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Chemical engineering / Zeolites / Materials science / Adsorption / Colloidal chemistry / Molecular sieve / Carbon capture and storage / Sorption isotherm / Chemistry / Physical chemistry / Surface chemistry


Energy & Environmental Science PAPER Cite this: Energy Environ. Sci., 2013, 6, 128
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Document Date: 2012-12-13 13:16:50


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City

San Diego / /

Company

Argonne National Laboratory / Kubota / Matsuda / ACS / Sigma-Aldrich / Ge / Furukawa / Lawrence Berkeley National Laboratory / P. Bollini S. A. / Wildcat Discovery Technologies Inc. / /

Country

Benin / United States / /

/

Event

Environmental Issue / /

Facility

National Institute of Standards and Technology / bar N2 / College Park / Science User Facility / bar of CO2 / bar CO2 / Greenhouse Gas Control / NIST Center / University of Maryland / University of California / /

IndustryTerm

gas loading / lower energy penalty / mixed-gas dual-site / gas dosing manifold / gas velocity / gas molecules / gas uptake / capture technologies / equilibrium gas adsorption isotherms / energy penalty / microporous metal / gas adsorption properties / window site / aqueous amine solutions / chemical interactions / temperature gas adsorption measurements / high-throughput gas adsorption analyzer / thermal energy / gas adsorption isotherms / stronger adsorption site / ue gas / High-throughput gas adsorption analysis / gas uptake results / adsorbent based systems / realistic applications / gas adsorption analyzer / highthroughput gas adsorption analyzer / gas mixtures / aqueous alkanolamine solutions / energy / metal / sodium site / capture media / dual-site / mL solution / gas adsorption / hypothetical gas mixture consisting / post-combustion capture applications / ue gas stream / feed gas mixture / evaluated using gas adsorption isotherms / high-throughput gas adsorption instrument / gas adsorption measurements / industrial gas separations / gas mixture / aqueous media / ue gas components / high-throughput gas adsorption system / conventional gas adsorption analyzer / metal sites / gas phase / removal technologies / /

Organization

U.S. Department of Energy / National Science Foundation / Materials Sciences Division / Department of Materials Science and Engineering / University of California / Berkeley / Royal Society of Chemistry / University of Maryland / College Park / Department of Chemistry / NIST Center for Neutron Research / National Institute of Standards and Technology / Advanced Research Projects Agency / Center for Neutron Research / /

Person

Jarad A. Mason / J. C. Hicks / Michael Pape / M. L. Gray / Tae-Hyun Bae / Kenji Sumida / J. H. Drese / Nat / C. W. Jones / Craig M. Brownb / D. J. Fauth / R. P. Lively / J. Liu / W. J. Koros / Greg Halder / G. Qi / Steven S. Kaye / S. Choi / Trudy Bolin / /

Position

Research Associate / vt RT vt RT / /

ProvinceOrState

Maryland / Indiana / California / /

PublishedMedium

the This journal / /

Technology

X-ray / SSL / DSL / CO2 capture technologies / ion exchange / conventional CO2 removal technologies / Simulation / calculated using the SSL / /

URL

www.rsc.org/ees / /

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