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Applicability of PolyActive? Thin Film Composite Membranes for CO 2 Separation from C 2 H 4 Containing Multi-Component Gas Mixtures at Pressures up to 30 Bar

机译:PolyActive的适用性?用于在高达30 Bar的压力下从包含多组分气体混合物的C 2 H 4中分离出CO 2的薄膜复合膜

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The PolyActive? thin film composite membrane (TFCM) has already been successfully applied for CO 2 separation tasks at feed pressures up to 10 bar. To investigate the applicability at higher pressures, measurements were undertaken with C 2 H 4 containing gas mixtures with a composition comparable to the product stream of the oxidative coupling of methane process, as well as single gases up to a feed pressure of 30 bar. Furthermore, the permeances of the conducted gas mixture experiments were simulated. The results show a strong swelling influence of CO 2 on the used membrane depending on the CO 2 fugacity. This swelling effect leads to a pronounced decrease in selectivity. The observed membrane behavior at high pressures could not be predicted by the Free Volume Model (FVM). Two different simulations were conducted: one based on parameters calculated from single gas data measured at pressures up to 2 bar; and a second based on parameters calculated from single gas data measured at pressures from 2 to 30 bar. The two simulations differ in their prediction accuracy. However, they confirm that it is possible to predict the measured permeances in the pressure range up to an average CO 2 fugacity of 6 bar.
机译:PolyActive?薄膜复合膜(TFCM)已成功应用于进料压力高达10 bar的CO 2分离任务。为了研究在更高压力下的适用性,对含有C 2 H 4的气体混合物进行了测量,该气体混合物的组成与甲烷氧化偶联过程的产物流相当,并且进料压力高达30 bar。此外,模拟了进行的气体混合实验的渗透性。结果表明,取决于CO 2逸度,CO 2对用过的膜有很强的溶胀作用。这种溶胀作用导致选择性显着降低。自由体积模型(FVM)无法预测在高压下观察到的膜行为。进行了两种不同的模拟:一种是基于在高达2 bar的压力下测得的单一气体数据所计算出的参数;另一种是基于在2 bar以下的压力下测得的参数。第二个参数是根据在2至30 bar的压力下测得的单一气体数据计算出的参数得出的。两种模拟的预测精度不同。但是,他们证实可以预测在最高6 bar的平均CO 2逸度的压力范围内测得的渗透率。

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