Title :
NO emission from high temperature air combustion of natural gas with longitudinal and swirling burner
Author :
Su, Yaxin ; Deng, Wenyi ; Jiang, Fan
Author_Institution :
Sch. of Environ. Sci. & Eng., Donghua Univ., Shanghai, China
Abstract :
Thermal nitrogen oxide (NO) emission is the major pollutant from industrial furnace. High temperature air combustion is an advanced technology to control NO emission, which carries out the combustion at highly preheated air and dilute oxygen conditions. The combustion performance of natural gas with highly preheated air was numerically simulated in an industrial furnace with a longitudinal and swirling burner respectively. The probability density function (PDF) combustion model, discrete ordinate (DO) radiation model and the Reynolds stress turbulent model (RM) were adopted for the modeling. Results showed that swirling burner was effective to reduce the final NO emission and improve the fuel burnout. When the longitudinal burner was substituted by a swirling burner with 180° swirling angle, the NO emission decreased from 35.2 ppm to 12.3 ppm, while the maximum and mean temperature in the furnace increased 38K and 58K. The CO emission also decreased from 379 ppm to 29 ppm, which implied a better burnout was achieved.
Keywords :
air pollution control; combustion equipment; fuel; furnaces; natural gas technology; nitrogen compounds; probability; turbulence; NO; Reynolds stress turbulent model; air combustion; dilute oxygen condition; discrete ordinate radiation model; fuel burnout; industrial furnace; longitudinal burner; natural gas; pollutant; preheated air condition; probability density function combustion model; swirling burner; temperature 38 K; temperature 58 K; thermal nitrogen oxide emission control; Atmospheric modeling; Combustion; Computational fluid dynamics; Fuels; Furnaces; Natural gas; Temperature distribution; high temperature air combustion; nitrogen oxide; simulation; swirling burner;
Conference_Titel :
Electric Technology and Civil Engineering (ICETCE), 2011 International Conference on
Conference_Location :
Lushan
Print_ISBN :
978-1-4577-0289-1
DOI :
10.1109/ICETCE.2011.5774489