[1] |
尧志辉, 旷戈, 林诚, 等. 单颗粒煤焦燃烧反应动力学研究方法 [J].化工学报, 2009, 60 (6): 1442-1451.YAO Z H, KUANG G, LIN C, et al. Methodological study on combustion reaction kinetics of single coal char particle [J]. CIESC Journal, 2009, 60 (6): 1442-1451.
|
[2] |
HE W, LIU Y, HE R, et al. Combustion rate for char with fractal pore characteristics [J]. Combustion Science and Technology, 2013, 185 (11): 1624-1643.
|
[3] |
SMITH I W. The combustion rates of coal chars: a review [J]. Symposium (International) on Combustion, 1982, 19 (1): 1045-1065.
|
[4] |
王芳, 曾玺, 王永刚, 等. 微型流化床与热重测定煤焦非等温气化反应动力学对比 [J].化工学报, 2015, 66 (5): 1716-1722.WANG F, ZENG X, WANG Y G, et al. Comparation of non-isothermal coal char gasification in micro fluidized bed and thermogravimetric analyzer [J]. CIESC Journal, 2015, 66 (5): 1716-1722.
|
[5] |
虞君武, 陈永利, 何榕, 等. FD模型应用于煤热解过程的数值模拟 [J].化工学报, 2014, 65 (9): 3592-3598.YU J W, CHEN Y L, HE R, et al. Numerical simulation of coal pyrolysis using FD model [J]. CIESC Journal, 2014, 65 (9): 3592-3598.
|
[6] |
AVNIR D, FARIN D, PFEIFER P. Surface geometric irregularity of particulate materials: the fractal approach [J]. Journal of Colloid and Interface Science, 1985, 103 (1): 112-123.
|
[7] |
HE R, SATO J, CHEN C H. Modeling char combustion with fractal pore effects [J]. Combustion Science and Technology, 2002, 174 (4): 19-37.
|
[8] |
HE R, XU X, CHEN C, et al. Evolution of pore fractal dimensions for burning porous chars [J]. Fuel, 1998, 77 (12): 1291-1295.
|
[9] |
EVERSON R C, NEOMAGUS H W J P, KAITANO R. The random pore model with intraparticle diffusion for the description of combustion of char particles derived from mineral and inertinite rich coal [J]. Fuel, 2011, 90 (7): 2347-2352.
|
[10] |
FEI H, HU S, XIANG J, et al. Study on coal chars combustion under O2/CO2 atmosphere with fractal random pore model [J]. Fuel, 2011, 90 (2): 441-448.
|
[11] |
费华, 胡松, 向军, 等. 随机孔模型研究煤焦O2/CO2燃烧动力学特征 [J].化工学报, 2011, 62 (1): 199-205.FEI H, HU S, XIANG J, et al. Kinetics of coal char combustion with random pore model under O2/CO2 atmosphere [J]. CIESC Journal, 2011, 62 (1): 199-205.
|
[12] |
FENG B, BHATIA S K. Variation of the pore structure of coal chars during gasification [J]. Carbon, 2003, 41 (3): 507-523.
|
[13] |
任轶舟, 王亦飞, 朱龙雏, 等. 高温煤焦气化反应的Langmuir-Hinshelwood动力学模型 [J].化工学报, 2014, 65 (10): 3906-3915.REN Y Z, WANG Y F, ZHU L C, et al. Langmuir-Hinshelwood kinetic model of high temperature coal char gasification reaction [J]. CIESC Journal, 2014, 65 (10): 3906-3915.
|
[14] |
SADHUKHAN A K, GUPTA P, SAHA R K. Characterization of porous structure of coal char from a single devolatilized coal particle: coal combustion in a fluidized bed [J]. Fuel Processing Technology, 2009, 90 (5): 692-700.
|
[15] |
SU J L, PERLMUTTER D D. Effect of pore structure on char oxidation kinetics [J]. AIChE Journal, 1985, 31 (6): 973-981.
|
[16] |
BARRANCO R, ROJAS A, BARRAZA J, et al. A new char combustion kinetic model (1): Formulation [J]. Fuel, 2009, 88 (12): 2335-2339.
|
[17] |
FORTSCH D, ESSENHIGH R H, SCHNELL U, et al. On the application of the Thiele/Zeldovich analysis to porous carbon combustion [J]. Energy and Fuels, 2003, 17 (4): 901-906.
|
[18] |
MA L, MITCHELL R. Modeling char oxidation behavior under Zone Ⅱ burning conditions at elevated pressures [J]. Combustion and Flame, 2009, 156 (1): 37-50.
|
[19] |
ROJAS A, BARRAZA J, BARRANCO R, et al. A new char combustion kinetic model (2): Empirical validation [J]. Fuel, 2012, 96: 168-175.
|
[20] |
HURT R H, CALO J M. Semi-global intrinsic kinetics for char combustion modeling [J]. Combustion and Flame, 2001, 125 (3): 1138-1149.
|
[21] |
LIU Y, HE R. Variation of apparent reaction order in char combustion and its effect on a fractal char combustion model [J]. Combustion Science and Technology, 2015, 187 (10): 1638-1660.
|
[22] |
HE W, HE R, ITO T, et al. Numerical investigations of CO/CO2 ratio in char combustion [J]. Combustion Science and Technology, 2011, 183 (9): 868-882.
|
[23] |
何威. 煤焦燃烧模型[D]. 北京: 清华大学, 2011.HE W. Study of char combustion model [D]. Beijing: Tsinghua University, 2011.
|
[24] |
CAO L, HE R. Gas diffusion in fractal porous media [J]. Combustion Science and Technology, 2010, 182 (7): 822-841.
|
[25] |
KNUDSEN M. The law of the molecular flow and viscosity of gases moving through tubes [J]. Annals of Physics, 1909, 28 (3): 75-130.
|
[26] |
LIANG Z, HE R, CHEN Q, et al. Fractal generation of char pores through random walk [J]. Combustion Science and Technology, 2007, 179 (3): 637-661.
|
[27] |
TOGNOTTI L, LONGWELL J P, SAROFIM A F. The products of the high temperature oxidation of a single char particle in an electrodynamic balance [J]. Symposium (International) on Combustion, 1991, 23 (1): 1207-1213.
|
[28] |
BHATIA S K, PERLMUTTER D D. A random pore model for fluid-solid reactions(I): Isothermal, kinetic control [J]. AIChE J., 1980, 26 (3): 379-386.
|
[29] |
HE R, SATO J I, CHEN Q, et al. Thermogravimetric analysis of char combustion [J]. Combustion Science and Technology, 2002, 174 (4): 1-18.
|