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Rapid screening of CO_(2)-selective zeolites,carbons and MOFs by Five-step vacuum swing adsorption performances estimated with equilibrium theory analysisOA

中文摘要

It was aimed to evaluate a variety of conventional and emerging CO_(2)-selective adsorbents,considering their use in a five-step VSA(Vacuum Swing Adsorption)system for flue gas capture.In most works,porous materials synthesised for CO_(2)capture were assessed by simply comparing their gas adsorption capacities measured at fixed pressures,without considering how they would perform in cyclic adsorption processes.Meanwhile it would be so laborious to conduct full numerical simulations of adsorption processes for evaluating and screening a number of adsorbents.In this study,zeolites,carbons and MOFs synthesised for CO_(2)capture were assessed and ranked with respect to the CO_(2)product recovery and the bed productivity of a five-step VSA,with an Equilibrium Theory model developed for the adsorption process.The simplified VSA model can provide the results so quickly,requiring only the adsorbent’s pure component adsorption isotherms in solving it.According to the simplified model,the CO_(2)recovery hinges upon the process operating conditions,i.e.adsorption-to-desorption pressure ratio and feed composition as well as equilibrium adsorption isotherms,i.e.the shape of CO_(2)isotherm and adsorbent’s selectivity of CO_(2)over N_(2).The bed productivity is influenced greatly by adsorbent’s CO_(2)adsorption capacity,also affected by the VSA’s CO_(2)recovery and adsorbent’s CO_(2)selectivity.

Yixuan Zhang;Hyungwoong Ahn

School of Engineering,Institute for Materials and Processes,The University of Edinburgh,Robert Stevenson Road,Edinburgh EH93FB,UKSchool of Engineering,Institute for Materials and Processes,The University of Edinburgh,Robert Stevenson Road,Edinburgh EH93FB,UK Department of Chemical and Biomolecular Engineering,Yonsei University,50 Yonsei-ro,Seodaemun-gu,Seoul 03722,Republic of Korea

化学化工

CO_(2)capturePressure swing adsorptionEquilibrium theoryCO_(2)recoveryBed productivity

《Resources Chemicals and Materials》 2026 (2)

P.136-145,10

10.1016/j.recm.2025.100167

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