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Toni Pikkarainen

20062019
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Research Output 2006 2019

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2019

Robust decision making analysis of BECCS (bio-CLC)in a district heating and cooling grid

Lindroos, T. J., Rydén, M., Langørgen, Ø., Pursiheimo, E. & Pikkarainen, T., 2019, In : Sustainable Energy Technologies and Assessments. 34, p. 157-172 16 p.

Research output: Contribution to journalArticleScientificpeer-review

Open Access
Carbon capture
District heating
Decision making
Cooling
Biomass
2017
2 Citations (Scopus)

Bench-scale and modelling study of the effect of H2O on sulphur capture by limestone in conditions of fluidized-bed air combustion and oxycombustion

Rahiala, S., Ritvanen, J., Hyppänen, T. & Pikkarainen, T., 2017, In : Fuel. 196, p. 233-240 8 p.

Research output: Contribution to journalArticleScientificpeer-review

Calcium Carbonate
Limestone
Sulfur
Fluidized beds
Air
2 Citations (Scopus)

Modelling and dynamic simulation of the 2nd generation oxy fired power plant - oxidant fan failure case

Mikkonen, H., Lappalainen, J., Pikkarainen, T. & Kuivalainen, R., 2017, In : Energy Procedia. 114, p. 561-572 12 p.

Research output: Contribution to journalArticleScientificpeer-review

Open Access
Oxidants
Fans
Boilers
Power plants
Computer simulation
2013
7 Citations (Scopus)

Bench-scale and modeling study of sulfur capture by limestone in typical CO2 concentrations and temperatures of fluidized-bed air and oxy-fuel combustion

Rahiala, S., Hyppänen, T. & Pikkarainen, T., 2013, In : Energy & Fuels. 27, 12, p. 7664-7672 9 p.

Research output: Contribution to journalArticleScientificpeer-review

Calcium Carbonate
Limestone
Sulfur
Fluidized beds
Desulfurization
2011
19 Citations (Scopus)

Experimental and Modeling Study of Sulfur Capture by Limestone in Selected Conditions of Air-Fired and Oxy-fuel Circulating Fluidized-Bed Boilers

Takkinen, S., Hyppänen, T., Saastamoinen, J. & Pikkarainen, T., 2011, In : Energy & Fuels. 25, 7, p. 2968-2979

Research output: Contribution to journalArticleScientificpeer-review

Calcium Carbonate
Limestone
Sulfur
Fluidized beds
Boilers
2010

Hiilidioksidi talteen CCS:llä

Teir, S., Arasto, A., Pikkarainen, T., Koljonen, T., Kärki, J., Tsupari, E., Tourunen, A., Aatos, S. & Nieminen, M., 2010, In : BioEnergia. 3, p. 24-25 2 p.

Research output: Contribution to journalArticleProfessional

2009
55 Citations (Scopus)

Near zero CO2 emissions in coal firing with oxy-fuel circulating fluidized bed boiler

Myöhänen, K., Hyppänen, T., Pikkarainen, T., Eriksson, T. & Hotta, A., 2009, In : Chemical Engineering and Technology. 32, 3, p. 355-363 9 p.

Research output: Contribution to journalArticleScientificpeer-review

Coal
Flue gases
Fluidized beds
Boilers
Fluidized bed furnaces
2008
23 Citations (Scopus)

Model of fragmentation of limestone particles during thermal shock and calcination in fluidised beds

Saastamoinen, J., Pikkarainen, T., Tourunen, A., Räsänen, M. & Jäntti, T., 2008, In : Powder Technology. 187, 3, p. 244 - 251 8 p.

Research output: Contribution to journalArticleScientificpeer-review

Calcium Carbonate
Thermal shock
Limestone
Calcination
Particle size analysis
2006

Dynamic reactivity and comminution behaviour of particles in CFBC

Saastamoinen, J., Tourunen, A., Häsä, H., Pitsinki, J., Hämäläinen, J., Hyppänen, T., Loschkin, M. & Pikkarainen, T., 2006, In : Far East Journal of Applied Mathematics. 23, 1, p. 41-71 30 p.

Research output: Contribution to journalArticleScientificpeer-review

Fluidized bed combustion
Comminution
Ashes
Particle size analysis
Population dynamics