Published November 10, 2017 | Version v1
Journal article

Furnace devices aerodynamics optimization for fuel combustion efficiency improvement and nitrogen oxide emission reduction

  • 1. Moscow Power Engineering Institute, National Research University (NRU MPEI), Moscow 111250, Krasnokazarmennaia str., 14 (Russian Federation)

Description

MPEI conducts researches on physical and mathematical models of furnace chambers for improvement of power-generation equipment fuel combustion efficiency and ecological safety. Results of these researches are general principles of furnace aerodynamics arrangement for straight-flow burners and various fuels. It has been shown, that staged combustion arrangement with early heating and igniting with torch distribution in all furnace volume allows to obtain low carbon in fly ash and nitrogen oxide emission and also to improve boiler operation reliability with expand load adjustment range. For solid fuel combustion efficiency improvement it is practical to use high-placed and strongly down-tilted straight-flow burners, which increases high-temperature zone residence time for fuel particles. In some cases, for this combustion scheme it is possible to avoid slag-tap removal (STR) combustion and to use Dry-bottom ash removal (DBAR) combustion with tolerable carbon in fly ash level. It is worth noting that boilers with STR have very high nitrogen oxide emission levels (1200-1800 mg/m3) and narrow load adjustment range, which is determined by liquid slag output stability, so most industrially-developed countries don't use this technology. Final decision about overhaul of boiler unit is made with regard to physical and mathematical modeling results for furnace and zonal thermal calculations for furnace and boiler as a whole.

Overhaul of boilers to provide staged combustion and straight-flow burners and nozzles allows ensuring regulatory nitrogen oxide emission levels and corresponding best available technology criteria, which is especially relevant due to changes in Russian environmental regulation. (paper)

Availability note (English)

Available from http://dx.doi.org/10.1088/1742-6596/891/1/012220

Additional details

Publishing Information

Journal Title
Journal of Physics. Conference Series (Online)
Journal Volume
891
Journal Issue
1
Journal Page Range
[11 p.]
ISSN
1742-6596

Conference

Title
International Conference on Problems of Thermal Physics and Power Engineering
Acronym
PTPPE-2017
Dates
9-11 Oct 2017
Place
Moscow (Russian Federation)