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Subsurface spatial heterogeneity and its effects on biodegradation rates and hydrocarbon plume behavior.

机译:地下空间异质性及其对生物降解率和烃羽行为的影响。

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摘要

Numerous field studies have demonstrated the intrinsic potential of subsurface microorganisms to degrade subsurface pollutants and affect the remediation of contaminated aquifers. The perception that the presence of microbes in the subsurface equates to compound biodegradation may be misleading, however, given the wide number of variables that influence biodegradation rates including the spatial variation in microbial populations and heterogeneity in solid and liquid-phase geochemistry. Thus, it is frequently difficult to duplicate field conditions in the laboratory and to be confident that the rates obtained in the laboratory are applicable to a field setting. The purpose of this research was to improve our ability to predict the rate and extent of contaminant biodegradation in the subsurface.; In the first component of this study, laboratory microcosms, field data, and split spoons were used to determine if in-situ benzene, toluene, ethylbenzene, and xylene (BTEX) biodegradation corresponded to field data. Results implied that geochemical data showing depletion of electron acceptors is not sufficient to demonstrate BTEX biodegradation.; The second component of this study used several computer simulations to examine the in-situ biodegradation of benzene and MTBE. Comparison of results to observed data suggest that although benzene and MTBE biodegradation may be approximated by simulation, the model output may severely over- or under-estimate downgradient compound concentrations, thereby, decreasing the effectiveness of the model in risk assessment.; Components three and four examined the use of a new type of in-situ column/sampler for the determination of in-situ biodegradation rates. Column results were compared to microcosm rates with some positive correlation. Microbial and geochemical studies were also performed on four split spoon samples, three outside of the in-situ columns and one inside a live column. Results showed substantial horizontal heterogeneity in microbial populations and sediment characteristics, although the parameters could not always be correlated with each other.; Overall, the results of this research highlight the unpredictable nature of the subsurface and the challenge of predicting compound biodegradation in a heterogeneous system.
机译:大量现场研究表明,地下微生物具有降解地下污染物并影响被污染含水层修复的内在潜力。然而,鉴于存在大量影响生物降解速率的变量,包括微生物种群的空间变化以及固相和液相地球化学的异质性,人们认为地下存在微生物等同于化合物的生物降解。因此,通常难以在实验室中复制现场条件,并且难以确信在实验室中获得的速率适用于现场设置。这项研究的目的是提高我们预测地下污染物生物降解速率和程度的能力。在本研究的第一部分中,实验室缩影,现场数据和分叉勺用于确定原位苯,甲苯,乙苯和二甲苯(BTEX)的生物降解是否与现场数据相对应。结果表明,地球化学数据显示电子受体的消耗不足以证明BTEX的生物降解。这项研究的第二部分使用了一些计算机模拟来检查苯和MTBE的原位生物降解。结果与观察到的数据的比较表明,尽管苯和MTBE的生物降解可通过模拟来近似,但模型输出可能严重高估或低估了降级化合物的浓度,从而降低了模型在风险评估中的有效性。第三部分和第四部分检查了使用新型原位色谱柱/进样器确定原位生物降解率的情况。色谱柱结果与缩影率进行了正相关。微生物和地球化学研究还对四个分离勺样品进行了研究,其中三个在原位柱外,一个在活柱内。结果表明,微生物种群和沉积物特征在水平方向上存在很大的异质性,尽管参数不一定总是相互关联的。总的来说,这项研究的结果突出了地下的不可预测性以及预测异质系统中化合物生物降解的挑战。

著录项

  • 作者

    Ress, Brenda Bonner.;

  • 作者单位

    North Carolina State University.;

  • 授予单位 North Carolina State University.;
  • 学科 Engineering Environmental.; Environmental Sciences.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 228 p.
  • 总页数 228
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境污染及其防治;环境科学基础理论;
  • 关键词

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