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Enhancing CO2 transport with plasma-functionalized ionic liquid membranes

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【作者】 舒茹晨许卉裴晨霄王楠刘新刚侯剑源袁圆张仁熙

【Author】 Ruchen SHU;Hui XU;Chenxiao PEI;Nan WANG;Xingang LIU;Jianyuan HOU;Yuan YUAN;Renxi ZHANG;Shanghai Key Laboratory of Atmospheric Particle Pollution and Prevention (LAP), Institute of Environmental Science, Fudan University;

【通讯作者】 张仁熙;

【机构】 Shanghai Key Laboratory of Atmospheric Particle Pollution and Prevention (LAP), Institute of Environmental Science, Fudan University

【摘要】 The ionic liquid(IL) 1-butyl-3-methylimidazolium tetrafluoroborate treated with radiofrequency plasma is proposed for functionalization and immobilization on polyethersulfone supports to form supported ionic liquid membranes for CO2 separation. The effects of treatment time and transmembrane pressure difference on CO2 permeance were evaluated. The best gas permeation performance was obtained with a treatment time of 10 min and the transmembrane pressure difference was 0.25 MPa. Characterization of the materials by Fourier transform infrared spectroscopy, x-ray photoelectron spectroscopy and nuclear magnetic resonance spectroscopy demonstrates that the IL is grafted with carboxyl groups and deprotonated through plasma treatment. A preliminary mechanism for the plasma treatment and facilitated transport of CO2has been proposed on this basis.

【Abstract】 The ionic liquid(IL) 1-butyl-3-methylimidazolium tetrafluoroborate treated with radiofrequency plasma is proposed for functionalization and immobilization on polyethersulfone supports to form supported ionic liquid membranes for CO2 separation. The effects of treatment time and transmembrane pressure difference on CO2 permeance were evaluated. The best gas permeation performance was obtained with a treatment time of 10 min and the transmembrane pressure difference was 0.25 MPa. Characterization of the materials by Fourier transform infrared spectroscopy, x-ray photoelectron spectroscopy and nuclear magnetic resonance spectroscopy demonstrates that the IL is grafted with carboxyl groups and deprotonated through plasma treatment. A preliminary mechanism for the plasma treatment and facilitated transport of CO2has been proposed on this basis.

【基金】 supported by the National Key R&D Program of China ‘Intergovernmental International Scientific and Technological Innovation Cooperation’ (No. 2019YFE0122100)
  • 【文献出处】 Plasma Science and Technology ,等离子体科学和技术(英文版) , 编辑部邮箱 ,2024年07期
  • 【分类号】O53;TQ022.11
  • 【下载频次】6
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