[1]Bermudez A, Ferrin J L, Linan A, et al. Numerical simulation of group combustion of pulverized coal [J]. Combustion and Flame, 2011, 158 (9): 18521865. [2]Schaffel N, Mancini M, Szlek A, et al. Mathematical modeling of MILD combustion of pulverized coal [J]. Combustion and Flame, 2009, 156 (9): 17711784. [3]Shaddix C R, Molina A. Fundamental investigation of NOx formation during oxyfuel combustion of pulverized coal [J]. Proceedings of the Combustion Institute, 2011, 33(2): 17231730. [4]Bejarano P A, Levendis Y A. Singlecoalparticle combustion in O2/N2 and O2/CO2 environments [J]. Combustion and Flame, 2008, 153 (12): 270287. [5]Essenhigh R H, Misra M K, Shaw D W. Ignition of coal particles: A review [J]. Combustion and Flame, 1989, 77 (1): 330. [6]Zhang X P, Sui Z J, Zhou X G, et al. Modeling and simulation of coke combustion regeneration for coked Cr2O3/Al2O3 propane dehydrogenation catalyst [J]. Chinese Journal of Chemical Engineering, 2010, 18 (4): 618625. [7]Ren Y, Mahinpey N, Freitag N. Kinetic model for the combustion of coke derived at different coking temperatures [J]. Energy and Fuels, 2007, 21 (1): 8287. [8]Zhu N, Liu Y Y, Wang Y, et al. Kinetic models for the coke combustion on deactivated ZSM5/MOR derived from nheptane cracking [J]. Ind Eng Chem Res, 2010, 49 (1): 8993. [9]张健, 章明川, 于娟, 等. 移动火焰锋面(MFF)模型的理论对比与实验验证[J]. 工程热物理学报, 2010, 31 (1): 157160. ZHANG Jian, ZHANG Mingchuan, YU Juan, et al. Theoretical comparisons and experimental validation of the moving flame front (MFF) model [J]. Journal of Engineering Thermophysics, 2010, 31 (1): 157160. [10]Zhang M C, Yu J, Qi Y F, et al. Further discussion on the reality and usability of the moving flame front model for combustion of a carbon particle [C]//Proceedings of 6th AsiaPacific Conference on Combustion. Nagoya, Japan: Japanese Section of the Combustion Institute, 2007. [11]Zou J H, Zhou Z J, Wang F C, et al. Modeling reaction kinetics of petroleum coke gasification with CO2 [J]. Chemical Engineering and Processing, 2007, 46 (7): 630636. [12]Jovanovic R, Milewska A, Swiatkowski S, et al. Numerical investigation of influence of homogeneous/heterogeneous ignition/combustion mechanisms on ignition point position during pulverized coal combustion in oxygen enriched and recycled flue gases atmosphere [J]. International Journal of Heat and Mass Transfer, 2011, 54 (4): 921931. [13]Gururajan V S, Wall T F, Gupta R P, et al. Mechanisms for the ignition of pulverized coal particles [J]. Combustion and Flame, 1990, 81 (2): 119132. [14]于娟, 章明川, 周月桂, 等. 挥发分火焰对碳粒燃烧的影响[J]. 燃烧科学与技术, 2006,12 (2): 121125. YU Juan, ZHANG Mingchuan, ZHOU Yuegui, et al. Influence of volatile flame on combustion of char particle [J]. Journal of Combustion Science and Technology, 2006, 12 (2): 121125. [15]Badzioch S, Hawksley P G W. Kinetics of thermal decomposition of pulverized coal particles [J]. Ind Eng Process Des Develop, 1970, 9 (4): 521530. |