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首页> 外文期刊>Journal of hazardous, toxic and radioactive waste >Application of Emulsified Substrate Biobarrier to Remediate TCE-Contaminated Groundwater: Pilot-Scale Study
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Application of Emulsified Substrate Biobarrier to Remediate TCE-Contaminated Groundwater: Pilot-Scale Study

机译:乳化基质生物屏障在修复受TCE污染的地下水中的应用:中试研究

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Groundwater at many existing and former industrial areas and disposal sites is contaminated by halogenated organic compounds that were released into the environment. One cost-effective approach for the remediation of the chlorinated solvent contaminated aquifers is the installation of biobarriers within aquifers. The objective of this study was to assess the potential of using an in situ biobarrier system containing the emulsified substrate (ES) to bioremediate and contain the trichloroethylene (TCE) plume. The ES contained soybean oil, lactate, biodegradable surfactant, and nutrients, and thus it was able to provide carbon sources for the enhancement of the reductive dech-lorination of TCE. A field-scale study was operated at a TCE-contaminated site, and 150 L of ES solution was pressure-injected into three remediation wells located in the upgradient area of the plume to form a biobarrier. Results show that the total organic carbon (TOC) went up from 12 mg/L (before ES injection) to 9,800 mg/L after 45 days of ES injection, and slowly declined to 1,500 mg/L after 230 days of operation. The increased TOC caused the complete consumption of groundwater dissolved oxygen in the injection wells (dropped from 0.6 to 0 mg/L) after 5 days of the ES injection. Results also show that the TCE concentrations dropped from 140 to below 1 μg/L after 10 days of ES injection in the biobarrier. The TCE degradation byproducts [e.g., 1,1-dichloroethene (1,1-DCE), vinyl chloride (VC)] were also observed in the injection and downgradient monitor wells. Results of microbial analyses show that various TCE-degrading bacteria exist in the subsurface, including Ralstonia sp., Clostridium sp., uncultured Burkholderiales bacterium, Hydrogenophaga sp., Acidovorax sp., Hydrocarboniphaga sp., uncultured Curvibacter sp., Pseudomonas sp., Comamonas sp., Aquabacterium sp., and Variovorax strains. Results indicate that the injected ES enhanced the anaerobic dechlorination of TCE, and the developed biobarrier could contain the TCE plume effectively. The biobarrier has the potential to be developed into an environmentally and economically acceptable remedial system.
机译:许多现有和以前的工业区和处置场所的地下水都被释放到环境中的卤化有机化合物污染。补救被氯溶剂污染的含水层的一种经济有效的方法是在含水层中安装生物屏障。这项研究的目的是评估使用包含乳化底物(ES)的原位生物屏障系统进行生物修复和包含三氯乙烯(TCE)羽流的潜力。 ES包含大豆油,乳酸,可生物降解的表面活性剂和营养素,因此它能够提供碳源以增强TCE的还原脱氯作用。在受TCE污染的地点进行了现场规模的研究,并将150 L的ES溶液压力注入位于羽流上升区域的三个修复井中,以形成生物屏障。结果显示,ES注射45天后,总有机碳(TOC)从12 mg / L(ES注射前)上升至9,800 mg / L,而在230天的操作后缓慢下降至1,500 mg / L。 ES注入5天后,TOC的增加导致注入井中地下水溶解氧的完全消耗(从0.6降至0 mg / L)。结果还显示,在生物屏障中注入ES 10天后,TCE浓度从140降至1μg/ L以下。在注入和降级监测井中还观察到了三氯乙烯降解副产物[例如1,1-二氯乙烯(1,1-DCE),氯乙烯(VC)]。微生物分析结果表明,地下存在多种降解TCE的细菌,包括Ralstonia菌,Clostridium菌,未培养的Burkholderiales细菌,Hydrogenophaga菌,Acidovorax菌,Hydrocarboniphaga菌,未培养的弯曲杆菌,假单胞菌等。 Comamonas sp。,Aquabacterium sp。和Variovorax菌株。结果表明,注入的ES增强了TCE的厌氧脱氯作用,并且开发的生物屏障可以有效地包含TCE羽流。生物屏障有可能发展为环境和经济上可接受的补救系统。

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