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A critical comparison of respirometric biodegradation tests based on OECD 301 and related test methods

机译:基于OECD 301和相关测试方法的呼吸生物降解测试的关键比较

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Biodegradation studies of organic compounds in the aquatic environment gain important information for the final fate of chemicals in the environment. A decisive role play tests for ready biodegradability (OECD 301) and in this context, the respirometric test (OECD 301F). Two different respirometric systems (Oxitop~R and Sapromat~R) were compared and in two of ten cases (diethylene glycol and 2-ethylhexylacrylate) differences were observed indicating that the test systems are not always equivalent. For 2-ethylhexylacrylate and cyclohexanone we could not state differences in the extent of biodegradation with a municipal and industrial inoculum whereas for cyclohexanone the degradation rate was faster with a municipal inoculum. Allylthiourea (ATU) proved to be an effective inhibitor of nitrification processes and did not affect the heterotrophic biodegradation activity. Modelling of biodegradation processes could be successfully performed with a first-order and a modified logistic plot.
机译:水生环境中有机化合物的生物降解研究为环境中化学物质的最终命运提供了重要信息。决定性的作用是准备好可生物降解性的测试(OECD 301),在这种情况下,是进行呼吸测定的测试(OECD 301F)。比较了两种不同的呼吸测定系统(Oxitop_R和Sapromat_R),在十种情况中的两种(二甘醇和丙烯酸2-乙基己酯)中观察到差异,表明测试系统并不总是等效的。对于丙烯酸2-乙基己酯和环己酮,我们无法说明市政和工业接种物的生物降解程度差异,而对于环己酮,对于市政接种物,其降解速度更快。烯丙基硫脲(ATU)被证明是硝化过程的有效抑制剂,并且不影响异养生物降解活性。一阶和修改后的逻辑图可以成功地进行生物降解过程的建模。

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