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Superglassy Polymers to Treat Natural Gas by Hybrid Membrane/Amine Processes: Can Fillers Help?

机译:超胶囊聚合物通过杂交膜/胺流程治疗天然气:填充物有助于帮助吗?

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摘要

Superglassy polymers have emerged as potential membrane materials for several gas separation applications, including acid gas removal from natural gas. Despite the superior performance shown at laboratory scale, their use at industrial scale is hampered by their large drop in gas permeability over time due to physical aging. Several strategies are proposed in the literature to prevent loss of performance, the incorporation of fillers being a successful approach. In this work, we provide a comprehensive economic study on the application of superglassy membranes in a hybrid membrane/amine process for natural gas sweetening. The hybrid process is compared with the more traditional stand-alone amine-absorption technique for a range of membrane gas separation properties (CO2 permeance and CO2/CH4 selectivity), and recommendations for long-term membrane performance are made. These recommendations can drive future research on producing mixed matrix membranes (MMMs) of superglassy polymers with anti-aging properties (i.e., target permeance and selectivity is maintained over time), as thin film nanocomposite membranes (TFNs). For the selected natural gas composition of 28% of acid gas content (8% CO2 and 20% H2S), we have found that a CO2 permeance of 200 GPU and a CO2/CH4 selectivity of 16 is an optimal target.
机译:超凝聚聚合物作为几种气体分离应用的潜在膜材料,包括从天然气中去除酸性气体。尽管在实验室规模上表现出卓越的性能,但由于物理老化,它们在工业规模的使用量随时间的大量劣化而受到阻碍。在文献中提出了几种策略,以防止损失绩效,填料的融入是一种成功的方法。在这项工作中,我们对杂交膜/胺加浓杂交膜/胺工艺中的超胶囊膜应用综合经济研究。将杂交过程与膜气体分离性(CO2渗透和CO2 / CH4选择性)的更传统的独立胺吸收技术进行比较,并制备用于长期膜性能的推荐。这些建议可以推动将未来关于产生具有抗衰老性质的混合基质膜(MMM)的研究的研究(即,靶渗透和选择性随时间维持),作为薄膜纳米复合膜(TFN)。对于所选天然气组合物为28%的酸性气体含量(8%CO 2和20%H2S),我们发现200GPu的CO 2渗透率和16的CO 2 / CH 4选择性为16是最佳靶标。

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