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Studies of CO2 absorption and effective interfacial area in a two-stage rotating packed bed with nickel foam packing

机译:镍泡沫填料两阶段旋转填料床中CO 2吸收和有效界面面积的研究

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A two-stage rotating packed bed with nickel foam packing (TSNF-RPB) was developed with the purpose of simplifying the combination of rotational packing and static rings in the rotor of a two-stage counter-current rotating packed bed (TSCC-RPB). A novel method called "five-point" was employed to determine the CO2 absorption efficiency (eta) and the effective interfacial area (a(e)) in this TSNF-RPB. Experimental results showed that the CO2 absorption efficiency of the upper and the lower packing zones were obviously higher than that of the upper and the lower cavity zones at different rotational speed, gas and liquid flow rate. Values of ae of the upper packing zone were higher than that of the lower packing zone when the nickel foam packing with pore size of 0.64 mm was loaded. The TSNF-RPB has potential prospects for the applications of chemical processes which require long gas-liquid contact time. (C) 2015 Elsevier B.V. All rights reserved.
机译:为了简化两级逆流旋转填料床(TSCC-RPB)转子中的旋转填料和静环的组合,开发了带镍泡沫填料的两级旋转填料床(TSNF-RPB)。 。采用一种称为“五点”的新颖方法来确定此TSNF-RPB中的CO2吸收效率(eta)和有效界面面积(a(e))。实验结果表明,在不同的转速,气体和液体流速下,上填料区和下填料区的CO2吸收效率明显高于上,下空腔区。当装载孔径为0.64mm的泡沫镍填料时,上部填料区的ae值高于下部填料区的ae值。 TSNF-RPB在需要较长的气液接触时间的化学过程中具有潜在的应用前景。 (C)2015 Elsevier B.V.保留所有权利。

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