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Interaction between sorption and biodegradation in a biofilter packed with activated carbon

机译:装有活性炭的生物滤池中吸附与生物降解之间的相互作用

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The main objective of this study is to evaluate qualitatively and quantitatively the effect of starvation periods in the biodegradation capacity of microorganisms when the support media is a material with high sorption capacity. Pollutant sorption and biodegradation, which occur simultaneously in the biofilter, describe the overall behavior of the air treatment system during normal operation and during starvation periods. Results obtained in the present study demonstrate that sorption capacity of the material not only plays an important role during the start-up of operation, but it is also important during steady operation. Simultaneously, as biomass grows on the support, biodegradation becomes more decisive in the performance. It was found that zones of packing material with low moisture content are controlled by the sorption mechanism, at the expense of biodegradation, and they are essential as a pollutant reservoir during starvation periods. In the present study a significant decrease in the biodegradation capacity of microorganisms immobilized on activated carbon was not observed as a consequence of continuous load interruptions.
机译:这项研究的主要目的是定性和定量地评估当载体介质是一种具有高吸附能力的材料时,饥饿期对微生物生物降解能力的影响。在生物滤池中同时发生的污染物吸附和生物降解描述了空气处理系统在正常运行和饥饿期间的总体行为。在本研究中获得的结果表明,材料的吸附能力不仅在操作启动过程中起着重要的作用,而且在稳定操作过程中也起着重要的作用。同时,随着生物质在载体上的生长,生物降解对性能的影响越来越大。已经发现,水分含量低的包装材料区域受吸附机制控制,以生物降解为代价,它们在饥饿期间是必需的污染物存储区。在本研究中,由于连续的负载中断,未观察到固定在活性炭上的微生物的生物降解能力显着下降。

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