Li Xueqin, Cheng Youdong, Zhang Haiyang, Wang Shaofei, Jiang Zhongyi, Guo Ruili, Wu Hong
Key Laboratory for Green Chemical Technology of Ministry of Education, School of Chemical Engineering and Technology, Tianjin University , Tianjin 300072, China.
ACS Appl Mater Interfaces. 2015 Mar 11;7(9):5528-37. doi: 10.1021/acsami.5b00106. Epub 2015 Feb 25.
A novel multi-permselective mixed matrix membrane (MP-MMM) is developed by incorporating versatile fillers functionalized with ethylene oxide (EO) groups and an amine carrier into a polymer matrix. The as-prepared MP-MMMs can separate CO2 efficiently because of the simultaneous enhancement of diffusivity selectivity, solubility selectivity, and reactivity selectivity. To be specific, MP-MMMs were fabricated by incorporating polyethylene glycol- and polyethylenimine-functionalized graphene oxide nanosheets (PEG-PEI-GO) into a commercial low-cost Pebax matrix. The PEG-PEI-GO plays multiple roles in enhancing membrane performance. First, the high-aspect ratio GO nanosheets in a polymer matrix increase the length of the tortuous path of gas diffusion and generate a rigidified interface between the polymer matrix and fillers, enhancing the diffusivity selectivity. Second, PEG consisting of EO groups has excellent affinity for CO2 to enhance the solubility selectivity. Third, PEI with abundant primary, secondary, and tertiary amine groups reacts reversibly with CO2 to enhance reactivity selectivity. Thus, the as-prepared MP-MMMs exhibit excellent CO2 permeability and CO2/gas selectivity. The MP-MMM doped with 10 wt % PEG-PEI-GO displays optimal gas separation performance with a CO2 permeability of 1330 Barrer, a CO2/CH4 selectivity of 45, and a CO2/N2 selectivity of 120, surpassing the upper bound lines of the Robeson study of 2008 (1 Barrer = 10(-10) cm(3) (STP) cm(-2) s(-1) cm(-1) Hg).
通过将用环氧乙烷(EO)基团功能化的多功能填料和胺载体掺入聚合物基质中,开发了一种新型的多选择性混合基质膜(MP-MMM)。由于扩散选择性、溶解选择性和反应选择性同时提高,所制备的MP-MMM能够有效地分离二氧化碳。具体而言,通过将聚乙二醇和聚乙烯亚胺功能化的氧化石墨烯纳米片(PEG-PEI-GO)掺入商业低成本的Pebax基质中来制备MP-MMM。PEG-PEI-GO在提高膜性能方面发挥多种作用。首先,聚合物基质中高纵横比的氧化石墨烯纳米片增加了气体扩散曲折路径的长度,并在聚合物基质和填料之间产生了刚性界面,提高了扩散选择性。其次,由环氧乙烷基团组成的聚乙二醇对二氧化碳具有优异的亲和力,从而提高了溶解选择性。第三,具有丰富伯胺、仲胺和叔胺基团的聚乙烯亚胺与二氧化碳发生可逆反应,提高了反应选择性。因此,所制备的MP-MMM表现出优异的二氧化碳渗透性和二氧化碳/气体选择性。掺杂10 wt% PEG-PEI-GO的MP-MMM表现出最佳的气体分离性能,二氧化碳渗透率为1330 Barrer,二氧化碳/甲烷选择性为45,二氧化碳/氮气选择性为120,超过了2008年罗布森研究的上限线(1 Barrer = 10(-10) cm(3) (标准状况)cm(-2) s(-1) cm(-1) Hg)。