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超重力技术在电化学反应过程中的应用进展
引用本文:高璟,刘有智,常凌飞.超重力技术在电化学反应过程中的应用进展[J].化学工程,2011,39(6):12-15,49.
作者姓名:高璟  刘有智  常凌飞
作者单位:1. 太原理工大学化学化工学院,山西太原030024;中北大学山西省超重力化工工程技术研究中心,山西太原030051
2. 中北大学山西省超重力化工工程技术研究中心,山西太原,030051
基金项目:国家自然科学基金资助项目(20576128); 山西省青年科技研究基金资助项目(2010021007-2)
摘    要:电化学技术已广泛应用于水和废水电解工业、氯碱工业、材料制备、有机合成等方面,但过程中不可避免会产生气泡,导致传质过程受阻、能耗升高.近年来,国内外研究者将超重力这一新型过程强化技术应用于电化学反应过程中,研究表明:超重力技术可加强电化学反应中的传质过程,消除气泡对反应过程的影响,不仅有望降低电化学工业中的能耗,还有望制...

关 键 词:超重力  电化学  电解  电沉积

Application progress of high gravity technology in electrochemical reaction
GAO Jing,LIU You-zhi,CHANG Ling-fei.Application progress of high gravity technology in electrochemical reaction[J].Chemical Engineering,2011,39(6):12-15,49.
Authors:GAO Jing  LIU You-zhi  CHANG Ling-fei
Affiliation:GAO Jing1,2,LIU You-zhi2,CHANG Ling-fei2(1.College of Chemistry and Chemical Engineering,Taiyuan University of Technology,Taiyuan 030024,Shanxi Province,China,2.Research Center of Shanxi Province for High Gravity Chemical Engineering and Technology,North University of China,Taiyuan 030051,China)
Abstract:Electrochemical technology is widely applied in the developments of water and wastewater electrolysis industry,chlor-alkali industry,preparation of materials,synthesis of organic,etc.However,the process of electrochemical reaction inevitably produces bubbles,which leads to poor mass transfer and high energy consumption.In recent years,the researchers at home and abroad apply the high gravity technology—a new process intensification technology to the process of electrochemical reaction.The results show that the high gravity technology can enhance the mass transfer,remove air bubbles during the electrochemical reaction process.The high gravity technology used in the electrochemical industry is expected to not only reduce energy consumption,but also prepare the electrodeposited materials with excellent performance,which presents a broad application prospects.It outlines the current research advances at home and abroad,summarizes the findings,and indicates the defects and its future development prospect.
Keywords:high gravity  electrochemistry  electrolysis  electrodeposition  
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