正在加载图片...
张国成等:炉渣成分对治炼白云鄂博矿高炉渣脱硫和排碱能力的影响 11 理工大学学报(自然科学版),2011,33(1):37) 钢科技,1997,23(3):107) [18]Zhu G Y,Zhang J L,Mao R,et al.Orthogonal experimental study [28]Jiang X,Shen F M,Han H S,et al.Analysis and application of on removal of alkalis through blast fumace slag.Res Iron Steel, sectional control of w(Mgo(Al,O)in blast furnace slag.Iron 2013,41(6):19 Steel,.2019,54(10):12 (朱广跃,张建良,毛瑞,等.基于正交法的高炉渣排碱试验研究 (姜鑫,沈峰满,韩宏松,等.高炉渣适宜镁铝比分段管控的分析 钢铁研究,2013,41(6):19) 与应用.钢铁,2019,54(10):12) [19]Sun Y Q.Wang H,Zhang Z T.Understanding the relationship [29]Li T L,Sun C Y,Wang Q.Effects of w(MgO)and w(Al2O3)on between structure and thermophysical properties of softening-melting properties of mixed burden.Iron Steel,2019, Cao-SiO,-MgO-Al,O:molten slags.Metall Mater Trans B, 54(4):12 2018,49(2):677 (李廷乐,孙长余,汪琦.w(MgO)和(A2O3)对混合炉料软熔性 [20]Wang D Q,Ma Z J,Chen H,et al.Thermodynamic analysis of 能的影响.钢铁,2019,54(4):12) reducing Mgo content in slag for blast fumace A in Shougang. [30]Shen F M.Jiang X,Gao QJ,et al.Theoretical basis of suitable China Metall,2018,28(10):5 MgO/Al2O3 ratio in BF slag.Ironmaking,2019,38(2):17 (王冬青,马泽军,陈辉,等.首钢A高炉炉渣降低MgO的热力学 (沈峰满,姜鑫,高强健,等.高炉炉渣适宜镁铝比的理论基础 分析.中国治金,2018,28(10):5) 炼铁,2019,38(2):17) [21]Taniguchi Y,Wang L J,Sano N,et al.Sulfide capacities of [31]Jiang Z,Che Y M,Guo T Y,et al.Study on effect of Al2O3,Mgo CaO-Al2O,-SiO2 slags in the temperature range 1673 K to 1773 K and binary basicity on stability of blast fumace slag.Angang (1400℃to1500℃).Me1alⅡMater Trans B,2012,43(3):477 Technol,2019(1):22 [22]Liu W G,Xing X D,Zuo H B.Effect of TiOz on viscosity and (姜枯,车玉满,郭天永,等.A103、MgO和二元碱度对高炉渣稳 sulfide capacity of blast fumace slag containing Barium.IS//Int, 定性影响研究.鞍钢技术,2019(1):22) 2020,60(9):1886 [32]Liu Z.Study on the Basic Performance of Blast Furnace Slag [23]Li Q H,Jia YN,Zhang C J,et al.Viscosity-structure analysis of under the Baotou Steel Condition of Raw Materials [Dissertation]. Cao-SiOz-MgO-Al2O;-Cr2O;slags and application of lida Baotou:Inner Mongolia University of Science Technology, model.Iron Steel,2019,54(4):99 (李秋寒,贾雅楠,张超杰,等.CaO-SiO2-MgO-Al20,Cr2O,渣 2020 系黏度结构分析及Iida模型应用.钢铁,2019,54(4):99) (柳哲.包钢原燃料条件下高炉渣的基础性能研究[学位论文] [24]Liu Y.Li G Q.Wang Q,et al.Effect of slag composition on 包头:内蒙古科技大学,2020) desulfurization during recycling rejected electrolytic manganese [33]Sun Z G.Effect of Mgo on high aluminous slag stability.Iron metal by electroslag remelting.Metall Res Technol,2021,118(2): Seel,2014,49(4):18 206 (孙忠贵.氧化镁对高铝渣稳定性影响.钢铁,2014,49(4):18) [25]Hao X,Wang X H.A new sulfide capacity model for [34]Zhang Y P,Zhang J L,Mao R,et al.Thermodynamic analysis on CaO-Al2O;-SiO,-MgO slags based on corrected optical basicity fusion temperature and melting characteristics of BF slag.JIron Steel Res Int,2016,87(3):359 Steel Res,,2014,26(11:11 [26]Ren Z S,Hu X J,Chou K C.Calculation and analysis of sulfide (张亚鹏,张建良,毛瑞,等.高炉炉渣熔化温度及液相生成热力 capacities for CaO-Al,O-SiO,-MgO-TiO,slags.J Iron Steel Res 学分析.钢铁研究学报,2014,26(11):11) m,2013,20(9):21 [35]Chang Z Y,Jiao K X,Zhang J L et al.Effect of Al,O:and Mgo [27]Du G P,Duan W M.Summary of industrial test on increasing on the enthalpy of molten slag and thermodynamic analysis MgO content in sinter of Baotou Steel.Sci Technol Baotou Steel Energy Metall Ind,2018,37(4上:24 (Gop)Corp,1997,23(3):107 (常治宇,焦克新,张建良,等.A,O,和MgO对炉渣热焓的影响 (杜国萍,段维民.包钢烧结矿提高MgO含量工业试验总结.包 及热力学分析.治金能源,2018,37(4):24)理工大学学报(自然科学版), 2011, 33(1):37) Zhu G Y, Zhang J L, Mao R, et al. Orthogonal experimental study on  removal  of  alkalis  through  blast  furnace  slag. Res Iron Steel, 2013, 41(6): 19 (朱广跃, 张建良, 毛瑞, 等. 基于正交法的高炉渣排碱试验研究. 钢铁研究, 2013, 41(6):19) [18] Sun  Y  Q,  Wang  H,  Zhang  Z  T.  Understanding  the  relationship between  structure  and  thermophysical  properties  of CaO–SiO2–MgO–Al2O3 molten  slags. Metall Mater Trans B, 2018, 49(2): 677 [19] Wang  D  Q,  Ma  Z  J,  Chen  H,  et  al.  Thermodynamic  analysis  of reducing  MgO  content  in  slag  for  blast  furnace  A  in  Shougang. China Metall, 2018, 28(10): 5 (王冬青, 马泽军, 陈辉, 等. 首钢A高炉炉渣降低MgO的热力学 分析. 中国冶金, 2018, 28(10):5) [20] Taniguchi  Y,  Wang  L  J,  Sano  N,  et  al.  Sulfide  capacities  of CaO–Al2O3–SiO2 slags in the temperature range 1673 K to 1773 K (1400 ℃ to 1500 ℃). Metall Mater Trans B, 2012, 43(3): 477 [21] Liu  W  G,  Xing  X  D,  Zuo  H  B.  Effect  of  TiO2 on  viscosity  and sulfide capacity of blast furnace slag containing Barium. ISIJ Int, 2020, 60(9): 1886 [22] Li Q H, Jia Y N, Zhang C J, et al. Viscosity-structure analysis of CaO–SiO2–MgO–Al2O3–Cr2O3 slags  and  application  of  Iida model. Iron Steel, 2019, 54(4): 99 (李秋寒, 贾雅楠, 张超杰, 等. CaO–SiO2–MgO–Al2O3–Cr2O3渣 系黏度结构分析及Iida模型应用. 钢铁, 2019, 54(4):99) [23] Liu  Y,  Li  G  Q,  Wang  Q,  et  al.  Effect  of  slag  composition  on desulfurization  during  recycling  rejected  electrolytic  manganese metal by electroslag remelting. Metall Res Technol, 2021, 118(2): 206 [24] Hao  X,  Wang  X  H.  A  new  sulfide  capacity  model  for CaO–Al2O3–SiO2–MgO slags based on corrected optical basicity. Steel Res Int, 2016, 87(3): 359 [25] Ren Z S, Hu X J, Chou K C. Calculation and analysis of sulfide capacities for CaO–Al2O3–SiO2–MgO–TiO2 slags. J Iron Steel Res Int, 2013, 20(9): 21 [26] Du  G  P,  Duan  W  M.  Summary  of  industrial  test  on  increasing MgO content in sinter of Baotou Steel. Sci Technol Baotou Steel (Group) Corp, 1997, 23(3): 107 (杜国萍, 段维民. 包钢烧结矿提高MgO含量工业试验总结. 包 [27] 钢科技, 1997, 23(3):107) Jiang  X,  Shen  F  M,  Han  H  S,  et  al.  Analysis  and  application  of sectional  control  of w(MgO)/w(Al2O3 )  in  blast  furnace  slag. Iron Steel, 2019, 54(10): 12 (姜鑫, 沈峰满, 韩宏松, 等. 高炉渣适宜镁铝比分段管控的分析 与应用. 钢铁, 2019, 54(10):12) [28] Li T L, Sun C Y, Wang Q. Effects of w(MgO) and w(Al2O3 ) on softening-melting  properties  of  mixed  burden. Iron Steel,  2019, 54(4): 12 (李廷乐, 孙长余, 汪琦. w(MgO)和w(Al2O3 )对混合炉料软熔性 能的影响. 钢铁, 2019, 54(4):12) [29] Shen  F  M,  Jiang  X,  Gao  Q  J,  et  al.  Theoretical  basis  of  suitable MgO/Al2O3 ratio in BF slag. Ironmaking, 2019, 38(2): 17 (沈峰满, 姜鑫, 高强健, 等. 高炉炉渣适宜镁铝比的理论基础. 炼铁, 2019, 38(2):17) [30] Jiang Z, Che Y M, Guo T Y, et al. Study on effect of Al2O3 , MgO and  binary  basicity  on  stability  of  blast  furnace  slag. Angang Technol, 2019(1): 22 (姜喆, 车玉满, 郭天永, 等. Al2O3、MgO和二元碱度对高炉渣稳 定性影响研究. 鞍钢技术, 2019(1):22) [31] Liu  Z. Study on the Basic Performance of Blast Furnace Slag under the Baotou Steel Condition of Raw Materials [Dissertation]. Baotou:  Inner  Mongolia  University  of  Science  &  Technology, 2020 ( 柳哲. 包钢原燃料条件下高炉渣的基础性能研究[学位论文]. 包头: 内蒙古科技大学, 2020) [32] Sun  Z  G.  Effect  of  MgO  on  high  aluminous  slag  stability. Iron Steel, 2014, 49(4): 18 (孙忠贵. 氧化镁对高铝渣稳定性影响. 钢铁, 2014, 49(4):18) [33] Zhang Y P, Zhang J L, Mao R, et al. Thermodynamic analysis on fusion  temperature  and  melting  characteristics  of  BF  slag. J Iron Steel Res, 2014, 26(11): 11 (张亚鹏, 张建良, 毛瑞, 等. 高炉炉渣熔化温度及液相生成热力 学分析. 钢铁研究学报, 2014, 26(11):11) [34] Chang Z Y, Jiao K X, Zhang J L, et al. Effect of Al2O3 and MgO on  the  enthalpy  of  molten  slag  and  thermodynamic  analysis. Energy Metall Ind, 2018, 37(4): 24 (常治宇, 焦克新, 张建良, 等. Al2O3和MgO对炉渣热焓的影响 及热力学分析. 冶金能源, 2018, 37(4):24) [35] 张国成等: 炉渣成分对冶炼白云鄂博矿高炉渣脱硫和排碱能力的影响 · 11 ·
<<向上翻页
©2008-现在 cucdc.com 高等教育资讯网 版权所有