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2/CH 4 and O 2/N 2 separation derived from polybenzimidazole/Matrimid and UIP-S precursor blends]]>

机译:<![CDATA [工作压力和热解条件对CO <下标> 2 / CH <下标> 4 和O <下标> 2 / n的性能 <下标> 2 衍生自聚苯苯胺咪唑/基质腈和UIP-S前体共混物的分离]]>

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摘要

This work aims to extend previous studies about performance of gas separation through the carbon molecular sieve membrane (CMSMs) in different conditions by employing statistical analysis and modeling to find the optimal pyrolysis and operating conditions. General D-optimal design is applied to optimize gas permeability and selectivity by implementing five main parameters consisting of “precursor materials”, “blend composition”, “final pyrolysis temperature”, “vacuum pressure” and “operating pressure”. Results from statistical analysis showed that each of these five variables plays a significant role in performance of carbon membranes. Also findings showed that pyrolysis temperature was the dominant factor among the others; whereas operating pressure was almost a neutral one. The optimal condition is the blend composition of 75% Matrimid, pyrolysis temperature at 745.1?°C and vacuum pressure of 1.0E?07?Torr. Under these conditions, the model estimated a CO~(2)/CH~(4)selectivity of 133.7. These developed models can be employed as a useful technique for gas transport optimization.
机译:这项工作旨在通过采用统计分析和建模来扩展通过碳分子筛膜(CMSMS)在不同条件下通过统计分析和建模来实现最佳热解和操作条件的研究。将一般的D-最佳设计应用于通过实施由“前体材料”,“混合组合物”,“最终热解温”,“真空压力”和“操作压力”组成的五个主要参数来优化助气性和选择性。统计分析结果表明,这五种变量中的每一个在碳膜的性能中起着重要作用。结果表明,热解温是其他的主要因素;而操作压力几乎是一个中性的。最佳条件是75%基质的共混物组合物,热解温度为745.1Ω·℃,真空压力为1.0e≤07Ω·托。在这些条件下,模型估计了133.7的CO〜(2)/ CH〜(4)选择性。这些开发的模型可用作气体传输优化的有用技术。

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