Oxy-fuel combustion boiler for CO2 capturing: 50 kW-class model test and numerical simulation

A novel oxy-fuel burner was devised and integrated into a 50 kW-class furnace-type boiler system. A series of experiments was conducted to verify its feasibility for industrial applications. Additionally, numerical simulations were performed and the results validated against experimental data on the...

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Published inJournal of mechanical science and technology Vol. 24; no. 10; pp. 2135 - 2141
Main Authors Ahn, Joon, Kim, Hyouck Ju, Choi, Kyu Sung
Format Journal Article
LanguageEnglish
Published Heidelberg Korean Society of Mechanical Engineers 01.10.2010
Springer Nature B.V
대한기계학회
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ISSN1738-494X
1976-3824
DOI10.1007/s12206-010-0711-y

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Abstract A novel oxy-fuel burner was devised and integrated into a 50 kW-class furnace-type boiler system. A series of experiments was conducted to verify its feasibility for industrial applications. Additionally, numerical simulations were performed and the results validated against experimental data on the detailed physics inside the conventional-design combustion chamber. The oxy-fuel burner, with the help of gas radiation, could effectively heat the combustion chamber. The composition of the exhaust gas revealed that the sealing of the system is crucial to the achievement of high CO 2 concentrations and low NOx emissions.
AbstractList A novel oxy-fuel burner was devised and integrated into a 50 kW-class furnace-type boiler system. A series of experiments was conducted to verify its feasibility for industrial applications. Additionally, numerical simulations were performed and the results validated against experimental data on the detailed physics inside the conventional-design combustion chamber. The oxy-fuel burner, with the help of gas radiation, could effectively heat the combustion chamber. The composition of the exhaust gas revealed that the sealing of the system is crucial to the achievement of high CO2 concentrations and low NOx emissions. KCI Citation Count: 6
A novel oxy-fuel burner was devised and integrated into a 50 kW-class furnace-type boiler system. A series of experiments was conducted to verify its feasibility for industrial applications. Additionally, numerical simulations were performed and the results validated against experimental data on the detailed physics inside the conventional-design combustion chamber. The oxy-fuel burner, with the help of gas radiation, could effectively heat the combustion chamber. The composition of the exhaust gas revealed that the sealing of the system is crucial to the achievement of high CO 2 concentrations and low NOx emissions.
A novel oxy-fuel burner was devised and integrated into a 50 kW-class furnace-type boiler system. A series of experiments was conducted to verify its feasibility for industrial applications. Additionally, numerical simulations were performed and the results validated against experimental data on the detailed physics inside the conventional-design combustion chamber. The oxy-fuel burner, with the help of gas radiation, could effectively heat the combustion chamber. The composition of the exhaust gas revealed that the sealing of the system is crucial to the achievement of high CO2 concentrations and low NOx emissions.[PUBLICATION ABSTRACT]
Author Choi, Kyu Sung
Ahn, Joon
Kim, Hyouck Ju
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Cites_doi 10.1021/ef060309p
10.1016/S0016-2361(02)00014-5
10.1021/ef060346g
10.1243/095765002320877865
10.1080/00102200008935808
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Issue 10
Keywords Boiler
Burner
CO
Oxy-fuel combustion
Capturing
Nitrogen oxide
CO2 sequestration
Experimental study
Pollutant emission
Furnace
Modeling
Combustion chamber
Heat radiation
Fuel
Air pollution
Feasibility
Exhaust gas
Engine exhaust
Concentration distribution
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Springer Nature B.V
대한기계학회
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Tan, Douglas, Thambimuthu (CR2) 2002; 81
Kim, Choi, Bae, Shin (CR3) 2008; 32
CR4
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Kim, Kim, Lee, Ahn (CR7) 2007; 21
Hwang, Gore (CR8) 2002; 216
Kim (CR1) 2005; 25
Park, Park, Kim, Kim, Kim, Choi, Cho, Cho, Park (CR9) 2007; 21
F. Breussin (711_CR6) 2000; 160
H. J. Kim (711_CR3) 2008; 32
H. J. Kim (711_CR1) 2005; 25
H. K. Kim (711_CR7) 2007; 21
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SubjectTerms Applied sciences
Atmospheric pollution
Control
Dynamical Systems
Energy
Energy. Thermal use of fuels
Engineering
Equipments for energy generation and conversion: thermal, electrical, mechanical energy, etc
Exact sciences and technology
Furnaces. Firing chambers. Burners
Industrial and Production Engineering
Mechanical Engineering
Pollution
Pollution sources. Measurement results
Vibration
기계공학
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