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Original Articles

Fundamental Combustion Properties of H2/CO Mixtures: Ignition and Flame Propagation at Elevated Pressures

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Pages 1097-1116 | Published online: 09 May 2008

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Pinaki Pal, Andrew B. Mansfield, Paul G. Arias, Margaret S. Wooldridge & Hong G. Im. (2015) A computational study of syngas auto-ignition characteristics at high-pressure and low-temperature conditions with thermal inhomogeneities. Combustion Theory and Modelling 19:5, pages 587-601.
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Articles from other publishers (48)

Z. Liang, J. Murphy, S. Cotosman, M. Hurley, T. Clouthier & L. Gardner. (2024) Experimental study on combustion of H2–CO–air mixtures in closed and vented vessels. International Journal of Hydrogen Energy 50, pages 1119-1130.
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A. Rouanet & H. Jeanmart. (2024) Improvement of syngas quality from two-stage downdraft wood gasification through steam and oxygen injection. Biomass and Bioenergy 180, pages 106998.
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Xiaobo Shen, Zengguo Dou, Zhenwu Zhang, Beihua Cong, Haifeng Liu & Fuchen Wang. (2022) Pressure dependence of combustion instability for premixed syngas/air in a closed channel. International Journal of Hydrogen Energy 47:83, pages 35171-35183.
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Shixin Han, Minggao Yu, Xufeng Yang, Haitao Li & Zimao Ma. (2022) Flame propagation mode transition of premixed syngas-air mixtures in a closed duct. Fuel 318, pages 123649.
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Amin Paykani, Hamed Chehrmonavari, Athanasios Tsolakis, Terry Alger, William F. Northrop & Rolf D. Reitz. (2022) Synthesis gas as a fuel for internal combustion engines in transportation. Progress in Energy and Combustion Science 90, pages 100995.
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Tim C. Lieuwen. 2021. Unsteady Combustor Physics. Unsteady Combustor Physics 296 320 .
Bowen Li, Shaozeng Sun, Linyao Zhang, Dongdong Feng, Yijun Zhao, Pengxiang Wang, Jiangquan Wu, Penghua Qiu, Feng Zhang & Yukun Qin. (2021) System modification and thermal efficiency study on the semi-closed cycle of supercritical carbon dioxide. Energy Conversion and Management 241, pages 114272.
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Panagiotis Simatos, Fabian Hampp & Rune Peter Lindstedt. 2020. Innovations in Sustainable Energy and Cleaner Environment. Innovations in Sustainable Energy and Cleaner Environment 333 356 .
Eshan Singh, Kai Morganti & Robert Dibble. Knock and Pre-Ignition Limits on Utilization of Ethanol in Octane-on-Demand Concept. Knock and Pre-Ignition Limits on Utilization of Ethanol in Octane-on-Demand Concept.
Meng Zhang, Jinhua Wang, Min Chang & Zuohua Huang. (2019) Turbulent flame topology and the wrinkled structure characteristics of high pressure syngas flames up to 1.0 MPa. International Journal of Hydrogen Energy 44:30, pages 15973-15984.
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Nazli Asgari & Bihter Padak. (2018) Effect of fuel composition on NO x formation in high‐pressure syngas/air combustion . AIChE Journal 64:8, pages 3134-3140.
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Salvatore Quattrocchi, Suresh K. Aggarwal & Viswanath R. Katta. (2018) Liftoff and blowout characteristics of laminar syngas nonpremixed flames. International Journal of Hydrogen Energy 43:12, pages 6421-6433.
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Yang ZhangYang Zhang. 2018. Propagation and Extinction Studies of Laminar Lean Premixed Syngas/Air Flames. Propagation and Extinction Studies of Laminar Lean Premixed Syngas/Air Flames 1 26 .
Wenkai Liang, Jie Liu & Chung K. Law. (2017) On explosion limits of H2/CO/O2 mixtures. Combustion and Flame 179, pages 130-137.
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Pengxiang Wang, Yijun Zhao, Yilun Chen, Libin Bao, Shun Meng & Shaozeng Sun. (2017) Study on the lower flammability limit of H 2 /CO in O 2 /H 2 O environment. International Journal of Hydrogen Energy 42:16, pages 11926-11936.
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Sasan Dabir, Mingyuan Cao, Richard Prosser & Theodore Tsotsis. (2017) Feasibility Study of Biogas Reforming To Improve Energy Efficiency and To Reduce Nitrogen Oxide Emissions. Industrial & Engineering Chemistry Research 56:5, pages 1186-1200.
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Pinaki Pal, Mauro Valorani, Paul G. Arias, Hong G. Im, Margaret S. Wooldridge, Pietro P. Ciottoli & Riccardo M. Galassi. (2017) Computational characterization of ignition regimes in a syngas/air mixture with temperature fluctuations. Proceedings of the Combustion Institute 36:3, pages 3705-3716.
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Suresh K. Aggarwal. 2010. Handbook of Combustion. Handbook of Combustion 1 39 .
Fahad M. Alzahrani, Yinka S. Sanusi, Konstantina Vogiatzaki, Ahmed F. Ghoniem, Mohamed A. Habib & Esmail M. A. Mokheimer. (2015) Evaluation of the Accuracy of Selected Syngas Chemical Mechanisms. Journal of Energy Resources Technology 137:4.
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Dongyue Jiang, Wenming Yang & Jinghua Teng. (2015) Entropy generation analysis of fuel lean premixed CO/H2/air flames. International Journal of Hydrogen Energy 40:15, pages 5210-5220.
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Ekenechukwu C. Okafor, Yosuke Fukuda, Yukihide Nagano & Toshiaki Kitagawa. Turbulent Burning Velocities of Stoichiometric Hydrogen-Carbon Monoxide-Air Flames at Elevated Pressures. Turbulent Burning Velocities of Stoichiometric Hydrogen-Carbon Monoxide-Air Flames at Elevated Pressures.
Meng Zhang, Jinhua Wang, Jin Wu, Zhilong Wei, Zuohua Huang & Hideaki Kobayashi. (2014) Flame front structure of turbulent premixed flames of syngas oxyfuel mixtures. International Journal of Hydrogen Energy 39:10, pages 5176-5185.
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Quan-De Wang. (2014) An updated detailed reaction mechanism for syngas combustion. RSC Adv. 4:9, pages 4564-4585.
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H.C. Lee, L.Y. Jiang & A.A. Mohamad. (2014) A review on the laminar flame speed and ignition delay time of Syngas mixtures. International Journal of Hydrogen Energy 39:2, pages 1105-1121.
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S. Daniele, J. Mantzaras, P. Jansohn, A. Denisov & K. Boulouchos. (2013) Flame front/turbulence interaction for syngas fuels in the thin reaction zones regime: turbulent and stretched laminar flame speeds at elevated pressures and temperatures. Journal of Fluid Mechanics 724, pages 36-68.
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Alan Kéromnès, Wayne K. Metcalfe, Karl A. Heufer, Nicola Donohoe, Apurba K. Das, Chih-Jen Sung, Jürgen Herzler, Clemens Naumann, Peter Griebel, Olivier Mathieu, Michael C. Krejci, Eric L. Petersen, William J. Pitz & Henry J. Curran. (2013) An experimental and detailed chemical kinetic modeling study of hydrogen and syngas mixture oxidation at elevated pressures. Combustion and Flame 160:6, pages 995-1011.
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Parisa Sayad, Alessandro Schönborn & Jens Klingmann. (2013) Experimental Investigations of the Lean Blowout Limit of Different Syngas Mixtures in an Atmospheric, Premixed, Variable-Swirl Burner. Energy & Fuels 27:5, pages 2783-2793.
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Hideaki Kobayashi, Yuki Otawara, Jinhua Wang, Futoshi Matsuno, Yasuhiro Ogami, Masaki Okuyama, Taku Kudo & Satoshi Kadowaki. (2013) Turbulent premixed flame characteristics of a CO/H2/O2 mixture highly diluted with CO2 in a high-pressure environment. Proceedings of the Combustion Institute 34:1, pages 1437-1445.
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Zacharias Marinou Nikolaou, Jyh-Yuan Chen & Nedunchezhian Swaminathan. (2013) A 5-step reduced mechanism for combustion of CO/H2/H2O/CH4/CO2 mixtures with low hydrogen/methane and high H2O content. Combustion and Flame 160:1, pages 56-75.
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Jinhua Wang, Zuohua Huang, Hideaki Kobayashi & Yasuhiro Ogami. (2012) Laminar burning velocities and flame characteristics of CO–H2–CO2–O2 mixtures. International Journal of Hydrogen Energy 37:24, pages 19158-19167.
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Tim C. Lieuwen. 2012. Unsteady Combustor Physics. Unsteady Combustor Physics 225 246 .
Chien-Wen Chiu, Yi-Chih Dong & Shenqyang Steven Shy. (2012) High-pressure hydrogen/carbon monoxide syngas turbulent burning velocities measured at constant turbulent Reynolds numbers. International Journal of Hydrogen Energy 37:14, pages 10935-10946.
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Apurba K. Das, Chih-Jen Sung, Yu Zhang & Gaurav Mittal. (2012) Ignition delay study of moist hydrogen/oxidizer mixtures using a rapid compression machine. International Journal of Hydrogen Energy 37:8, pages 6901-6911.
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Matthias Ihme. (2012) On the role of turbulence and compositional fluctuations in rapid compression machines: Autoignition of syngas mixtures. Combustion and Flame 159:4, pages 1592-1604.
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Kang Woo Chun, Hun-Jik Chung, Suk Ho Chung & Jae Hyuk Choi. (2011) A numerical study on extinction and NOx formation in nonpremixed flames with syngas fuel. Journal of Mechanical Science and Technology 25:11, pages 2943-2949.
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Ulugbek Azimov, Eiji Tomita, Nobuyuki Kawahara & Yuji Harada. (2011) Effect of syngas composition on combustion and exhaust emission characteristics in a pilot-ignited dual-fuel engine operated in PREMIER combustion mode. International Journal of Hydrogen Energy 36:18, pages 11985-11996.
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C.C. Liu, S.S. Shy, C.W. Chiu, M.W. Peng & H.J. Chung. (2011) Hydrogen/carbon monoxide syngas burning rates measurements in high-pressure quiescent and turbulent environment. International Journal of Hydrogen Energy 36:14, pages 8595-8603.
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Alexey A. Burluka, Ahmed M. T. El-Dein Hussin, Christopher G. W. Sheppard, Kexin Liu & Victoria Sanderson. (2011) Turbulent Combustion of Hydrogen–CO Mixtures. Flow, Turbulence and Combustion 86:3-4, pages 735-749.
Crossref
Hugo J. Burbano, Jhon Pareja & Andrés A. Amell. (2011) Laminar burning velocities and flame stability analysis of syngas mixtures at sub-atmospheric pressures. International Journal of Hydrogen Energy 36:4, pages 3243-3252.
Crossref
Hugo J. Burbano, Jhon Pareja & Andrés A. Amell. (2011) Laminar burning velocities and flame stability analysis of H2/CO/air mixtures with dilution of N2 and CO2. International Journal of Hydrogen Energy 36:4, pages 3232-3242.
Crossref
Kamlesh G. Gupta & Tarek Echekki. (2011) One-dimensional turbulence model simulations of autoignition of hydrogen/carbon monoxide fuel mixtures in a turbulent jet. Combustion and Flame 158:2, pages 327-344.
Crossref
Apurba Das & Chih-Jen Sung. (2011) Ignition Delay Study of Moist Syngas/Oxidizer and Hydrogen/Oxidizer Mixtures using a Rapid Compression Machine. Ignition Delay Study of Moist Syngas/Oxidizer and Hydrogen/Oxidizer Mixtures using a Rapid Compression Machine.
Matthias Ihme. (2011) Reconcile Discrepancies of Current Syngas Kinetics Models by Considering Turbulence Effects on Ignition Delay at Gas-Turbine Relevant Operating Conditions. Reconcile Discrepancies of Current Syngas Kinetics Models by Considering Turbulence Effects on Ignition Delay at Gas-Turbine Relevant Operating Conditions.
Yasuhisa Ichikawa, Yuki Otawara, Hideaki Kobayashi, Yasuhiro Ogami, Taku Kudo, Masaki Okuyama & Satoshi Kadowaki. (2011) Flame structure and radiation characteristics of CO/H2/CO2/air turbulent premixed flames at high pressure. Proceedings of the Combustion Institute 33:1, pages 1543-1550.
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Yohannes Ghermay, John Mantzaras & Rolf Bombach. (2010) Effects of hydrogen preconversion on the homogeneous ignition of fuel-lean H2/O2/N2/CO2 mixtures over platinum at moderate pressures. Combustion and Flame 157:10, pages 1942-1958.
Crossref
Christian Kunze & Hartmut Spliethoff. (2010) Modelling of an IGCC plant with carbon capture for 2020. Fuel Processing Technology 91:8, pages 934-941.
Crossref
B. Gamiño & J. Aguillón. (2010) Numerical simulation of syngas combustion with a multi-spark ignition system in a diesel engine adapted to work at the Otto cycle. Fuel 89:3, pages 581-591.
Crossref
Epaminondas Mastorakos. (2009) Ignition of turbulent non-premixed flames. Progress in Energy and Combustion Science 35:1, pages 57-97.
Crossref

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