JoAnn S. Lighty - Publications

Affiliations: 
Chemical Engineering University of Utah, Salt Lake City, UT 
Area:
Chemical Engineering

72 high-probability publications. We are testing a new system for linking publications to authors. You can help! If you notice any inaccuracies, please sign in and mark papers as correct or incorrect matches. If you identify any major omissions or other inaccuracies in the publication list, please let us know.

Year Citation  Score
2018 Wiinikka H, Toth P, Jansson K, Molinder R, Broström M, Sandström L, Lighty JS, Weiland F. Particle formation during pressurized entrained flow gasification of wood powder: Effects of process conditions on chemical composition, nanostructure, and reactivity Combustion and Flame. 189: 240-256. DOI: 10.1016/J.Combustflame.2017.10.025  0.512
2016 Ghiassi H, Jaramillo IC, Lighty JS. Kinetics of Soot Oxidation by Molecular Oxygen in a Premixed Flame Energy & Fuels. 30: 3463-3472. DOI: 10.1021/Acs.Energyfuels.5B02942  0.474
2016 Hamilton MA, Whitty KJ, Lighty JS. Incorporating Oxygen Uncoupling Kinetics into Computational Fluid Dynamic Simulations of a Chemical Looping System Energy Technology. DOI: 10.1002/Ente.201600031  0.393
2015 Toth P, Palotas AB, Ring TA, Eddings EG, Vander Wal R, Lighty JS. The effect of oxidation pressure on the equilibrium nanostructure of soot particles Combustion and Flame. 162: 2422-2430. DOI: 10.1016/J.Combustflame.2015.02.009  0.725
2015 Jaramillo IC, Gaddam CK, Vander Wal RL, Lighty JS. Effect of nanostructure, oxidative pressure and extent of oxidation on model carbon reactivity Combustion and Flame. 162: 1848-1856. DOI: 10.1016/J.Combustflame.2014.12.006  0.373
2015 Dansie JK, Sahir AH, Hamilton MA, Lighty JS. 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. DOI: 10.1016/J.Cherd.2014.11.011  0.818
2014 Sahir AH, Dansie JK, Cadore AL, Lighty JS. 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. DOI: 10.1016/J.Ijggc.2014.01.008  0.816
2014 Ghiassi H, Lighty JS. Soot oxidation by OH: Theory development, model, and experimental validation Combustion and Flame. DOI: 10.1016/J.Combustflame.2015.01.003  0.434
2014 Jaramillo IC, Gaddam CK, Vander Wal RL, Huang CH, Levinthal JD, Lighty JS. Soot oxidation kinetics under pressurized conditions Combustion and Flame. 161: 2951-2965. DOI: 10.1016/J.Combustflame.2014.04.016  0.448
2014 Ghiassi H, Toth P, Lighty JS. Sooting behaviors of n-butanol and n-dodecane blends Combustion and Flame. 161: 671-679. DOI: 10.1016/j.combustflame.2013.10.011  0.406
2014 Ghiassi H, Perez P, Lighty JS. 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.  0.338
2013 Toth P, Farrer JK, Palotas AB, Lighty JS, Eddings EG. Automated analysis of heterogeneous carbon nanostructures by high-resolution electron microscopy and on-line image processing. Ultramicroscopy. 129: 53-62. PMID 23608086 DOI: 10.1016/J.Ultramic.2013.02.017  0.666
2013 Ghiassi S, Lighty JS. Sooting behaviors of n-butanol and n-dodecane blends 8th Us National Combustion Meeting 2013. 2: 1206-1216. DOI: 10.1016/J.Combustflame.2013.10.011  0.444
2013 Hecht ES, Shaddix CR, Lighty JS. Analysis of the errors associated with typical pulverized coal char combustion modeling assumptions for oxy-fuel combustion Combustion and Flame. 160: 1499-1509. DOI: 10.1016/J.Combustflame.2013.02.015  0.724
2013 Toth P, Palotas AB, Eddings EG, Whitaker RT, Lighty JS. A novel framework for the quantitative analysis of high resolution transmission electron micrographs of soot II. Robust multiscale nanostructure quantification Combustion and Flame. 160: 920-932. DOI: 10.1016/J.Combustflame.2013.01.003  0.662
2013 Toth P, Palotas AB, Eddings EG, Whitaker RT, Lighty JS. A novel framework for the quantitative analysis of high resolution transmission electron micrographs of soot I. Improved measurement of interlayer spacing Combustion and Flame. 160: 909-919. DOI: 10.1016/J.Combustflame.2013.01.002  0.664
2013 Sahir AH, Sohn HY, Lighty JS. A fluidized bed model of the fuel reactor for a Chemical Looping with Oxygen Uncoupling process 8th Us National Combustion Meeting 2013. 4: 3619-3628.  0.793
2013 Toth P, Palotas AB, Ring TA, Eddings EG, Wal RV, Gaddam CK, Levinthal J, Jaramillo CI, Lighty JS. Detailed investigation of soot nanostructure: Effect of pressure 8th Us National Combustion Meeting 2013. 2: 1598-1608.  0.582
2013 Hecht ES, Lighty JS, Shaddix CR. Kinetic rates of oxidation and gasification reactions of coal chars reacting in oxy-combustion environments 8th Us National Combustion Meeting 2013. 1: 376-394.  0.745
2012 Jia Y, Lighty JS. Ash particulate formation from pulverized coal under oxy-fuel combustion conditions. Environmental Science & Technology. 46: 5214-21. PMID 22468843 DOI: 10.1021/Es204196S  0.445
2012 Sahir AH, Sohn HY, Leion H, Lighty JS. Rate analysis of chemical-looping with oxygen uncoupling (CLOU) for solid fuels Energy and Fuels. 26: 4395-4404. DOI: 10.1021/Ef300452P  0.823
2012 Toth P, Palotás AB, Lighty J, Echavarria CA. Quantitative differentiation of poorly ordered soot nanostructures: A semi-empirical approach Fuel. 99: 1-8. DOI: 10.1016/J.Fuel.2012.04.013  0.783
2012 Echavarria CA, Jaramillo IC, Sarofim AF, Lighty JS. Burnout of soot particles in a two-stage burner with a JP-8 surrogate fuel Combustion and Flame. 159: 2441-2448. DOI: 10.1016/J.Combustflame.2012.03.011  0.816
2011 Eyring EM, Konya G, Lighty JS, Sahir AH, Sarofim AF, Whitty K. Chemical looping with copper oxide as carrier and coal as fuel Oil and Gas Science and Technology. 66: 209-221. DOI: 10.2516/Ogst/2010028  0.8
2011 Sahir AH, Lighty JS, Sohn HY. Kinetics of copper oxidation in the air reactor of a chemical looping combustion system using the law of additive reaction times Industrial and Engineering Chemistry Research. 50: 13330-13339. DOI: 10.1021/Ie201577G  0.8
2011 Echavarria CA, Jaramillo IC, Sarofim AF, Lighty JS. Studies of soot oxidation and fragmentation in a two-stage burner under fuel-lean and fuel-rich conditions Proceedings of the Combustion Institute. 33: 659-666. DOI: 10.1016/j.proci.2010.06.149  0.799
2011 Echavarria CA, Sarofim AF, Lighty JS, D'Anna A. Evolution of soot size distribution in premixed ethylene/air and ethylene/benzene/air flames: Experimental and modeling study Combustion and Flame. 158: 98-104. DOI: 10.1016/J.Combustflame.2010.07.021  0.801
2011 Hecht ES, Lighty JS, Shaddix CR. Experimental investigations of pulverized coal char reactions with oxygen, carbon dioxide and steam Fall Technical Meeting of the Western States Section of the Combustion Institute 2011, Wss/Ci 2011 Fall Meeting. 880-886.  0.745
2011 Jia Y, Lighty JS. Program topic: 1. Combustion particulate formation from pulverized coal under oxy-fuel combustion conditions 28th Annual International Pittsburgh Coal Conference 2011, Pcc 2011. 2: 1005-1013.  0.333
2011 Lighty JS, Sahir AH, Sarofim AF, Sohn HY. Quantitative rate analysis of experimental data relevant to chemical looping with oxygen uncoupling 28th Annual International Pittsburgh Coal Conference 2011, Pcc 2011. 3: 1788-1795.  0.759
2010 Lighty JS, Sarofim AF, Sahir AH, Eyring E, Konya G. Chemical looping with oxygen uncoupling: Design calculations and process engineering simulations using kinetic data 27th Annual International Pittsburgh Coal Conference 2010, Pcc 2010. 1: 446-456.  0.809
2009 Echavarria CA, Sarofim AF, Lighty JS, D'Anna A. Modeling and measurements of size distributions in premixed ethylene and benzene flames Proceedings of the Combustion Institute. 32: 705-711. DOI: 10.1016/j.proci.2008.06.172  0.77
2009 Sahir AH, Sarofim AF, Lighty JS. Preliminary analysis of a chemical looping combustion of coal scheme by ASPEN PLUS simulations Fall Technical Meeting of the Western States Section of the Combustion Institute 2009, Wss/Ci 2009 Fall Meeting. 1: 62-68.  0.78
2008 Dellinger B, D'Alessio A, D'Anna A, Ciajolo A, Gullett B, Henry H, Keener M, Lighty J, Lomnicki S, Lucas D, Oberdörster G, Pitea D, Suk W, Sarofim A, Smith KR, et al. Report: Combustion Byproducts and Their Health Effects: Summary of the 10th International Congress. Environmental Engineering Science. 25: 1107-1114. PMID 22476005 DOI: 10.1089/Ees.2008.0233  0.406
2008 Cauch B, Silcox GD, Lighty JS, Wendt JO, Fry A, Senior CL. Confounding effects of aqueous-phase impinger chemistry on apparent oxidation of mercury in flue gases. Environmental Science & Technology. 42: 2594-9. PMID 18505002 DOI: 10.1021/Es702490Y  0.796
2008 Echavarria CA, Sarofim AF, Lighty JS. Role of the soot main precursors in the PSDS for premixed ethylene and benzene flames Aiche 100 - 2008 Aiche Annual Meeting, Conference Proceedings 0.783
2007 Fry A, Cauch B, Silcox GD, Lighty JS, Senior CL. Experimental evaluation of the effects of quench rate and quartz surface area on homogeneous mercury oxidation Proceedings of the Combustion Institute. 31: 2855-2861. DOI: 10.1016/j.proci.2006.07.199  0.308
2007 Romano V, Sarofim AF, Lighty JS. Soot fragmentation in laminar premixed ethylene-air flames Western States Section/Combustion Institute Fall Meeting 2007. 1: 452-462.  0.359
2007 Lighty JS, Eddings EG, Orton NB, Sarofim AF, Yang N. Characterization of young soot from an inverse diffusion flame 5th Us Combustion Meeting 2007. 3: 1854-1860.  0.633
2006 Kelly K, Wagner D, Lighty J, Quintero Núñez M, Vazquez FA, Collins K, Barud-Zubillaga A. Black carbon and polycyclic aromatic hydrocarbon emissions from vehicles in the United States-Mexico border region: pilot study. Journal of the Air & Waste Management Association (1995). 56: 285-93. PMID 16573191 DOI: 10.1080/10473289.2006.10464465  0.332
2005 Arnott WP, Zielinska B, Rogers CF, Sagebiel J, Park K, Chow J, Moosmüller H, Watson JG, Kelly K, Wagner D, Sarofim A, Lighty J, Palmer G. Evaluation of 1047-nm photoacoustic instruments and photoelectric aerosol sensors in source-sampling of black carbon aerosol and particle-bound PAHs from gasoline and diesel powered vehicles. Environmental Science & Technology. 39: 5398-406. PMID 16082972 DOI: 10.1021/Es049595E  0.322
2005 Rogers F, Arnott P, Zielinska B, Sagebiel J, Kelly KE, Wagner D, Lighty JS, Sarofim AF. Real-time measurements of jet aircraft engine exhaust. Journal of the Air & Waste Management Association (1995). 55: 583-93. PMID 15991667 DOI: 10.1080/10473289.2005.10464651  0.338
2005 Jiang P, Lignell DO, Kelly KE, Lighty JS, Sarofim AF, Montgomery CJ. Simulation of the evolution of particle size distributions in a vehicle exhaust plume with unconfined dilution by ambient air. Journal of the Air & Waste Management Association (1995). 55: 437-45. PMID 15887887 DOI: 10.1080/10473289.2005.10464635  0.592
2004 Zielinska B, Sagebiel J, Arnott WP, Rogers CF, Kelly KE, Wagner DA, Lighty JS, Sarofim AF, Palmer G. Phase and Size Distribution of Polycyclic Aromatic Hydrocarbons in Diesel and Gasoline Vehicle Emissions Environmental Science and Technology. 38: 2557-2567. PMID 15180051 DOI: 10.1021/Es030518D  0.366
2004 Kelly KE, Wagner DA, Lighty JS, Sarofim AF, Bretecher B, Holden B, Helgeson N, Sahay K, Nardi Z. Evaluation of catalyzed and electrically heated filters for removal of particulate emissions from diesel-A- and JP-8-fueled engines. Journal of the Air & Waste Management Association (1995). 54: 83-92. PMID 14871016 DOI: 10.1080/10473289.2004.10470884  0.333
2003 Kelly KE, Wagner DA, Lighty JS, Sarofim AF, Rogers CF, Sagebiel J, Zielinska B, Arnott WP, Palmer G. Characterization of exhaust particles from military vehicles fueled with diesel, gasoline, and JP-8. Journal of the Air & Waste Management Association (1995). 53: 273-82. PMID 12661687 DOI: 10.1080/10473289.2003.10466151  0.382
2003 Rogers CF, Sagebiel JC, Zielinska B, Arnott WP, Fujita EM, McDonald JD, Griffin JB, Kelly K, Overacker D, Wagner D, Lighty JS, Sarofim A, Palmer G. Characterization of submicron exhaust particles from engines operating without load on diesel and JP-8 fuels Aerosol Science and Technology. 37: 355-368. DOI: 10.1080/02786820300967  0.38
2002 Sarofim AF, Lighty JS, Eddings EG. Fine Particles: Health Effects, Characterization, Mechanisms of Formation, and Modeling Acs Division of Fuel Chemistry, Preprints. 47: 618-621.  0.605
2000 Veranth JM, Smith KR, Hu AA, Lighty JS, Aust AE. Mobilization of iron from coal fly ash was dependent upon the particle size and source of coal: Analysis of rates and mechanisms Chemical Research in Toxicology. 13: 382-389. PMID 10813655 DOI: 10.1021/Tx9901884  0.355
2000 Lighty JS, Veranth JM, Sarofim AF. Combustion aerosols: Factors governing their size and composition and implications to human health Journal of the Air and Waste Management Association. 50: 1565-1618. DOI: 10.1080/10473289.2000.10464197  0.429
2000 Sirdeshpande AR, Lighty JS. Kinetics of the selective catalytic reduction of NO with NH3 over CuO/γ-Al2O3 Industrial and Engineering Chemistry Research. 39: 1781-1787. DOI: 10.1021/Ie990795M  0.336
1999 Lee CM, Davis KA, Seeley R, Sarofim AF, Burton W, Overacker DW, Eddings EG, Lighty JS. Catalytic reduction and oxidation of biomass combustor effluent Sae Technical Papers. DOI: 10.4271/1999-01-2185  0.595
1998 Smith KR, Veranth JM, Lighty JS, Aust AE. Mobilization of iron from coal fly ash was dependent upon the particle size and the source of coal Chemical Research in Toxicology. 11: 1494-1500. PMID 9860493 DOI: 10.1021/Tx980142V  0.305
1998 Holbert C, Lighty JS. Trace metals behavior during the thermal treatment of paper-mill sludge Waste Management. 18: 423-431. DOI: 10.1016/S0956-053X(98)00126-3  0.763
1996 Cook CA, Cundy VA, Larsen FL, Lighty JS. A Comprehensive Heat Transfer Model for Rotary Desorbers Canadian Journal of Chemical Engineering. 74: 63-76. DOI: 10.1002/Cjce.5450740109  0.331
1995 Rink KK, Kozinski JA, Lighty JS. Biosludge incineration in FBCs: Behavior of ash particles Combustion and Flame. 100. DOI: 10.1016/0010-2180(94)00076-5  0.364
1994 Mcclennen WH, Lighty JS, Summit GD, Gallagher B, Hillary JM. Investigation of Incineration Characteristics of Waste Water Treatment Plant Sludge Combustion Science and Technology. 101: 483-503. DOI: 10.1080/00102209408951889  0.729
1994 Rink KK, Kozinski JA, Lighty JS, Lu Q. Design and construction of a circulating fluidized bed combustion facility for use in studying the thermal remediation of wastes Review of Scientific Instruments. 65: 2704-2713. DOI: 10.1063/1.1144673  0.446
1994 Eddings EG, Lighty JS, Kozinski JA. Determination of metal behavior during the incineration of a contaminated montmorillonite clay Environmental Science and Technology. 28: 1791-1800. DOI: 10.1021/Es00060A007  0.631
1993 Pershing DW, Lighty JS, Silcox GD, Heap MP, Owens WD. Solid Waste Incineration in Rotary Kilns Combustion Science and Technology. 93: 245-276. DOI: 10.1080/00102209308935292  0.664
1993 Rink KK, Larsen FS, Koziński JA, Lighty JS, Silcox GD, Pershing DW. Thermal treatment of hazardous wastes: A comparison of fluidized bed and rotary kiln incineration Energy &Amp; Fuels. 7: 803-813. DOI: 10.1021/Ef00042A016  0.716
1993 Leger CB, Cook CA, Cundy VA, Sterling AM, Deng X‐, Lighty JS. Bed mixing and heat transfer in a batch loaded rotary kiln Environmental Progress. 12: 101-109. DOI: 10.1002/Ep.670120206  0.31
1992 Eddings EG, Lighty JS. Fundamental Studies of Metal Behavior During Solids Incineration Combustion Science and Technology. 85: 375-390. DOI: 10.1080/00102209208947178  0.619
1991 Lester TW, Cundy VA, Sterling AM, Montestruc AN, Jakway AL, Lu C, Leger CB, Pershing DW, Lighty JS, Silcox GD, Owens WD. Rotary kiln incineration. Comparison and scaling of field-scale and pilot-scale contaminant evolution rates from sorbent beds Environmental Science and Technology. 25: 1142-1152. DOI: 10.1021/Es00018A020  0.588
1991 Owens WD, Silcox GD, Lighty JS, Deng XX, Pershing DW, Cundy VA, Leger CB, Jakway AL. Thermal analysis of rotary kiln incineration: Comparison of theory and experiment Combustion and Flame. 86: 101-114. DOI: 10.1016/0010-2180(91)90059-K  0.628
1990 Lighty JS, Winter RM, Eddings EG, Lingren ER, Xiaoxue D, Xue X, Pershing DW, Mcclennen WH. Rate limiting processes in the rotary-kiln incineration of contaminated solids Combustion Science and Technology. 74: 31-49. DOI: 10.1080/00102209008951678  0.759
1990 Lighty JS, Silcox GD, Pershing DW, Cundy VA, Linz DG. Fundamentals for the thermal remediation of contaminated soils: Particle and bed desorption models Environmental Science and Technology. 24: 750-757. DOI: 10.1021/Es00075A022  0.659
1989 Lighty JS, Britt RM, Pershing DW, Owens WD, Cundy VA. Rotary Kiln Incineration II. Laboratory-Scale Desorption and Kiln-Simulator Studies—Solids Journal of the Air Pollution Control Association. 39: 187-193. DOI: 10.1080/08940630.1989.10466520  0.685
1989 Cundy VA, Lester TW, Leger C, Miller G, Montestruc AN, Acharya S, Sterling AM, Pershing DW, Lighty JS, Silcox GD, Owens WD. Rotary kiln incineration - combustion chamber dynamics Journal of Hazardous Materials. 22: 195-219. DOI: 10.1016/0304-3894(89)85046-0  0.633
1989 Lighty JS, Silcox GD, Pershing DW, Cundy VA, Linz DG. Fundamental experiments on thermal desorption of contaminants from soils Environmental Progress. 8: 57-61. DOI: 10.1002/Ep.3300080115  0.613
1989 Lighty JS, Britt RM, Pershing DW, Owens WD, Cundy VA. Rotary kiln incineration II. Laboratory-scale desorption and kiln-simulator studies - solids Journal of the Air and Waste Management Association. 39: 187-193.  0.658
1988 Lighty JS, Pershing DW, Cundy VA, Linz DG. Characterization of thermal desorption phenomena for the cleanup of contaminated soil Nuclear and Chemical Waste Management. 8: 225-237. DOI: 10.1016/0191-815X(88)90030-7  0.636
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