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Optimization of the Preparation of Hydrophobic Isotactic Polypropylene Flat Sheet Membrane by Response Surface Methodology Design

机译:响应面法优化疏水等规聚丙烯平板膜的制备。

摘要

Membrane contactor (MC) is a cost effective solution that able to reduce the release carbon dioxide into the atmosphere.The membrane applies in a MC system are highly hydrophobic, high surface porosity, low mass transfer resistance and high resistance to chemicals in the feed streams.In this study, Response Surface Methodology (RSM) design consists of 2-Level Factorial and Centre Composite Design, which were performed for screening and optimization respectively, on the production of isotactic Polypropylene (iPP) microporous flat sheet. The results obtained from theudanalysis of variance of contact angle, showed that the impacts of drying temperature and drying time are much more important than polymer concentration and immersion time in methanol. The most optimum membranes prepared in this experiment were membranes with the contact angle value of 106.22° by the interacting factors of dry temperature and dry time, which are 54.96°C and 18.64 minutes respectively.The regression equation obtained from the 2-Level Factorial and Membrane contactor (MC) is a cost effective solution that able to reduce the release carbon dioxide into the atmosphere.The membrane applies in a MC system are highly hydrophobic, high surface porosity, low mass transfer resistance and high resistance to chemicals in the feed streams.In this study, Response Surface Methodology (RSM) design consists of 2-Level Factorial and Centre Composite Design, which were performed for screening and optimization respectively, on the production of isotactic Polypropylene (iPP) microporous flat sheet. The results obtained from the analysis of variance of contact angle, showed that the impacts of drying temperature and dryingudtime are much more important than polymer concentration and immersion time in methanol. The most optimum membranes prepared in this experiment were membranes with the contact angle value of 106.22° by the interacting factors of dry temperature and dry time, which are 54.96°C and 18.64 minutes respectively.The regression equation obtained from the 2-Level Factorial and Membrane contactor (MC) is a cost effective solution that able to reduce the release carbon dioxide into the atmosphere.The membrane applies in a MC system are highly hydrophobic, high surface porosity, low mass transfer resistance and high resistance to chemicals in the feed streams.In this study, Response Surface Methodology (RSM) design consists of 2-Level Factorial and Centre Composite Design, which were performed for screening and optimization respectively, on the production of isotactic Polypropylene (iPP) microporous flat sheet. The results obtained from the analysis of variance of contact angle, showed that the impacts of drying temperature and dryingudtime are much more important than polymer concentration and immersion time in methanol. The most optimum membranes prepared in this experiment were membranes with the contact angle value of 106.22° by the interacting factors of dry temperature and dry time, which are 54.96°C and 18.64 minutes respectively.The regression equation obtained from the 2-Level Factorial and Central Composite Design can be expected to apply in the preparation of iPP membranes usinguddiphenyl ether (DPE) diluents and can reasonably predict and optimize the performance of the iPP membranes.ud
机译:膜接触器(MC)是一种经济有效的解决方案,能够减少释放到大气中的二氧化碳.MC系统中使用的膜具有高度疏水性,高表面孔隙率,低传质性和对进料流中化学品的高耐受性在这项研究中,响应面方法学(RSM)设计由两级因子设计和中心复合设计组成,分别用于筛选和优化等规聚丙烯(iPP)微孔平板的生产。通过对接触角变化的分析得出的结果表明,干燥温度和干燥时间的影响比聚合物浓度和浸入时间对甲醇的影响更为重要。在本实验中制备的最佳膜是受干燥温度和干燥时间的相互作用因素影响的接触角值为106.22°的膜,分别为54.96°C和18.64分钟。膜接触器(MC)是一种经济有效的解决方案,能够减少释放到大气中的二氧化碳.MC系统中使用的膜具有高度疏水性,高表面孔隙率,低传质性和对进料流中化学品的高耐受性在这项研究中,响应面方法学(RSM)设计由两级因子设计和中心复合设计组成,分别用于筛选和优化等规聚丙烯(iPP)微孔平板的生产。从接触角的变化分析中获得的结果表明,干燥温度和干燥 udtime的影响比聚合物浓度和浸入时间对甲醇的影响要重要得多。在本实验中制备的最佳膜是受干燥温度和干燥时间的相互作用因素影响的接触角值为106.22°的膜,分别为54.96°C和18.64分钟。膜接触器(MC)是一种经济有效的解决方案,能够减少释放到大气中的二氧化碳.MC系统中使用的膜具有高度疏水性,高表面孔隙率,低传质性和对进料流中化学品的高耐受性在这项研究中,响应面方法学(RSM)设计由两级因子设计和中心复合设计组成,分别用于筛选和优化等规聚丙烯(iPP)微孔平板的生产。从接触角的变化分析中获得的结果表明,干燥温度和干燥 udtime的影响比聚合物浓度和浸入时间对甲醇的影响要重要得多。在本实验中制备的最佳膜是受干燥温度和干燥时间的相互作用因素影响的接触角值为106.22°的膜,分别为54.96°C和18.64分钟。可以预期Central Composite Design将在使用 uddiphenyl ether(DPE)稀释剂制备iPP膜中应用,并且可以合理地预测和优化iPP膜的性能。 ud

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