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Optimization of electrochemical dechlorination of trichloroethylene in reducing electrolytes

Authors
Mao, XuhuiCiblak, AliBaek, KitaeAmiri, MohammadLoch-Caruso, RitaAlshawabkeh, Akram N.
Issue Date
Apr-2012
Publisher
PERGAMON-ELSEVIER SCIENCE LTD
Keywords
Electrochemical dechlorination; TCE; Iron anode; Foam electrode; Optimization
Citation
WATER RESEARCH, v.46, no.6, pp 1847 - 1857
Pages
11
Journal Title
WATER RESEARCH
Volume
46
Number
6
Start Page
1847
End Page
1857
URI
https://scholarworks.bwise.kr/kumoh/handle/2020.sw.kumoh/28149
DOI
10.1016/j.watres.2012.01.002
ISSN
0043-1354
Abstract
Electrochemical dechlorination of trichloroethylene (TCE) in aqueous solution is investigated in a closed, liquid-recirculation system. The anodic re action of cast iron generates ferrous species, creating a chemically reducing electrolyte (negative ORP value). The reduction of TCE on the cathode surface is enhanced under this reducing electrolyte because of the absence of electron competition. In the presence of the iron anode, the performances of different cathodes are compared in a recirculated electrolysis system. The copper foam shows superior capability for dechlorination of aqueous TCE. Electrolysis by cast iron anode and copper foam cathode is further optimized though a multivariable experimental design and analysis. The conductivity of the electrolyte is identified as an important factor for both final elimination efficiency (FEE) of TCE and specific energy consumption. The copper foam electrode exhibits high ICE elimination efficiency in a wide range of initial TCE concentration. Under coulostatic conditio:as, the optimal conditions to achieve the highest FEE are 9.525 mm thick copper foam electrode, 40 mA current and 0.042 mol L-1 Na2SO4. This novel electrolysis system is proposed to remediate groundwater contaminated by chlorinated organic solvents, or as an improved iron electrocoagulation process capable of treating the wastewater co-contaminated with chlorinated compounds. (C) 2012 Elsevier Ltd. All rights reserved.
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