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首页> 外文期刊>The Korean journal of chemical engineering >Numerical and Experimental Study on the Biofiltration of Toluene Vapor
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Numerical and Experimental Study on the Biofiltration of Toluene Vapor

机译:甲苯蒸气生物过滤的数值与实验研究

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We have solved both steady state and transient problems on the biofiltration of toluene vapor. The effect of inlet toluene concentration and inlet gas-flow rate on the removal rate of toluene and the elimination capacity of a lab-scale biofilter has been investigated. In this study, the effectiveness factor was a function of pollutant concentration. The dynamic solutions show good agreement with experimental results. At an inlet toluene concentration of 100 ppm, the diffusion of toluene into biofilm was obviously a rate determining step. Above 200 ppm, however, biofilm already showed full activity. The steady-state simulation confirmed that the change of elimination capacity obtained by increasing only inlet toluene concentration was the same as that obtained by increasing only flow rate of contaminated air. The maximum possible performance is about 20 g/m~3h with no addition of nutrients.
机译:我们已经解决了甲苯蒸气生物过滤的稳态和瞬态问题。研究了入口甲苯浓度和入口气体流速对甲苯去除率和实验室规模生物滤池去除能力的影响。在这项研究中,有效性因子是污染物浓度的函数。动态解与实验结果吻合良好。在进口甲苯浓度为100 ppm时,甲苯向生物膜中的扩散显然是决定速率的步骤。但是,高于200 ppm时,生物膜已经显示出全部活性。稳态模拟证实,仅增加进口甲苯浓度获得的消除能力变化与仅增加污染空气流速获得的消除能力变化相同。不添加任何营养的情况下,最大可能的性能约为20 g / m〜3h。

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