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Chemcial Industry and Engineering 2009, Vol. 26 Issue (5) :414-419    DOI:
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Diffusion Coefficient of Molecules During the Microwave-Assisted Extraction Process
XIAO Zu-feng~1,HAN Guang-ze~2,CHEN Ming-dong~3(1.School of Material Science and Engineering,South China University of Technology,Guangzhou 510640,Guangdong Province,China;2.Department of Physics,South China University of Technology,Guangzhou 510640, Guangdong Province,China;3.Guangzhou Automobile College,South China University of Technology,Guangzhou 510800,Guangdong,China)
(1.School of Material Science and Engineering,South China University of Technology,Guangzhou 510640,Guangdong Province,China;2.Department of Physics,South China University of Technology,Guangzhou 510640, Guangdong Province,China;3.Guangzhou Automobile College,South China University of Technology,Guangzhou 510800,Guangdong,China

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Abstract In this paper,a model of potential barrier acted on molecules during the microwave-assisted extraction of resveratrol from polygonum cuspidatum is developed.Combined with the theory of viscosity,the relationship between diffusion coefficient and activation energy is expressed.Based on the concept of activation energy and microwave absorption power density,the formula of diffusion coefficient due to the effect of microwaves is derived. The expression indicates that the diffusion coefficient is relevant to the molecule's density,microwave frequency and temperature.It shows that the diffusion coefficient is enhanced in comparison with the coefficient without microwaves.In the process of microwave-assisted extraction,it is better to choose the high microwave frequency at high temperature to enhance the diffusion coefficient.In the extraction of components with the phenomena of thermal runaway,choosing the critical temperature can lead to a greater diffusion coefficient.
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Received 2009-09-15; published 2009-09-15
Cite this article:   
XIAO Zu-feng~1,HAN Guang-ze~2,CHEN Ming-dong~3.Diffusion Coefficient of Molecules During the Microwave-Assisted Extraction Process[J]  Chemcial Industry and Engineering, 2009,V26(5): 414-419
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