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首页> 外文期刊>Environmental Science & Technology >Modeling the Dynamics of Fermentation and Respiratory Processes in a Groundwater Plume of Phenolic Contaminants Interpreted from Laboratory- to Field-Scale
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Modeling the Dynamics of Fermentation and Respiratory Processes in a Groundwater Plume of Phenolic Contaminants Interpreted from Laboratory- to Field-Scale

机译:模拟从实验室到现场规模解释的地下水中含酚污染物的羽状流中发酵和呼吸过程的动力学

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摘要

A biodegradation model with consecutive fermentation and respiration processes,developed from microcosm experiments and simulated mathematically with microbial growth kinetics,has been implemented into a field-scale reactive transport model of a groundwater plume of phenolic contaminants.Simulation of the anaerobic plume core with H_2 and acetate as intermediate products of biodegradation allows the rates and parameter values for fermentation processes and individual respiratory terminal electron accepting processes (TEAPS) to be estimated using detailed,spatially discrete,hydrochemical field data.The modeling of field-scale plume development includes consideration of microbial acclimatization,substrate toxicity toward degradation,bioavailability of mineral oxides,and adsorption of biogenic Fe(II) species in the aquifer,identified from complementary laboratory process studies.The results suggest that plume core processes,particularly fermentation and Fe(III)-reduction,are more important for degradation than previously thought,possibly with a greater impact than plume fringe processes (aerobic respiration,denitrification,and SO_4-reduction).The accumulation of acetate as a fermentation product within the plume contributes significantly to the mass balance for carbon.These results demonstrate the value of quantifying fermentation products within organic contaminant plumes and strongly suggest that the conceptual model selected for reactive processes plays a dominant role in the quantitative assessment of risk reduction by naturally occurring biodegradation processes.
机译:通过微观实验和微生物生长动力学数学模拟,建立了具有连续发酵和呼吸过程的生物降解模型,并将其应用于酚类污染物地下水羽流的现场规模反应性迁移模型。乙酸盐作为生物降解的中间产物,可以使用详细的,空间离散的水化学数据来估算发酵过程和单个呼吸末电子接受过程(TEAPS)的速率和参数值。田间羽状流发育的模型包括对微生物的考虑通过补充的实验室过程研究确定,该层的驯化,底物对降解的毒性,矿物氧化物的生物利用度以及生物源性Fe(II)物种的吸附均通过补充的实验室过程研究确定。结果表明,羽流核心过程,特别是发酵和Fe(III)还原,更重要t的降解比以前想象的要大,可能比烟羽的边缘过程(有氧呼吸,反硝化和SO_4-还原)的影响更大。烟羽中发酵产物乙酸盐的积累对碳的质量平衡有重要贡献。证明量化有机污染物羽流中发酵产物的价值,并强烈建议为反应过程选择的概念模型在通过自然发生的生物降解过程降低风险的定量评估中起主要作用。

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  • 来源
    《Environmental Science & Technology》 |2005年第22期|p.8829-8839|共11页
  • 作者单位

    Groundwater Protection and Restoration Group,Department of Civil and Structural Engineering,University of Sheffield,Mappin Street,Sheffield S1 3JD,United Kingdom,and Department of Hydrogeology (HDG),UFZ Centre for Environmental Research Leipzig-Halle;

    Groundwater Protection and Restoration Group,Department of Civil and Structural Engineering,University of Sheffield,Mappin Street,Sheffield S1 3JD,United Kingdom,and Department of Hydrogeology (HDG),UFZ Centre for Environmental Research Leipzig-Halle;

    Groundwater Protection and Restoration Group,Department of Civil and Structural Engineering,University of Sheffield,Mappin Street,Sheffield S1 3JD,United Kingdom,and Department of Hydrogeology (HDG),UFZ Centre for Environmental Research Leipzig-Halle;

    Groundwater Protection and Restoration Group,Department of Civil and Structural Engineering,University of Sheffield,Mappin Street,Sheffield S1 3JD,United Kingdom,and Department of Hydrogeology (HDG),UFZ Centre for Environmental Research Leipzig-Halle;

    Groundwater Protection and Restoration Group,Department of Civil and Structural Engineering,University of Sheffield,Mappin Street,Sheffield S1 3JD,United Kingdom,and Department of Hydrogeology (HDG),UFZ Centre for Environmental Research Leipzig-Halle;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境化学;
  • 关键词

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