關鍵字查詢 | 類別:期刊論文 | | 關鍵字:Mass Transfer for Dialysis with Ultrafiltration Flux Declined in Cross-Flow Membrane Modules

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序號 學年期 教師動態
1 88/2 化材系 鄭東文 教授 期刊論文 發佈 Mass Transfer for Dialysis with Ultrafiltration Flux Declined in Cross-Flow Membrane Modules , [88-2] :Mass Transfer for Dialysis with Ultrafiltration Flux Declined in Cross-Flow Membrane Modules期刊論文Mass Transfer for Dialysis with Ultrafiltration Flux Declined in Cross-Flow Membrane ModulesYeh, Ho-ming; Cheng, Tung-wen; Chen, Y. J.淡江大學化學工程與材料工程學系Dialysis;Ultrafiltration;Cross Flow;Membrane SeparationThe Society of Chemical Engineers, JapanJournal of chemical engineering of Japan 33(3), pp.440-448This study deals with the effect of an exponential-decay flux of ultrafiltration on the mass transfer rate of solute for dialysis in cross-flow membrane modules. The numerical method of orthogonal collocation was used to solve this problem. The calculated results of solute concentrations and separation efficiencies were analyzed under various operating conditions and decay coefficients of flux in ultrafiltration. The mass transfer rate is usually enhanced by the addition of the effect of ultrafiltration, but this effect decreases as the decay coefficient increases. A significant influence of the
2 88/2 化材系 葉和明 教授 期刊論文 發佈 Mass Transfer for Dialysis with Ultrafiltration Flux Declined in Cross-Flow Membrane Modules , [88-2] :Mass Transfer for Dialysis with Ultrafiltration Flux Declined in Cross-Flow Membrane Modules期刊論文Mass Transfer for Dialysis with Ultrafiltration Flux Declined in Cross-Flow Membrane ModulesYeh, Ho-ming; Cheng, Tung-wen; Chen, Y. J.淡江大學化學工程與材料工程學系Dialysis;Ultrafiltration;Cross Flow;Membrane SeparationThe Society of Chemical Engineers, JapanJournal of chemical engineering of Japan 33(3), pp.440-448This study deals with the effect of an exponential-decay flux of ultrafiltration on the mass transfer rate of solute for dialysis in cross-flow membrane modules. The numerical method of orthogonal collocation was used to solve this problem. The calculated results of solute concentrations and separation efficiencies were analyzed under various operating conditions and decay coefficients of flux in ultrafiltration. The mass transfer rate is usually enhanced by the addition of the effect of ultrafiltration, but this effect decreases as the decay coefficient increases. A significant influence of the
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