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Substrate Interaction during Aerobic Biodegradation of Creosote-Related Compounds: A Factorial Batch Experiment

机译:杂酚酸相关化合物的有氧生物降解过程中的底物相互作用:分批实验

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摘要

The interactions among seven creosote-related compounds (phenanthrene, fluorene, p-cresol, pen-tachlorophenol, carbazole, dibenzothiophene, and dibenzofuran) during their aerobic biodegradation in groundwater were studied in factorial experiments. Three separate experiments were conducted in simple batch systems with phenanthrene, p-cresol, and carbazole as the response variable for the first, second, and third experiments, respectively, and other compounds as factors. In general, the more hydrophobic and recalcitrant compounds were more affected by substrate interaction. Mineralization of p-cresol was not affected by substrate interaction. In contrast, p-cresol inhibited mineralization of phenanthrene, but other compounds did not. Mineralization of carbazole was severely affected by the presence of other compounds. p-Cresol was the main inhibitor. Phenanthrene inhibited biodegradation, but to a lesser extent, whereas fluorene enhanced mineralization of carbazole. Pentachlorophenol and dibenzofuran caused an increase in the lag time but did not affect mineralization of carbazole afterward.
机译:在析因实验中研究了七种与杂酚油有关的化合物(菲,芴,对甲酚,五氯酚,咔唑,二苯并噻吩和二苯并呋喃)之间的相互作用。在简单的分批系统中进行了三个单独的实验,分别以菲,对甲酚和咔唑作为第一,第二和第三次实验的响应变量,并以其他化合物作为因子。通常,疏水性和难降解性化合物受底物相互作用的影响更大。对甲酚的矿化不受底物相互作用的影响。相反,对甲酚抑制了菲的矿化,而其他化合物则没有。咔唑的矿化受到其他化合物的存在的严重影响。对甲酚是主要的抑制剂。菲抑制生物降解,但程度较小,而芴可增强咔唑的矿化作用。五氯苯酚和二苯并呋喃导致滞后时间增加,但随后不影响咔唑的矿化。

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