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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Structure-performance characterization for carbon molecular sieve membranes using molecular scale gas probes
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Structure-performance characterization for carbon molecular sieve membranes using molecular scale gas probes

机译:碳分子筛膜用分子尺度气体探针表征结构性能

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摘要

Understanding the relationship between carbon molecular sieve (CMS) pore structure and corresponding gas separation performance enables optimization for a given gas separation application. The final pyrolysis temperature and starting polymer precursor are the two critical parameters in controlling CMS performance. This study considers structure and performance changes of CMS derived from a commercially available polymer precursor at different pyrolysis temperatures. As reviewed in this paper, most traditional characterization methods based on microscopy, X-ray diffraction, spectroscopy, sorption-based pore size distribution measurements etc. provide limited information for relating separation performance to the CMS morphology and structural changes. A useful alternative approach based on different sized gases as molecular scale probes of the CMS pore structure was successfully used here in conjunction with separation data to provide critical insights into the structure performance relationships of the engineered CMS. (C) 2015 Elsevier Ltd. All rights reserved.
机译:了解碳分子筛(CMS)孔结构与相应的气体分离性能之间的关系,可以针对给定的气体分离应用进行优化。最终热解温度和起始聚合物前体是控制CMS性能的两个关键参数。这项研究考虑了在不同的热解温度下衍生自市售聚合物前体的CMS的结构和性能变化。如本文所述,大多数基于显微镜,X射线衍射,光谱学,基于吸附的孔径分布测量等传统表征方法为将分离性能与CMS形态和结构变化相关提供了有限的信息。在此成功地使用了一种基于不同尺寸气体的有用替代方法作为CMS孔结构的分子尺度探针,并结合了分离数据,以提供对工程CMS的结构性能关系的关键见解。 (C)2015 Elsevier Ltd.保留所有权利。

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