NO reduction in 0.03–0.2MW oxy-fuel combustor using flue gas recirculation technology
Author:
Publisher
Elsevier BV
Subject
Physical and Theoretical Chemistry,Mechanical Engineering,General Chemical Engineering
Reference18 articles.
1. 100% Oxygen-Fuel Combustion for Glass Furnaces
2. Industrial Burners Handbook;Baukal,2004
3. Oxygen-Enriched Combustion;Baukal,1998
4. Structural aspects of coaxial oxy-fuel flames
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