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Original Articles

Effects of Probing Conditions on NO2/NOx Ratios

Pages 131-135 | Received 28 Dec 1978, Accepted 28 Feb 1980, Published online: 27 Apr 2007

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Read on this site (2)

PHILIPPE DAGAUT, JOCELYN LUCHE & MICHEL CATHONNET. (2001) The Low Temperature Oxidation of DME and Mutual Sensitization of the Oxidation of DME and Nitric Oxide: Experimental and Detailed Kinetic Modeling. Combustion Science and Technology 165:1, pages 61-84.
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PHILIPPE DAGAUT, FRANCK LECOMTE, SÉBASTIEN CHEVAILLER & MICHEL CATHONNET. (1999) Mutual Sensitization of the Oxidation of Nitric Oxide and Simple Fuels Over an Extended Temperature Range: Experimental and Detailed Kinetic Modeling. Combustion Science and Technology 148:1-6, pages 27-57.
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Articles from other publishers (16)

Youngbok Lee, Seungha Lee & Kyoungdoug Min. (2021) Prediction of NO x considering NO and NO 2 for a CI engine . Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering 236:5, pages 1058-1068.
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Youngbok Lee, Seungha Lee & Kyoungdoug Min. (2021) Real-time NOx estimation in light duty diesel engine with in-cylinder pressure prediction. International Journal of Engine Research 22:12, pages 3519-3532.
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Nupur Gupta, Xiao Yu, Nick Eaves, Meiping Wang & Ming Zheng. Numerical Investigation on NO to NO 2 Conversion in a Low-Temperature Combustion CI Engine . Numerical Investigation on NO to NO 2 Conversion in a Low-Temperature Combustion CI Engine .
Jing Li, Shuiliang Yao & Zuliang Wu. (2020) NOx production in plasma reactors by pulsed spark discharges. Journal of Physics D: Applied Physics 53:38, pages 385201.
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Li Yao, Wenwen Xia, Rui Zhao & Kun Yang. (2019) Calculation of anharmonic effect of the reactions related to NO2 in fuel combustion mechanism. AIP Advances 9:12.
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J. Benajes, J.J. López, R. Novella & P. Redón. (2014) Comprehensive modeling study analyzing the insights of the NO–NO2 conversion process in current diesel engines. Energy Conversion and Management 84, pages 691-700.
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Elna J. K. Nilsson & Alexander A. Konnov. 2013. Cleaner Combustion. Cleaner Combustion 231 280 .
P. A. Glaude, N. Marinov, Y. Koshiishi, N. Matsunaga & M. Hori. (2005) Kinetic Modeling of the Mutual Oxidation of NO and Larger Alkanes at Low Temperature. Energy & Fuels 19:5, pages 1839-1849.
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Alexander A. Konnov, Jian Ning Zhu, John H. Bromly & Dong-ke Zhang. (2005) The effect of NO and NO2 on the partial oxidation of methane: experiments and modeling. Proceedings of the Combustion Institute 30:1, pages 1093-1100.
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Morio Hori, Yasuhisa Koshiishi, Naoki Matsunaga, Pierre Glaude & Nick Marinov. (2002) Temperature dependence of NO to NO2 conversion by n-butane and n-pentane oxidation. Proceedings of the Combustion Institute 29:2, pages 2219-2226.
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Jongmook Lim, Jay Gore & Raymond Viskanta. (2000) A study of the effects of air preheat on the structure of methane/air counterflow diffusion flames. Combustion and Flame 121:1-2, pages 262-274.
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Ryoji Homma & J.-Y. Chen. (2000) Combustion process optimization by genetic algorithms: Reduction of NO2 emission via optimal postflame process. Proceedings of the Combustion Institute 28:2, pages 2483-2489.
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J. W. Hunderup & R. J. Roby. (1996) An Experimental Investigation of the Conversion of NO to NO2 at High Pressure. Journal of Engineering for Gas Turbines and Power 118:4, pages 756-764.
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Morio Hori, Naoki Matsunaga, Philip C. Malte & Nick M. Marinov. (1992) The effect of low-concentration fuels on the conversion of nitric oxide to nitrogen dioxide. Symposium (International) on Combustion 24:1, pages 909-916.
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Morio Hori. (1989) Nitrogen dioxide formation by the mixing of hot combustion gas with cold air. Symposium (International) on Combustion 22:1, pages 1175-1181.
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Morio Hori. (1988) Experimental study of nitrogen dioxide formation in combustion systems. Symposium (International) on Combustion 21:1, pages 1181-1188.
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