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首页> 外文期刊>Journal of Applied Polymer Science >Optimization of CO2-CH4 separation performance of integrally skinned assymetric membranes prepared from poly(2,6-dimethyl-1,4-phenylene oxide) by factorial design
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Optimization of CO2-CH4 separation performance of integrally skinned assymetric membranes prepared from poly(2,6-dimethyl-1,4-phenylene oxide) by factorial design

机译:通过析因设计优化由聚(2,6-二甲基-1,4-苯撑氧)制备的整体蒙皮不对称膜的CO2-CH4分离性能

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摘要

Integrally skinned asymmetric flat sheet membranes were prepared from poly(2,6-dimethyl 1,4-phenylene oxide)(PPO) for CO2-CH4 separation. Various experiments were carried out to identify PPO membranes, which have good mechanical strength and gas separation abilities. Membrane strength and selectivity depend on the interplay of the rate of precipitation and the rate of crystallization of the PPO. The effects of major variables involved in the membrane formation and performance, including the concentration of the polymer, solvent, and additive, the casting thickness, the evaporation time before gelation, and the temperature of the polymer solution, were investigated. Factorial design experiments were carried out to identify the factor effects. The membrane performance was modelled and optimized to approach preset values for high CO2 permeance and a high CO2 : CH4 permeance ratio. Membranes were prepared based on the optimum conditions identified by the model. Essentially, defect-free membranes were prepared at these conditions, which resulted in a pure gas permeance of 9.2 × 10-9 mol/m2 s Pa for CO2 and a permeance ratio of 19.2 for CO2: CH4.
机译:用聚(2,6-二甲基1,4-苯撑氧)(PPO)制备整体蒙皮的不对称平板膜用于CO2-CH4分离。进行了各种实验以鉴定具有良好的机械强度和气体分离能力的PPO膜。膜的强度和选择性取决于沉淀速率和PPO结晶速率的相互作用。研究了影响膜形成和性能的主要变量的影响,包括聚合物,溶剂和添加剂的浓度,流延厚度,胶凝之前的蒸发时间以及聚合物溶液的温度。进行析因设计实验以识别因子影响。对膜性能进行建模和优化,使其接近高CO2渗透率和高CO2:CH4渗透率的预设值。根据该模型确定的最佳条件制备膜。从本质上讲,在这些条件下制备了无缺陷的膜,从而使纯净气体的CO2渗透率为9.2×10-9 mol / m2 s Pa,CO2:CH4的渗透率为19.2。

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