Details
Title
Changes in total active centres on particle surfaces during coal pyrolysis, gasification and combustionJournal title
Chemical and Process EngineeringYearbook
2011Issue
No 2 JuneAuthors
Keywords
coal ; active centers ; porosityDivisions of PAS
Nauki TechniczneCoverage
155-169Publisher
Polish Academy of Sciences Committee of Chemical and Process EngineeringDate
2011Type
Artykuły / ArticlesIdentifier
DOI: 10.2478/v10176-011-0012-8 ; ISSN 2300-1925 (Chemical and Process Engineering)Source
Chemical and Process Engineering; 2011; No 2 June; 155-169References
Agrawal A. (1980), The coal char reactions with CO<sub>2</sub>-CO gas mixtures, Ind. Eng. Chem. Process Des. Dev, 19, 364, doi.org/10.1021/i260075a006 ; Anthony D. (1976), Coal devolatilization and hydrogasification, AIChE J, 22, 625, doi.org/10.1016/0016-2361(76)90008-9 ; Blackwood J. (1966), The mechanism of hydrogenation of coal to methane, Aust. J. Chem, 19, 797, doi.org/10.1071/CH9660797 ; Croiset E. (1998), Influence of pressure on the heterogeneous formation and destruction of nitrogen oxides during char combustion, Combust. Flame, 112, 33, doi.org/10.1016/S0010-2180(97)81755-5 ; Croiset E. (1996), The influence of pressure on char combustion kinetics, null, 3096, doi.org/10.1016/S0082-0784(96)80153-6 ; Feng B. (2003), Variation of the pore structure of coal chars during gasification, Carbon, 41, 507, doi.org/10.1016/S0008-6223(02)00357-3 ; Floess J. (1988), Intrinsic reaction kinetics of microporous carbons. 1. Noncatalyzed chars, Energy Fuels, 2, 18, doi.org/10.1021/ef00007a004 ; Freise E. (1962), Structure of graphite, Nature, 193, 671, doi.org/10.1038/193671a0 ; Gil S., 2000. <i>Research on the influence of pressure on kinetics of coal nitrogen conversion during pyrolysis and combustion</i>. PhD Thesis. Silesian University of Technology, Katowice. ; Gil S. (2002), Influence of combustion pressure on fuel-N conversion to NO, N<sub>2</sub>O and N<sub>2</sub>, Karbo, 9, 272. ; Gil S., 2003. Kinetics of heterogeneous nitrogen oxides formation during pressurized char combustion. <i>Grant KBN PAN No. 4 T10B 029 22, 1075/T10/2002/22</i> ; Hurt R. (1991), Effect of nonuniform surface reactivity on the evolution of pore structure and surface area during carbon gasification, Energy Fuels, 5, 463, doi.org/10.1021/ef00027a018 ; Johnson J. (1987), Kinetics of coal gasification. ; Johnson J. (1975), Relationship between the gasification reactivities of coal char and the physical and chemical properties of coal and coal char, American Chemical Society, Division of Fuel Chemistry, 20, 85. ; Kothandaraman G. (1984), Evolution of the pore structure in PSOC140 liquite during pyrolysis, null, 1523, doi.org/10.1016/S0082-0784(85)80646-9 ; Kowol J. (1988), Kinetics of main products formation during coal devolatilization, Erdöl und Kohle, 41, 161. ; Krammer G. (1994), Reaction of char nitrogen during fluidized bed coal combustion - influence of nitric oxide and oxygen on nitrous oxide, Combust. Flame, 97, 118, doi.org/10.1016/0010-2180(94)90120-1 ; Külaots I. (2002), Development of porosity during coal char combustion, Proc. Combust. Inst, 23, 495, doi.org/10.1016/S1540-7489(02)80064-5 ; Laine N. (1963), The importance of active surface area in the carbon-oxygen reaction, J. Phys. Chem, 67, 2030, doi.org/10.1021/j100804a016 ; Mlonka J., 1992. <i>Research over the kinetics of structural changes and theirs influence on coal pyrolysis process</i>. PhD Dissertation. Silesian University of Technology, Katowice. ; Simons G. (1984), Coal pyrolysis. II. Species transport theory, Combust. Flame, 55, 181, doi.org/10.1016/0010-2180(84)90026-9 ; Smith J. (1970), Chemical engineering kinetics. ; G. De Soete (1990), Heterogeneous N<sub>2</sub>O and NO formation from bound nitrogen atoms during coal char combustion, null, 1257, doi.org/10.1016/S0082-0784(06)80388-7 ; Solomon P. (1978), Evolution of fuel nitrogen in coal devolatilization, Fuel, 57, 749, doi.org/10.1016/0016-2361(78)90133-3 ; Sotirchos S. (1987), On a class of random pore and particle models for gas-solid reactions, Chem. Eng. Sci, 42, 1262, doi.org/10.1016/0009-2509(87)80084-2 ; Stanmore B. (1991), Modeling of combustion behavior of petroleum coke, Combust. Flame, 83, 221, doi.org/10.1016/0010-2180(91)90070-R ; Suuberg E. (1979), Product compositions and formation kinetics in rapid pyrolysis of pulverized coal - implications for combustion, null, 117, doi.org/10.1016/S0082-0784(79)80015-6 ; Suuberg E. (2003), Study of activation of coal char, null. ; Tomeczek J. (1995), Kinetics of porosity evolution during fast heating of coal, null, 925. ; Tomeczek J. (2003), Volatiles release and porosity evolution during high pressure coal pyrolysis, Fuel, 82, 285, doi.org/10.1016/S0016-2361(02)00256-9 ; Visona S. (1996), Modeling NO<sub>x</sub> release from a single coal particle. II. Formation of NO from char-nitrogen, Combust. Flame, 106, 207, doi.org/10.1016/0010-2180(95)00257-XEditorial Board
Editorial Board
Ali Mesbah, UC Berkeley, USA 0000-0002-1700-0600
Anna Gancarczyk, Institute of Chemical Engineering, Polish Academy of Sciences, Poland 0000-0002-2847-8992
Anna Trusek, Wrocław University of Science and Technology, Poland 0000-0002-3886-7166
Bettina Muster-Slawitsch, AAE Intec, Austria 0000-0002-5944-0831
Daria Camilla Boffito, Polytechnique Montreal, Canada 0000-0002-5252-5752
Donata Konopacka-Łyskawa, Gdańsk University of Technology, Poland 0000-0002-2924-7360
Dorota Antos, Rzeszów University of Technology, Poland 0000-0001-8246-5052
Evgeny Rebrov, University of Warwick, UK 0000-0001-6056-9520
Georgios Stefanidis, National Technical University of Athens, Greece 0000-0002-4347-1350
Ireneusz Grubecki, Bydgoszcz Univeristy of Science and Technology, Poland 0000-0001-5378-3115
Johan Tinge, Fibrant B.V., The Netherlands 0000-0003-1776-9580
Katarzyna Bizon, Cracow University of Technology, Poland 0000-0001-7600-4452
Katarzyna Szymańska, Silesian University of Technology, Poland 0000-0002-1653-9540
Marcin Bizukojć, Łódź University of Technology, Poland 0000-0003-1641-9917
Marek Ochowiak, Poznań University of Technology, Poland 0000-0003-1543-9967
Mirko Skiborowski, Hamburg University of Technology, Germany 0000-0001-9694-963X
Nikola Nikacevic, University of Belgrade, Serbia 0000-0003-1135-5336
Rafał Rakoczy, West Pomeranian University of Technology, Poland 0000-0002-5770-926X
Richard Lakerveld, Hong Kong University of Science and Technology, Hong Kong 0000-0001-7444-2678
Tom van Gerven, KU Leuven, Belgium 0000-0003-2051-5696
Tomasz Sosnowski, Warsaw University of Technology, Poland 0000-0002-6775-3766