Ind.
Eng. Chem. Res., 2012, 51 (4), pp 2133–2142
Activation
Strategies for Calcium-Based Sorbents for CO2 Capture: A Perspective
Fu-Chen Yu, Nihar Phalak, Zhenchao Sun, and Liang-Shih Fan*
fan.1@osu.edu
William G. Lowrie Department of Chemical and Biomolecular Engineering, The Ohio
State University, 140 West 19th Avenue, Columbus, Ohio 43210, United States
Abstract
The
chemical looping process (CLP) using calcium-based sorbents to capture CO2
through cyclic carbonation–calcination reaction (CCR) before, during, or after
the conversion of carbonaceous fuel occurs, is a viable CO2 control
technology.
The basic process concept has been found to be attractive at larger
scales. Additionally, process simulations based on experimental results
indicate that the parasitic energy consumption for this high temperature
process is relatively low compared to low temperature processes such as the
amine-based process. The ability of the calcium-based sorbents to maintain
stable reactivity and physical integrity in cyclic reaction under severe
operating conditions is one of the most important criteria for the success of
the calcium looping technology. Authors provide an overview of the optimization
and reactivation strategies of calcium-based sorbents with focus on three
methods—modification of precursors, addition of dopants and/or supports, and
reactivation through steam/water hydration.
Full Text Source (Subscription or Fee): http://pubs.acs.org/doi/abs/10.1021/ie200802y
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