,4- or 3,4-dichlorophenol (DCP)-adapted microbial communities. Adaptation of sediment communities increased the rate of conversion of 2,4- or 3,4-DCP to monochlorophenols (CPs) and eliminated the lag phase before dechlorination was observed. Both 2,4- and 3,4-DCP-adapted sediment communities dechlorinated the six DCP isomers to CPs. The specificity of chlorine removal from the DCP isomers indicated a preference for ortho-chlorine removal by 2,4-DCP-adapted sediment communities and for para-chlorine removal by 3,4-DCP-adapted sediment communities. Sediment slurries containing nonadapted microbial communities either did not dechlorinate PCP or did so following a lag phase of at least 40 days. Sediment communities adapted to dechlorinate 2,4- or 3,4-DCP dechlorinated PCP without an initial lag phase. The 2,4-DCP-adapted communities initially removed the ortho-chlorine from PCP, whereas the 3,4-DCP-adapted communities initially removed the para-chlorine from PCP. A 1:1 mixture of the adapted sediment communities also dechlorinated PCP without a lag phase. Dechlorination by the mixture was regiospecific, following a para greater than ortho greater than meta order of chlorine removal. Intermediate products of degradation, 2,3,5,6-tetrachlorophenol, 2,3,5-trichlorophenol, 3,5-DCP, 3-CP, and phenol, were identified by a combination of cochromatography (high-pressure liquid chromatography) with standards and gas chromatography-mass spectrometry.

摘要

在含有未适应或适应2,4 - 二氯苯酚(DCP)或3,4 - 二氯苯酚的微生物群落的厌氧沉积物中,研究了五氯苯酚(PCP)的还原脱氯过程。沉积物群落的适应提高了2,4 - DCP或3,4 - DCP向单氯苯酚(CPs)的转化速率,并消除了脱氯前的滞后期。适应2,4 - DCP和3,4 - DCP的沉积物群落都将六种DCP异构体脱氯为CPs。从DCP异构体中去除氯的特异性表明,适应2,4 - DCP的沉积物群落优先去除邻位氯,而适应3,4 - DCP的沉积物群落优先去除对位氯。含有未适应微生物群落的沉积物悬浮液要么不使PCP脱氯,要么在至少40天的滞后期后才脱氯。适应脱氯2,4 - DCP或3,4 - DCP的沉积物群落能使PCP脱氯而无初始滞后期。适应2,4 - DCP的群落最初从PCP中去除邻位氯,而适应3,4 - DCP的群落最初从PCP中去除对位氯。适应的沉积物群落的1:1混合物也能使PCP脱氯而无滞后期。混合物的脱氯具有区域特异性,遵循对位大于邻位大于间位的氯去除顺序。通过与标准品共色谱(高压液相色谱)和气相色谱 - 质谱联用,鉴定了降解的中间产物2,3,5,6 - 四氯苯酚、2,3,5 - 三氯苯酚、3,5 - DCP、3 - CP和苯酚。

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本文引用的文献

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In Situ Depletion of Pentachlorophenol from Contaminated Soil by Phanerochaete spp.菌根真菌 Phanerochaete spp. 原位去除污染土壤中的五氯苯酚
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