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Effect of Solvent Evaporation Time on CO_2/CH_4 Gas Performance for Poly (Lactic) Acid Membranes

机译:溶剂蒸发时间对多(乳酸)酸膜的CO_2 / CH_4气体性能的影响

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Membrane technology in gas separation application was commercialized approximately 30 years ago because of a number of advantages offered compare to the conventional technique. The use of poly (lactic acid) (PLA), a biodegradable polymer, as a membrane material would assist the reduction of depending to petroleum-based polymer. This study investigated the effect of evaporation time to the gas separation performance of PLA membrane. Membrane prepared from polymer solution consists of PLA and dicholoremethane (DCM) as solvent was fabricated using pneumatically controlled casting system with dry/wet phase inversion method. Permeation test was conducted using pure carbon dioxide and methane gas. The results revealed that as the evaporation time increased, the pore size and surface porosity decreased, while the skin layer thickness increased. Although the morphology of the prepared membranes showed the desirable structure, the gas separation performance of the membrane prepared with polymer concentration of 15wt% and 60s evaporation time was found to be promising but not yet commercially ready.
机译:大约30年前,气体分离应用中的膜技术是由于与传统技术相比提供的许多优势。使用聚(乳酸)(PLA),可生物降解的聚合物作为膜材料将有助于取决于石油基聚合物。本研究研究了蒸发时间对PLA膜气体分离性能的影响。由聚合物溶液制备的膜由PLA和DicholoreMethane(DCM)组成,用具有干/湿相反转方法的气动控制铸造系统制造溶剂。使用纯二氧化碳和甲烷气体进行渗透试验。结果表明,随着蒸发时间增加,孔径和表面孔隙率降低,而表层厚度增加。尽管制备的膜的形态显示了所需的结构,但发现用聚合物浓度为15wt%和60s蒸发时间的膜的气体分离性能是有望的,但尚未商业准备。

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