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Original Articles

Mechanistic Studies on the Combustion of Isotopically Labelled Cyclohexanes within a Single Cylinder Internal Combustion Engine

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Pages 83-103 | Received 03 May 1995, Accepted 17 Nov 1995, Published online: 05 Apr 2007

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Aaron Eveleigh & Nicos Ladommatos. (2017) Isotopic Tracers for Combustion Research. Combustion Science and Technology 189:4, pages 660-682.
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D. VOISIN, A. MARCHAL, M. REUILLON, J.-C. BOETTNER & M. CATHONNET. (1998) Experimental and Kinetic Modeling Study of Cyclohexane Oxidation in a JSR at High Pressure. Combustion Science and Technology 138:1-6, pages 137-158.
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Articles from other publishers (19)

Trupti Kathrotia, Patrick Oßwald, Clemens Naumann, Sandra Richter & Markus Köhler. (2021) Combustion kinetics of alternative jet fuels, Part-II: Reaction model for fuel surrogate. Fuel 302, pages 120736.
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I. Ferhoune, M. Guemini & Y. Rezgui. (2021) Effect of the Chemical Structure of Hydrocarbons on the Emissions of CO, CO2 and Soot Precursors Issued from Cyclohexane and Benzene Premixed Flames. Kinetics and Catalysis 62:4, pages 457-471.
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Baiyang Lin, Hao Gu, Hong Ni, Bin Guan, Zhongzhao Li, Dong Han, Zhen Huang & He Lin. (2018) Size Distribution of Soot Particles in Premixed n -Heptane and Methylcyclohexane Flames . Energy & Fuels 32:3, pages 3883-3890.
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Zhandong WangZhandong Wang. 2018. Experimental and Kinetic Modeling Study of Cyclohexane and Its Mono-alkylated Derivatives Combustion. Experimental and Kinetic Modeling Study of Cyclohexane and Its Mono-alkylated Derivatives Combustion 39 87 .
Zhandong WangZhandong Wang. 2018. Experimental and Kinetic Modeling Study of Cyclohexane and Its Mono-alkylated Derivatives Combustion. Experimental and Kinetic Modeling Study of Cyclohexane and Its Mono-alkylated Derivatives Combustion 1 22 .
Zhandong Wang, Long Zhao, Yu Wang, Huiting Bian, Lidong Zhang, Feng Zhang, Yuyang Li, S. Mani Sarathy & Fei Qi. (2015) Kinetics of ethylcyclohexane pyrolysis and oxidation: An experimental and detailed kinetic modeling study. Combustion and Flame 162:7, pages 2873-2892.
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Zhandong Wang, Lili Ye, Wenhao Yuan, Lidong Zhang, Yizun Wang, Zhanjun Cheng, Feng Zhang & Fei Qi. (2014) Experimental and kinetic modeling study on methylcyclohexane pyrolysis and combustion. Combustion and Flame 161:1, pages 84-100.
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Zhandong Wang, Zhanjun Cheng, Wenhao Yuan, Jianghuai Cai, Lidong Zhang, Feng Zhang, Fei Qi & Jing Wang. (2012) An experimental and kinetic modeling study of cyclohexane pyrolysis at low pressure. Combustion and Flame 159:7, pages 2243-2253.
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Amelia W. Ray, Craig A. Taatjes, Oliver Welz, David L. Osborn & Giovanni Meloni. (2012) Synchrotron Photoionization Measurements of OH-Initiated Cyclohexene Oxidation: Ring-Preserving Products in OH + Cyclohexene and Hydroxycyclohexyl + O 2 Reactions . The Journal of Physical Chemistry A 116:25, pages 6720-6730.
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B. Husson, O. Herbinet, P. A. Glaude, S. S. Ahmed & F. Battin-Leclerc. (2012) Detailed Product Analysis during Low- and Intermediate-Temperature Oxidation of Ethylcyclohexane. The Journal of Physical Chemistry A 116:21, pages 5100-5111.
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Wenjun Li, Matthew E. Law, Phillip R. Westmoreland, Tina Kasper, Nils Hansen & Katharina Kohse-Höinghaus. (2011) Multiple benzene-formation paths in a fuel-rich cyclohexane flame. Combustion and Flame 158:11, pages 2077-2089.
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Hongzhi R. Zhang, Lam K. Huynh, Nawee Kungwan, Zhiwei Yang & Shaowen Zhang. (2007) Combustion Modeling and Kinetic Rate Calculations for a Stoichiometric Cyclohexane Flame. 1. Major Reaction Pathways. The Journal of Physical Chemistry A 111:19, pages 4102-4115.
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Emma J. Silke, William J. Pitz, Charles K. Westbrook & Marc Ribaucour. (2007) Detailed Chemical Kinetic Modeling of Cyclohexane Oxidation†. The Journal of Physical Chemistry A 111:19, pages 3761-3775.
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Matthew E. Law, Phillip R. Westmoreland, Terrill A. Cool, Juan Wang, Nils Hansen, Craig A. Taatjes & Tina Kasper. (2007) Benzene precursors and formation routes in a stoichiometric cyclohexane flame. Proceedings of the Combustion Institute 31:1, pages 565-573.
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Charles S. McEnally & Lisa D. Pfefferle. (2004) Experimental study of fuel decomposition and hydrocarbon growth processes for cyclohexane and related compounds in nonpremixed flames. Combustion and Flame 136:1-2, pages 155-167.
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G. Dayma, P. A. Glaude, R. Fournet & F. Battin-Leclerc. (2003) Experimental and modeling study of the oxidation of cyclohexene. International Journal of Chemical Kinetics 35:7, pages 273-285.
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O. Lemaire, M. Ribaucour, M. Carlier & R. Minetti. (2001) The production of benzene in the low-temperature oxidation of cyclohexane, cyclohexene, and cyclohexa-1,3-diene. Combustion and Flame 127:1-2, pages 1971-1980.
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A. El Bakali, M. Braun-Unkhoff, P. Dagaut, P. Frank & M. Cathonnet. (2000) Detailed kinetic reaction mechanism for cyclohexane oxidation at pressure up to ten atmospheres. Proceedings of the Combustion Institute 28:2, pages 1631-1638.
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D Gregory. (1999) Mechanisms for the formation of exhaust hydrocarbons in a single cylinder spark-ignition engine, fueled with deuterium-labeled ortho-, meta- and para-xylene. Combustion and Flame 118:3, pages 459-468.
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