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A new two-dimensional experimental apparatus for electrochemical remediation processes☆
作者姓名:Yingying Gu  Rongbing Fu  Hongjiang Li  Hui An
作者单位:1.Department of Environmental & Safety Engineering, China University of Petroleum (East China), Qingdao 266580, China;2.Shanghai Academy of Environmental Sciences, Shanghai 200233, China;3.Qingdao Water Group Co. Ltd., Qingdao 266002, China
基金项目:the National Natural Science Foundation of China,the Fundamental Research for the Central Universities,the Qingdao Science and Technology Program for young sci-entists,the State Key Laboratory of Pol ution Control and Resource Reuse Foundation
摘    要:Electrochemical extraction of contaminants from soils is a promising soil decontamination technology. Various experiments have been conducted to study electrochemical reactions and geochemical processes in the electro-chemical extraction using different experimental apparatuses. This paper presents the development of a new closed two-dimensional (2D) apparatus that can better simulate the field application of the technology and ac-curately monitor the most important electrochemical parameters to understand the process. The innovative fea-tures of the new apparatus include the outer and inner electrodes designed to apply a non-uniform electrical field across the specimen as in the field electrochemical remediation process, the probes installed to measure the 2D distribution of electrical voltage, and the gas and fluid volume measurement devices used to accurately monitor the gas generation and electroosmotic flow rates at both electrodes as a function of time. The components of this new apparatus and the features of each component are described. The operating procedure and some typical re-sults from three experiments with the apparatus are demonstrated. The results show that the variation of the gas generation rate is in good agreement with the electric current. Their relation provides a valid evaluation for elec-trochemical behavior of the system and Faraday's laws of electrolysis. The 2D profiles of cadmium concentration and voltage distribution at the end of the experiment reveal the great effects of a non-uniform electrical field on the contaminant mobilization.

关 键 词:Electrochemical  extraction  2D  experimental  apparatus  Non-uniform  electrical  field  Gas  generation  rate  
收稿时间:2014-12-16

A new two-dimensional experimental apparatus for electrochemical remediation processes
Yingying Gu,Rongbing Fu,Hongjiang Li,Hui An.A new two-dimensional experimental apparatus for electrochemical remediation processes[J].Chinese Journal of Chemical Engineering,2015,23(8):1389-1397.
Authors:Yingying Gu  Rongbing Fu  Hongjiang Li  Hui An
Affiliation:1.Department of Environmental & Safety Engineering, China University of Petroleum (East China), Qingdao 266580, China;2.Shanghai Academy of Environmental Sciences, Shanghai 200233, China;3.Qingdao Water Group Co. Ltd., Qingdao 266002, China
Abstract:Electrochemical extraction of contaminants from soils is a promising soil decontamination technology. Various experiments have been conducted to study electrochemical reactions and geochemical processes in the electro-chemical extraction using different experimental apparatuses. This paper presents the development of a new closed two-dimensional (2D) apparatus that can better simulate the field application of the technology and ac-curately monitor the most important electrochemical parameters to understand the process. The innovative fea-tures of the new apparatus include the outer and inner electrodes designed to apply a non-uniform electrical field across the specimen as in the field electrochemical remediation process, the probes installed to measure the 2D distribution of electrical voltage, and the gas and fluid volume measurement devices used to accurately monitor the gas generation and electroosmotic flow rates at both electrodes as a function of time. The components of this new apparatus and the features of each component are described. The operating procedure and some typical re-sults from three experiments with the apparatus are demonstrated. The results show that the variation of the gas generation rate is in good agreement with the electric current. Their relation provides a valid evaluation for elec-trochemical behavior of the system and Faraday's laws of electrolysis. The 2D profiles of cadmium concentration and voltage distribution at the end of the experiment reveal the great effects of a non-uniform electrical field on the contaminant mobilization.
Keywords:Electrochemical extraction  2D experimental apparatus  Non-uniform electrical field  Gas generation rate
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