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Aerobic bacterial transformation and biodegradation of dioxins: a review

机译:有氧细菌转化和二恶英生物降解:综述

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Waste generation tends to surge in quantum as the population and living conditions grow. A group of structurally related chemicals of dibenzofurans and dibenzo-p-dioxins including their chlorinated congeners collectively known as dioxins are among the most lethal environmental pollutants formed during different anthropogenic activities. Removal of dioxins from the environment is challenging due to their persistence, recalcitrance to biodegradation, and prevalent nature. Dioxin elimination through the biological approach is considered both economically and environmentally as a better substitute to physicochemical conventional approaches. Bacterial aerobic degradation of these compounds is through two major catabolic routes: lateral and angular dioxygenation pathways. Information on the diversity of bacteria with aerobic dioxin degradation capability has accumulated over the years and efforts have been made to harness this fundamental knowledge to cleanup dioxin-polluted soils. This paper covers the previous decades and recent developments on bacterial diversity and aerobic bacterial transformation, degradation, and bioremediation of dioxins in contaminated systems.
机译:随着人口和生活条件的增长,废物产生往往会激增量子。一组结构相关的二苯并呋喃和二苯甲酸二恶英的化学品,包括其氯化同切为二恶英,是在不同人为活性期间形成的最致命的环境污染物中。由于它们的持久性,普遍存在的持续性,以及普遍的性质,从环境中取出挑战性是挑战性的。通过生物学方法消除二恶英的消除被认为是经济和环保的,作为更好的替代物理化学传统方法。这些化合物的细菌需氧降解是通过两个主要的分解代谢途径:横向和角度的二氧化途径。关于具有有氧二恶英降解能力的细菌多样性的信息已经积累了多年来,并努力利用这种基本知识来清除二恶英污染的土壤。本文涵盖了前几十年和污染系统中二恶英的细菌多样性和有氧细菌转化,降解和生物修复的最新发展。

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