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Biofiltration of Cyclic Air Emissions of α-Pinene at Low and High Frequencies

机译:低频和高频下α-P烯循环空气排放的生物过滤

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摘要

Biofiltration of periodically fluctuating concentrations of an α-pinene-laden waste gas was investigated to treat both high-frequency and low-frequency fluctuations. The effects of periodic concentration fluctuations on biofilter performance were measured. Controlled variables of periodic operation included cycle period and amplitude. The cycle period ranged from 10 min to 6 days, with the inlet α-pinene concentration fluctuating between 0 and 100 parts per million volume. At high-frequency concentration cycling (i.e., on the order of minutes), both cyclic and constant concentration biofilters maintained similar long-term performance with an average removal efficiency of 77% at an averaged loading rate of 29 g α-pinene/m~3 bed/hr. A first approximation suggests kinetics that are time-independent, indicating that steady-state data can be used to predict transient behavior at this time scale. Cyclic biofilter operation with a cycle period of 24 hr (with equal on/off time) was achievable for biofilters without a significant loss in performance. At longer time scales, cyclic biofilter performance decreased at the restart of the ON cycle. The recovery time to previous levels of performance increased with increasing cycle period; the recovery time was less than 1 hr for a cycle period of 24 hr and between 6 and 8 hr for a cycle period of 6 days.
机译:研究了周期性波动浓度的载有α-pine烯的废气的生物过滤,以处理高频和低频波动。测量了周期性浓度波动对生物滤池性能的影响。周期运行的控制变量包括周期和振幅。周期为10分钟至6天,入口α-pine烯浓度在百万分之0至100的体积之间波动。在高频浓缩循环下(即几分钟左右),循环和恒定浓度的生物滤池均保持了相似的长期性能,在平均负载率为29 gα-pine烯/ m〜时,平均去除效率为77%。 3床/小时第一近似表明动力学是与时间无关的,表明稳态数据可用于预测此时间尺度上的瞬态行为。对于生物过滤器,可以实现周期为24小时(具有相等的开/关时间)的循环生物过滤器操作,而不会显着降低性能。在更长的时间范围内,循环生物过滤器的性能会在ON周期重新开始时降低。恢复到以前性能水平的时间随着周期的增加而增加;恢复时间少于1小时(24小时的循环时间)和6至8小时(6天的循环时间)。

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