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负载型氨基功能化离子液体吸附CO2性能差异研究
引用本文:付格红,吕功煊,马建泰. 负载型氨基功能化离子液体吸附CO2性能差异研究[J]. 分析测试技术与仪器, 2013, 19(1): 41-53
作者姓名:付格红  吕功煊  马建泰
作者单位:1.兰州大学 化学化工学院, 甘肃 兰州 730000;中国科学院兰州化学物理研究所, 甘肃 兰州 730000
摘    要:以Al2O3、SiO2和活性炭为载体,采用浸渍法制备了负载型离子液体([NH2p-mim]X:X= Br-,PF6-,BF4-,NTf2-)CO2吸附剂,利用红外光谱(FT-IR)、元素分析(EA)、热重差热分析(TG-DTA)等技术对负载型离子

关 键 词:离子液体   CO2   载体
收稿时间:2012-10-14
修稿时间:2013-03-06

CO2 Adsorption Studies in Supported Amino Functionalized Ionic Liquids
FU Ge-hong,LU Gong-xuan and MA Jian-tai. CO2 Adsorption Studies in Supported Amino Functionalized Ionic Liquids[J]. Analysis and Testing Technology and Instruments, 2013, 19(1): 41-53
Authors:FU Ge-hong  LU Gong-xuan  MA Jian-tai
Affiliation:1.Lanzhou University, College of Chemistry and Chemical Engineering, Lanzhou 730000;Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, Lanzhou 7300002.Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, Lanzhou 7300003.Lanzhou University, College of Chemistry and Chemical Engineering, Lanzhou 730000
Abstract:In this paper, in order to study the potential impact of supported ionic liquids on CO2 adsorption, the specific ionic liquids ([NH2p-mim]X:X= Br-,PF6-,BF4-,NTf2-) were immobilized in different supports, such as active carbon (AC), silica(SiO2) and alumina(Al2O3) via an impregnation-vaporization method. The supported ionic liquids were characterized by flourier transform infrared(FT-IR) spectrometry,elemental analysis(EA),thermogravimetry-differential thermal analysis(TG-DTA) and so on. The performance of supported ionic liquids for CO2 adsorption were investigated,and the The effects of using supports with different chemical structures and different anions on the CO2 adsorption capacity of supported ionic liquids have been studied. The results show that the supported ionic liquids prepared with Al2O3 exhibits a high affinity for CO2 compared with those on SiO2 and AC. FT-IR analysis indicates that this behavior is due to the excellent dispersing effect of supports on the ionic liquids and the weak interaction between ionic liquids and supports, the latter increases the active sites of ionic liquids for CO2 adsorption after being loaded. The supported ionic liquids prepared with Al2O3 have a relatively large electron density of atomic N of amino, which is favourable to the reaction of CO2 with –NH2 of [NH2p-mim][Br]/Al2O3. The CO2 adsorption performance of supported ionic liquids increases with the increase of the viscosity of ionic liquids and reduces with the increase of volume of ionic liquids.
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