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Enhanced CO_(2) separation performance of Pebax?2533 mixed matrix membrane incorporated by synthesized mixed-ligand UiO-67
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作者 Mohammad Ali Kavianpour Reza Abedini 《Chinese Journal of Chemical Engineering》 2025年第9期76-94,共19页
In this study,Pebax■2533 polymer was used as the continuous phase and UiO-67 was employed as the filler to prepare mixed matrix membranes.UiO-67 is usually synthesized using two ligands:biphenyl-4,4'-dicarboxylat... In this study,Pebax■2533 polymer was used as the continuous phase and UiO-67 was employed as the filler to prepare mixed matrix membranes.UiO-67 is usually synthesized using two ligands:biphenyl-4,4'-dicarboxylate(bpdc)and 2,2'-bipyridine-5,5'-dicarboxylic acid(bpy).In this research,UiO-67 was synthesized not only with these two ligands but also using a mixed ligand approach(50% bpdc and 50% bpy).The synthesized UiOs were incorporated into the polymer matrix at mass percentages ranging from 0% to 2% to form the mixed matrix membranes(MMMs).Membranes containing UiO-67 with mixed ligands exhibited a greater affinity for CO_(2) compared to other membranes.Various analytical techniques,including X-ray diffraction,thermogravimetric analyzer,Fourier transform infrared spectroscope(FTIR),field emission scanning electron micro scope(FESEM),and differential scanning calorimetry,were used to analyze the properties of the prepared membranes.The FTIR spectrum confirmed all desired bands of Pebax?2533 and UiO-67 in the MMMs.The FESEM images showed that the pure Pebax membrane has a uniform structure,and the developed membranes are uniformly incorporated with the synthesized UiO-67 nanoparticles.Gas permeation measurements indicated that CO_(2) permeability and CO_(2)/CH_4 selectivity increased from 402.7 Barrer(1 Barrer=1.33×10^(-14)m^(3)(STP)·m·m^(-2)·s^(-1)·kPa^(-1))and 9.32 for the pure Pebax membrane at 1.0 MPa to 770.1 Barrer and 16.96 in the modified membrane.Additionally,the gas permeation test results demonstrated that adding functionalized porous nanofillers increases the CO_(2)separation performance.Permeability tests at different temperatures revealed that as temperature was raised,at constant pressure,CO_(2) permeability for the membrane containing the mixed ligand increased from 682.2 Barrer to 733.5 Barrer,While CO_(2)/CH_(4) selectivity decreased from 15.46 to 13.43. 展开更多
关键词 Pebax?2533 UiO-67 BIPHENYL BIPYRIDINE Mixed ligand CO_(2)separation Mixed matrix membrane(MMM)
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Polyetheramide Templated Synthesis of Monodisperse Mn_3O_4 Nanoparticles with Controlled Size and Study of the Electrochemical Properties 被引量:1
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作者 Lin He Geng Zhang +3 位作者 Yuanzhu Dong Zhenwei Zhang Shihan Xue Xingmao Jiang 《Nano-Micro Letters》 SCIE EI CAS 2014年第1期38-45,共8页
Monodisperse Mn3O4 nanoparticles were prepared solvothermally starting from manganese acetate by using polyether amide block copolymers(Pebax2533) as a template in isopropanol. The diameter of the nanoparticles in the... Monodisperse Mn3O4 nanoparticles were prepared solvothermally starting from manganese acetate by using polyether amide block copolymers(Pebax2533) as a template in isopropanol. The diameter of the nanoparticles in the range of 8.7 nm^31.5 nm was decreased with increase of Pebax2533 concentration.The electrochemical properties and application in supercapacitor of Mn3O4 nanoparticles were further studied.The results showed that smaller nanoparticles had a larger capacitance. The higher capacitance of 217.5 F/g at a current density of 0.5 A/g was obtained on 8.7 nm Mn3O4 nanoparticles. The specific capacitance retention of 82% was maintained after 500 times of continuous charge-discharge cycles. 展开更多
关键词 MN3O4 TEMPLATING pebax2533 Solvothermal synthesis SUPERCAPACITOR
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ZIF-93/Pebax 2533混合基质膜的制备及其CO_(2)/N_(2)分离性能研究 被引量:2
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作者 谢亚芳 金花 李砚硕 《膜科学与技术》 CAS CSCD 北大核心 2021年第5期79-86,96,共9页
燃烧后CO_(2)捕获技术的发展对降低温室效应至关重要.CO_(2)选择性多孔骨架与高分子材料的结合有望开发高性能混合基质膜,用于CO_(2)/N_(2)混合气分离.考察了孔径在CO_(2)和N_(2)动力学直径之间的两种沸石咪唑酯骨架(ZIFs)材料,即ZIF-8... 燃烧后CO_(2)捕获技术的发展对降低温室效应至关重要.CO_(2)选择性多孔骨架与高分子材料的结合有望开发高性能混合基质膜,用于CO_(2)/N_(2)混合气分离.考察了孔径在CO_(2)和N_(2)动力学直径之间的两种沸石咪唑酯骨架(ZIFs)材料,即ZIF-8和ZIF-93的吸附特性,结果表明ZIF-93由于骨架中醛基的存在具有CO_(2)优先吸附性能,其等摩尔CO_(2)/N_(2)混合气体的理论吸附选择性为25,远高于ZIF-8的6.5.通过旋涂法在PVDF载体上制备了具有非对称结构的ZIF-93/Pebax 2533混合基质膜.当ZIF-93负载量为12%时,ZIF-93/Pebax混合基质膜展示出最优的CO_(2)/N_(2)混合气分离性能,CO_(2)渗透率为47GPU,CO_(2)/N_(2)选择性为42.随着原料气中CO_(2)分压的增大,ZIF-93/Pebax混合基质膜的CO_(2)/N_(2)选择性基本不变,实现了高压下CO_(2)的高效分离. 展开更多
关键词 ZIF-93/Pebax 2533混合基质膜 非对称结构 CO_(2)/N_(2)分离
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