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New Bio-Indicators for Long Term Natural Attenuation of Monoaromatic Compounds in Deep Terrestrial Aquifers

机译:陆地深层含水层中单芳族化合物长期自然衰减的新生物指标

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摘要

Deep subsurface aquifers despite difficult access, represent important water resources and, at the same time, are key locations for subsurface engineering activities for the oil and gas industries, geothermal energy, and CO2 or energy storage. Formation water originating from a 760 m-deep geological gas storage aquifer was sampled and microcosms were set up to test the biodegradation potential of BTEX by indigenous microorganisms. The microbial community diversity was studied using molecular approaches based on 16S rRNA genes. After a long incubation period, with several subcultures, a sulfate-reducing consortium composed of only two Desulfotomaculum populations was observed able to degrade benzene, toluene, and ethylbenzene, extending the number of hydrocarbonoclastic–related species among the Desulfotomaculum genus. Furthermore, we were able to couple specific carbon and hydrogen isotopic fractionation during benzene removal and the results obtained by dual compound specific isotope analysis (𝜀C = -2.4‰ ± 0.3‰; 𝜀H = -57‰ ± 0.98‰; AKIEC: 1.0146 ± 0.0009, and AKIEH: 1.5184 ± 0.0283) were close to those obtained previously in sulfate-reducing conditions: this finding could confirm the existence of a common enzymatic reaction involving sulfate-reducers to activate benzene anaerobically. Although we cannot assign the role of each population of Desulfotomaculum in the mono-aromatic hydrocarbon degradation, this study suggests an important role of the genus Desulfotomaculum as potential biodegrader among indigenous populations in subsurface habitats. This community represents the simplest model of benzene-degrading anaerobes originating from the deepest subterranean settings ever described. As Desulfotomaculum species are often encountered in subsurface environments, this study provides some interesting results for assessing the natural response of these specific hydrologic systems in response to BTEX contamination during remediation projects.
机译:尽管难以通行,但深层地下蓄水层代表着重要的水资源,同时也是石油和天然气行业,地热能以及CO2或能量存储的地下工程活动的关键场所。采样了来自760 m深地质储气层的地层水,并建立了微观世界,以测试BTEX被本地微生物降解的潜力。使用基于16S rRNA基因的分子方法研究了微生物群落多样性。经过长时间的潜伏期和几个亚培养,观察到仅由两个Desulfotomaculum种群组成的硫酸盐还原财团能够降解苯,甲苯和乙苯,从而扩大了Desulfotomaculum属中与烃碎屑有关的物种的数量。此外,我们能够将苯去除过程中的特定碳和氢同位素分馏与双化合物特异性同位素分析获得的结果耦合起来(𝜀 C = -2.4‰±0.3‰;𝜀 H = -57‰± 0.98‰; AKIEC:1.0146±0.0009和AKIEH:1.5184±0.0283)与以前在硫酸盐还原条件下获得的结果接近:这一发现可以证实存在一种常见的酶促反应,该反应涉及硫酸盐还原剂来厌氧活化苯。尽管我们无法确定Desulfotomaculum的每个种群在单芳烃降解中的作用,但这项研究表明Desulfotomaculum属作为地下生境中土著人群中潜在的生物降解剂的重要作用。该群落代表了有史以来最深的地下环境中最简单的苯降解厌氧菌模型。由于Desulfotomaculum物种经常在地下环境中遇到,因此本研究提供了一些有趣的结果,可用于评估这些特殊水文系统在修复项目中对BTEX污染的自然响应。

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