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Experimental and theoretical studies on gas permeation through carbon molecular sieve membranes

机译:碳分子筛膜对气体渗透的实验和理论研究

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Carbon molecular sieve membranes were prepared from Kapton~R polyimide film at different temperatures under vacuum. The micropore volume determined by CO2 adsorption (273 K) increased with increasing carbonisation temperature and reached a maximum value of 0.34 cm~3/g at a temperature of 1273 K. The gas permeances through the membranes increased with increasing carbonisation temperature with a maximum permeance at 873 K, but subsequently decreased with increasing temperature above 873 K. The samples carbonised at 873 K produced gas permeances of 16.89 x 10~(-10),10.10 x 10~(-10) and 9.80 x 10~(-10) mol/(m~2 s Pa) for O2, N2 and CH4, respectively. The theoretical upper limit of the permeation rate for the gases with different masses was observed at the activation energy of 0 kj/mol as determined by Knudsen diffusion mechanism. The magnitude and the distribution of the potential energy between gas molecules and carbon pore wall were strongly dependent on the membrane pore size. For the same pore diameter and internuclear separation, the order of the absolute values of the average potential energy was O2 < N2 < CH4. The calculated gas permeances increased sharply with increasing pore diameter and the differences in the gas permeances among O2, N2 and CH4 were significant for membrane pores smaller than 6 A.
机译:用Kapton〜R聚酰亚胺薄膜在不同温度,真空下制备碳分子筛膜。 CO2吸附(273 K)决定的微孔体积随着碳化温度的升高而增加,在1273 K的温度下达到0.34 cm〜3 / g的最大值。通过膜的气体渗透率随着碳化温度的升高而增加,最大渗透率在873 K时,但随后随温度升高而降低。在873 K时碳化的样品产生的气体渗透率为16.89 x 10〜(-10),10.10 x 10〜(-10)和9.80 x 10〜(-10) O2,N2和CH4分别为mol /(m〜2 s Pa)。通过克努森扩散机制确定,在0 kj / mol的活化能下,观察到了不同质量气体的渗透速率的理论上限。气体分子与碳孔壁之间的势能的大小和分布在很大程度上取决于膜的孔径。对于相同的孔径和核间分离,平均势能的绝对值的顺序为O2

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