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Dynamics of hydrocarbon mineralization characterized by isotopic analysis at a jet-fuel-contaminated site in subtropical climate

机译:亚热带气候中喷射燃料污染部位同位素分析表征的烃矿化的动态

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摘要

Release of benzene, toluene, ethylbenzene, and xylene (BTEX) as components of the light non-aqueous phase liquids (LNAPL) contaminates soil and groundwater. Assessing the mechanisms of degradation and mineralization of BTEX in groundwater helps understand the migration of the dissolved plume, enabling the reduction of risks to humans. Here, we studied the fate of ethylbezene, m,p-xylenes and o-xylenes and the accompanying formation of methane in a Cenozoic lateritic aquifer in Brazil by compound-specific carbon stable isotope analysis (CSIA), to gain insights into the complex dynamics of release and biodegradation of BTEX in the LNAPL source zone. The enrichment of partial derivative C-13 in aromatic compounds dissolved in groundwater compared to the corresponding compounds in LNAPL indicate that CSIA can provide valuable information regarding biodegradation. The isotopic analysis of methane provides direct indication of oxidation mediated by aquifer oxygenation. The partial derivative C-13-CO2 values indicate methanogenesis prevailing at the border and aerobic biodegradation in the center of the LNAPL source zone. Importantly, the isotopic results allowed major improvements in the previously developed conceptual model, supporting the existence of oxic and anoxic environments within the LNAPL source zone.
机译:释放苯,甲苯,乙苯和二甲苯(BTEX)作为光非水相液体(LNAPL)的组分污染土壤和地下水。评估地下水中BTEX的降解和矿化机制有助于了解溶解羽流的迁移,从而降低对人类的风险。在这里,通过复合特异性碳稳定同位素分析(CSIA)研究了乙基苯甲酸乙烯,M,P-二甲苯和O-二甲苯的命运,甲烷在巴西的新生代外形含水层中的甲烷的形成,以获得复杂动态的见解LNAPL源区BTEX的释放与生物降解。与LNAPL中的相应化合物相比,溶解在地下水中的芳族化合物中的富集富集的氨基衍生物C-13表明CSIA可以提供有关生物降解的有价值的信息。甲烷的同位素分析提供了含水层氧合介导的氧化的直接指示。部分衍生物C-13-CO2值表明在LNAPL源区的中心的边界和有氧生物降解处存在甲烷化。重要的是,同位素结果允许在先前开发的概念模型中进行重大改进,支持LNAPL源区内的氧和缺氧环境的存在。

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