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Cometabolism of methyl tert-butyl ether(MTBE)with alkanes

机译:甲基叔丁基醚(MTBE)与烷烃的新陈代谢

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The release of methyl tert-butyl ether(MTBE)to the environment,mainly from damaged gasoline underground storage tanks or distribution systems spills,has provoked extended groundwater pollution.Biological treatments are,in general,a good alternative for bioremediation of polluted sites;however,MTBE elimination from environment has constituted a challenge because of its chemical structure and physico-chemical properties.The combination of a stable ether link and the branched moiety hinder biodegradation.Initial studies found MTBE to be highly recalcitrant but,in the last decade,reports of its biodegradation have been published first under aerobic conditions and just recently under anaerobic conditions.Microbial MTBE degradation is characterized by bacteria having low growth rates(0.35 day~(-1))and biomass yields(average value 0.24 g biomass/g MTBE).Alternatively,cometabolism(defined as the transformation of a non-growth substrate in the obligate presence of a growth substrate),has been considered since it uncouples biodegradation of the contaminant from growth,reducing the long adaptation and propagation period.This period has been reported to be of several months in systems where it is degraded as sole carbon source.Cometabolic degradation rates are between 0.3 and 61 nmol/min/mg protein(in the same range of direct aerobic metabolism).However,a major concern in MTBE cometabolism is that the accumulation of tert-butyl alcohol(TBA)may,under certain cases,result in an incomplete site cleanup.This paper reviews in detail the implicated enzymes and field treatments for the cometabolism of MTBE degradation with alkanes as growth substrates.
机译:甲基叔丁基醚(MTBE)释放到环境中,主要是由损坏的汽油地下储罐或分配系统的溢出物引起的,对地下水的污染造成了广泛的污染。通常,生物处理是对污染场地进行生物修复的良好替代方法;但是, ,MTBE的化学结构和理化特性使其从环境中消除成为一个挑战。稳定的醚键和支链部分的结合阻碍了生物降解。最初的研究发现MTBE具有很高的抵抗力,但在最近十年中,有报道微生物MTBE降解的特征是细菌生长速度低(0.35天〜(-1))和生物量产量(平均值0.24 g生物量/ g MTBE)或者,代谢(定义为在生长底物专一存在下非生长底物的转化)此外,由于它使污染物的生物降解与生长解耦,减少了长的适应性和繁殖期。据报道,在该系统中,它作为唯一的碳源降解的代谢期为数月。代谢降解率在0.3至61 nmol / min / mg蛋白(在直接有氧代谢的同一范围内)。然而,MTBE代谢的一个主要问题是叔丁醇(TBA)的积累在某些情况下可能导致不完全的部位清理。本文详细回顾了涉及以烷烃为生长底物的MTBE降解代谢的相关酶和现场处理方法。

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