首页> 外文期刊>Remediation: The Journal of Environmental Cleanup Costs, Technologies & Techniques >Rapid Cleanup of Chlorinated Solvent Source Zones: Synergies Between Chemical and Biological Degradation
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Rapid Cleanup of Chlorinated Solvent Source Zones: Synergies Between Chemical and Biological Degradation

机译:快速清除氯化溶剂源区:化学降解与生物降解之间的协同作用

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摘要

A chlorinated volatile organic compound (cVOC) source area approximately 25 by 100 ft in a heavily industrialized urban area was characterized with groundwater tetrachloroethene (PCE) concentrations up to 9,180 μg/L. This is approximately 6 percent of PCE's aqueous solubility, indicative of the presence of residual dense, nonaqueous phase liquid. The resulting dissolved-phase plume migrated off-site. Biotic and abiotic dechlorination using a combination of a food-grade organic carbon-based electron donor and zero-valent iron suspended in a food-grade emulsifying agent reduced the source area PCE concentrations by 98 percent within 27 weeks, with minimal downgradient migration of daughter products dichloroethene and vinyl chloride. Combining biological dechlorination with iron-based chemical dechlorination is synergistic, enhancing treatment aggressiveness, balancing pH, and optimizing degradation of both DNAPL and dissolved-phase cVOCs.
机译:在工业化程度很高的城市地区,大约25 x 100英尺的氯化挥发性有机化合物(cVOC)源区域的特征是地下水中的四氯乙烯(PCE)浓度高达9,180μg/ L。这大约是PCE水溶性的6%,表明存在残留的致密,非水相液体。产生的溶解相羽流迁移到异地。使用食品级有机碳基电子供体和悬浮在食品级乳化剂中的零价铁的组合进行生物和非生物脱氯,可在27周内将源区域PCE浓度降低98%,并且使子代的向下迁移最小化产品二氯乙烯和氯乙烯。将生物脱氯与铁基化学脱氯相结合具有协同作用,增强了处理积极性,平衡了pH值,并优化了DNAPL和溶解相cVOC的降解。

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