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Preparation of Alumina Hollow Fiber Membrane with Controlled Pore Structure for Contactor Process

机译:具有控制孔隙结构的氧化铝中空纤维膜的制备方法

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The alumina hollow fiber membranes were prepared by spinning and then sintering method. The dope solution was fabricated by using l-methyl-2-pyrrolidone (NMP), dimethylsulfoxide (DMSO), dimethylacetamide (DMAc), and triethylphosphite (TEP) as solvents, which have different interaction rate with non-solvent. SEM analysis showed that the alumina hollow fiber membranes have different pore structure. In particular, the hollow fiber membranes prepared with DMSO, DMAc and NMP had finger structures. In contrast, when it was made with TEP, the membrane had a sponge structure. The gas permeability and the contact angle of each hollow fiber membranes were measured. The fabricated hollow fiber membranes were applied to the membrane contact process for the carbon dioxide absorption. The hollow fiber membranes prepared with TEP is had the highest carbon dioxide absorption characteristics. A higher carbon dioxide absorption activity of hollow fiber membranes prepared with TEP was suggested to be due to its gas permeability and hydrophobicity. In conclusion, it was confirmed that the higher gas permeation due to pore structure of the membrane had a favorable effect on the absorption performance.
机译:通过纺丝然后烧结方法制备氧化铝中空纤维膜。通过使用L-甲基-2-吡咯烷酮(NMP),二甲基磺酰甲醚(DMSO),二甲基乙酰胺(DMAC)和三乙基磷酸酯(TEP)作为溶剂来制造掺杂溶液,其具有与非溶剂不同的相互作用率。 SEM分析表明,氧化铝中空纤维膜具有不同的孔结构。特别地,用DMSO,DMAC和NMP制备的中空纤维膜具有手指结构。相比之下,当用TEP制备时,膜具有海绵结构。测量每个中空纤维膜的透气性和接触角。将制造的中空纤维膜应用于用于二氧化碳吸收的膜接触过程。用TEP制备的中空纤维膜具有最高的二氧化碳吸收特性。建议用TEP制备的中空纤维膜的较高二氧化碳吸收活性由于其透气性和疏水性,因此是由于其渗透性和疏水性。总之,证实,由于膜的孔结构引起的较高的气体渗透对吸收性能有利影响。

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