JoAnn S. Lighty

Affiliations: 
Chemical Engineering University of Utah, Salt Lake City, UT 
Area:
Chemical Engineering
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"JoAnn Lighty"
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Publications

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Jaramillo IC, Sturrock A, Ghiassi H, et al. (2017) Effects of fuel components and combustion particle physicochemical properties on toxicological responses of lung cells. Journal of Environmental Science and Health. Part a, Toxic/Hazardous Substances & Environmental Engineering. 1-12
Hamilton MA, Whitty KJ, Lighty JS. (2016) Incorporating Oxygen Uncoupling Kinetics into Computational Fluid Dynamic Simulations of a Chemical Looping System Energy Technology
Dansie JK, Sahir AH, Hamilton MA, et al. (2015) An investigation of steam production in chemical-looping combustion (CLC) and chemical-looping with oxygen uncoupling (CLOU) for solid fuels Chemical Engineering Research and Design. 94: 12-17
Sahir AH, Dansie JK, Cadore AL, et al. (2014) A comparative process study of chemical-looping combustion (CLC) and chemical-looping with oxygen uncoupling (CLOU) for solid fuels International Journal of Greenhouse Gas Control. 22: 237-243
Ghiassi H, Lighty JS. (2014) Soot oxidation by OH: Theory development, model, and experimental validation Combustion and Flame
Jaramillo IC, Gaddam CK, Vander Wal RL, et al. (2014) Soot oxidation kinetics under pressurized conditions Combustion and Flame. 161: 2951-2965
Ghiassi H, Toth P, Lighty JS. (2014) Sooting behaviors of n-butanol and n-dodecane blends Combustion and Flame. 161: 671-679
Ghiassi H, Perez P, Lighty JS. (2014) The role of surface functional groups and nanostructure on the oxidation rate of soot derived from an oxygenated fuel Western States Section of the Combustion Institute Spring Technical Meeting 2014. 152-163
Toth P, Farrer JK, Palotas AB, et al. (2013) Automated analysis of heterogeneous carbon nanostructures by high-resolution electron microscopy and on-line image processing. Ultramicroscopy. 129: 53-62
Hecht ES, Shaddix CR, Lighty JS. (2013) Analysis of the errors associated with typical pulverized coal char combustion modeling assumptions for oxy-fuel combustion Combustion and Flame. 160: 1499-1509
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