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Synthetic Ca‐based solid sorbents suitable for capturing CO2 in a fluidized bed
Authors:R Pacciani  C R Müller  J F Davidson  J S Dennis  A N Hayhurst
Affiliation:Department of Chemical Engineering, University of Cambridge, Pembroke Street, Cambridge CB2 3RA, UK
Abstract:Coprecipitation and hydrolysis of CaO have been employed to produce Ca‐based synthetic sorbents suitable for capturing CO2 in a fluidized bed. Their composition, CO2 uptake, volume in small pores (2–200 nm) and resistance to attrition were measured and compared to those of limestone and dolomite. Sorbents produced by hydrolysis showed the highest uptake and resistance to attrition. After 20 cycles of carbonation and calcination, two sorbents exceeded the uptake of both limestone and dolomite, when subjected to the same regimes of reaction. A sorbent's uptake of CO2 was shown to be determined by the volume in pores narrower than ~200 nm.
Keywords:CO2 capture  calcium oxide  synthetic sorbents  fluidized bed
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