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Performance of periodically operated-gas phase biofilters during transient loading conditions

机译:周期性负载条件下周期性操作的气相生物滤池的性能

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摘要

Most industrial processes and environmental remediation activities generate large volumes of air contaminated with volatile organic compounds (VOCs). In conventional biofilter operation, gaseous emissions contaminated with low concentrations of biodegradable VOGs are remediated by being passed continuously through packed beds. This paper describes how periodically operated biofilters can be designed as controlled, unsteady-state systems that destroy gas-phase contaminants. Periodic operation, previously limited to applications in wastewater treatment and soil remediation, increases an operator's ability to control the spatial distribution, physiological state, and "robustness" of the microbial communities established within a biofilter while minimizing uncertainties that often accompany design and operation of biological systems. Results are presented from toluene degrading biofilters that used a novel polyurethane foam packing medium. These studies demonstrate how controlled periodic operations can enhance contaminant removal during transient periods of elevated contaminant load. [References: 5]
机译:大多数工业过程和环境修复活动都会产生大量被挥发性有机化合物(VOC)污染的空气。在传统的生物滤池操作中,被低浓度可生物降解VOG污染的气体排放物通过连续流经填充床而得到补救。本文介绍了如何将定期运行的生物滤池设计为可破坏气相污染物的受控非稳态系统。定期操作(以前仅限于废水处理和土壤修复中的应用)提高了操作员控制生物滤池中建立的微生物群落的空间分布,生理状态和“健壮性”的能力,同时将通常伴随生物设计和操作的不确定性降至最低系统。提出了使用新型聚氨酯泡沫填充介质的甲苯降解生物滤池的结果。这些研究表明,受控的定期操作如何在污染物负荷增加的瞬态期间增强污染物的清除。 [参考:5]

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