DocumentCode :
320939
Title :
Simulation of fuel-bound nitrogen evolution in biomass gasification
Author :
Zhou, Jiachun ; Masutani, Stephen M. ; Ishimura, Darren M. ; Turn, Scott Q. ; Kinoshita, Charles M.
Author_Institution :
Dept. of Mech. Eng., Hawaii Univ., Honolulu, HI, USA
Volume :
3
fYear :
1997
fDate :
27 Jul-1 Aug 1997
Firstpage :
1791
Abstract :
Fuel bound nitrogen (FBN) in biomass can be converted to molecular nitrogen (N2) or pollutants such as oxides of nitrogen (NO x), ammonia (NH3) and hydrogen cyanide (HCN) during high temperature gasification. Since earlier studies have indicated that the partitioning of FBN among gasification products is determined by kinetics rather than equilibrium, a kinetics model of a fluidized bed gasifier was developed. This model considers 109 elementary chemical reactions and about 30 C, H, O, N species. It was assumed that biomass gasification comprises an initial instantaneous devolatilization and pyrolysis step, that divides the biomass into char and volatiles, followed by heterogeneous and homogeneous reactions between the volatiles, oxidizer(s) and char. Simulation results agree well with experimental data and indicate that most of the FBN is partitioned between NH3 and N2. As gasification temperature increases, a significant fraction of the NH3 is converted to N2
Keywords :
bioenergy conversion; nitrogen; pyrolysis; reaction kinetics theory; N2; biomass gasification; char; devolatilization; fluidized bed gasifier; fuel-bound nitrogen evolution; high temperature gasification; kinetics model; pyrolysis; volatiles; Biomass; Chemicals; Fluidization; Fuels; Hydrogen; Kinetic theory; Mechanical engineering; Nitrogen; Pollution; Temperature;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Energy Conversion Engineering Conference, 1997. IECEC-97., Proceedings of the 32nd Intersociety
Conference_Location :
Honolulu, HI
Print_ISBN :
0-7803-4515-0
Type :
conf
DOI :
10.1109/IECEC.1997.656694
Filename :
656694
Link To Document :
بازگشت