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Gas permeation in amine functionalized silicon rubber membranes

机译:胺官能化硅橡胶膜中的气体渗透

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Silicon rubber (SR) based thin film composite (TFC) membranes find increasing applicability in various industrial separations owing to its excellent thermal and chemical stability. The functionalization of SR would provide enhanced separation characteristics for certain separation applications. The present research focuses on gas permeation properties of dense and thin film composite membranes based on amine substituted silicon rubber (ASR) and unsubstituted silicon rubber (SR). The dense membrane sorption analysis indicated that presence of amine functionality in ASR increased pressure dependant CO2 sorption capacity. Owing to this, an elevation of CO2 permeability by 15% and CO2 based selectivities by 22-34% in comparison to that of unsubstituted SR was observed. The TFC membranes with SR and ASR as the selective layer on the top of different ultrafiltration (UF) supports with varying properties based on polyacrylonitrile and polysulfone were prepared. The effects of crucial parameters that affected TFC membrane performance, viz., coating solution concentration, UF support membrane porosity and nature of materials were investigated. The preparation of ASR based TFC membranes was demonstrated with a simple crosslinking agent-glutaraldehyde while analyzing effects of crosslinking time on their permeation properties. Polyacrylonitrile (PAN) was found to be better support layer material for ASR based TFC formation than polysulfone (PSF). Thin defect free coating layer can be obtained by appropriate combination of coating solution concentration and support UF membrane porosity. The analysis of effective skin layer thickness of TFC membranes indicated that careful optimization of these parameters is necessary to achieve defect free TFC membranes possessing a good combination of permeance and selectivity.
机译:基于硅橡胶(SR)的薄膜复合(TFC)膜因其出色的热稳定性和化学稳定性而在各种工业分离中的应用日益广泛。 SR的功能化将为某些分离应用程序提供增强的分离特性。本研究的重点是基于胺取代的硅橡胶(ASR)和未取代的硅橡胶(SR)的致密和薄膜复合膜的气体渗透性能。致密膜吸附分析表明,ASR中胺官能团的存在增加了压力依赖性CO2吸附能力。因此,与未取代的SR相比,观察到CO 2渗透率提高了15%,基于CO 2的选择性提高了22-34%。制备了以SR和ASR为选择层的TFC膜,该膜基于聚丙烯腈和聚砜而在不同的超滤(UF)载体上具有不同的性能。研究了影响TFC膜性能的关键参数的影响,即涂料溶液浓度,超滤支持膜孔隙率和材料性质。用简单的交联剂戊二醛证明了基于ASR的TFC膜的制备,同时分析了交联时间对其渗透性能的影响。发现聚丙烯腈(PAN)比聚砜(PSF)是更好的用于基于ASR的TFC形成的支撑层材料。通过适当组合涂料溶液浓度和支持UF膜的孔隙率,可以获得无缺陷的薄涂层。对TFC膜的有效表层厚度的分析表明,要获得具有渗透性和选择性良好组合的无缺陷TFC膜,必须仔细优化这些参数。

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