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Assessment of enhancement in biodegradation of dichlorodiethyl ether (DCDE) by pre-oxidation

机译:通过预氧化增强二氯二乙醚(DCDE)生物降解的评估

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The objective of this study is to assess the enhancement in biodegradation of dichlorodiethyl ether (DCDE) by ozonation and Fenton treatment. Acclimated and non-acclimated sludge cultures were used to test the biodegradability of the preoxidized DCDE solutions by three different tests: Short-term and long-term respirometry through continuous monitoring of oxygen consumption, and the mid-term test in which the amount of remaining organic matter was measured by TOC and COD tests. These tests were applied to solutions of DCDE preoxidized at the levels of 25%, 50%, 75%, and 100%. The results indicated that the biodegradability of oxidized DCDE solutions improved substantially compared to non-oxidized solutions. Fenton-treated DCDE exhibited toxicity to microorganisms under long-term exposure. Higher levels of preoxidation of DCDE led to mineralization of larger amounts of organic matter during subsequent biodegradation. There was no significant difference in the rate of biodegradation of oxidized products by either acclimated or non-acclimated bacteria.
机译:这项研究的目的是评估臭氧化和芬顿处理对二氯二乙醚(DCDE)生物降解的促进作用。通过三种不同的测试,使用经驯化和未经驯化的污泥培养物来测试预氧化的DCDE溶液的生物降解性:通过连续监测耗氧量进行的短期和长期呼吸测定法,以及其中残留量为零的中期测试有机物通过TOC和COD测试进行测量。这些测试应用于浓度为25%,50%,75%和100%的DCDE预氧化溶液。结果表明,与未氧化的溶液相比,氧化的DCDE溶液的生物降解性得到了显着改善。 Fenton处理的DCDE在长期暴露下对微生物表现出毒性。 DCDE的较高预氧化水平会导致随后的生物降解过程中大量有机物矿化。驯化或未驯化的细菌对氧化产物的生物降解速率均无显着差异。

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