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Natural attenuation and enhanced bioremediation of organic contaminants in groundwater

机译:地下水中有机污染物的自然衰减和增强的生物修复

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An area of intense scientific and practical interest is the biogeochemical and microbial processes determining the success of natural attenuation, biostimulation and/or bioaugmentation treatments for organic contaminants in groundwater. Recent studies in this area have focused on the reductive dechlorination of chlorinated solvents, the degradation of the fuel additive methyl tert-butyl ether, and the removal of long-term hydrocarbon contamination. These studies have been facilitated by the use of stable isotope analysis to demonstrate in situ bioremediation and push-pull tests, in which isotopes are injected into aquifers and then quickly retrieved and analyzed, to measure in situ activity. Molecular tools such as quantitative PCR, the detection of mRNA expression, and numerous DNA fingerprinting methods have also proved valuable, being employed to identify and sometimes quantify environmentally important organisms or changes in communities. Methods to track bacteria and tools to characterize bacterial attachment properties have also offered insight into bacterial transport in situ.
机译:生物地球化学和微生物过程决定了对地下水中有机污染物的自然衰减,生物刺激和/或生物强化处理的成功与否,这是科学和实践关注的热点。该领域的最新研究集中于氯化溶剂的还原脱氯,燃料添加剂甲基叔丁基醚的降解以及长期烃污染的去除。通过使用稳定同位素分析来证明原位生物修复和推挽试验已经为这些研究提供了便利,其中将同位素注入含水层中,然后快速进行检索和分析,以测量原位活性。分子工具,例如定量PCR,mRNA表达的检测和多种DNA指纹方法,也被证明是有价值的,可用于识别和有时量化对环境重要的生物或群落的变化。跟踪细菌的方法和表征细菌附着特性的工具也提供了对细菌原位运输的了解。

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