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Effect of pore size on adsorption of hydrocarbons in phenolic-based activated carbon fibers

机译:孔径对酚醛基活性炭纤维中碳氢化合物吸附的影响

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摘要

The combined effect of pore size and pore volume on the equilibrium adsorption capacity and the adsorption kinetics for a series of normal alkanes is determined. The selected adsorbents, activated carbon fibers (ACFs) and air activated phenolic fibers (AAPFs), possess a range of micropore sizes and have been thoroughly characterized in past work. For the normal alkane series, the lower surface area (smaller pore size) adsorbents demonstrate higher adsorption capacities for low boiling point alkanes and for adsorbing molecules at low concentrations. For higher boiling point alkanes and at higher concentrations, the adsorption capacity is greater for higher surface area materials (larger pore size) due to increasing pore volumes. This data was modeled using the DR equation to develop a predictive capability for adsorption based on boiling point and micropore size. For the full range of gas concentrations, the average initial mass rates of adsorption increase as the average pore size increases. (C) 1997 Elsevier Science Ltd. References: 24
机译:确定了孔径和孔体积对一系列正烷烃的平衡吸附容量和吸附动力学的综合影响。所选择的吸附剂活性炭纤维(ACFs)和空气活化酚醛纤维(AAPF)具有一系列的微孔尺寸,并且在过去的工作中已经进行了彻底的表征。对于正烷烃系列,较低表面积(较小孔径)的吸附剂对低沸点烷烃和低浓度分子的吸附能力较高。对于较高沸点和较高浓度的烷烃,由于孔体积增加,对于较高表面积材料(较大孔径)的吸附能力更大。使用DR方程对该数据进行建模,以开发基于沸点和微孔大小的吸附预测能力。对于整个气体浓度范围,平均初始吸附质量率随着平均孔径的增加而增加。(C) 1997 Elsevier Science Ltd. [参考文献: 24]

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