多层混合涂层对PSF中空纤维膜强化气体分离的影响

ty10086 提交于 周三, 08/25/2021 - 16:40
文章英文标题
Impacts of Multilayer Hybrid Coating on PSF Hollow Fiber Membrane for Enhanced Gas Separation
正文
聚合物膜在气体分离过程中遇到的一个最关键的问题是气体渗透性和选择性之间的权衡效应。本工作的目的是开发一种简单而有效的涂层技术来改善常用聚砜( PSF )中空纤维膜的表面性能,以解决CO2 / CH4和O2 / N2分离的折衷效应。本研究通过在聚醚嵌段酰胺( Pebax )选择性涂层中加入氧化石墨烯( GO )纳米片制备多层涂复PSF中空纤维,为了防止Pebax涂层溶液渗入膜基片,在基片与Pebax层之间形成聚二甲基硅氧烷( PDMS )沟槽层。然后考察GO负载量( 0.0 ~ 1.0wt % )对Pebax层性能和膜性能的影响。XPS数据清楚地显示了膜选择性层中GO的存在,GO掺入量越高检测到的碳的sp2杂化状态越大。在膜层形貌方面,GO添加量的增加只影响膜表面粗糙度而不改变整个膜层厚度。结果表明,在Pebax膜层中添加0.8wt %的GO可以得到性能最好的多层膜,与未添加GO的膜相比,CO2 / CH4和O2 / N2气对选择性分别提高了56.1 %和20.9 %。这种改善是由于选择性层中曲折路径增加,相对于较小的气体分子( CO2和O2 ),对较大的气体分子( CH4和N2 )产生了更高的阻力。在整个50 h的运行过程中,性能最好的膜的塑化程度较低,性能非常稳定,CO2 / CH4和O2 / N2气对选择性分别为52.57 ( CO2透过率:28.08 GPU )和8.05 ( O2透过率:5.32 GPU )。
文章内容(英文)
One of the most critical issues encountered by polymeric membranes for the gas separation process is the trade-off effect between gas permeability and selectivity. The aim of this work is to develop a simple yet effective coating technique to modify the surface properties of commonly used polysulfone (PSF) hollow fiber membranes to address the trade-off effect for CO2/CH4 and O2/N2 separation. In this study, multilayer coated PSF hollow fibers were fabricated by incorporating a graphene oxide (GO) nanosheet into the selective coating layer made of polyether block amide (Pebax). In order to prevent the penetration of Pebax coating solution into the membrane substrate, a gutter layer of polydimethylsiloxane (PDMS) was formed between the substrate and Pebax layer. The impacts of GO loadings (0.0–1.0 wt%) on the Pebax layer properties and the membrane performances were then investigated. XPS data clearly showed the existence of GO in the membrane selective layer, and the higher the amount of GO incorporated the greater the sp2 hybridization state of carbon detected. In terms of coating layer morphology, increasing the GO amount only affected the membrane surface roughness without altering the entire coating layer thickness. Our findings indicated that the addition of 0.8 wt% GO into the Pebax coating layer could produce the best performing multilayer coated membrane, showing 56.1% and 20.9% enhancements in the CO2/CH4 and O2/N2 gas pair selectivities, respectively, in comparison to the membrane without GO incorporation. The improvement is due to the increased tortuous path in the selective layer, which created a higher resistance to the larger gas molecules (CH4 and N2) compared to the smaller gas molecules (CO2 and O2). The best performing membrane also demonstrated a lower degree of plasticization and a very stable performance over the entire 50-h operation, recording CO2/CH4 and O2/N2 gas pair selectivities of 52.57 (CO2 permeance: 28.08 GPU) and 8.05 (O2 permeance: 5.32 GPU), respectively.
来源出处
Journal|[J]MembranesVolume 10, Issue 11. 2020. PP 335-335
DOI
https://doi.org/10.3390/membranes10110335

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