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Evaluation of the in-situ aerobic cometabolism of chlorinated ethenes by toluene-utilizing microorganisms using push-pull tests

机译:利用推挽试验评估利用甲苯的微生物对氯乙烯的原位有氧代谢的评估

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A series of transport, biostimulation, and activity push-pull tests were performed under induced and natural gradient conditions in a trichloroethene (TCE) and cis-dichloroethene (c-DCE) contaminated aquifer. Transport tests demonstrated the feasibility of injecting and recovering complex solute mixtures from the aquifer. During the biostimulation tests, decreases in toluene concentration and the production of o-cresol as an intermediate oxidation product indicated the presence of toluene-utilizing microorganisms. Activity tests demonstrated that the stimulated microbial community had the ability to transform injected c-DCE and trans-dichloroethene (t-DCE) at similar zero-order rates. Injected isobutene was oxidized to isobutene oxide, which indicated that a toluene ortho-monooxygenase enzyme system was likely responsible for the observed c-DCE and t-DCE transformations. c-DCE zero-order transformation rates in drift push-pull tests were similar to those obtained from traditional push-pull tests (about 0.1 μM/h). Analysis of drift test data using first-order kinetic analysis resulted in similar conclusions as those obtained using zero-order kinetic analyses. When 1-butyne, an inhibitor of toluene ortho-monooxygenase, was added to injected test solutions, the oxidation of toluene, and the transformation of isobutene, c-DCE, and t-DCE were inhibited. The results illustrate how a series of push-pull tests can be used in combination to detect, quantify and confirm in-situ cometabolic microbial transformations.
机译:在三氯乙烯(TCE)和顺二氯乙烯(c-DCE)污染的含水层中,在诱导梯度和自然梯度条件下进行了一系列运输,生物刺激和活性推挽试验。运输测试证明了从含水层注入和回收复杂溶质混合物的可行性。在生物刺激试验中,甲苯浓度的降低和邻甲酚作为中间氧化产物的产生表明存在利用甲苯的微生物。活性测试表明,受刺激的微生物群落具有以相似的零级速率转化注入的c-DCE和反式二氯乙烯(t-DCE)的能力。注入的异丁烯被氧化为异丁烯氧化物,这表明甲苯原单加氧酶系统可能负责观察到的c-DCE和t-DCE转化。漂移推挽测试中的c-DCE零阶转换速率与传统推挽测试中的相似(约0.1μM/ h)。使用一阶动力学分析对漂移测试数据进行分析得出的结论与使用零阶动力学分析获得的结论相似。当将1-甲基丁香酮(甲苯原单加氧酶的抑制剂)添加到注入的测试溶液中时,甲苯的氧化以及异丁烯,c-DCE和t-DCE的转化都受到抑制。结果说明了如何将一系列推挽式测试组合使用,以检测,量化和确认原位代谢性微生物转化。

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