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Quaternary functionalized mesoporous adsorbents for ultra-high kinetics of CO₂ capture from air

Engineering and Technology

Quaternary functionalized mesoporous adsorbents for ultra-high kinetics of CO₂ capture from air

T. Wang, X. Wang, et al.

Discover a groundbreaking direct air capture (DAC) adsorbent with unprecedented CO₂ capture kinetics, developed by researchers Tao Wang, Xinru Wang, Chenglong Hou, and Jun Liu. This innovative material showcases superior moisture swing adsorption capabilities with an impressive half-time of just 2.9 minutes, making it a game-changer in carbon capture technology.

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~3 min • Beginner • English
Abstract
Obstacles to widespread deployments of direct air capture of CO₂ (DAC) lie in high material and energy costs. By grafting quaternary ammonium (QA) functional group to mesoporous polymers with high surface area, a unique DAC adsorbent with moisture swing adsorption (MSA) ability and ultra-high kinetics was developed in this work. Functionalization is designed for efficient delivery of QA group through mesopores to active substitution sites. This achieved ultra-high kinetics adsorbent with half time of 2.9 min under atmospheric environment, is the highest kinetics value reported among DAC adsorbents. A cyclic adsorption capacity of 0.26 mmol g⁻¹ is obtained during MSA process. Through adsorption thermodynamics, it is revealed that adsorbent with uniform cylindrical pore structure has higher functional group efficiency and CO₂ capacity. Pore structure can also tune the MSA ability of adsorbent through capillary condensation of water inside its mesopores. The successful functionalization of mesoporous polymers with superb CO₂ adsorption kinetics opens the door to facilitate DAC adsorbents for large-scale carbon capture deployments.
Publisher
Scientific Reports
Published On
Dec 08, 2020
Authors
Tao Wang, Xinru Wang, Chenglong Hou, Jun Liu
Tags
direct air capture
CO₂ capture
adsorbent
moisture swing adsorption
quaternary ammonium
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