화학공학소재연구정보센터
검색결과 : 9건
No. Article
1 Co-firing of coal and biomass: Development of a conceptual model for ash formation prediction (Retraction of vol 139, pg 594, 2015)
Vuthaluru HB, Doshi V, Korbee R, Kiel JHA, Shah K, Moghtageri B
Fuel, 139, R1, 2015
2 Development of a modeling approach to predict ash formation during co-firing of coal and biomass
Doshi V, Vuthaluru HB, Korbee R, Kiel JHA
Fuel Processing Technology, 90(9), 1148, 2009
3 A method for agglomeration detection and control in full-scale biomass fired fluidized beds
Nijenhuis J, Korbee R, Lensselink J, Kiel JHA, van Ommen JR
Chemical Engineering Science, 62(1-2), 644, 2007
4 Quantification of the release of inorganic elements from biofuels
Frandsen FJ, van Lith SC, Korbee R, Yrjas P, Backman R, Obernberger I, Brunner T, Joller M
Fuel Processing Technology, 88(11-12), 1118, 2007
5 Early agglomeration recognition system (EARS)
Korbee R, van Ommen JR, Lensselink J, Nijenhuis J, Kiel JHA, van den Bleek CM
Journal of Energy Resources Technology-Transactions of The ASME, 128(2), 143, 2006
6 Ash behaviour in a pulverized wood fired boiler - a case study
Skrifvars BJ, Lauren T, Hupa M, Korbee R, Ljung P
Fuel, 83(10), 1371, 2004
7 Preparation of the Mn/gamma-Al2O3 acceptor for high temperature regenerative H2S removal
Liang B, Korbee R, Gerritsen AW, Van den bleek CM
Canadian Journal of Chemical Engineering, 77(3), 483, 1999
8 Effect of manganese content on the properties of high temperature regenerative H2S acceptor
Liang B, Korbee R, Gerritsen AW, van den Bleek CM
Fuel, 78(3), 319, 1999
9 Regenerative Removal of SO2 and NOx for a 150 Mwe Power-Plant in an Interconnected Fluidized-Bed Facility
Snip OC, Woods M, Korbee R, Schouten JC, Vandenbleek CM
Chemical Engineering Science, 51(10), 2021, 1996