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Enhancement of Co-Metabolism of Chlorobenzoates by the Co-Substrate Enrichment Technique

机译:通过共底物富集技术增强氯苯甲酸酯的共代谢

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Chlorinated benzoates were degraded by bacteria contained in an activated sludge inoculum by a co-metabolic mechanism. This decomposition began after an initial lag period of 4 days and accounted for 63 to 69% degradation in 28 days. The co-substrate enrichment technique, using glucose as co-substrate, increased both the rate of microbial decomposition of the benzoates and the total amount of substituted aromatic compounds degraded.
机译:氯化苯甲酸根被代谢污泥中的细菌通过代谢机制降解。最初的滞后4天后,此分解开始,并在28天内造成了63%至69%的降解。使用葡萄糖作为共底物的共底物富集技术既提高了苯甲酸盐的微生物分解速度,又提高了降解的取代芳族化合物的总量。

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