Patrycja Piotrowska
Åbo Akademi University
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Featured researches published by Patrycja Piotrowska.
20th International Conference on Fluidized Bed Combustion; Xian; China; 18 May 2009 through 21 May 2009 | 2009
Patrycja Piotrowska; Maria Zevenhoven; Mikko Hupa; Kent Davidsson; Lars-Erik Åmand; Edgardo Coda Zabetta; Vesna Barišić
Recent studies show that deposit formation and agglomeration in fluidized bed boilers may be aggravated by a high phosphorus content besides alkali metals, chlorine and sulphur in a fuel. This paper presents the fate of phosphorus during co-combustion of wood chips and wood pellets with rapeseed cake pellets, a high phosphorus fuel in a 12MW CFB boiler. 12 hour tests with 12% and 18% (energy basis) of rapeseed cake with wood were performed with and without limestone addition. All fuels were characterised by means of standard fuel analyses combined with chemical fractionation. Retrieved ash samples were analysed using wet chemical analysis complemented with SEM/EDXA. Gaseous alkali metal chlorides as well as HCl and SO2 were measured upstream of the convective pass at a flue gas temperature of 800oC where also the deposit samples were collected with a deposit probe. The composition of deposits was studied with SEM/EDXA. Analyses of bed material particle cross-sections showed phosphorus compounds present within a K-silicates matrix between the agglomerated sand particles, indicating direct attack of gaseous potassium compounds on the bed surface followed by adhesion of rich in phosphorus ash particles. Build-up of the deposits took place mainly on the windward side of the probe; where up to 9 wt-% of phosphorus was present. SEM/EDXA shows that rapeseed cake addition caused an increase of K, Na besides P indicating presence of low melting phosphate salts in the deposits. During limestone addition in the deposit samples the increase of Cl could be noticed however no significant change in P content was observed. This paper shows that agglomeration and fouling when co-firing rapeseed cake may be linked to its high content of organically bonded phosphorus - phytic acid salts; together with high content of water soluble fraction of alkali metals chlorides and sulphates in the fuel mixture.
Energy & Fuels | 2010
Patrycja Piotrowska; Maria Zevenhoven; Kent Davidsson; Mikko Hupa; Lars-Erik Åmand; Vesna Barišić; Edgardo Coda Zabetta
Energy & Fuels | 2012
Patrycja Piotrowska; Alejandro Grimm; Nils Skoglund; Christoffer Boman; Marcus Öhman; Maria Zevenhoven; Dan Boström; Mikko Hupa
Energy & Fuels | 2010
Jacopo Giuntoli; Wiebren de Jong; Adrian H.M. Verkooijen; Patrycja Piotrowska; Maria Zevenhoven; Mikko Hupa
Energy & Fuels | 2015
Youjian Zhu; Patrycja Piotrowska; Philip J. van Eyk; Dan Boström; C.W. Kwong; Dingbiao Wang; Andrew J. Cole; Rocky de Nys; Francesco G. Gentili; Peter J. Ashman
Fuel Processing Technology | 2013
Patrycja Piotrowska; Maria Zevenhoven; Mikko Hupa; Jacopo Giuntoli; Wiebren de Jong
Energy & Fuels | 2016
Youjian Zhu; Patrycja Piotrowska; Philip J. van Eyk; Dan Boström; Xuehong Wu; Christoffer Boman; Markus Broström; Jun Zhang; C.W. Kwong; Dingbiao Wang; Andrew J. Cole; Rocky de Nys; Francesco G. Gentili; Peter J. Ashman
Fuel Processing Technology | 2018
Youjian Zhu; Philip J. van Eyk; Christoffer Boman; Markus Broström; Kawnish Kirtania; Patrycja Piotrowska; Dan Boström; Rocky de Nys; Sankar Bhattacharya; Francesco G. Gentili; Peter J. Ashman
Energy & Fuels | 2015
Anders Rebbling; Ida-Linn Näzelius; Patrycja Piotrowska; Nils Skoglund; Christoffer Boman; Dan Boström; Marcus Öhman
Impacts of Fuel Quality on Power Production October 26 –31, 2014 Snowbird Resort & Conference Center Snowbird, Utah | 2014
Kajsa Werner; Patrycja Piotrowska; Francesco G. Gentili; Mattias Holmlund; Christoffer Boman; Markus Broström