Journal article

Borate-catalyzed carbon dioxide hydration via the carbonic anhydrase mechanism

D Guo, H Thee, G Da Silva, J Chen, W Fei, S Kentish, GW Stevens

Environmental Science and Technology | Published : 2011

Abstract

The hydration of CO2 plays a critical role in carbon capture and geoengineering technologies currently under development to mitigate anthropogenic global warming and in environmental processes such as ocean acidification. Here we reveal that borate catalyzes the conversion of CO 2 to HCO3- via the same fundamental mechanism as the enzyme carbonic anhydrase, which is responsible for CO2 hydration in the human body. In this mechanism the tetrahydroxyborate ion, B(OH)4-, is the active form of boron that undergoes direct reaction with CO2. In addition to being able to accelerate CO 2 hydration in alkaline solvents used for carbon capture, we hypothesize that this mechanism controls CO2 uptake by..

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Grants

Awarded by Cooperative Research Centre for Greenhouse Gas Technologies


Funding Acknowledgements

We gratefully acknowledge financial support from the China Scholarship Council, the Cooperative Research Centre for Greenhouse Gas Technologies (CO2CRC), the Australian Government through its CRC Program, and the Particulate Fluids Processing Centre (PFPC).