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芳基连接的螺旋环聚合物用于复杂碳氢混合物的膜分离。

-Aryl-linked spirocyclic polymers for membrane separations of complex hydrocarbon mixtures.

机构信息

School of Chemistry and Biochemistry, Georgia Institute of Technology, Atlanta, GA 30332, USA.

School of Chemical and Biomolecular Engineering, Georgia Institute of Technology, Atlanta, GA 30332, USA.

出版信息

Science. 2020 Jul 17;369(6501):310-315. doi: 10.1126/science.aba9806.

Abstract

The fractionation of crude-oil mixtures through distillation is a large-scale, energy-intensive process. Membrane materials can avoid phase changes in such mixtures and thereby reduce the energy intensity of these thermal separations. With this application in mind, we created spirocyclic polymers with -aryl bonds that demonstrated noninterconnected microporosity in the absence of ladder linkages. The resulting glassy polymer membranes demonstrated nonthermal membrane fractionation of light crude oil through a combination of class- and size-based "sorting" of molecules. We observed an enrichment of molecules lighter than 170 daltons corresponding to a carbon number of 12 or a boiling point less than 200°C in the permeate. Such scalable, selective membranes offer potential for the hybridization of energy-efficient technology with conventional processes such as distillation.

摘要

通过蒸馏对原油混合物进行分馏是一个大规模、能源密集型的过程。膜材料可以避免混合物中的相变,从而降低这些热分离的能源强度。考虑到这种应用,我们合成了带有 -芳基键的螺环聚合物,在没有梯形键的情况下表现出非连通的微孔性。所得的玻璃态聚合物膜通过分子的基于“分类”和基于尺寸的“排序”组合实现了轻质原油的非热膜分离。我们观察到在渗透物中轻于 170 道尔顿的分子(对应于 12 个碳数或沸点低于 200°C)的富集。这种可扩展的、选择性的膜为将节能技术与传统工艺(如蒸馏)相结合提供了潜力。

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