Citation: Tomas Persson, Jochen Riedel, Jonas Berghel, Ulf Bexell, Kaung Myat Win. Emissions and deposit properties from combustion of wood pellet with magnesium additives[J]. Journal of Fuel Chemistry and Technology, 2013, 41(5): 530-539.
Emissions and deposit properties from combustion of wood pellet with magnesium additives
English
Emissions and deposit properties from combustion of wood pellet with magnesium additives
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Key words:
- softwood pellets
- / magnesium
- / additives
- / particle emissions
- / deposit formation
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[1] KAPPOS A D, BRUCKMANNB P, EIKMANNC T, ENGLERTD N, HEINRICHE U, HÖPPEF P, KOCHG E, KRAUSEB G H M, KREYLINGH W G, RAUCHFUSSB K, ROMBOUTI P, SCHULZ-KLEMPJ V, THIELK W R, WICHMANNL H E. Health effects of particles in ambient air[J]. Int J Hyg Environ Health, 2004, 207(4): 399-407.[1] KAPPOS A D, BRUCKMANNB P, EIKMANNC T, ENGLERTD N, HEINRICHE U, HÖPPEF P, KOCHG E, KRAUSEB G H M, KREYLINGH W G, RAUCHFUSSB K, ROMBOUTI P, SCHULZ-KLEMPJ V, THIELK W R, WICHMANNL H E. Health effects of particles in ambient air[J]. Int J Hyg Environ Health, 2004, 207(4): 399-407.
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[2] DAVIDSSON K O, ÅMAND L E, STEENARI B M, ELLED A L, ESKILSSON D, LECKNER B. Countermeasures against alkali-related problems during combustion of biomass in a circulating fluidized bed boiler[J]. Chem Eng Sci, 2008, 63(21): 5314-5329.[2] DAVIDSSON K O, ÅMAND L E, STEENARI B M, ELLED A L, ESKILSSON D, LECKNER B. Countermeasures against alkali-related problems during combustion of biomass in a circulating fluidized bed boiler[J]. Chem Eng Sci, 2008, 63(21): 5314-5329.
-
[3] KAUFMANN H, NUSSBAUMER T, BAXTER L, YANG N. Deposit formation on a single cylinder during combustion of herbaceous biomass[J]. Fuel, 2000, 79(2): 141-151.[3] KAUFMANN H, NUSSBAUMER T, BAXTER L, YANG N. Deposit formation on a single cylinder during combustion of herbaceous biomass[J]. Fuel, 2000, 79(2): 141-151.
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[4] MILES T R, MILES T R Jr, BAXTER L L BRYERS B W, JENKINS B M, ODEN L L. Boiler deposits from firing biomass fuels[J]. Biomass Bioenergy, 1996, 10(2-3): 125-138.[4] MILES T R, MILES T R Jr, BAXTER L L BRYERS B W, JENKINS B M, ODEN L L. Boiler deposits from firing biomass fuels[J]. Biomass Bioenergy, 1996, 10(2-3): 125-138.
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[5] MILES T R, MILES T R, BAXTER L L, BRYERS R M, JENKINS B M, ODEN L L. Alkali deposits found in biomass power plants: A preliminary investigation of their extent and nature[M]. National Renewable Energy Laboratory, 1995.[5] MILES T R, MILES T R, BAXTER L L, BRYERS R M, JENKINS B M, ODEN L L. Alkali deposits found in biomass power plants: A preliminary investigation of their extent and nature[M]. National Renewable Energy Laboratory, 1995.
-
[6] BÄFVER L, RÖNNBÄCK M, LECKNER B, CLAESSON F, TULLIN C. Particle emission from combustion of oat grain and its potential reduction by addition of limestone or kaolin[J]. Fuel Process Technol, 2009, 90(3): 353-359.[6] BÄFVER L, RÖNNBÄCK M, LECKNER B, CLAESSON F, TULLIN C. Particle emission from combustion of oat grain and its potential reduction by addition of limestone or kaolin[J]. Fuel Process Technol, 2009, 90(3): 353-359.
-
[7] CARVALHO L. Small-scale combustion of agricultural biomass fuels[D]. Luleå University of Technology, Luleå, Sweden, 2012.[7] CARVALHO L. Small-scale combustion of agricultural biomass fuels[D]. Luleå University of Technology, Luleå, Sweden, 2012.
-
[8] LYYRÄNEN J, JOKINIEMI J, KAUPPINEN E. The effect of Mg-based additive on aerosol characteristics in medium-speed diesel engines operating with residual fuel oils[J]. Aerosol Science, 2002, 33(7): 967-981.[8] LYYRÄNEN J, JOKINIEMI J, KAUPPINEN E. The effect of Mg-based additive on aerosol characteristics in medium-speed diesel engines operating with residual fuel oils[J]. Aerosol Science, 2002, 33(7): 967-981.
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[9] HARE N, RASUL M G, MOAZZEM S. A review on boiler deposition/foulage prevention and removal techniques for power plant[C]. Recent advances in energy and enviroment, 2010: 217-222.[9] HARE N, RASUL M G, MOAZZEM S. A review on boiler deposition/foulage prevention and removal techniques for power plant[C]. Recent advances in energy and enviroment, 2010: 217-222.
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[10] STEENARI B M, LUNDBERG A, PETTERSSON H, WILEWSKA-BIEN M, ANDERSSON D. Investigation of ash sintering during combustion of agricultural residues and the effect of additives[J]. Energy Fuels, 2009, 23(11): 5655-5662.[10] STEENARI B M, LUNDBERG A, PETTERSSON H, WILEWSKA-BIEN M, ANDERSSON D. Investigation of ash sintering during combustion of agricultural residues and the effect of additives[J]. Energy Fuels, 2009, 23(11): 5655-5662.
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[11] SIMS R E H. Bioenergy options for a cleaner environment[M]. Elsevier, 2004.[11] SIMS R E H. Bioenergy options for a cleaner environment[M]. Elsevier, 2004.
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[12] KHULLAR C. The use of 'combustion additives' to improve heat transfer and reduce combustion emissions in package boilers[J]. Fuel and Energy Abstracts, 1997, 38(2): 169-178.[12] KHULLAR C. The use of 'combustion additives' to improve heat transfer and reduce combustion emissions in package boilers[J]. Fuel and Energy Abstracts, 1997, 38(2): 169-178.
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[13] EN 14774-1. Solid biofuels-determination of moisture content-oven dry method-Part 1: Total moisture-reference method[S]. European Committee for Standardization, Brussels, Belgium, 2009.[13] EN 14774-1. Solid biofuels-determination of moisture content-oven dry method-Part 1: Total moisture-reference method[S]. European Committee for Standardization, Brussels, Belgium, 2009.
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[14] EN 14775-1. Solid biofuels-determination of ash content[S]. European Committee for Standardization, Brussels, Belgium, 2009.[14] EN 14775-1. Solid biofuels-determination of ash content[S]. European Committee for Standardization, Brussels, Belgium, 2009.
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