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BIODEGRADATION OF CHLORINATED PHENOLIC COMPOUNDS [Review]

机译:氯化酚类化合物的生物降解[综述]

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摘要

Chlorophenolic compounds are generated from a number of industrial manufacturing processes including pulp and paper manufacture. These compounds are found to be toxic and recalcitrant and hence their discharge into the environment must be regulated. Slow and partial degradation of chlorophenols under aerobic and anaerobic natural environment has been observed. Aerobic biodegradation of chlorophenols proceeds through the formation of catechols while under anaerobic conditions, reductive dehalogenation is the preferred metabolic pathway. Number and position of chlorine substituents on the phenolic ring has influence on the rate and extent of biodegradation of chlorophenols. In engineered systems, acclimatization of biomass to chlorophenols markedly enhances the biodegradation ability by reducing the initial lag phase and by countering inhibition. Partial removal of chlorophenols between 40-60% is usually observed in aerobic and anaerobic processes. Removal can be enhanced by a combination of aerobic and anaerobic operations.
机译:氯酚化合物是从包括纸浆和造纸在内的许多工业生产过程中产生的。发现这些化合物有毒且具有顽强性,因此必须控制其向环境中的排放。在需氧和厌氧的自然环境下,已观察到氯酚的缓慢和部分降解。氯酚的需氧生物降解过程通过儿茶酚的形成而进行,而在厌氧条件下,还原性脱卤是优选的代谢途径。酚环上氯取代基的数量和位置会影响氯酚生物降解的速率和程度。在工程系统中,通过减少初始滞后阶段和抵消抑制作用,生物质适应氯酚的能力显着增强了生物降解能力。在好氧和厌氧工艺中通常观察到部分去除40-60%的氯酚。有氧和厌氧操作相结合可以增强去除效果。

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