Heat and Mass Transfer Characteristics in Adsorption of Water Vapor for Silica Gel Packed Bed Adsorber
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概要
- 論文の詳細を見る
Detailed study of heat and mass transfer inside a silica-gel packed bed, especially extraparticle diffusion for adsorption of water vapor, was carried out in a densely packed adsorbent bed, which normally prevails for realizing AHP technology. Experimental data for temperature and pressure distributions in the packed bed of adsorbent for adsorption of water vapor on silica gel is evaluated in terms of heat and mass transfer numerical calculation based on the model of water vapor transport which accounts for both heat and mass transfer of the interparticle void and the adsorbent particle. Subsequently, the effect of particle size and the rate of adsorption are discussed from the viewpoint of adsorption mechanism.It is found that the model calculation was appropriate since the results were found to agree with the experimental values. For the experimental conditions, mean adsorption rate is found to increase with particle size under dp ≤ 500 μm, above which the adsorption drastically decreases with an increase in particle size. From this result, it is concluded that there is an optimum value of particle size relative to the bed height for attaining a maximum adsorptivity.
- 社団法人 化学工学会の論文
著者
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Hasatani M
Department Of Energy Engineering & Science Nagoya University
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Hasatani Masanobu
Department Of Energy Engineering & Science Nagoya University
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渡辺 藤雄
愛知工大
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WATANABE Fujio
Department of Chemical Engineering, Nagoya University
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YAMAMOTO ERI
Department of Energy Engineering and Science, Nagoya University
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KATSURAYAMA Koichi
Department of Energy Engineering and Science
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MATSUDA Kitoki
Research Center for Advanced Waste and Emission Management, Nagoya University
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Yamamoto Eri
Department Of Energy Engineering And Science Nagoya University
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Matsuda Kitoki
Research Center For Advanced Waste And Emission Management Nagoya University
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Watanabe F
Kddi Corporation
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Watanabe Fujio
Department Of Chemical Engineering Nagoya University
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Watanabe F
Nagoya Univ. Nagoya
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Hasatani Masanobu
Department Of Chemical Engineering Nagoya University
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Hasatani Masanobu
Mechanical Engineering Aichi Institute Of Technology
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