A practical isotherm equation for adsorption on a heterogeneous surface and its applications to single and mixed gas adsorption on an activated carbon fiber.
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概要
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A practical isotherm equation based on the scaled-particle theory and a patchwise model has been developed for single- and multi-component adsorption on a heterogeneous surface. The surface energy distribution function used in the model is the asymmetric Gaussian function; however, the continuous distribution is formally changed to four discrete patches, called the four-point approximation model, by means of the Hermite-Gauss quadrature formula in the numerical integration. The model is applied to single-gas adsorption on an activated carbon fiber, KF-1500, at elevated pressures and three temperatures with satisfactory agreement. Four binary gas adsorption data on KF-1500 at 298.15 K and 500 kPa have been obtained and analyzed by the model. The geometric mean assumption for the binary interaction parameters between adsorbed molecules is adequate for binary mixtures of methane + ethane and methane + ethylene, while an adjustable parameter for the binary interactions, <I>k<SUB>ij</SUB></I>, is required for binary mixtures of carbon dioxide + ethane and carbon dioxide + ethylene.
- The Society of Chemical Engineers, Japanの論文
著者
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Yamaguchi Atsushi
Department Of Cardiovascular Surgery Saitama Medical Center Jichi Medical University
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Nitta Tomoshige
Department Of Chemical Engineering Osaka University
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Katayama Takashi
Department Of Patho-physiology Faculty Of Pharmaceutical Sciences Science University Of Tokyo
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Yamaguchi Atsushi
Department of Chemical Engineering, Osaka University
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Tokunaga Nobuyuki
Department of Chemical Engineering, Osaka University
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Katayama Takashi
Department of Chemical Engineering, Faculty of Engineering Science, Osaka University
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