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High-PerformancePolybenzimidazole Membranes for Helium Extraction from Natural Gas

机译:高效能从天然气中提取氦气的聚苯并咪唑膜

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摘要

Increasing helium use in research and production processes necessitates separation techniques to secure sufficient supply of this noble gas. Energy-efficient helium production from natural gas is still a big challenge. Membrane gas separation technology could play an important role. Herein, a novel poly(p-phenylene benzobisimidazole) (PBDI) polymeric membrane for helium extraction from natural gas with low He abundance is reported. The membranes were fabricated by a facile interfacial polymerization at room temperature. The thin and defect-free membrane structure was manipulated by the confined polymerization of monomers diffusing through the interface between two immiscible liquids. Both He/CH4 selectivity and He permeance are competitive over those of other commercial perfluoropolymers. Even at low He content of 1%, separation performance of the PBDI membrane transcended the current upper bound. The unprecedented selectivity (>1000) together with the excellent stability (∼360 h) endows PBDI membranes with a great potential for energy-efficient industrial recovery andproduction of this precious He resources from reservoirs with lowabundance.
机译:在研究和生产过程中越来越多地使用氦气,需要采用分离技术以确保足够供应这种稀有气体。用天然气生产高效的氦气仍然是一个巨大的挑战。膜气分离技术可能起重要作用。本文中,报道了用于从低He丰度的天然气中提取氦气的新型聚(对亚苯基苯并双咪唑)(PBDI)聚合物膜。通过在室温下容易的界面聚合来制造膜。薄而无缺陷的膜结构是通过在两种不混溶液体之间扩散的单体的受限聚合来控制的。 He / CH4的选择性和He的渗透率都比其他市售全氟聚合物高。即使在1%的低He含量下,PBDI膜的分离性能也超越了当前的上限。前所未有的选择性(> 1000)和出色的稳定性(〜360 h)赋予PBDI膜巨大的潜力,可实现节能工业回收和从低储层生产这种宝贵的氦资源丰富。

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