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首页> 外文期刊>Chemical Engineering Science >Determination of mass transfer coefficients for packing materials used in biofilters and biotrickling filters for air pollution control. 1. Experimental results
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Determination of mass transfer coefficients for packing materials used in biofilters and biotrickling filters for air pollution control. 1. Experimental results

机译:测定用于空气污染控制的生物滤池和生物滴滤池中包装材料的传质系数。 1.实验结果

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Gas film mass transfer coefficients (k(G)a(t), k(G)a(w)) and liquid film mass transfer coefficients (k(L)a(w)) for packing materials used in biofilters and biotrickling filters for air pollution control were determined experimentally. Lava rock, polyurethane foam cube (PUF), Pall ring, porous ceramic beads, porous ceramic Raschig rings and compost-woodchips mixtures were investigated. The experiments were performed at gas velocities ranging from 100 to 8000 m h(-1) and liquid velocities of 0.1-12 m h(-1), i.e., a wide range that covers most biofilters and biotrickling filters. kGat in biofilter packings ranged from about 500 to 2500 h-1, while k(G)a(w) and kLaw in biotrickling filters ranged from 100 to 8000 h(-1), and 1 to 3000, respectively, depending on the packings and the conditions. This is markedly lower than mass transfer coefficients usually observed for conventional wet scrubbing. The gas film mass transfer coefficient (k(G)a(t)) of 50:50% vol compost-woodchips mixture, a common biofilter packing, was greater than this of a 20% vol compost and 80% woodchips mixture, though the mass transfer was not increased by increasing further the volume fraction of compost. All compost mixtures exhibited a greater gas film mass transfer coefficient than lava rock or other synthetic materials. The mass transfer coefficients of compost mixtures was also influenced by packing method and it was directly proportional to the surface area of the bulking agents added. The gas film mass transfer coefficient (k(G)a(w)) of five biotrickling filter packing materials increased linearly with gas velocity. The effect of liquid on the gas film mass transfer coefficient was not significant. Of all the biotrickling filter packings, the porous ceramic beads had the highest gas and liquid film mass transfer coefficients followed by lava rock, porous ceramic rings, I in Pall ring and PUF cubes. The liquid film mass transfer coefficient (kLaw) was directly proportional to liquid velocity and the effect of gas velocity was negligible. Several correlations allowing prediction of mass transfer coefficients are presented in Part 2 of this paper. (c) 2007 Elsevier Ltd. All rights reserved.
机译:用于生物滤池和生物滴滤池的包装材料的气膜传质系数(k(G)a(t),k(G)a(w))和液膜传质系数(k(L)a(w))实验确定了空气污染控制。研究了熔岩,聚氨酯泡沫立方体(PUF),鲍尔环,多孔陶瓷珠,多孔陶瓷拉希环和堆肥-木屑混合物。实验是在100到8000 m h(-1)的气体速度和0.1-12 m h(-1)的液体速度进行的,即涵盖了大多数生物滤池和生物滴滤池的广泛范围。生物滤池填料中的kGat范围为约500至2500 h-1,而生物滴滤池中的k(G)a(w)和kLaw分别为100至8000 h(-1)和1至3000,具体取决于填料和条件。这明显低于常规湿法洗涤通常观察到的传质系数。体积比为50:50的堆肥-木屑混合物(一种常见的生物滤池填料)的气膜传质系数(k(G)a(t))大于20%体积堆肥和80%木屑混合物的气体膜传质系数(k(G)a(t))。进一步增加堆肥的体积分数不会增加传质。所有堆肥混合物均比熔岩或其他合成材料具有更大的气膜传质系数。堆肥混合物的传质系数也受包装方法的影响,它与所添加的填充剂的表面积成正比。五个生物滴滤填料的气体膜传质系数(k(G)a(w))随气体速度线性增加。液体对气膜传质系数的影响不明显。在所有生物滴滤填料中,多孔陶瓷珠的气体和液体膜传质系数最高,其次是熔岩,多孔陶瓷环,鲍尔环中的I和PUF立方体。液膜传质系数(kLaw)与液体速度成正比,而气体速度的影响可忽略不计。本文的第2部分介绍了几种可以预测传质系数的相关系数。 (c)2007 Elsevier Ltd.保留所有权利。

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