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Development and Evaluation of an Online CO2 Evolution Test and a Multicomponent Biodegradation Test System

机译:在线二氧化碳排放测试和多组分生物降解测试系统的开发和评估

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摘要

Well-established biodegradation tests use biogenously evolved carbon dioxide (CO2) as an analytical parameter to determine the ultimate biodegradability of substances. A newly developed analytical technique based on the continuous online measurement of conductivity showed its suitability over other techniques. It could be demonstrated that the method met all criteria of established biodegradation tests, gave continuous biodegradation curves, and was more reliable than other tests. In parallel experiments, only small variations in the biodegradation pattern occurred. When comparing the new online CO2 method with existing CO2 evolution tests, growth rates and lag periods were similar and only the final degree of biodegradation of aniline was slightly lower. A further test development was the unification and parallel measurement of all three important summary parameters for biodegradation—i.e., CO2 evolution, determination of the biochemical oxygen demand (BOD), and removal of dissolved organic carbon (DOC)—in a multicomponent biodegradation test system (MCBTS). The practicability of this test method was demonstrated with aniline. This test system had advantages for poorly water-soluble and highly volatile compounds and allowed the determination of the carbon fraction integrated into biomass (heterotrophic yield). The integrated online measurements of CO2 and BOD systems produced continuous degradation curves, which better met the stringent criteria of ready biodegradability (60% biodegradation in a 10-day window). Furthermore the data could be used to calculate maximal growth rates for the modeling of biodegradation processes.
机译:完善的生物降解测试使用生物释放的二氧化碳(CO2)作为分析参数,以确定物质的最终生物降解性。一种新的基于连续在线电导率测量的分析技术,显示了其相对于其他技术的适用性。可以证明该方法满足了已建立的生物降解试验的所有标准,给出了连续的生物降解曲线,并且比其他试验更可靠。在平行实验中,生物降解模式仅发生很小的变化。将新的在线CO2方法与现有的CO2排放测试进行比较时,增长率和滞后时间相似,只有苯胺的最终生物降解程度略低。进一步的测试开发是在多组分生物降解测试系统中对生物降解的所有三个重要重要参数进行统一和并行测量,即二氧化碳排放,生化需氧量(BOD)的确定以及溶解有机碳的去除(DOC)。 (MCBTS)。用苯胺证明了该测试方法的实用性。该测试系统具有水溶性差和挥发性高的化合物的优点,并允许测定整合到生物质中的碳含量(异养收率)。对CO2和BOD系统的在线综合测量产生了连续的降解曲线,更好地满足了可生物降解的严格标准(在10天的时间内60%的生物降解)。此外,该数据可用于计算最大生长速率,以用于生物降解过程的建模。

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