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首页> 外文期刊>Journal of Colloid and Interface Science >Adsorption equilibrium and transport kinetics for a range of probe gases in Takeda 3A carbon molecular sieve
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Adsorption equilibrium and transport kinetics for a range of probe gases in Takeda 3A carbon molecular sieve

机译:武田3A碳分子筛中多种探针气体的吸附平衡和传输动力学

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Measurements of adsorption equilibria and transport kinetics for argon, oxygen and nitrogen at 20, 50, and 80 degrees C on commercially derived Takeda carbon molecular sieve (CMS) employed for air separation have been undertaken in an effort to elucidate fundamental mechanisms of transport. Results indicate that micropore diffusion which is modeled by a Fickian diffusion process, governs the transport of oxygen molecules and the pore mouth barrier controls argon and nitrogen transport which is characterized by a linear driving force (LDF) model. For the three temperatures studied, the pressure dependence of the diffusivity and the LDF rate constant appear to be well characterized by a formulation based on the chemical potential as the driving force for transport. Isosteric heat of adsorption at zero loading and activation energy measurements are compared with predictions made from a previously proposed molecular model for characterizing CMS. Published by Elsevier Inc.
机译:为了阐明基本的运输机理,已经进行了在用于空气分离的商业衍生的武田碳分子筛(CMS)上在20、50和80摄氏度下对氩,氧和氮的吸附平衡和运输动力学的测量。结果表明,通过Fickian扩散过程建模的微孔扩散控制着氧分子的传输,而孔口屏障控制着以线性驱动力(LDF)模型为特征的氩气和氮气的传输。对于所研究的三个温度,扩散率和LDF速率常数的压力依赖性似乎已通过基于化学势作为运输驱动力的公式很好地表征。将零负荷和活化能测量时的等温吸附热与由先前提出的表征CMS的分子模型得出的预测进行比较。由Elsevier Inc.发布

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