[1] International Energy Agency (IEA). World energy outlook 2007: China and India insights[M], Paris, FR: OECD Publishing, 2007
[2] Xu M H, Yan R, Zheng C G, et al. Status of trace element emission in a coal combustion process: a review[J]. Fuel Processing Technology, 2003, 85 (2-3): 215-237
[3] Clarke L B, Sloss L L. Trace elements-emissions from coal combustion and gasification[M]. London: IEA Coal Research (IEACR/011), 1992
[4] Ratafia-Brown J A. Overview of trace element partitioning in flames and furnaces of utility coal-fired boilers[J]. Fuel Processing Technology, 1994, 39 (1-3): 139-157
[5] Querol X, Fernandez-Turiel J L, Lopez-Soler A. Trace elements in coal and their behaviour during combustion in a large power station[J]. Fuel, 1995, 74 (3): 331-343
[6] Meij R. Trace element behavior in coal-fired power plants[J]. Fuel Processing Technology, 1994, 39 (1-3): 199-217
[7] Klika Z, Bartonova L, Spears D A. Effect of boiler output on trace element partitioning during coal combustion in two fluidized-bed power stations[J]. Fuel, 2001, 80 (7): 907-917
[8] Bhangare R C, Ajmal P Y, Sahu S K, et al. Distribution of trace elements in coal and combustion residues from five thermal power plants in India[J]. International Journal of Coal Geology, 2011, 86 (4): 349-356
[9] Cordoba P, Ochoa-Gonzalez R, Font O, et al. Partitioning of trace inorganic elements in a coal-fired power plant equipped with a wet flue gas desulphurization system[J]. Fuel, 2012, 92 (1): 145-157
[10] Lu Xiaohua (陆晓华), Zeng Hancai (曾汉才), Ou-Yang Zhonghua (欧阳中华), et al. The distribution and enrichment of trace elements in particles released from coal combustion[J]. Environmental Chemistry (环境化学), 1995, 14 (6): 489-493
[11] Wang Chao (王超), Liu Xiaowei (刘小伟), Xu Yishu (徐义书), et al. Distribution characteristics of minor and trace elements in fine particulate matters from a 660 MW coal-fired boiler[J]. CIESC Journal (化工学报), 2013, 64 (8): 2975-2981
[12] Yue Yong (岳勇), Chen Lei (陈雷), Yao Qiang (姚强), et al. Experimental study on characteristics of particulate matter size distribution and trace elements enrichment in emission from a pulverized coal-fired boiler[J]. Proceedings of the CSEE (中国电机工程学报), 2005, 25 (18): 74-79
[13] Yi H H, Hao J M, Duan L, et al. Fine particle and trace element emissions from an anthracite coal-fired power plant equipped with a bag-house in China[J]. Fuel, 2008, 87 (10-11): 2050-2057
[14] Sui Jiancai (隋建才), Xu Minghou (徐明厚), Qiu Jihua (邱纪华), et al. Physiochemical characteristics and formation mechanism of inhalable particulate matter in coal combustion process[J]. CIESC Journal (化工学报), 2006, 57 (7): 1664-1670
[15] Xu M H, Yu D X, Yao H, et al. Coal combustion-generated aerosols: Formation and properties[J]. Proceedings of the Combustion Institute, 2011, 33 (1): 1681-1697
[16] Song W J, Jiao F C, Yamada N, et al. Condensation behavior of heavy metals during oxy-fuel combustion: deposition, species distribution, and their particle characteristics[J]. Energy Fuels, 2013, 27 (10): 5640-5652
[17] Jiao F C, Zhang L A, Yamada N, et al. Effect of HCl, SO2 and H2O in flue gas on the condensation behavior of Pb and Cd vapors in the cooling section of municipal solid waste incineration[J]. Fuel Processing Technology, 2011, 33 (2): 2787-2793
[18] Guo R X, Yang J L, Liu Z Y. Behavior of trace elements during pyrolysis of coal in a simulated drop-tube reactor[J]. Fuel, 2004, 83 (6): 639-643
[19] Diaz-Somoano M, Martinez-Tarazona M R. Trace element evaporation during coal gasification based on a thermodynamic equilibrium calculation approach[J]. Fuel, 2003, 82 (2): 137-145
[20] Querol X, Fernandez-Turiel J L, Lopez-Soler A. Trace elements in coal and their behaviour during combustion in a large power station[J]. Fuel, 1995, 74 (3): 331-343
[21] Cordoba P, Ochoa-Gonzalez R, Font O, et al. Partitioning of trace inorganic elements in a coal-fired power plant equipped with a wet Flue Gas Desulphurization system[J]. Fuel, 2012, 92 (1): 145-157 |