Scinovex
articleTop 10% cited

Conversion Limits in the Reaction of CO<sub>2</sub>with Lime

Energy & Fuels · 2003 · Vol. 17(2) · pp. 308–315
J.C. AbánadesDiego Álvarez

Abstract

The use of calcines of natural limestones as CO2 regenerable sorbents is investigated in this work by studying the decay of the maximum carbonation conversion during many carbonation/calcination cycles. New experimental information is complemented with a compilation of previously published data on this subject. The observed conversion limits in the reaction of CO2 with lime are interpreted in terms of a certain loss in the porosity associated with small pores and a certain increase in the porosity associated with large pores. In the carbonation part of every cycle, the CaCO3 fills up all the available porosity made up of small pores plus a small fraction of the large voids, limited by the thickness of the product layer that marks the onset of the slow carbonation rate. A simple model based on textural changes, observed by scanning electron microscopy, fits equally well all the data from this work and from other authors. The two model parameters are consistent with known mechanism occurring during calcination and carbonation.

Chemical Looping and Thermochemical ProcessesCarbon Dioxide Capture TechnologiesCO2 Sequestration and Geologic InteractionsCarbonationPorosityCalcinationLimeMaterials scienceWork (physics)Chemical engineeringMineralogyScanning electron microscopeCarbonatation
Citations
710
FWCI
9.06
field-weighted impact
References
18
Percentile
98%
vs. same field & year
Citations per year
Cited by
CO<sub>2</sub> Capture Capacity of CaO in Long Series of Carbonation/Calcination Cycles
Industrial & Engineering Chemistry Research · 2006 · 746 citations
CO2 capture by solid adsorbents and their applications: current status and new trends
Energy & Environmental Science · 2010 · 1,575 citations
References
A Twin Fluid-Bed Reactor for Removal of CO2 from Combustion Processes
Process Safety and Environmental Protection · 1999 · 718 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.

Conversion Limits in the Reaction of CO<sub>2</sub>with Lime · Scinovex