Molten salt CO2capture and electro-transformation (MSCC-ET) into capacitive carbon at medium temperature: effect of the electrolyte composition

熔盐 电解质 共晶体系 电解 电化学 吸收(声学) 熔融碳酸盐燃料电池 碳纤维 化学工程 化学 材料科学 电极 无机化学 冶金 合金 工程类 物理化学 复合材料 复合数
作者
Bowen Deng,Zhi‐Gang Chen,Muxing Gao,Yuqiao Song,Kaiyuan Zheng,Juanjuan Tang,Wei Xiao,Xuhui Mao,Dihua Wang
出处
期刊:Faraday Discussions [Royal Society of Chemistry]
卷期号:190: 241-258 被引量:56
标识
DOI:10.1039/c5fd00234f
摘要

Electrochemical transformation of CO2into functional materials or fuels (i.e., carbon, CO) in high temperature molten salts has been demonstrated as a promising way of carbon capture, utilisation and storage (CCUS) in recent years. In a view of continuous operation, the electrolysis process should match very well with the CO2absorption kinetics. At the same time, in consideration of the energy efficiency, a molten salt electrochemical cell running at lower temperature is more beneficial to a process powered by the fluctuating renewable electricity from solar/wind farms. Ternary carbonates (Li : Na : K = 43.5 : 31.5 : 25.0) and binary chlorides (Li : K = 58.5 : 41.5), two typical kinds of eutectic melt with low melting points and a wide electrochemical potential window, could be the ideal supporting electrolyte for the molten salt CO2capture and electro-transformation (MSCC-ET) process. In this work, the CO2absorption behaviour in Li2O/CaO containing carbonates and chlorides were investigated on a home-made gas absorption testing system. The electrode processes as well as the morphology and properties of carbon obtained in different salts are compared to each other. It was found that the composition of molten salts significantly affects the absorption of CO2, electrode processes and performance of the product. Furthermore, the relationship between the absorption and electro-transformation kinetics are discussed based on the findings.
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