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Effects of Periods of Nonuse and Fluctuating Ammonia Concentration on Biofilter Performance

机译:氨的不使用时间和浓度波动对生物滤池性能的影响

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A systematic study on the transient behavior of odor treatment using biofilters is described. The biofilters were exposed to variations in contaminant loading and periods of nonuse. Two bench-scale biofilters with different filter media were used. Mixtures of compost/perlite (5:1) and dry sludge/granular active carbon (5:1) were used as filter media. Ammonia (NH_3), one of the main malodorous gases, was used as the target compound. The response of each biofilter to variations in contaminant mass loading, periodic nonuse, water content, and inlet concentration pulse was studied. The nonuse period comprised of two stages: the "idle phase" when no air was passing through the biofilters, and the "no-contaminant-loading phase" when only humidified air was passing through the biofilters. Concentration spike was applied to study the effects of shock loading on the biofilter performance. Biofilters responded effectively to NH_3 concentration variations and shock loading by rapidly recovering to the original removal rates within 6–12 h. The results indicated re-acclimation times ranged from several hours to longer than a day. Longer idle phase produced longer re-acclimation periods than periods of no contaminant loading. When the media was dried during the biofiltration process, elimination capacity dropped accordingly for both biofilters. After 24 h of drying, the biofilter experiment could be restarted and run for a few days for recovering.
机译:描述了使用生物滤池进行气味处理的瞬态行为的系统研究。生物滤池暴露于污染物负荷和不使用期间的变化。使用具有不同过滤介质的两个台式生物滤池。堆肥/珍珠岩(5:1)和干污泥/颗粒活性炭(5:1)的混合物用作过滤介质。氨(NH_3)是主要的恶臭气体之一,用作目标化合物。研究了每个生物滤池对污染物质量负荷,周期性不使用,水含量和入口浓度脉冲变化的响应。不使用期包括两个阶段:没有空气通过生物过滤器的“空闲阶段”和只有加湿空气通过生物过滤器的“无污染物装载阶段”。浓度峰值用于研究冲击负荷对生物滤池性能的影响。生物滤池通过在6至12小时内迅速恢复到原始去除率,对NH_3浓度变化和冲击负荷做出了有效响应。结果表明,重新适应时间从几小时到一天以上不等。更长的闲置阶段产生的重新适应时间要长于没有污染物加载的时间。当介质在生物过滤过程中干燥时,两个生物过滤器的消除能力会相应下降。干燥24小时后,可以重新启动生物滤池实验,并运行几天以进行恢复。

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