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Modeling Effects of Annealing on Coal Char Reactivity to O2 and CO2, Based on Preparation Conditions
Author(s) -
Troy Holland,
Sham Bhat,
Peter Marcy,
James Gattiker,
Joel D. Kress,
Thomas H. Fletcher
Publication year - 2017
Publication title -
energy and fuels
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.861
H-Index - 186
eISSN - 1520-5029
pISSN - 0887-0624
DOI - 10.1021/acs.energyfuels.7b01888
Subject(s) - char , annealing (glass) , combustion , coal , simulated annealing , materials science , computational fluid dynamics , thermal , process engineering , chemical engineering , computer science , chemistry , environmental science , thermodynamics , engineering , metallurgy , physics , organic chemistry , algorithm
Oxy-fired coal combustion is a promising potential carbon capture technology. Predictive computational fluid dynamics (CFD) simulations are valuable tools in evaluating and deploying oxyfuel and other carbon capture technologies, either as retrofit technologies or for new construction. However, accurate predictive combustor simulations require physically realistic submodels with low computational requirements. A recent sensitivity analysis of a detailed char conversion model (Char Conversion Kinetics (CCK)) found thermal annealing to be an extremely sensitive submodel. In the present work, further analysis of the previous annealing model revealed significant disagreement with numerous datasets from experiments performed after that annealing model was developed. The annealing model was accordingly extended to reflect experimentally observed reactivity loss, because of the thermal annealing of a variety of coals under diverse char preparation conditions. The model extension was informed by a Bayesian calibr...

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