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Alkalinity Concentration Swing for Direct Air Capture of Carbon Dioxide

Anatoly Rinberg, Andrew M. Bergman, Daniel P. Schrag, Michael J. Aziz

2021ChemSusChem24 citationsDOIOpen Access PDF

Abstract

Abstract The alkalinity concentration swing (ACS) is a new process for direct air capture of carbon dioxide driven by concentrating an alkaline solution that has been exposed to the atmosphere and loaded with dissolved inorganic carbon. Upon concentration, the partial pressure of CO 2 increases, allowing for extraction and compression. Higher concentration factors result in proportionally higher outgassing pressure, and higher initial alkalinity concentrations at the same concentration factor outgas a higher concentration of CO 2 . Two desalination technologies, reverse osmosis and capacitive deionization, are examined as possible ACS implementations, and two corresponding energy models are evaluated. The ACS is compared to incumbent technologies and estimates for water, land, and energy requirements for capturing one million tonnes of CO 2 per year are made. Estimates for the lower end of the energy range for both approaches compare favorably to other approaches, such as solid sorbent and calcining methods.

Topics & Concepts

AlkalinityOutgassingCapacitive deionizationCarbon dioxideDesalinationReverse osmosisSorbentEnvironmental scienceCalcinationChemistryEnvironmental chemistryEnvironmental engineeringAdsorptionMembraneBiochemistryOrganic chemistryCatalysisMembrane-based Ion Separation TechniquesMembrane Separation TechnologiesHybrid Renewable Energy Systems