正在加载图片...
张建良等:炼铁新技术及基础理论研究进展 1645 strength deterioration of self-reducing briquettes made from iron- (王海洋,张建良,王广伟,等.八钢欧冶炉碱金属及锌平衡分析 bearing dust and sludge.J Central South Univ (Sci Technol),2016, 炼铁,2018,37(4):61) 47(2):367 [75]Du BB,Wu S L,Zhou H,et al.Effect of scaffolding on solid flow (王飞,张建良,毛瑞,等.含铁尘泥自还原团块固结机理及强度 in COREX shaft furnace by discrete element simulation method. 劣化.中南大学学报(自然科学版),2016,47(2):367) romS1eel,2020,55(1):12 [64]Wang Y Z,Zhang J L,Liu Z J,et al.Co-utilization of converter (杜斌斌,吴胜利,周恒,等.COREX竖炉结瘤对物料运动行为影 sludge-containing dedust wastewater in iron ore sintering to save 响的DEM模拟.钢铁,2020,55(1):12) fresh water,enhance quality and reduce pollution.J Clean Prod, [76]Zhang J L,Zhang G Q,Liu Z J,et al.Production overview and 2019,234:157 main characteristics of HIsmelt process in Shandong Molong. [65]Liu Z J,Zhang JL Du C B.et al.Treatment Technic for Sintering China Metall,2018,28(5):37 added Steelmaking Sludge:China Patent,201910019375.5.2020- (张建良,张冠琪,刘征建,等.山东墨龙HIsmelt工艺生产运行概 3-31 况及主要特点.中国冶金,2018,28(5):37) (刘征建,张建良,杜诚波,等.一种烧结配加炼钢污泥的处理工 [77]Zhang J L,Li K J,Zhang G Q,et al.Technological innovation of 艺方法:中国专利,201910019375.5.2020-3-31) HIsmelt process in SD molong and latest production index. [66]Mao R,Zhang J L,Liu Z J,et al.Experimental studies on self- Ironmaking,2018,37(2):56 reduction for the pellets made of iron-contained dust and sludge (张建良,李克江,张冠琪,等.山东墨龙HIsmelt工艺的技术创新 from a steel enterprise.J Northeast Univ (Nat Sci),2015,36(6): 及最新生产指标.炼铁,2018,37(2):56) 790 [78]Wu L F,Yang G Q.Ma B L.Development history and (毛瑞,张建良,刘征建,等.钢铁厂含铁尘泥球团自还原实验研 improvement direction of HIsmelt smelting reduction process. 究.东北大学学报(自然科学版),2015,36(6):790) Hebei Metall,2021(9):8 [67]Zhang JL,Wang J Y,Liu Z J,et al.A Smelting Furnace Steel Mill (武龙飞,杨广庆,马保良.HIsmelt熔融还原工艺的发展历程及 Solid Waste Treatment Process for.China Patent, 改进方向.河北治金,2021(9):8) 201310659226.8.2014-3-5 [79]Cao C Z,Meng Y J,Yan F X,et al.Analysis on energy efficiency (张建良,王俊英,刘征建,等.一种熔融炉处理钢铁厂固体废料 and optimization of HIsmelt process /Energy Technology 2019 工艺方法:中国专利,201310659226.8.2014-3-5) San Antonio,2019:3 [68]Zhang X Y.Jiao K X,Zhang JL,et al.A review on low carbon [80]Ma H B,Jiao K X,Zhang J L.The influence of basicity and TiO2 emissions projects of steel industry in the World.J Clean Prod on the crystallization behavior of high Ti-bearing slags 2021.306:127259 CrystEngComm,2020,22(2):361 [69]Xu R S,Zhang J L,Wang W,et al.Dissolution kinetics of solid [81]Zhang B,Zhang J L,Liu X L,et al.Effect of reduction conditions fuels used in COREX gasifier and its influence factors.Steel on metallization rate of pellets in gas-based reduction.China Resm,2018.25(3):298 Me1al,2014,24(Suppl1166 [70]Xu R S,Zhang JL,Wang G W,et al.Isothermal kinetic analysis (张波,张建良,刘兴乐,等.还原条件对气基还原中球团金属化 on fast pyrolysis of lump coal used in COREX process.J Therm 率的影响.中国治金,2014,24增刊1)166) Anal Calorim,2016,123(1):773 [82]Yi L Y,Huang Z C,Peng H,et al.Action rules of H2 and CO in [71]Xu R S,Zhang J L,Wang G W,et al.Devolatilization gas-based direct reduction of iron ore pellets.J Central South characteristics and kinetic analysis of lump coal from China 0mm,2012,19(8):2291 COREX3000 under high temperature.Metall Mater Trans B,2016, [83]Li W,Wang N,Fu G Q,et al.Influence of roasting characteristics 47(4):2535 on gas-based direct reduction behavior of Hongge vanadium [72]Wang H Y,Zhang J L,Wang G W,et al.Feasibility research of titanomagnetite pellet with simulated shaft furnace gases.Powder injection of BF dust into melter gasifier of COREX.Iron Steel, Technol,2017,310:343 2017,52(8):29 [84]Li K J,Zhang J L,Liu Z J,et al.Comprehensive evaluation of (王海洋,张建良,王广伟,等.高炉除尘灰用于COREX气化炉喷 OxyCup process for steelmaking dust treatment based on 吹的可行性研究.钢铁,2017,52(8):29) calculation of mass balance and heat balance.J Iron Steel Res Int, [73]Zhou H,Wu S L,Kou M Y,et al.Physical simulation of the 2014,21(6):575 position and evolution process of dust accumulation in the bustle [85]Wang G L,Liu Z J,Zhang J L,et al.Soft-melting property of dust pipe of a COREX shaft furace.Chin J Eng,2018,40(3):349 briquettes based on OxyCup shaft fumnace.China Metall,2018, (周恒,吴胜利,寇明银,等.COREX竖炉围管堵塞位置及其演变 28(11):61 过程的物理模拟.工程科学学报,2018.40(3):349) (王桂林,刘征建,张建良,等,基于OxyCup竖炉处理工艺的尘泥 [74]Wang H Y,Zhang JL,Wang G W,et al.Balance analysis of alkali 团块软熔性能.中国冶金,2018.28(11):61) metals and Zinc in European metallurgical furnace of Bayi Steel. [86]Jiang C H,Xiong Z X,Bu Y S,et al.Study on the structure and Ironmaking,2018,37(4):61 properties of high-calcium coal ash in the high-temperature zone ofstrength deterioration of self-reducing briquettes made from iron￾bearing dust and sludge. J Central South Univ (Sci Technol), 2016, 47(2): 367 (王飞, 张建良, 毛瑞, 等. 含铁尘泥自还原团块固结机理及强度 劣化. 中南大学学报 (自然科学版), 2016, 47(2):367) Wang Y Z, Zhang J L, Liu Z J, et al. Co-utilization of converter sludge-containing dedust wastewater in iron ore sintering to save fresh  water,  enhance  quality  and  reduce  pollution. J Clean Prod, 2019, 234: 157 [64] Liu Z J, Zhang J L, Du C B, et al. Treatment Technic for Sintering added Steelmaking Sludge: China Patent, 201910019375.5. 2020- 3-31 ( 刘征建, 张建良, 杜诚波, 等. 一种烧结配加炼钢污泥的处理工 艺方法: 中国专利, 201910019375.5. 2020-3-31) [65] Mao  R,  Zhang  J  L,  Liu  Z  J,  et  al.  Experimental  studies  on  self￾reduction  for  the  pellets  made  of  iron-contained  dust  and  sludge from a steel enterprise. J Northeast Univ (Nat Sci), 2015, 36(6): 790 (毛瑞, 张建良, 刘征建, 等. 钢铁厂含铁尘泥球团自还原实验研 究. 东北大学学报 (自然科学版), 2015, 36(6):790) [66] Zhang J L, Wang J Y, Liu Z J, et al. A Smelting Furnace Steel Mill Solid Waste Treatment Process for:  China  Patent, 201310659226.8. 2014-3-5 ( 张建良, 王俊英, 刘征建, 等. 一种熔融炉处理钢铁厂固体废料 工艺方法: 中国专利, 201310659226.8. 2014-3-5) [67] Zhang X Y, Jiao K X, Zhang J L, et al. A review on low carbon emissions  projects  of  steel  industry  in  the  World. J Clean Prod, 2021, 306: 127259 [68] Xu R S, Zhang J L, Wang W, et al. Dissolution kinetics of solid fuels used in COREX gasifier and its influence factors. J Iron Steel Res Int, 2018, 25(3): 298 [69] Xu R S, Zhang J L, Wang G W, et al. Isothermal kinetic analysis on fast pyrolysis of lump coal used in COREX process. J Therm Anal Calorim, 2016, 123(1): 773 [70] Xu  R  S,  Zhang  J  L,  Wang  G  W,  et  al.  Devolatilization characteristics  and  kinetic  analysis  of  lump  coal  from  China COREX3000 under high temperature. Metall Mater Trans B, 2016, 47(4): 2535 [71] Wang H Y, Zhang J L, Wang G W, et al. Feasibility research of injection  of  BF  dust  into  melter  gasifier  of  COREX. Iron Steel, 2017, 52(8): 29 (王海洋, 张建良, 王广伟, 等. 高炉除尘灰用于COREX气化炉喷 吹的可行性研究. 钢铁, 2017, 52(8):29) [72] Zhou  H,  Wu  S  L,  Kou  M  Y,  et  al.  Physical  simulation  of  the position and evolution process of dust accumulation in the bustle pipe of a COREX shaft furnace. Chin J Eng, 2018, 40(3): 349 (周恒, 吴胜利, 寇明银, 等. COREX竖炉围管堵塞位置及其演变 过程的物理模拟. 工程科学学报, 2018, 40(3):349) [73] Wang H Y, Zhang J L, Wang G W, et al. Balance analysis of alkali metals and Zinc in European metallurgical furnace of Bayi Steel. Ironmaking, 2018, 37(4): 61 [74] (王海洋, 张建良, 王广伟, 等. 八钢欧冶炉碱金属及锌平衡分析. 炼铁, 2018, 37(4):61) Du B B, Wu S L, Zhou H, et al. Effect of scaffolding on solid flow in  COREX  shaft  furnace  by  discrete  element  simulation  method. Iron Steel, 2020, 55(1): 12 (杜斌斌, 吴胜利, 周恒, 等. COREX竖炉结瘤对物料运动行为影 响的DEM模拟. 钢铁, 2020, 55(1):12) [75] Zhang  J  L,  Zhang  G  Q,  Liu  Z  J,  et  al.  Production  overview  and main  characteristics  of  HIsmelt  process  in  Shandong  Molong. China Metall, 2018, 28(5): 37 (张建良, 张冠琪, 刘征建, 等. 山东墨龙HIsmelt工艺生产运行概 况及主要特点. 中国冶金, 2018, 28(5):37) [76] Zhang J L, Li K J, Zhang G Q, et al. Technological innovation of HIsmelt  process  in  SD  molong  and  latest  production  index. Ironmaking, 2018, 37(2): 56 (张建良, 李克江, 张冠琪, 等. 山东墨龙HIsmelt工艺的技术创新 及最新生产指标. 炼铁, 2018, 37(2):56) [77] Wu  L  F,  Yang  G  Q,  Ma  B  L.  Development  history  and improvement  direction  of  HIsmelt  smelting  reduction  process. Hebei Metall, 2021(9): 8 (武龙飞, 杨广庆, 马保良. HIsmelt熔融还原工艺的发展历程及 改进方向. 河北冶金, 2021(9):8) [78] Cao C Z, Meng Y J, Yan F X, et al. Analysis on energy efficiency and  optimization  of  HIsmelt  process  // Energy Technology 2019. San Antonio, 2019: 3 [79] Ma H B, Jiao K X, Zhang J L. The influence of basicity and TiO2 on  the  crystallization  behavior  of  high  Ti-bearing  slags. CrystEngComm, 2020, 22(2): 361 [80] Zhang B, Zhang J L, Liu X L, et al. Effect of reduction conditions on  metallization  rate  of  pellets  in  gas-based  reduction. China Metall, 2014, 24(Suppl 1): 166 ( 张波, 张建良, 刘兴乐, 等. 还原条件对气基还原中球团金属化 率的影响. 中国冶金, 2014, 24(增刊 1): 166) [81] Yi L Y, Huang Z C, Peng H, et al. Action rules of H2 and CO in gas-based  direct  reduction  of  iron  ore  pellets. J Central South Univ, 2012, 19(8): 2291 [82] Li W, Wang N, Fu G Q, et al. Influence of roasting characteristics on  gas-based  direct  reduction  behavior  of  Hongge  vanadium titanomagnetite pellet with simulated shaft furnace gases. Powder Technol, 2017, 310: 343 [83] Li  K  J,  Zhang  J  L,  Liu  Z  J,  et  al.  Comprehensive  evaluation  of OxyCup  process  for  steelmaking  dust  treatment  based  on calculation of mass balance and heat balance. J Iron Steel Res Int, 2014, 21(6): 575 [84] Wang G L, Liu Z J, Zhang J L, et al. Soft-melting property of dust briquettes  based  on  OxyCup  shaft  furnace. China Metall,  2018, 28(11): 61 (王桂林, 刘征建, 张建良, 等. 基于OxyCup竖炉处理工艺的尘泥 团块软熔性能. 中国冶金, 2018, 28(11):61) [85] Jiang C H, Xiong Z X, Bu Y S, et al. Study on the structure and properties of high-calcium coal ash in the high-temperature zone of [86] 张建良等: 炼铁新技术及基础理论研究进展 · 1645 ·
<<向上翻页向下翻页>>
©2008-现在 cucdc.com 高等教育资讯网 版权所有