再生(生物学)
多孔性
材料科学
化学工程
压缩(物理)
吸收(声学)
溶剂
多孔介质
超声
工艺工程
环境科学
废物管理
吸收能力
传质
甲烷
作者
Jessica M. Rimsza,H. Paul. Root,Tina M. Nenoff
标识
DOI:10.1021/acs.iecr.5c03146
摘要
Current liquid-phase gas capture materials incur high operational costs due to energy-intensive regeneration processes, creating an industrial need for alternative materials that retain engineering benefits while reducing energy requirements. Porous liquids (PLs), liquid-phase materials with permanent internal porosity, have emerged as promising replacements with excellent gas absorption capacity and selectivity. Despite these benefits, evaluation of regeneration in PLs remains rare. In this Perspective, we evaluate the effects of solvent interactions, mass transport, and binding site formation that control PL regeneration. While conventional regeneration methods exist in PLs, the diversity of PL compositions allows for novel regeneration processes including light irradiation via use of photosensitive azobenzene-based cages, isostatic compression to collapse internal pore structures, and localized heating via sonication for gas desorption. The wide variability in porous host materials that generate the internal porosity in PLs facilitates innovative low-energy regeneration pathways, positioning them as a transformative solution in separation technologies.
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