首页> 美国卫生研究院文献>Applied and Environmental Microbiology >The anaerobic degradation of 3-chloro-4-hydroxybenzoate in freshwater sediment proceeds via either chlorophenol or hydroxybenzoate to phenol and subsequently to benzoate.
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The anaerobic degradation of 3-chloro-4-hydroxybenzoate in freshwater sediment proceeds via either chlorophenol or hydroxybenzoate to phenol and subsequently to benzoate.

机译:淡水沉积物中的3-氯-4-羟基苯甲酸酯的厌氧降解通过氯酚或羟基苯甲酸酯进行直至苯酚然后变为苯甲酸酯。

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摘要

To study the anaerobic degradation of the chimera 3-chloro-4-hydroxybenzoate (3-Cl,4-OHB), anaerobic freshwater sediment samples from the vicinity of Athens, Ga., were adapted for the transformation of 4-hydroxybenzoate (4-OHB), 3-chlorobenzoate (3-CB), 2-chlorophenol (2-CP), and 2,4-dichlorophenol (2,4-DCP). In nonadapted samples, both 4-OHB (product of aryl dechlorination) and 2-CP (product of aryl decarboxylation) were observed as intermediates in the transformation of 3-Cl,4-OHB to phenol. The accumulated phenol was subsequently transformed to benzoate, an intermediate in the conversion to methane and CO2. In 4-OHB-adapted samples (i.e., samples adapted for aryl decarboxylation), 2-CP was the first intermediate which was subsequently dechlorinated to phenol. In 3-CB-adapted samples (i.e., samples adapted for meta-chlorobenzoate dehalogenation), 3-Cl,4-OHB was stoichiometrically dechlorinated to 4-OHB. In 2-CP-adapted samples (i.e., samples adapted for ortho-chlorophenol dehalogenation), 4-OHB was the first major intermediate. Furthermore, 3-CB was not dechlorinated in 2-CP-adapted sediment samples, suggesting the possibility that different 3-Cl,4-OHB dechlorinating systems were induced in the 2-CP- and 3-CB-adapted sediments. Adaptation of sediment samples for dechlorination of 2,4-DCP did not lead to adaptation for dechlorination of 3-Cl,4-OHB. However, 3-Cl,4-OHB was dechlorinated to 4-OHB in our stable, sediment-free 2,4-DCP-dechlorinating enrichment, isolated previously from the same environment.(ABSTRACT TRUNCATED AT 250 WORDS)
机译:为了研究3-氯-4-羟基苯甲酸酯嵌合物(3-Cl,4-OHB)的厌氧降解,将佐治亚州雅典附近的厌氧淡水沉积物样品用于4-羟基苯甲酸酯的转化(4- OHB),3-氯苯甲酸酯(3-CB),2-氯苯酚(2-CP)和2,4-二氯苯酚(2,4-DCP)。在不适合的样品中,观察到4-OHB(芳基脱氯产物)和2-CP(芳基脱羧产物)是3-Cl,4-OHB转化为苯酚的中间体。随后将积累的苯酚转化为苯甲酸酯,这是转化为甲烷和二氧化碳的中间体。在适应4-OHB的样品(即适合芳基脱羧的样品)中,2-CP是第一个中间体,随后被脱氯成苯酚。在适用于3-CB的样品(即适用于间氯苯甲酸酯脱卤的样品)中,化学计量将3-Cl,4-OHB脱氯成4-OHB。在适应2-CP的样品(即适合邻氯苯酚脱卤的样品)中,4-OHB是第一个主要中间体。此外,在适应2-CP的沉积物样品中未对3-CB进行脱氯,这表明在适应2-CP和3-CB的沉积物中可能会诱导出不同的3-Cl,4-OHB脱氯系统。沉积物样品对2,4-DCP脱氯的适应性并未导致对3-Cl,4-OHB脱氯的适应性。但是,在我们之前从未在相同环境中分离过的稳定,无沉淀的2,4-DCP脱氯浓缩中,3-Cl,4-OHB被脱氯为4-OHB(摘要以250字截断)

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