Published December 1992 | Version v1
Journal article

The influence of near burner region aerodynamics on the formation and emission of nitrogen oxides in a pulverized coal-fired furnace

  • 1. Imperial Coll. of Science and Technology, London (United Kingdom). Dept. of Mechanical Engineering

Description

This paper reports that detailed measurements have been performed for two distinct pulverized-coal-fired burners in a large-scale laboratory furnace. Comparative in-flame data are archived and include gas temperature, O2, CO concentration, and an inventory of stable fuel nitrogen species and solids (HCN, NH3, N2O, NO, nitrogen release, mass flux, and particle burnout). A significant decrease in the NO concentration in the near burner region and a substantial decrease in the furnace exit values are observed when the central tube from a single annular orifice burner jet (normally the location of a gas or oil burner for light-up purposes) is replaced with a single central orifice burner jet of same cross-sectional area. The latter burner exhibits the delayed combustion phenomena normally associated with a tangentially fired system. The particle burnout remains unaffected due to the longer particles' residence time in the all-important oxygen lean internal recirculation zone

Additional details

Publishing Information

Journal Title
Combustion and Flame
Journal Volume
91
Journal Issue
3/4
Journal Page Range
p. 346-363.
ISSN
0010-2180
CODEN
CBFMAO