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第9期 胡正文等:炼铁用生物质焦的制备及其性能 ·1005· strategy of the steelmaking industry.J Univ Sci Technol Beijing, Watanabe K,Ueda S,Inoue R,et al.Enhancement of reactivity 2010,32(12):1623 of carbon iron ore composite using redox reaction of iron oxide pow- (白皓,刘璞,李宏煦,等.钢铁企业CO2排放模型及减排策 der.1SJ1n,2010,50(4):524 略.北京科技大学学报.2010,32(12):1623) [8]Matsumura T,Ichida M,Nagasaka T,et al.Carbonization behav- B3]Abdullah H,Wu H.Biochar as a fuel:1.Properties and grind- iour of woody biomass and resulting metallurgical coke properties. ability of biochars produced from the pyrolysis of mallee wood un ISJ1mt,2008,48(5):572 der slow-heating conditions.Energy Fuels,2009,23(8):4174 [9]Babich A,Senk D,Fernandez M.Charcoal behaviour by its injec- 4]Yaman S.Pyrolysis of biomass to produce fuels and chemical feed- tion into the modern blast furnace./S//Int,2010,50(1):81 stocks.Energy Convers Manage,2004,45(5):651 [10]Machado J G MS,Osorio E,Vilela A C F,et al.Reactivity and 5]Machado J,Osorio E,Vilela A,et al.Consumption of coals and conversion behaviour of Brazilian and imported coals,charcoal charcoal by secondary reactions at their injection into blast fumaces and blends in view of their injection into blast furnaces.Steel Res /Proceedings of the 3rd International Meeting on Ironmaking and 1nt,2010,81(1):9 the 2nd International Symposium on Iron Ore.Sao Luis City, [1]Emmerich F G,Luengo C A.Reduction of emissions from blast 2008:802 fumaces by using blends of coke and babassu charcoal.Fuel, [6]Ueda S,Watanabe K,Yanagiya K,et al.Improvement of reactiv- 1994,73(7):1235 ity of carbon iron ore composite with biomass char for blast fur- [12]Antal M J Jr,Croiset E,Dai X F,et al.High-yield biomass nace.S01t,2009,49(10):1505 charcoal.Energy Fuels,1996,10(3):652第 9 期 胡正文等: 炼铁用生物质焦的制备及其性能 strategy of the steelmaking industry. J Univ Sci Technol Beijing, 2010,32( 12) : 1623 ( 白 皓,刘 璞,李宏煦,等. 钢铁企业 CO2 排放模型及减排策 略. 北京科技大学学报. 2010,32( 12) : 1623) [3] Abdullah H,Wu H. Biochar as a fuel: 1. Properties and grind￾ability of biochars produced from the pyrolysis of mallee wood un￾der slow-heating conditions. Energy Fuels,2009,23( 8) : 4174 [4] Yaman S. Pyrolysis of biomass to produce fuels and chemical feed￾stocks. Energy Convers Manage,2004,45( 5) : 651 [5] Machado J,Osório E,Vilela A,et al. Consumption of coals and charcoal by secondary reactions at their injection into blast furnaces / / Proceedings of the 3rd International Meeting on Ironmaking and the 2nd International Symposium on Iron Ore. Sa珓o Luís City, 2008: 802 [6] Ueda S,Watanabe K,Yanagiya K,et al. Improvement of reactiv￾ity of carbon iron ore composite with biomass char for blast fur￾nace. ISIJ Int,2009,49( 10) : 1505 [7] Watanabe K,Ueda S,Inoue R,et al. Enhancement of reactivity of carbon iron ore composite using redox reaction of iron oxide pow￾der. ISIJ Int,2010,50( 4) : 524 [8] Matsumura T,Ichida M,Nagasaka T,et al. Carbonization behav￾iour of woody biomass and resulting metallurgical coke properties. ISIJ Int,2008,48( 5) : 572 [9] Babich A,Senk D,Fernandez M. Charcoal behaviour by its injec￾tion into the modern blast furnace. ISIJ Int,2010,50( 1) : 81 [10] Machado J G M S,Osório E,Vilela A C F,et al. Reactivity and conversion behaviour of Brazilian and imported coals,charcoal and blends in view of their injection into blast furnaces. Steel Res Int,2010,81( 1) : 9 [11] Emmerich F G,Luengo C A. Reduction of emissions from blast furnaces by using blends of coke and babassu charcoal. Fuel, 1994,73( 7) : 1235 [12] Antal M J Jr,Croiset E,Dai X F,et al. High-yield biomass charcoal. Energy Fuels,1996,10( 3) : 652 ·1005·
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