Title: OxyFuel Combustion of Coal and the Evolution of NOx
1Oxy-Fuel Combustion of Coal and the Evolution of
NOx
- Ph.d. Student Jacob Brix
- Supervisors Anker Degn Jensen
- Peter Arendt Jensen
2Objectives
- Heat release associated with heterogeneous
combustion are important for the heat flux
characteristics of the process. -
- Fuel conversion at the boiler exit determines the
utilization efficiency. - The time required for char consumption determines
the size of the boiler. - NOx emissions decrease in oxy-fuel combustion but
the reason is not fully understood and can not be
used in boiler design.
3The Reactors
Isothermal Entrained Flow Reactor (Char Kinetics
NOx)
Fixed Bed Reactor (NOx Particle Temperature)
4Results-Entrained Flow Reactor
Conversions vs. oxygen concentrations at 1373 K
for two different sampling residence times.
Char conversion profiles obtained at 1673 K and
1573 K. The calculated profile is found for a
shrinking sphere in zone III. (? 3.1 vol. O2)(?
3.4 vol. O2)(? 3.2 vol. O2)(o 3.7 vol. O2).
5Results-Fixed Bed Reactor
dp 11.3 mm, 30 vol. O2 in CO2
6Results-Fixed Bed Reactor
dp 1.3 12.1 mm, 30 vol. O2
- The effects of particle radius and particle
concentration are less pronounced in O2/CO2 than
in O2/N2.
7Ongoing Work
- Master student Leyre Gómez Navascués is working
on the setup as part of her project NOx
Formation in Oxy-Fuel Combustion using lignite
as fuel. - Project students Jesper Grossmann and Morten
Storgård Petersen is working with TGA
experiments on EFR char as part of their project
Kinetics for Char Conversion in O2 and CO2. - Additional experiments using the same bituminous
coal will be conducted during the fall and winter
with emphasis on NO reduction on char and the
influence of CO partial pressure. - Particle modelling will be used to quantify the
influence of physical parameters in the fixed bed
and TGA experiments. A complex model describing
combustion of multiple particle sizes and char
morphologies are used to interpret EFR results.
8Tak for opmærksomheden/ Thanks for the Attention !