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New crystal captures carbon from humid gas

10.15.15 | Stockholm University

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A new material with micropores might be a way to fight climate change. Scientists have created crystals that capture carbon dioxide much more efficiently than previously known materials, even in the presence of water. The research was recently published in a report in the scientific journal Science .

One way to mitigate climate change could be to capture carbon dioxide (CO 2 ) from the air. So far this has been difficult, since the presence of water prevents the adsorption of CO 2 . Complete dehydration is a costly process. Scientists have now created a stable and recyclable material, where the micropores within the crystal have different adsorption sites for carbon dioxide and water.

"As far as I know this is the first material that captures CO 2 in an efficient way in the presence of humidity. In other cases there is competition between water and carbon dioxide and water usually wins. This material adsorbs both, but the CO 2 uptake is enormous" says Osamu Terasaki, Professor at the Department of Materials and Environmental Chemistry at Stockholm University.

The new material is called SGU-29, named after Sogang University in Korea, and is the result of international cooperation. It is a copper silicate crystal. The material could be used for capturing carbon dioxide from the atmosphere, and especially to clean emissions.

"CO 2 is always produced with moisture, and now we can capture CO 2 from humid gases. Combined with other systems that are being developed, the waste carbon can be used for new valuable compounds. People are working very hard and I think we will be able to do this within five years. The most difficult part is to capture carbon dioxide, and we have a solution for that now" says Osamu Terasaki.

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Further information

Osamu Terasaki, Professor at the Department of Materials and Environmental Chemistry, Stockholm University. E-mail: osamu.terasaki@mmk.su.se Phone: +46 8 16 23 79

Peter Oleynikov, Researcher at the Department of Materials and Environmental Chemistry, Stockholm University. E-mail: peter.oleynikov@mmk.su.se Phone: +46 8 16 23 66

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APA:
Stockholm University. (2015, October 15). New crystal captures carbon from humid gas. Brightsurf News. https://www.brightsurf.com/news/LD59WDGL/new-crystal-captures-carbon-from-humid-gas.html
MLA:
"New crystal captures carbon from humid gas." Brightsurf News, Oct. 15 2015, https://www.brightsurf.com/news/LD59WDGL/new-crystal-captures-carbon-from-humid-gas.html.