Effects of biomass on dynamics of combustion in circulating fluidized beds
Author(s) -
Antti Tourunen,
Heidi Häsä,
Juha Pitsinki,
Mikko Jegoroff,
Jaakko Saastamoinen,
Jouni Hämäläinen
Publication year - 2004
Publication title -
thermal science
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.339
H-Index - 43
eISSN - 2334-7163
pISSN - 0354-9836
DOI - 10.2298/tsci0402093t
Subject(s) - combustion , char , coal , fluidized bed combustion , environmental science , biomass (ecology) , solid fuel , boiler (water heating) , instability , biofuel , waste management , materials science , chemistry , mechanics , geology , oceanography , physics , organic chemistry , engineering
Fluidized bed technology is very suitable for the combustion of biomass Nevertheless substitution of coal with biomass affects boiler operation and especially dynamics and controllability. Non-homogeneity of biomass and fuel feeding disturbances cause process instability, such as variations in temperatures and pressures, which reduce lifetime of equipment and structures. Because of process instability higher air coefficient must be used in order to avoid CO emissions, which is not economical. Combustion profiles for coal, wood and peat, measured at the VTT Processes Pilot circulating fluidized bed reactor, have been compared. Process stability and char inventories have been studied by the measurements and the model. Biofuel are usually very reactive and their combustion profiles are quite different compared to coals. Because of high reactivity and low char content combustion process with biofuel is very sensitive for fuel feeding. Also low char inventory effect on load changes combined with combustion profile that differs from coals. Because of different combustion profile heat transfer can be a limiting factor in load changes despite the high reactivity and fast oxygen response
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