CO2 capture and activation by superbase/polyethylene glycol and its subsequent conversion

Literature Information

Publication Date 2011-08-25
DOI 10.1039/C1EE02156G
Impact Factor 38.532
Authors

Zhen-Zhen Yang, Liang-Nian He, Ya-Nan Zhao, Bin Li, Bing Yu


View Original

Abstract

A highly efficient binary system consisting of polyethylene glycol and an amidine or guanidine superbase was developed for CO2 absorption, leading to the activation of CO2 molecules, and thus direct conversion of the captured CO2 to value-added chemicals or fuels was successfully performed to avoid desorption.

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Source Journal

Energy & Environmental Science

Energy & Environmental Science
CiteScore: 32.34
Self-citation Rate: 3.4%
Articles per Year: 481

Energy & Environmental Science is an international journal dedicated to publishing exceptionally important and high quality, agenda-setting research tackling the key global and societal challenges of ensuring the provision of energy and protecting our environment for the future. The scope is intentionally broad and the journal recognises the complexity of issues and challenges relating to energy conversion and storage, alternative fuel technologies and environmental science. For work to be published it must be linked to the energy-environment nexus and be of significant general interest to our community-spanning readership. All scales of studies and analysis, from impactful fundamental advances, to interdisciplinary research across the (bio)chemical, (bio/geo)physical sciences and chemical engineering disciplines are welcomed. Topics include, but are not limited to, the following: Solar energy conversion and photovoltaics Solar fuels and artificial photosynthesis Fuel cells Hydrogen storage and (bio) hydrogen production Materials for energy systems Capture, storage and fate of CO2, including chemicals and fuels from CO2 Catalysis for a variety of feedstocks (for example, oil, gas, coal, biomass and synthesis gas) Biofuels and biorefineries Materials in extreme environments Environmental impacts of energy technologies Global atmospheric chemistry and climate change as related to energy systems Water-energy nexus Energy systems and networks Globally applicable principles of energy policy and techno-economics

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