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Development of Polysulfone-Polydimethylsiloxane (Psf Pdms) Thin Film Composite (Tfc) Membrane for Co2/ N2 Gas Separation

机译:用于CO2 / N2气体分离的聚砜-聚二甲基硅氧烷(Psf Pdms)薄膜复合(Tfc)膜的开发

摘要

The capture and storage of carbon dioxide has been identified as one potential solution to greenhouse gas driven climate change. Efficient separation technologies are required for removal of carbon dioxide from flue gas streams to allow this solution to be widely implemented. This study is mainly focusing on the effect of different concentration of PDMS in dip-coating solution on the membrane’s performance. The asymmetric thin flat sheet membrane was prepared by dry/ wet phase inversion process consisting 20 wt% of polysulfone (PSf) as the support layer polymer and 80 wt% of N-methyl-2-pyrrolidone (NMP) as the solvent. PDMS was coated on the support PSf membrane with the composition of 10, 15 and 20 wt% of PSf in n-hexane respectively. The characterization of morphology of TFC membrane will be conducted by using Scanning Electron Microscopy (SEM) and Fourier Transform Infrared Radiation (FTIR). The membrane’s performance and the selectivity of CO2/N2 separation will be determined by conducting gas permeation test. The result obtained, show that membrane with highest concentration of PDMS in dip-coating solution give a highest performance in selectivity and unfortunately it contribute to lower permeability. It is vice versa from the membrane without PDMS in the top layer which gives highest value of permeability but lowest in selectivity. From the characterization and permeation test of the membrane, hereby the membrane with highest percentage of PDMS should be selected for the future development of membrane due to its highest value of selectivity which contributes to highest efficiency in separating the gas.
机译:二氧化碳的捕获和储存已被认为是解决温室气体驱动的气候变化的一种潜在解决方案。需要有效的分离技术从烟气流中除去二氧化碳,以使该解决方案得以广泛实施。这项研究主要集中在浸涂溶液中不同浓度的PDMS对膜性能的影响。通过干/湿相转化法制备不对称薄平板膜,其包含20重量%的作为支撑层聚合物的聚砜(PSf)和80重量%的作为溶剂的N-甲基-2-吡咯烷酮(NMP)。将PDMS用在正己烷中的PSf分别为10、15和20重量%的组成涂覆在支撑PSf膜上。 TFC膜的形态表征将通过使用扫描电子显微镜(SEM)和傅立叶变换红外辐射(FTIR)进行。膜的性能和CO2 / N2分离的选择性将通过进行气体渗透测试来确定。所获得的结果表明,浸涂溶液中PDMS浓度最高的膜具有最高的选择性,但不幸的是,它有助于降低渗透率。反之,在顶层没有PDMS的膜则具有最高的渗透率,但选择性却最低。从膜的表征和渗透测试中,应选择PDMS含量最高的膜用于膜的未来开发,因为其最高的选择性值有助于最大的气体分离效率。

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    Nur Atikah Che Embee;

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  • 年度 2013
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