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Preliminary Fractional Factorial Design(FFD)study using incorporation of Graphene Oxide in PVC in mixed matrix membrane to enhance CO2/CH4 separation

机译:使用PVC中的石墨烯氧化物在混合基质膜中掺入初步分数阶乘设计(FFD)研究,增强CO 2 / CH4分离

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Mixed matrix membranes(MMMs)comprising of where polyvinyl chloride(PVC)and graphene oxide(GO)were employed in the membrane fabrication in order to improve the membrane characteristics.In this study of gas separation using mixed matrix membrane,gases such as CO2 and CH4 were used.The objectives of this research were to synthesize and develop MMMs PVC/GO,and also to carry out screening to determine best factors condition for membrane to function at high selectivity.The development of MMMs PVC/GO was based on 5 factors.Based on the screening tests,the run which was made up of factors PVC 20%,GO 4%,1 bar of pressure during gas permeation,NMP solvent,and immersion time of 300s,shows to have the highest selectivity at 26.09 which was above the upper bound lines in the Robeson's Upper bound plot.Fractional Factorial Design(FFD)was applied to study the minimalization of influenced factors during MMMs preparation.Based on the FFD run,the R-squared(R2)was 1.00.Factors that had less impact on the maximum selectivity were the time membrane immersed in water bath(s),and also gas pressure during gas permeation test.
机译:混合基质膜(MMM),其包含在膜制造中使用聚氯乙烯(PVC)和石墨烯氧化物(GO)以改善膜特性。在这种使用混合基质膜,诸如CO2等气体的气体分离的研究使用CH4。本研究的目的是合成和开发MMMS PVC / GO,以及进行筛选以确定在高选择性下膜功能的最佳因素条件。MMMS PVC / GO的发育是基于5因素。基于筛选试验,由因子PVC 20%组成的运行,在气体渗透,NMP溶剂和浸入时间为300秒的液体渗透期间,1%,表明在26.09时具有最高的选择性。高于罗伯森的上限绘图的上边界线上的上界线。应用了MMM准备期间影响因素的极小化。基于FFD运行,R线(R2)为1.00。对较少的影响最大选择性是浸入水浴中的时间膜,以及在气体渗透测试期间的气体压力。

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