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Rate Controlling Processes in the Transformation of Tetrachloroethylene and Carbon Tetrachloride under Iron Reducing and Sulfate Reducing Conditions

机译:铁乙烯转化中的速率控制过程在铁还原下的四氯乙烯和四氯化碳中的变化和硫酸盐还原条件

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While in situ dechlorination of chlorinated aliphatic contaminants such as tetrachloroethylene (PCE) and carbon tetrachloride (CT) has been studied extensively, rate controlling processes in the transformation of these compounds remain uncertain. The objectives of this work were (1) to compare the relative rates of abiotic and microbial transformation of PCE and CT in microcosms designed to simulate natural conditions, and (2) for CT, to measure the relative rates of reactive mineral formation and CT transformation by these reactive minerals. While the rates of microbial dechlorination exceeded the rates of abiotic dechlorination of PCE in the microcosms, the opposite trend was observed for CT. The times required for microbial sulfate reduction, the first step in formation of many reactive minerals, were significantly longer than those required for transformation of CT by these reactive minerals, indicating possible rate control of abiotic CT transformation by microbial respiration under natural conditions.
机译:在广泛地研究了氯化丙族污染物的氯化脂族污染物(PCE)和四氯化碳(CT)的原位脱氯,因此这些化合物的转化中的速率控制过程仍然不确定。这项工作的目标是(1),比较PCE和CT在旨在模拟自然条件的微观和CT中的非生物和微生物转化的相对速率,并测量反应性矿物质形成和CT转化的相对速率通过这些反应性矿物质。虽然微生物脱氯的速率超过了微观PCE中非生物脱氯的速率,但对于CT而言,观察到相反的趋势。微生物硫酸盐还原所需的时间,形成许多反应性矿物的第一步,这些反应性矿物的转化所需的第一步,表明在自然条件下通过微生物呼吸的非生物CT转化的可能速率控制。

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