膜
聚合物
化学
溶剂
蒸馏
分馏
有机化学
碳氢化合物混合物
分子
碳氢化合物
高分子化学
生物化学
作者
Kirstie A. Thompson,Ronita Mathias,Dae‐Ok Kim,Ji Hoon Kim,Neel Rangnekar,J.R. Johnson,Scott J. Hoy,Irene Bechis,Andrew Tarzia,Kim E. Jelfs,Benjamin A. McCool,Andrew G. Livingston,Ryan P. Lively,M. G. Finn
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2020-07-17
卷期号:369 (6501): 310-315
被引量:237
标识
DOI:10.1126/science.aba9806
摘要
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 N-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.
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