Cold experimental investigations into gas/particle flow characteristics of a low-NOx axial swirl burner in a 600-MWe wall-fired pulverized-coal utility boiler

Author:

Li Zhengqi,Zeng Lingyan,Zhao Guangbo,Li Jing,Shen Shanping,Chen Lizhe,Zhang Fucheng

Publisher

Elsevier BV

Subject

Fluid Flow and Transfer Processes,Mechanical Engineering,Aerospace Engineering,Nuclear Energy and Engineering,General Chemical Engineering

Reference27 articles.

1. The future challenges for clean coal technologies: joining efficiency increase and pollutant emission control;Franco;Energy,2009

2. Effect of coal-over-coal reburn on furnace temperature and heat flux distributions in 1MW tangentially fired furnace;Li;International Journal of Thermal Sciences,2010

3. Numerical study of NOx formation during incineration of cellulosic and plastic materials: The combustion regime;Rogaume;International Journal of Thermal Sciences,2010

4. NOx emissions of an opposed wall-fired pulverized coal utility boiler;Gao;Asia-Pacific Journal of Chemical Engineering,2010

5. Characteristic studies of NOx formation reactions in low NOx burners and conventional impeller less pulverized coal burner;An;Power Engineering,2006

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