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Original Articles

EMISSIONS OF CO AND NO FROM A TWO STAGE POROUS MEDIA BURNER

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Pages 81-91 | Received 27 Jul 1994, Accepted 10 Mar 1995, Published online: 27 Apr 2007

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M. M. KAMAL & A. A. MOHAMAD. (2006) EFFECT OF SWIRL ON PERFORMANCE OF FOAM POROUS MEDIUM BURNERS. Combustion Science and Technology 178:4, pages 729-761.
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Articles from other publishers (17)

Matías Fierro, Guillermo Mayne & Mario Toledo. (2023) Second stage porous media burner for syngas enrichment. International Journal of Hydrogen Energy 48:51, pages 19450-19458.
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Kishan Dash & Sikata Samantaray. A review of the effects of burner configuration and operating parameters on the performance of porous radiant burner. A review of the effects of burner configuration and operating parameters on the performance of porous radiant burner.
Sonia Chalia, Manish Kumar Bharti, Preeti Thakur, Atul Thakur & S.N. Sridhara. (2021) An overview of ceramic materials and their composites in porous media burner applications. Ceramics International 47:8, pages 10426-10441.
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Gyan Sagar Sinha, Lav K. Kaushik & P. Muthukumar. 2021. Proceedings of International Conference on Thermofluids. Proceedings of International Conference on Thermofluids 633 641 .
Abhisek Banerjee & Alexei Saveliev. (2020) Emission Characteristics of Heat Recirculating Porous Burners With High Temperature Energy Extraction. Frontiers in Chemistry 8.
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C.J. Wang & J.X. Wen. (2014) The effect of a perforated plate on the propagation of laminar hydrogen flames in a channel – A numerical study. International Journal of Hydrogen Energy 39:36, pages 21335-21342.
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H.B. Gao, Z.G. Qu, X.B. Feng & W.Q. Tao. (2014) Methane/air premixed combustion in a two-layer porous burner with different foam materials. Fuel 115, pages 154-161.
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Kyle T. Mueller, Oliver Waters, Valeri Bubnovich, Nina Orlovskaya & Ruey-Hung Chen. (2013) Super-adiabatic combustion in Al2O3 and SiC coated porous media for thermoelectric power conversion. Energy 56, pages 108-116.
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Jarruwat Charoensuk & Arwut Lapirattanakun. (2011) On flame stability, temperature distribution and burnout of air-staged porous media combustor firing LPG with different porosity and excess air. Applied Thermal Engineering 31:16, pages 3125-3141.
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M. Abdul Mujeebu, M.Z. Abdullah, M.Z. Abu Bakar, A.A. Mohamad, R.M.N. Muhad & M.K. Abdullah. (2009) Combustion in porous media and its applications – A comprehensive survey. Journal of Environmental Management 90:8, pages 2287-2312.
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Susie Wood & Andrew T. Harris. (2008) Porous burners for lean-burn applications. Progress in Energy and Combustion Science 34:5, pages 667-684.
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S. R. Khatami F., B. Safavisohi & E. Sharbati. (2007) Porosity and Permeability Effects on Centerline Temperature Distributions, Peak Flame Temperature, Flame Structure, and Preheating Mechanism for Combustion in Porous Media. Journal of Energy Resources Technology 129:1, pages 54-65.
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M. M. Kamal & A. A. Mohamad. (2006) Combustion in Porous Media. Proceedings of the Institution of Mechanical Engineers, Part A: Journal of Power and Energy 220:5, pages 487-508.
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Raymond Viskanta. 2005. Handbook of Porous Media, Second Edition. Handbook of Porous Media, Second Edition 607 644 .
Jia F. Liu & Wen H. Hsieh. (2004) Experimental investigation of combustion in porous heating burners. Combustion and Flame 138:3, pages 295-303.
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C.L. Hackert, J.L. Ellzey & O.A. Ezekoye. (1999) Combustion and heat transfer in model two-dimensional porous burners. Combustion and Flame 116:1-2, pages 177-191.
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C. L. Hackert, J. L. Ellzey, O. A. Ezekoye & M. J. Hall. (1996) Transverse dispersion at high Peclet numbers in short porous media. Experiments in Fluids 21:4, pages 286-290.
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