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个人信息Personal Information
教授
博士生导师
硕士生导师
任职 : 精细化工全国重点实验室主任,教育部智能材料化工前沿科学中心执行主任,大连理工大学膜科学与技术研究开发中心主任
性别:女
毕业院校:中国科学院大连化物所
学位:博士
所在单位:化工学院
学科:化学工程. 膜科学与技术. 生物医学工程
联系方式:hgaohong@dlut.edu.cn
电子邮箱:hgaohong@dlut.edu.cn
Imidazole functionalized graphene oxide/PEBAX mixed matrix membranes for efficient CO2 capture
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论文类型:期刊论文
发表时间:2016-06-22
发表刊物:SEPARATION AND PURIFICATION TECHNOLOGY
收录刊物:SCIE、EI
卷号:166
页面范围:171-180
ISSN号:1383-5866
关键字:CO2; Poly(ether-b-amide); MMMs; Gas separation; Functionalized graphene oxide
摘要:Mixed matrix membranes (MMMs) were composed of imidazole functionalized graphene oxide (ImGO), a CO2-philic nano-sheet inorganic material, and poly(ether-b-amide) (PEBAX) for CO2 capture. MMM doped with 0.8 wt.% ImGO exhibits the best CO2 separation performance, which shows the CO2/N-2 selectivity up to 105.5 combined with CO2 permeability of 76.2 Barrer (1 Barrer = 10(-10) cm(3)(STP) cm cm(-2) s(-1) cmHg(-1)), surpassing the Robeson Upper Bound of 2008. The selectivity of MMM for CO2/N-2 increases by 46.0% compared to the Pristine PEBAX due to the interaction between CO2 and imidazole groups. With the increase of feed pressure, CO2 permeability increases significantly because of its higher solubility in polymer matrix and plasticization. It is effective to separation CO2 from N-2 at lower temperature for MMMs because the apparent activation energy of the N-2 permeation process in ImGO/PEBAX MMMs is much higher than that of CO2. Tg of MMMs are increased gradually because the polymer chain mobility is restricted by the presence of ImGO and a rigidified interface generates between polymer and filler. The mechanical properties have been significantly enhanced by the ImGO sheet as expected because of the presence of H-bonding. Having distinct improvement of CO2 separation performance, the ImGO/PEBAX MMMs indicates promising applications in CO2 capture processes. (C) 2016 Elsevier B.V. All rights reserved.