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Chinese Journal of Engineering,2021,43(1):1 (邢奕,张文伯,苏伟,等.中国钢铁行业超低排放之路.工程科学学报,2021,43(1):1) [2]He K B.Winning the defense of the blue sky needs to acceleratethe ultra-low emission transformation of the steel industry.China Environ News,2019 05 06 (贺克斌.打赢蓝天保卫战需要加快钢铁行业超低排放改造.中国环境报,20190506) [3]LiX C.Road map to high-quality development of iron and steel industry in new age.Iron Steel,2019,54(1):1 (李新创.新时代钢铁工业高质量发展之路.钢铁,2019,541):1) [4]Zhou J C,Zhang C X,Li X P,et al.Status of energy consumption and review and prospect of energy saving technologies of blast furnace procedure in China.Journal of fron and Steel Research,2010,22(9):I (周继程,张春霞,郦秀萍,等中国高炉工序能耗现状及节能技术的回顾与展望.钢铁研究学报2010.22(9y:1) [5]Gao X.Development situation and trend analysis of sintering industry in China.Iron and Sreel 2008.43(1):85 (郜学.中国烧结行业的发展现状和趋势分析.钢铁,2008.43(1):85) [6]Yan B J,Xing Y,Lu P.et al.A critical review on the research progress of multi-polfutant collaborative control technologies of sintering flue gas in the iron and steel industry.Chinese Journal of Engineering,2018,40(7):767 (闫伯骏,邢奕,路培,等.钢铁行业烧结烟气多污染物协同净化技术研究进展,上程科学学报,2018,40(7)八:767) [7]Que Z G,WU S L,AI X B.To reduce NOx emission based on optimizing the existing states of coarse coke breeze during iron ore sintering process.Chinese Journal of Engineering 2020.42(2):163 (阙志刚,吴胜利,艾仙斌.基于优化粗粒级固体燃料赋存形叁的供和烧结过程NOx减排.工程科学学报,2020, 42(2):163) [8]Xia J F,Yu Y J,Wang X J,et al.Research on operation pa-rameters optimization of sinter cooler waste heat recovery sys-tem based on exergy efficiency optimization.Jourhalof Iron and Steel Research,2019.31(7):637 (夏建芳,余娠君,王满杰,等.基于㶲效率日标的环冷机余热回收系统操作参数优化.钢铁研究学报,2019.31(7): 637) [9]Wang G,Wen Z,Lou G,et al.Mathematical modeling of and parametric studies on flue gas recirculation iron ore sintering.Applied Thermal Engineering,2016(102):648 [10]Long H M,Zhang X Y,LiJX,eta.Study on Emission Characteristics of SO:and Feasibility of Desulfurization in Iron Ore Sintering Process.The Chinese /oumal of Process Engineering,2015,15(2):230 (龙红明,张向阳,李家新等铁矿烧结过程SO的排放特性及过程脱硫的可行性研究.过程工程学报,2015, 15(2):230) [11]Qie J M,Zhang CX Wang H F,et al.Analysis of emission situation and emission reduction technology of typical sintering flue gas pollutants.Sinter Pellet=,2016,41(6):59 (都俊懋,张春履,王海风,等.烧结烟气典型污染物排放形势及减排技术分析烧结球团,2016,41(6):59) [12]Liu C P.Yang D W.Hui JM,et al.One-stop solution of cas-cade utilization of waste heat recovery,desulfurization and denitrification in the sintering system.Journal of Iron and Steel Research,2016.28(10):50 (刘传鹏,杨东伟,惠建明,等.烧结余热梯级利用及脱硫脱硝一站式解决方案.钢铁研究学报,2016.28(10少:50) [13]Ding Y,Shi D M.High refficiency utilization of waste heat at fully integrated steel plant.Iron and Steel,2011.46(10): 88 (丁毅,史德明.钢铁企业余热资源高效利用.钢铁,2011.46(10):88) [14]Sun YJ,Dong H,Feng JS,et al.Thermodynamic analysis of waste heat recovery for sinter-cooling system.Journal of Iron and Steel Research,2015.27(1):16 (孙用军,董辉,冯军胜,等.烧结-冷却余热回收系统热力学分析.钢铁研究学报,2015.27(1):16) [15]Wang Z C,Zhou ZA,Hu B,et al.Wind-oxygen balance model of flue gas circulation in sintering.Iron and Steel.2015.参 考 文 献: [1] Xing Y, Zhang W B, Su W, et al. Research of ultra-low emission technologies of the iron and steel industry in China. Chinese Journal of Engineering, 2021, 43(1): 1 (邢奕, 张文伯, 苏伟, 等. 中国钢铁行业超低排放之路. 工程科学学报, 2021, 43(1): 1) [2] He K B. Winning the defense of the blue sky needs to acceleratethe ultra-low emission transformation of the steel industry. China Environ News, 2019 05 06 (贺克斌. 打赢蓝天保卫战需要加快钢铁行业超低排放改造. 中国环境报, 2019 05 06) [3] Li X C. Road map to high-quality development of iron and steel industry in new age. Iron Steel, 2019, 54(1):1 (李新创. 新时代钢铁工业高质量发展之路. 钢铁, 2019, 54(1): 1) [4] Zhou J C, Zhang C X, Li X P, et al. Status of energy consumption and review and prospect of energy saving technologies of blast furnace procedure in China. Journal of Iron and Steel Research, 2010, 22(9): 1 (周继程, 张春霞, 郦秀萍, 等.中国高炉工序能耗现状及节能技术的回顾与展望. 钢铁研究学报, 2010.22(9): 1) [5] Gao X. Development situation and trend analysis of sintering industry in China. Iron and Steel, 2008. 43(1): 85 (郜学. 中国烧结行业的发展现状和趋势分析. 钢铁, 2008. 43(1): 85) [6] Yan B J, Xing Y, Lu P, et al. A critical review on the research progress of multi-pollutant collaborative control technologies of sintering flue gas in the iron and steel industry. Chinese Journal of Engineering, 2018, 40(7): 767 (闫伯骏, 邢奕, 路培, 等. 钢铁行业烧结烟气多污染物协同净化技术研究进展. 工程科学学报, 2018, 40(7): 767) [7] Que Z G, WU S L, AI X B. To reduce NOx emission based on optimizing the existing states of coarse coke breeze during iron ore sintering process. Chinese Journal of Engineering, 2020, 42(2): 163 (阙志刚, 吴胜利, 艾仙斌. 基于优化粗粒级固体燃料赋存形态的铁矿烧结过程 NOx 减排. 工程科学学报, 2020, 42(2): 163) [8] Xia J F, Yu Y J, Wang X J, et al. Research on operation pa-rameters optimization of sinter cooler waste heat recovery sys-tem based on exergy efficiency optimization. Journal of Iron and Steel Research, 2019. 31(7): 637 (夏建芳, 余娠君, 王潇杰, 等. 基于㶲效率目标的环冷机余热回收系统操作参数优化. 钢铁研究学报, 2019. 31(7): 637) [9] Wang G ,Wen Z, Lou G, et al. 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High refficiency utilization of waste heat at fully integrated steel plant. Iron and Steel, 2011. 46(10): 88 (丁毅, 史德明. 钢铁企业余热资源高效利用. 钢铁, 2011. 46(10): 88) [14] Sun Y J, Dong H, Feng J S, et al. Thermodynamic analysis of waste heat recovery for sinter-cooling system. Journal of Iron and Steel Research, 2015. 27(1): 16 (孙用军, 董辉, 冯军胜, 等. 烧结-冷却余热回收系统热力学分析. 钢铁研究学报, 2015. 27(1): 16) [15] Wang Z C, Zhou Z A, Hu B, et al. Wind-oxygen balance model of flue gas circulation in sintering. Iron and Steel. 2015. 录用稿件,非最终出版稿
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