Scinovex
review Open AccessTop 1% cited

Adsorption of Carbon Dioxide for Post-combustion Capture: A Review

Energy & Fuels · 2021 · Vol. 35(16) · pp. 12845–12868
Federica RaganatiFrancesco MiccioPaola Ammendola

Abstract

Aiming at meeting the global goals established for carbon dioxide (CO2) reduction, carbon capture and storage (CCS) plays a key role. In this framework, the adsorption-based CO2 post-combustion capture is considered one of the most promising approaches because it can provide remarkable energy savings with respect to the standard amine-based absorption capture. To date, most of the research effort has been devoted to the development of novel cutting-edge adsorbent materials with the primary purpose of enhancing the adsorption capacity and lifetime while reducing the heat of adsorption, thus lessening the energetic requirement of the sorbent regeneration. Anyway, other factors, beyond the sorbents, greatly affect the competitiveness of the CO2 capture based on the adsorption route, namely, the gas–solid contacting system, impacting the sorbent utilization efficiency, and the regeneration strategies, determining most of the global CO2 capture costs. This review describes the state-of-the-art and most recent progresses of the adsorption-based CO2 post-combustion capture. In particular, the first section describes the CO2 adsorption performances of different classes of solid sorbents on the basis of the most important evaluation parameters (equilibrium adsorption capacity, multi-cyclic stability, etc.). In the second section, the two main gas–solid contacting systems, i.e., fixed beds and fluidized beds, have been reviewed, pointing out their strengths and limitations. Finally, the third section provides a review on the different regeneration modes (temperature, pressure, or hybrid swings), with a focus on the possible strategies available to limit the energy penalty.

Carbon Dioxide Capture TechnologiesPhase Equilibria and ThermodynamicsChemical Looping and Thermochemical ProcessesSorbentAdsorptionProcess engineeringCombustionCarbon dioxideCarbon capture and storage (timeline)Materials scienceComputer scienceEnvironmental scienceWaste management
Citations
562
FWCI
35.75
field-weighted impact
References
205
Percentile
100%
vs. same field & year
Citations per year
References
An experimental adsorbent screening study for CO2 removal from N2
Microporous and Mesoporous Materials · 2004 · 349 citations
Reducing the Cost of CO<sub>2</sub> Capture from Flue Gases Using Pressure Swing Adsorption
Industrial & Engineering Chemistry Research · 2008 · 551 citations
Post-Combustion CO<sub>2</sub> Capture Using Solid Sorbents: A Review
Industrial & Engineering Chemistry Research · 2011 · 1,822 citations
Hybrid porous solids: past, present, future
Chemical Society Reviews · 2007 · 5,737 citations
CO2 adsorption in Y and X zeolites modified by alkali metal cation exchange
Microporous and Mesoporous Materials · 2006 · 518 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.