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羧酸改性的UiO-66(Zr)膜用于硫化氢/甲烷混合物分离的计算研究(英文)

Computational exploration of H2S/CH4 mixture separation using acid-functionalized UiO-66(Zr) membrane and composites

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【作者】 王舒萌吴栋黄宏亮阳庆元童敏曼刘大欢仲崇立

【Author】 Shumeng Wang;Dong Wu;Hongliang Huang;Qingyuan Yang;Minman Tong;Dahuan Liu;Chongli Zhong;State Key Laboratory of Organic–inorganic Composites,Beijing University of Chemical Technology;China Institute of Atomic Energy;

【机构】 State Key Laboratory of Organic–inorganic Composites,Beijing University of Chemical TechnologyChina Institute of Atomic Energy

【摘要】 A computational study was firstly performed in this work to examine the applicability of an acid-functionalized metal-organic framework(MOF), Ui O-66(Zr)-(COOH)2, in membrane-based H2S/CH4 separation. The results show that this MOF could be potentially interesting when being used as the pure membrane material for the separation of the mixture with low H2 S concentration. Further, the performance of 10 different mixed matrix membranes(MMMs) on the basis of the MOF was predicted by combing the molecular simulation data and the Maxwell permeation model. The results indicate that using this MOF as filler particles in MMMs can signi ficantly enhance the permeation performance of pure polymers. The findings obtained in this work may be helpful in facilitating the application of this promising MOF for practical desulfurization process of fuel gas.

【Abstract】 A computational study was firstly performed in this work to examine the applicability of an acid-functionalized metal-organic framework(MOF), Ui O-66(Zr)-(COOH)2, in membrane-based H2S/CH4 separation. The results show that this MOF could be potentially interesting when being used as the pure membrane material for the separation of the mixture with low H2 S concentration. Further, the performance of 10 different mixed matrix membranes(MMMs) on the basis of the MOF was predicted by combing the molecular simulation data and the Maxwell permeation model. The results indicate that using this MOF as filler particles in MMMs can signi ficantly enhance the permeation performance of pure polymers. The findings obtained in this work may be helpful in facilitating the application of this promising MOF for practical desulfurization process of fuel gas.

【基金】 Supported by the National Key Basic Research Program of China(2013CB733503);the National Natural Science Foundation of China(21136001,21276009 and 21322603);the Program for New Century Excellent Talents in University(NCET-12-0755)
  • 【文献出处】 Chinese Journal of Chemical Engineering ,中国化学工程学报(英文版) , 编辑部邮箱 ,2015年08期
  • 【分类号】TB33
  • 【被引频次】3
  • 【下载频次】200
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