化工进展

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电磁场作用下的强化传质研究进展

肖祖峰,陈明东,韩光泽   

  1. 华南理工大学材料科学与工程学院;华南理工大学广州汽车学院;
    华南理工大学物理系
  • 出版日期:2008-12-05 发布日期:2008-12-05

Research progress of mass transfer enhancement by electromagnetic field

XIAO Zufeng,CHEN Mingdong,HAN Guangze   

  1. School of Material Science and Engineering,South China University of Technology;Guangzhou Automobile College,South China University of Technology;Department of Physics,South China Universty of Technology
  • Online:2008-12-05 Published:2008-12-05

摘要: 总结了电场、磁场和电磁场作用下强化传质的一些实验与理论工作,分析了3种强化传质方式在传质对象和传质机理方面的一些不同。进行比较后显示,电磁场强化传质的应用更加广泛,其强化传质机理可解释为:电磁场与物质的相互作用改变了物质的活性,降低了传质过程的活化能,从而使扩散得到增强。最后介绍了微波非热效应的一些实验与理论研究进展。研究表明,一些化学反应、陶瓷烧结和萃取等过程的传质得到强化确实是由于微波非热效应的作用。

Abstract: Experimental and theoretical studies about mass transfer enhancement under electric field,magnetic field and electromagnetic field are reviewed,and the differences between the three ways of mass transfer enhancement are analyzed. The application of mass transfer enhancement under electromagnetic field is more extensive; the mass transfer enhancement mechanism can be explained as:the electromagnetic field changes the molecule’s mobility,reduces the activation energy of mass transfer process,and consequently,enhances the diffusion process. In the end,the research progress of the microwave non-thermal effect is presented. The results show that some chemical reaction,ceramic sintering and extraction process are enhanced by the microwave non-thermal effect.

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