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Original Articles

The Effects of Rotary Kiln Operating Conditions and Design on Burden Heating Rates as Determined by a Mathematical Model of Rotary Kiln Heat Transfer

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Pages 337-344 | Received 07 Jun 1989, Accepted 02 Jan 1990, Published online: 06 Mar 2012

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F. CARRASCO, X. LLAURÓ & M. POCH. (2006) A METHODOLOGICAL APPROACH TO KNOWLEDGE-BASED CONTROL AND ITS APPLICATION TO A MUNICIPAL SOLID WASTE INCINERATION PLANT. Combustion Science and Technology 178:4, pages 685-705.
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OVIDIU MARIN, OLIVIER CHARON, JACQUES DUGUE, SARAH DUKHAN & WEI ZHOU. (2001) Simulating the Impact of Oxygen Enrichment in a Cement Rotary Kiln Using Advanced Computational Methods. Combustion Science and Technology 164:1, pages 193-207.
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Richard A. Davis. (1998) Nitric Oxide Formation in an Iron Oxide Pellet Rotary Kiln Furnace. Journal of the Air & Waste Management Association 48:1, pages 44-51.
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Paul M. Lemieux, Jost O. L. Wendt & William P. Linak. (1996) Waste and Sorbent Parameters Affecting Mechanisms of Transient Emissions from Rotary Kiln Incineration. Combustion Science and Technology 116-117:1-6, pages 499-515.
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F. S. LARSEN, G. D. SILCOX & B. R. KEYES. (1994) The Development of a Thermal Treatment Assessment Procedure for Soils Contaminated with Hydrocarbons. Combustion Science and Technology 101:1-6, pages 443-459.
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R. D. VAN DELL, J. D. SMITH & N. H. MAHLE. (1994) A Global Kinetic Model for the Formation and Destruction of the Products of Incomplete Combustion Produced from the Combustion of o-Dichlorobenzene. Combustion Science and Technology 100:1-6, pages 225-243.
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D W. PERSHING, J. S. LIGHTY, G. D. SILCOX, M. P. HEAP & W. D. OWENS. (1993) Solid Waste Incineration in Rotary Kilns. Combustion Science and Technology 93:1, pages 245-276.
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Articles from other publishers (20)

M. Hammerschmid, C. Aguiari, F. Kirnbauer, E. Zerobin, M. Brenner, R. Eisl, J. Nemeth, D. Buchberger, G. Ogris, R. Kolroser, A. Goia, R. Beyweiss, K. Kalch, S. Müller & H. Hofbauer. (2023) Thermal Twin 4.0: Digital Support Tool for Optimizing Hazardous Waste Rotary Kiln Incineration Plants. Waste and Biomass Valorization 14:8, pages 2745-2766.
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Abolghasem Daeichian, Rana Shahramfar & Elham Heidari. (2022) Modeling of lime production process using artificial neural network. Chemical Product and Process Modeling 17:6, pages 655-667.
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Xuesong Wei, Zhengjin Hou, Songying Chen, Baoxin Fan, Ruonan Fan, Wei Lv & Zongrui Hao. (2022) Theoretical and Numerical Research on Heat Transfer Mechanism and Temperature Characteristics of Electric Rotary Alumina Kiln. Journal of Thermal Science and Engineering Applications 14:12.
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Motoaki SaruwatariHideya Nakamura. (2021) Coarse-Grained DEM Simulation of Particle Behavior and Heat Transfer in a Large Scale Rotary Kiln粒子挙動と伝熱に関する離散要素法粗視化技術と大規模ロータリーキルンへの適用. Journal of the Society of Powder Technology, Japan 58:9, pages 486-496.
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M. Svab, P. Masin, J. Krouzek, V. Durdak & P. Kubinova. (2019) Thermal desorption of chemical warfare agents surrogate from polluted materials: from laboratory to pilot scale. International Journal of Environmental Science and Technology 16:10, pages 5917-5926.
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Hamed Shahin, Saeid Hassanpour & Ahmad Saboonchi. (2016) Thermal energy analysis of a lime production process: Rotary kiln, preheater and cooler. Energy Conversion and Management 114, pages 110-121.
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Qi Qiu & V. Hlavacek. (2010) Energy Estimation on CRN Process of Fly Ash as a Slow-Release Nitrogen Fertilizer. Industrial & Engineering Chemistry Research 49:12, pages 5939-5944.
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M. Georgallis, P. Nowak, M. Salcudean & I. S. Gartshore. (2008) Modelling the Rotary Lime Kiln. The Canadian Journal of Chemical Engineering 83:2, pages 212-223.
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F. Mechati, E. Roth, V. Renault, V. Risoul, G. Trouvé & P. Gilot. (2004) Pilot Scale and Theoretical Study of Thermal Remediation of Soils. Environmental Engineering Science 21:3, pages 361-370.
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Marcio A. Martins, Leandro S. Oliveira & Adriana S. Franca. (2001) Modeling and simulation of petroleum coke calcination in rotary kilns. Fuel 80:11, pages 1611-1622.
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R. Bertrum DiemerJr.Jr., Thomas D. Ellis, Geoffrey D. Silcox, JoAnn S. Lighty & David W. Pershing. 2001. Kirk-Othmer Encyclopedia of Chemical Technology. Kirk-Othmer Encyclopedia of Chemical Technology.
E. Tomaz & R. Maciel Filho. (1999) Steady state modeling and numerical simulation of the rotary kiln incinerator and afterburner system. Computers & Chemical Engineering 23, pages S431-S434.
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Joann S. Lighty & John M. Veranth. (1998) The role of research in practical incineration systems—A look at the past and the future. Symposium (International) on Combustion 27:1, pages 1255-1273.
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John M. Veranth, Geoffrey D. Silcox & David W. Pershing. (1997) Numerical Modeling of the Temperature Distribution in a Commercial Hazardous Waste Slagging Rotary Kiln. Environmental Science & Technology 31:9, pages 2534-2539.
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R. A. Davis. (2009) Mathematical model of magnetite oxidation in a rotary kiln furnace. The Canadian Journal of Chemical Engineering 74:6, pages 1004-1009.
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C. A. Cook & V. A. Cundy. (1995) A Study of Parameters Influencing Wall-to-Bed Heat Transfer in Low-Temperature Rotary Desorbers. Journal of Energy Resources Technology 117:1, pages 50-57.
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Geoffrey D. Silcox, Fred S. Larsen, Warren D. Owens & Martha Choroszy-Marshall. (1995) Kinetics of hydrocarbon and pesticide removal from clay soils during thermal treatment in a pilot-scale rotary kiln. Waste Management 15:5-6, pages 339-349.
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S.I. Park, N.H. Kyong, Y.J. Park & S.K. Lee. (1994) Numerical simulation to control rotary-kiln incineration of municipal solid waste. Energy 19:2, pages 179-186.
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M.L. Hobbs, P.T. Radulovic & L.D. Smoot. (1993) Combustion and gasification of coals in fixed-beds. Progress in Energy and Combustion Science 19:6, pages 505-586.
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Warren D. Owens, Geoffrey D. Silcox, Joann S. Lighty, Xiao Xue Deng, David W. Pershing, Vic A. Cundy, Christopher B. Leger & Allen L. Jakway. (1991) Thermal analysis of rotary kiln incineration: Comparison of theory and experiment. Combustion and Flame 86:1-2, pages 101-114.
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