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用于清洁能源技术的微孔材料和膜中的工程传输。

Engineered Transport in Microporous Materials and Membranes for Clean Energy Technologies.

机构信息

Department of Chemical and Biomolecular Engineering, The University of California, Berkeley, CA, 94720, USA.

Department of Chemistry, The University of California, Berkeley, CA, 94720, USA.

出版信息

Adv Mater. 2018 Feb;30(8). doi: 10.1002/adma.201704953. Epub 2018 Jan 8.

Abstract

Many forward-looking clean-energy technologies hinge on the development of scalable and efficient membrane-based separations. Ongoing investment in the basic research of microporous materials is beginning to pay dividends in membrane technology maturation. Specifically, improvements in membrane selectivity, permeability, and durability are being leveraged for more efficient carbon capture, desalination, and energy storage, and the market adoption of membranes in those areas appears to be on the horizon. Herein, an overview of the microporous materials chemistry driving advanced membrane development, the clean-energy separations employing them, and the theoretical underpinnings tying membrane performance to membrane structure across multiple length scales is provided. The interplay of pore architecture and chemistry for a given set of analytes emerges as a critical design consideration dictating mass transport outcomes. Opportunities and outstanding challenges in the field are also discussed, including high-flux 2D molecular-sieving membranes, phase-change adsorbents as performance-enhancing components in composite membranes, and the need for quantitative metrologies for understanding mass transport in heterophasic materials and in micropores with unusual chemical interactions with analytes of interest.

摘要

许多前瞻性的清洁能源技术都依赖于可扩展和高效的基于膜的分离技术的发展。对微孔材料基础研究的持续投资开始在膜技术成熟度方面取得回报。具体而言,膜选择性、渗透性和耐久性的提高正在被用于更有效的碳捕集、海水淡化和储能,并且膜在这些领域的市场采用似乎即将出现。本文概述了推动先进膜发展的微孔材料化学、利用它们的清洁能源分离以及将膜性能与跨多个长度尺度的膜结构联系起来的理论基础。对于给定的一组分析物,孔结构和化学之间的相互作用是决定传质结果的关键设计考虑因素。还讨论了该领域的机遇和突出挑战,包括高通量二维分子筛膜、作为复合膜中性能增强组件的相变换吸附剂,以及需要用于理解异相材料和与感兴趣的分析物具有异常化学相互作用的微孔中的传质的定量计量学。

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