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超重力撞击流-旋转填料床液-液接触过程强化技术的研究进展

刘有智   

  1. 中北大学,山西省超重力化工工程技术研究中心
  • 出版日期:2009-07-05 发布日期:2009-07-05

Research progress of high gravity technology of IS-RPB to intensify liquid-liquid contact

LIU Youzhi   

  1. Shanxi Province Research Center for High Gravity Chemical Engineering and Technology,North University of China
  • Online:2009-07-05 Published:2009-07-05

摘要: 超重力液-液接触过程强化是一个崭新的研究领域,文中详细阐述了实现超重力液-液接触的撞击流-旋转填料床(IS-RPB)装置的结构及其接触和反应过程机制,着重介绍了混合过程和机制原理、混合特性的实验表征,并与常用混合器的混合效果进行了对比。从应用研究方面,分别介绍了IS-RPB在液-液萃取、液膜分离方面的基础及应用研究情况,并与普通方法进行了比较;从反应工程的角度,分析了超重力液-液反应过程及在超细粉体制备等方面的研究应用进展。对该技术今后的研究方向及发展进行了预测。

Abstract: Impinging Stream - Rotating Packed Bed (IS-RPB) as a new study field for high gravity to intensify process of liquid-liquid contact and its process mechanism are presented. The mixing process and its principle as well as experimental effect are introduced in particular. The mixing effect is contrasted between IS-RPB and general mixing sets. Based on IS-RPB separation application and contrast to general waysthe basic research and application study for liquid–liquid extraction and liquid membrane separation are discussed. According to chemical reaction engineeringIS-RPB is a feasible reactor for liquid–liquid two phase reactionand itas a reactorcan be used to prepare ultra-fine powder. The development direction and progress of IS-RPB are prospected.

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