首页> 外文期刊>Journal of Contaminant Hydrology >Estimating pathway-specific contributions to biodegradation in aquifers based on dual isotope analysis: Theoretical analysis and reactive transport simulations
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Estimating pathway-specific contributions to biodegradation in aquifers based on dual isotope analysis: Theoretical analysis and reactive transport simulations

机译:基于双同位素分析估算特定途径对含水层生物降解的贡献:理论分析和反应输运模拟

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At field sites with varying redox conditions, different redox-specific microbial degradation pathways contribute to total contaminant degradation. The identification of pathway-specific contributions to total contaminant removal is of high practical relevance, yet difficult to achieve with current methods. Current stable-isotope-fractionation-based techniques focus on the identification of dominant biodegradation pathways under constant environmental conditions. We present an approach based on dual stable isotope data to estimate the individual contributions of two redox-specific pathways. We apply this approach to carbon and hydrogen isotope data obtained from reactive transport simulations of an organic contaminant plume in a two-dimensional aquifer cross section to test the applicability of the method. To take aspects typically encountered at field sites into account, additional simulations addressed the effects of transverse mixing, diffusion-induced stable-isotope fractionation, heterogeneities in the flow field, and mixing in sampling wells on isotope-based estimates for aerobic and anaerobic pathway contributions to total contaminant biodegradation. Results confirm the general applicability of the presented estimation method which is most accurate along the plume core and less accurate towards the fringe where flow paths receive contaminant mass and associated isotope signatures from the core by transverse dispersion. The presented method complements the stable-isotope-fractionation-based analysis toolbox. At field sites with varying redox conditions, it provides a means to identify the relative importance of individual, redox-specific degradation pathways.
机译:在具有不同氧化还原条件的现场,不同的氧化还原特异性微生物降解途径会导致总污染物降解。鉴定特定途径对总污染物去除的贡献具有高度的实际意义,但是用现有方法很难实现。当前基于稳定同位素分级分离的技术着眼于在恒定环境条件下确定主要的生物降解途径。我们提出了一种基于双重稳定同位素数据的方法,以估算两种氧化还原特定途径的个体贡献。我们将此方法应用于通过二维含水层横截面中的有机污染物羽流的反应输运模拟获得的碳和氢同位素数据,以测试该方法的适用性。为了考虑到现场现场通常遇到的问题,附加的模拟解决了横向混合,扩散诱导的稳定同位素分馏,流场中的非均质性以及在基于同位素的好氧和厌氧途径贡献估计的采样井中混合的影响。总污染物的生物降解。结果证实了所提出的估算方法的一般适用性,该估算方法沿羽状岩心最准确,而向边缘的准确性较差,在该处流路通过横向弥散从岩心中获取污染物质量和相关的同位素特征。提出的方法补充了基于稳定同位素分级的分析工具箱。在具有不同氧化还原条件的野外站点,它提供了一种方法来识别单个氧化还原特异性降解途径的相对重要性。

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