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Activated carbon load equalization of transient concentrations of gas-phase toluene: Effect of gas flow rate during pollutant non-loading intervals

机译:气相甲苯瞬态浓度的活性炭负载均衡:污染物无负载间隔期间气体流速的影响

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Dynamically varying contaminant concentrations pose a challenge in the design and operation of biofil-ters for air pollution control. One strategy for managing this problem involves installation of a column packed with granular activated carbon (GAC) to achieve load equalization prior to biofilter treatment. Research described here was conducted to evaluate the effect of changes in gas flow rates during contaminant non-loading intervals on the GAC load equalization process. Toluene served as the model pollutant, and BPL 4x6 mesh GAC served as the model adsorbent. Fixed-bed adsorption/desorption experiments were conducted with influent toluene concentrations of 250ppm_v (superficial gas velocity 300 m/h) for durations of 12, 8, and 4h/day, and no toluene in the influent air for the remainder of the day to simulate processes with varying work schedules. During toluene non-loading intervals, experiments were conducted with gas flow rates 1.0,0.50, and 0.10 times the flow rate during toluene loading intervals. Numerical simulations performed using a pore and surface diffusion model, adapted to account for changes in gas flow rate, were in close agreement with experimental measurements. Collectively, experimental data and model simulations demonstrated that relatively small GAC columns (empty bed contact times on the order of a few seconds) can achieve considerable load equalization even when gas flow rates are reduced during contaminant non-loading intervals. Results suggest that in cases where the fraction of time pollutants present in the gas stream are relatively small, use of a passively operated GAC load equalization process in conjunction with reduction in gas flow rates during contaminant non-loading intervals may prove especially attractive.
机译:动态变化的污染物浓度对用于空气污染控制的生物滤池的设计和操作提出了挑战。解决此问题的一种策略涉及安装装有颗粒状活性炭(GAC)的色谱柱,以在生物滤池处理之前实现负载均衡。进行此处描述的研究以评估在污染物非加载间隔期间气体流量变化对GAC负载均衡过程的影响。甲苯是模型污染物,BPL 4x6目GAC是模型吸附剂。固定床吸附/解吸实验的进水甲苯浓度为250ppm_v(表观气体速度300 m / h),持续时间为12、8和4h /天,在一天的剩余时间内,进水中没有甲苯。模拟具有不同工作计划的流程。在甲苯非装载间隔期间,进行的实验的气体流速分别为甲苯装载间隔期间流速的1.0、0.50和0.10倍。使用孔隙和表面扩散模型进行的数值模拟(适合于解释气体流速的变化)与实验测量结果非常吻合。总的来说,实验数据和模型模拟表明,即使在污染物非加载间隔期间气体流速降低时,相对较小的GAC色谱柱(空床接触时间约为几秒钟)也可以实现相当的负载均衡。结果表明,在气流中存在的时间污染物比例相对较小的情况下,使用被动运行的GAC负载均衡过程以及降低污染物无负载间隔期间的气体流量可能会特别有吸引力。

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