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PRINCIPAL COMPONENT ANALYSES OF GROUNDWATER CHEMISTRY DATA DURING ENHANCED BIOREMEDIATION

机译:强化生物修复过程中地下水化学数据的主要成分分析

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A bioremediation project has been monitored for two years at a former sour gas plant site that had ethanolamine, glycol and their degradation products in the subsurface. The active enhanced bioremediation program consisted of dewatering and bioventing. An extensive groundwater monitoring program mapped the distribution of chemical species. Principal component analysis was used to help organize and interpret the chemical analysis. Three principal components accounted for 75% of the variability in the data. The first component separated contaminated waters from background. The second component indicated aerobic versus anaerobic conditions and the third component was indicative of the accumulation of nitrogen compounds. The site is extremely heterogeneous with preferential pathways due to fractures, sand lenses and a fractured horizontal well. In addition the source and contaminated areas are very heterogeneous. The PCA shows drastically different geochemical conditions residing within relatively small areas. The study site can be conceptualized as a series of small, meter-scale sized reactors that interact and mix due to preferential flow paths and diffusion. The evolution of the chemistry shows that the bioremediation process is successfully removing acetic acid, and it is becoming more aerobic. Enhanced infiltration in the process area is slowly removing the source and degradation products.
机译:一个生物修复项目已经在一个以前的酸性煤气厂现场进行了两年的监测,该工厂地下有乙醇胺,乙二醇及其降解产物。积极的强化生物修复计划包括脱水和生物通风。广泛的地下水监测计划绘制了化学物种的分布图。主成分分析用于帮助组织和解释化学分析。三个主要成分占数据变异性的75%。第一部分将受污染的水与背景分离。第二部分表示有氧条件与厌氧条件,第三部分表示氮化合物的积累。由于裂缝,沙透镜和水平井的裂缝,该位置非常不均匀,具有优先通道。此外,源区和受污染区非常不同。 PCA显示位于相对较小区域内的完全不同的地球化学条件。可以将研究现场概念化为一系列小型,米级反应器,这些反应器由于优先的流动路径和扩散而相互作用和混合。化学的发展表明,生物修复过程已成功去除乙酸,并且变得越来越有氧。工艺区域中渗透的增强正在缓慢地去除源和降解产物。

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