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Assessment of microbial natural attenuation in groundwater polluted with gasworks residues

机译:评估煤气厂残留物污染的地下水中微生物的自然衰减

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Intrinsic biodegradation, representing the key process in Natural Attenuation, was examined at a tar-oil polluted disposal site. Methods to assess microbial natural attenuation of BTEX and PAH included analysis of groundwater hydrochemistry, pollutant profiles, composition of the micrpflora, and microcosm studies. In the polluted groundwater downgradient the disposal site, oxygen and nitrate were only available adjacent to the groundwater table and at the plume fringes. In the anaerobic core of the plume, a sequence of predominating redox zones (methanogenic, sulphate-reducing, Fe(Ⅲ)-reducing) was observed. Changing pollutant profiles in the plume indicated active biodegradation processes, e.g. biodegradation of toluene and naphthalene in the anaerobic zones. High numbers of microorganisms capable of growing under anaerobic conditions and of aerobic pollutant degrading organisms confirmed the impact of biodegradation at this site. In microcosm studies, the autochthonous microflora utilised toluene, ethylbenzene, and naphthalene under sulfate- and Fe(Ⅲ)-reducing conditions. Additionally, benzene and phenanthrene were degraded in the presence of Fe(Ⅲ). Under aerobic conditions, all BTEX and PAH were rapidly degraded. The microcosm studies in particular were suitable to examine the role of specific electron acceptors, and represented an important component of the multiple line of evidence concept to assess natural attenuation.
机译:代表自然衰减的关键过程的内在生物降解在焦油污染的处置场所进行了检查。评估BTEX和PAH的微生物自然衰减的方法包括分析地下水水化学,污染物概况,麦科植物的组成以及微观研究。在受污染的地下水下降梯度中,处置地点的氧气和硝酸盐仅在地下水位附近和羽状边缘处可用。在羽流的厌氧核心中,观察到一系列主要的氧化还原带(甲烷生成,硫酸盐还原,铁(Ⅲ)还原)。羽流中污染物分布的变化表明生物降解过程活跃,例如厌氧区中甲苯和萘的生物降解。能够在厌氧条件下生长的大量微生物和降解需氧污染物的生物证实了该地点生物降解的影响。在微观研究中,土生菌群在硫酸盐和铁(Ⅲ)还原条件下利用甲苯,乙苯和萘。此外,在Fe(Ⅲ)存在下苯和菲被降解。在有氧条件下,所有BTEX和PAH均迅速降解。微观研究特别适合检查特定电子受体的作用,并且代表了评估自然衰减的多证据概念的重要组成部分。

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