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Simulation of the carbonate looping power cycle.

Authors :
Hawthorne, C.
Trossmann, M.
Galindo Cifre, P.
Schuster, A.
Scheffknecht, G.
Source :
Energy Procedia; Feb2009, Vol. 1 Issue 1, p1387-1394, 8p
Publication Year :
2009

Abstract

Abstract: Carbonate Looping is a promising post-combustion capture process involving the separation of CO<subscript>2</subscript> from the flue gas of a coalfired power plant at high temperatures (600–700 <superscript>∘</superscript>C) using the reversible exothermic CaO carbonation reaction and the endothermic calcination reaction of CaCO<subscript>3</subscript>. The core of the carbonate looping process is a dual fluidized bed reactor in which the CO<subscript>2</subscript> acceptor material (CaO) is transported between the carbonator (CO<subscript>2</subscript> absorption) and regenerator (CO<subscript>2</subscript> desorption). Due to the heat requirements for the regenerator, the carbonate looping acts as a CO<subscript>2</subscript> separation unit and an add-on power plant, thereby offering the opportunity for increasing the site electricity production while inflicting only a low electric efficiency penalty on the total power plant. However, the quantity and quality of the Carbonate Looping heat sources differ significantly from a conventional coal-fired power plant. This paper presents the design and simulation of the carbonate looping steam cycle for a large coal-fired plant. The simulation involves the coupling of the carbonate looping reactor model from Aspen Plus with the steam cycle in EBSILON Professional code which is a mass and energy balance cycle calculation program specifically tailored for steam cycle calculations. The resulting simulation includes penalty deduction for the Air Separation Unit and the CO<subscript>2</subscript> conditioning unit, resulting in a net efficiency of 39.2% and while increasing the net power input from 1052 MWe to 1533 MWe, an addition of 481 MWe for the retrofitted power plant. [Copyright &y& Elsevier]

Details

Language :
English
ISSN :
18766102
Volume :
1
Issue :
1
Database :
Supplemental Index
Journal :
Energy Procedia
Publication Type :
Academic Journal
Accession number :
41785317
Full Text :
https://doi.org/10.1016/j.egypro.2009.01.182