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Experimental investigation and modeling of adsorption of water and ethanol on cornmeal in an ethanol-water binary vapor system

机译:乙醇-水二元蒸气系统中玉米粉对水和乙醇的吸附实验研究与建模

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The adsorption capacity of water and ethanol on cornmeal in an ethanol-water binary vapor system was investigated in a fixed-bed apparatus for ethanol dehydration. Experiments were performed at temperatures of 82-100 degrees C for different relative humidities of ethanol-water vapor. Adsorption equilibrium models, including those based on the adsorption potential theory of Polanyi and Sircar's model, have been used to fit the experimental data for water adsorption on cornmeal, and all gave good fits. For ethanol adsorption, pseudo-equilibrium was defined as the mass adsorbed on the cornmeal within the time needed for the equilibrium for water on the same adsorbent. Based on this limiting condition, adsorption behaviors and mechanisms were analyzed.
机译:在乙醇脱水的固定床装置中,研究了乙醇和水二元蒸气系统中水和乙醇对玉米面的吸附能力。针对乙醇-水蒸气的不同相对湿度,在82-100摄氏度的温度下进行了实验。吸附平衡模型,包括基于Polanyi吸附势理论和Sircar模型的吸附平衡模型,已被用于拟合玉米面中水吸附的实验数据,并且都给出了很好的拟合。对于乙醇吸附,假平衡定义为在相同的吸附剂上水达到平衡所需的时间内,在玉米面上吸附的质量。基于这种限制条件,分析了吸附行为和机理。

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