Monat: Juli 2021

Derevschikov, Vladimir S.; et al. (2021): Operating limits and features of direct air capture on K2CO3/ZrO2 composite sorbent

Derevschikov, Vladimir S.; Veselovskaya, Janna V.; Shalygin, Anton S.; A.Yatsenko, Dmitry; Sheshkovas, Andrey Z.; Martyanov, Oleg N. (2021): Operating limits and features of direct air capture on K2CO3/ZrO2 composite sorbent. In Chinese Journal of Chemical Engineering. DOI: 10.1016/j.cjche.2021.07.005.

„In the present study, we examinedand revealed the influence of the temperature swing adsorption (TSA) cycle conditions on the CO2 sorption properties of a novel aerogel-based K2CO3/ZrO2 sorbent in a DAC process.“

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Rinberg, Anatoly; et al. (2021): Alkalinity Concentration Swing for Direct Air Capture of Carbon Dioxide

Rinberg, Anatoly; Bergman, Andrew Michael; Schrag, Daniel P.; Aziz, Michael J. (2021): Alkalinity Concentration Swing for Direct Air Capture of Carbon Dioxide. In Chemsuschem. DOI: 10.1002/cssc.202100786.

„We describe a new process — the Alkalinity Concentration Swing (ACS) — 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.“

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Dove, Zachary; et al. (2021): The middle powers roar: Exploring a minilateral solar geoengineering deployment scenario

Dove, Zachary; Horton, Joshua; Ricke, Katharine (2021): The middle powers roar: Exploring a minilateral solar geoengineering deployment scenario. In Futures 132, p. 102816. DOI: 10.1016/j.futures.2021.102816.

„Here we reflect on our participation in a solar geoengineering governance scenario exercise conducted at the 2019 International Summer School on Geoengineering Governance.“

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Weisenstein, Debra K.; et al. (2021): A Model Intercomparison of Stratospheric Solar Geoengineering by Accumulation-Mode Sulfate Aerosols

Weisenstein, Debra K.; Visioni, Daniele; Franke, Henning; Niemeier, Ulrike; Vattioni, Sandro; Chiodo, Gabriel et al. (2021): A Model Intercomparison of Stratospheric Solar Geoengineering by Accumulation-Mode Sulfate Aerosols. Preprint. In Atmospheric Chemistry and Physics. DOI: 10.5194/acp-2021-569.

„The intercomparison explores how the injection of new accumulation-mode particles changes the large-scale particle size distribution and thus the overall radiative and dynamical response to sulfate aerosol injection.“

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