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Water vapor permeation properties of aromatic polyimides

机译:芳香族聚酰亚胺的水蒸气透过特性

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Water vapor permeation and separation behavior in solvent-resistant polyimide dense membranes was investigated. Model mixtures of 1-propanol (1-PrOH)/H_2O, and acetic acid (AA)/H_2O with concentration of 10wt.% of organic compounds, as well as a pyrolysis aqueous phase containing 11 wt.% organic compounds were used as vapor feeds. Solvent-resistant polyimide membranes with good mechanical and excellent water vapor separation properties could be prepared from PMDA-and BPDA-based membrane materials. The polyimide molecular structure had a strong effect on the mechanical, chemical and water vapor separation performance of the membranes prepared. Test conditions exhibited influence on membrane separation behavior. It was found that decreasing temperature favored the separation of water vapor from organics in the polyimide membranes. Membranes prepared from copolyimide BPDA―50DDS/50ODA and PMDA―50DDS/50ODA exhibited the best mechanical and chemical properties along with excellent water vapor separation performance. These membranes are particularly useful in the removal of water from water/organic mixtures.
机译:研究了耐溶剂性聚酰亚胺致密膜中水蒸气的渗透和分离行为。浓度为10wt。%有机化合物的1-丙醇(1-PrOH)/ H_2O和乙酸(AA)/ H_2O的模型混合物以及包含11 wt%有机化合物的热解水相用作蒸汽饲料。可以用基于PMDA和BPDA的膜材料制备具有良好机械性能和优异的水蒸气分离性能的耐溶剂聚酰亚胺膜。聚酰亚胺分子结构对制备的膜的机械,化学和水蒸气分离性能有很大影响。测试条件显示出对膜分离行为的影响。发现降低温度有利于将水蒸气与聚酰亚胺膜中的有机物分离。由共聚酰亚胺BPDA-50DDS / 50ODA和PMDA-50DDS / 50ODA制成的膜表现出最佳的机械和化学性能,并具有出色的水蒸气分离性能。这些膜在从水/有机混合物中除去水特别有用。

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