A thermodynamic process model is used as an evaluation tool. Full oxy-fuel combustion is evaluated for circulation of 20–80% of flue gases to the burn zone of a rotary kiln. The full oxy-fuel combustion simulations exhibit altered temperature profiles for the process. With 60% recirculation of flue gases, the temperature in the burn zone is comparable to the reference temperature, and carbon dioxide concentration in the flue gases increases from 33 to 76%. If water is excluded, carbon dioxide concentration is 90%. The partial oxy-fuel combustion method is evaluated for 20 and 40% recirculation of flue gases from one cyclone string to both calciners. Fuel and oxygen feed to the burning zone and calciners are optimised for the partial oxy-fuel scenario. The lowest specific energy consumption is desired while maximising the amount of carbon dioxide theoretically possible to capture. By introducing partial oxy-fuel combustion with 20% recirculation of flue gases in the carbon dioxide string, total carbon dioxide emissions increases by 4%, with 84% possible to capture. Within the limits of the model, the introduction of full oxy-fuel and partial oxy-fuel combustion is possible while maintaining product quality. When simulating partial oxy-fuel combustion, the energy consumption will increase even when no power consumption for the production of oxygen is included.
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1 January 2015
Research Article|
February 21 2014
Simulation of oxy-fuel combustion in cement clinker manufacturing Available to Purchase
Bodil Hökfors;
Bodil Hökfors
Department of Applied Physics and Electronics, Thermal Energy Conversion Laboratory, Umeå University, Umeå, Sweden; Cementa AB, Stockholm, Sweden
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Matias Eriksson
Matias Eriksson
NorFraKalk, Verdal, Norway; Department of Applied Physics and Electronics, Thermal Energy Conversion Laboratory, Umeå University, Umeå, Sweden
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Publisher: Emerald Publishing
Revision Received:
September 26 2013
Revision Requested:
December 02 2013
Accepted:
January 06 2014
Online ISSN: 1751-7605
Print ISSN: 0951-7197
ICE Publishing: All rights reserved
2015
Advances in Cement Research (2015) 27 (1): 42–49.
Article history
Revision Received:
September 26 2013
Revision Requested:
December 02 2013
Accepted:
January 06 2014
Citation
Hökfors B, Viggh E, Eriksson M (2015), "Simulation of oxy-fuel combustion in cement clinker manufacturing". Advances in Cement Research, Vol. 27 No. 1 pp. 42–49, doi: https://doi.org/10.1680/adcr.13.00068
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