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吴胜利等:影响烧结工艺过程NO排放质量浓度的主要因素解析 ·701· University,2014 pmcc55.ISIJ Int,2008,48(11):1517 (吕薇.铁矿烧结过程N0,生成行为及其减排技术[学位论 [13]Katayama K,Kasama S,Sato K,et al.Effect of lime coating 文].长沙:中南大学,2014) coke on decreasing NO,emission from sintering process//AIST. [6]Liu R P.Experimental Study on Nitrogen Oxide Emissions and its ech-Iron and Steel Technology Conference Proceedings.Cleveland, Factors during Iron Ore Sintering Dissertation].Hangzhou:Zhe- 2015:1499 jiang University,2015 [14]Yin JQ,Lii X W,Xiang S L,et al.Influence of Ca0 source on (刘瑞鹏.铁矿石烧结过程中的氨氧化物排放规律及其影响 the formation behavior of calcium ferrite in solid state./S//Int, 因素试验研究[学位论文].杭州:浙江大学,2015) 2013,53(9):1571 [7]Wu S,Pan F M.SPSS Statistical Analysis.Beijing:Tsinghua [15]Guo X M,Zhu L,Li Q,et al.Mineralogical composition and University Press,2014 microstructure of high basicity sinters.Iron Steel,2007,42(1): (武松,潘发明.SPSS统计分析大全.北京:清华大学出版 1> 社.2014) (郭兴敏,朱利,李强,等.高碱度烧结矿的矿物组成与矿 [8 Yan L J,Wu S L,You Y,et al.Assimilation of iron ores and ore 相结构特征.钢铁,2007,42(1):17) matching method based on complementary assimilation.Unie Sci [16]Li G H,Li S D,Jiang T,et al.Improve the utilization coeffi- Technol Beijing,2010,32(3):298 cient of fuel in sintering process.Sintering Pelletizing,1998.23 (阎丽娟,吴胜利,尤艺,等.各种铁矿粉的同化性及其互补 (3):29 配矿方法.北京科技大学学报,2010,32(3):298) (李光辉,李思导,姜涛,等.烧结过程中燃料利用率的提 [9]Wu S L,Sugiyama T.Morioka K,et al.Elimination reaction of 高.烧结球团,1998,23(3):29) NO gas generated from coke combustion in iron ore sinter bed.[17]Wu S L,Chen D F,Zhao C X,et al.Exhaust emission law at Tetsu-to-Hagane,1994,80(4):276 different bed depths in sintering process.JUni Sci Technol Bei- [10]Morioka K,Inaba S,Shimizu M,et al.Primary application of ng,2010,32(2):164 the"In-Bed-deNO,"process using Ca-Fe oxides in iron ore sin- (吴胜利,陈东峰,赵成显,等.不同料层高度烧结过程尾气 tering machines.IS//Int,2000,40(3):280 排放规律.北京科技大学学报,2010,32(2):164) [11]Chen Y G,Guo Z C,Wang Z.Simulation of NO reduction by [18]Zhang XX.Nitrogen Conversion Mechanism during Char Com CO in sintering process.J lron Steel Res,2009,21(1):6 bustion and Development of Lo NO,Technology Dissertation]. (陈彦广,郭占成,王志.烧结过程中CO还原NO的模拟研 Hangzhou:Zhejiang University,2012 究.钢铁研究学报,2009,21(1):6) (张秀霞.焦炭燃烧过程中氨转化机理与低NO,燃烧技术的 [12]Chen Y G.Guo Z C.Wang Z.Application of modified coke to 开发[学位论文].杭州:浙江大学,2012) NO,reduction with reeyeling flue gas during iron ore sintering吴胜利等: 影响烧结工艺过程 NOx排放质量浓度的主要因素解析 University, 2014 (吕薇. 铁矿烧结过程 NOx 生成行为及其减排技术[学位论 文]. 长沙: 中南大学, 2014) [6] Liu R P. Experimental Study on Nitrogen Oxide Emissions and its Factors during Iron Ore Sintering [Dissertation]. Hangzhou: Zhe鄄 jiang University, 2015 (刘瑞鹏. 铁矿石烧结过程中的氮氧化物排放规律及其影响 因素试验研究[学位论文]. 杭州: 浙江大学, 2015) [7] Wu S, Pan F M. SPSS Statistical Analysis. Beijing: Tsinghua University Press, 2014 (武松, 潘发明. SPSS 统计分析大全. 北京: 清华大学出版 社, 2014) [8] Yan L J, Wu S L, You Y, et al. Assimilation of iron ores and ore matching method based on complementary assimilation. J Univ Sci Technol Beijing, 2010, 32(3): 298 (阎丽娟, 吴胜利, 尤艺, 等. 各种铁矿粉的同化性及其互补 配矿方法. 北京科技大学学报, 2010, 32(3): 298) [9] Wu S L, Sugiyama T, Morioka K, et al. Elimination reaction of NO gas generated from coke combustion in iron ore sinter bed. Tetsu鄄to鄄Hagan佴, 1994, 80(4): 276 [10] Morioka K, Inaba S, Shimizu M, et al. Primary application of the “In鄄Bed鄄deNOx冶 process using Ca鄄鄄Fe oxides in iron ore sin鄄 tering machines. ISIJ Int, 2000, 40(3): 280 [11] Chen Y G, Guo Z C, Wang Z. Simulation of NO reduction by CO in sintering process. J Iron Steel Res, 2009, 21(1): 6 (陈彦广, 郭占成, 王志. 烧结过程中 CO 还原 NO 的模拟研 究. 钢铁研究学报, 2009, 21(1): 6) [12] Chen Y G, Guo Z C, Wang Z. Application of modified coke to NOx reduction with recycling flue gas during iron ore sintering process. ISIJ Int, 2008, 48(11): 1517 [13] Katayama K, Kasama S, Sato K, et al. Effect of lime coating coke on decreasing NOx emission from sintering process / / AIST鄄 ech鄄Iron and Steel Technology Conference Proceedings. Cleveland, 2015: 1499 [14] Yin J Q, L俟 X W, Xiang S L, et al. Influence of CaO source on the formation behavior of calcium ferrite in solid state. ISIJ Int, 2013, 53(9): 1571 [15] Guo X M, Zhu L, Li Q, et al. Mineralogical composition and microstructure of high basicity sinters. Iron Steel, 2007, 42(1): 17 (郭兴敏, 朱利, 李强, 等. 高碱度烧结矿的矿物组成与矿 相结构特征. 钢铁, 2007, 42(1): 17) [16] Li G H, Li S D, Jiang T, et al. Improve the utilization coeffi鄄 cient of fuel in sintering process. Sintering Pelletizing, 1998, 23 (3): 29 (李光辉, 李思导, 姜涛, 等. 烧结过程中燃料利用率的提 高. 烧结球团, 1998, 23(3): 29) [17] Wu S L, Chen D F, Zhao C X, et al. Exhaust emission law at different bed depths in sintering process. J Univ Sci Technol Bei鄄 jing, 2010, 32(2): 164 (吴胜利, 陈东峰, 赵成显, 等. 不同料层高度烧结过程尾气 排放规律. 北京科技大学学报, 2010, 32(2): 164) [18] Zhang X X. Nitrogen Conversion Mechanism during Char Com鄄 bustion and Development of Low NOx Technology [Dissertation]. Hangzhou: Zhejiang University, 2012 (张秀霞. 焦炭燃烧过程中氮转化机理与低 NOx 燃烧技术的 开发[学位论文]. 杭州: 浙江大学, 2012) ·701·
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