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Development and Evaluation of Porous Materials for Carbon Dioxide Separation and Capture

机译:二氧化碳分离捕集多孔材料的开发与评价

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摘要

The development of new microporous materials for adsorption separation processes is a rapidly growing field because of potential applications such as carbon capture and sequestration (CCS) and purification of clean-burning natural gas. In particular, new metal-organic frameworks (MOFs) and other porous coordination polymers are being generated at a rapid and growing pace. Herein, we address the question of how this large number of materials can be quickly evaluated for their practical application in carbon dioxide separation processes. Five adsorbent evaluation criteria from the chemical engineering literature are described and used to assess over 40 MOFs for their potential in CO2 separation processes for natural gas purification, landfill gas separation, and capture of CO2 from power-plant flue gas. Comparisons with other materials such as zeolites are made, and the relationships between MOF properties and CO2 separation potential are investigated from the large data set. In addition, strategies for tailoring and designing MOFs to enhance CO2 adsorption are briefly reviewed.
机译:由于潜在的应用,例如碳捕获和封存(CCS)以及净化燃烧天然气的提纯,用于吸附分离工艺的新型微孔材料的开发正在迅速发展。尤其是,新的金属有机骨架(MOF)和其他多孔配位聚合物正在以迅猛的速度增长。在这里,我们解决的问题是如何快速评估大量材料的实际应用,以用于二氧化碳分离工艺。描述了化学工程文献中的五种吸附剂评估标准,并用于评估40多个MOF在CO2分离过程中的潜力,这些过程用于天然气净化,垃圾填埋气分离以及从电厂烟道气中捕获CO2。与其他材料(例如沸石)进行了比较,并从大数据集中研究了MOF特性与CO2分离潜力之间的关系。此外,简要回顾了定制和设计MOF以增强CO2吸附的策略。

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