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·1748 工程科学学报,第43卷,第12期 produce high quality DRI for the EAF.ISI/Int,2001,41(Suppl): 40(3):211 S17 [62]Rutherford S D,Kopflfle J T.Mesabi nugget:the world's fifirst [50]Xiao S.Itmk3-The third generation coal-based direct reduction commercial ITmk3 plant.Iron Steel Technol.2010,7(3):38 ironmaking technology.Iron Steel,2002,37(8):40 [63]Li W,Tan B F,Li K J,et al.Research status and development (晓苏.1Tmk3一一第三代煤基直接还原炼铁技术.钢铁,2002, trend of zinc-containing solid waste recycling in iron and steel 37(8):40) plants.Energy Sav Nonferrous Metall,2021,37(1):8 [51]Tsuge O,Kikuchi S,Tokuda K.et al.Successful iron nuggets (李威,谭炳富,栗克建,等.钢铁厂含锌固废资源循环利用研究 production at ITmk3 pilot plant /61st fronmaking Conference 现状及发展态势.有色冶金节能,2021,37(1):8) Proceedings.Nashville,2002:511 [64]Zhang L F.Study on treatment of Zn-containing dust of iron and [52]Wang X J.Theoretical Analysis and Experimental Research of steel plants by rotary hearth furnace process in China.Sinter RHF Treatment on Matallurgical Zinc-Bearing Wastes Pelleti-ing,2012,37(3):57 [Dissertation].Chongqing:Chongqing University,2012 (张鲁芳.我国转底炉处理钢铁厂含锌粉尘技术研究.烧结球团, (王贤君.转底炉处理治金含锌尘泥的理论分析及实验研究[学 2012,37(3):57) 位论文].重庆:重庆大学,2012) [65]Du X E,Wang Z Y,Wang J S,et al.Problem of rotary hearth [53]Wang D Y,Wang W Z,Chen W Q,et al.Present state and furnace and development advice.Metall Collect,2013(2):42 development trend of disposal technique of in-plant (杜续恩,王再义,王俊山,等.转底炉工艺技术存在的问题与发 Zn-Pb-bearing dust./ron Steel,1998,33(1):65 展建议.冶金丛刊,2013(2):42) (王东意,王文忠,陈伟庆,等.含锌铅钢铁厂粉尘处理技术现状 [66]Wang D B,Liang J L,Li H,et al.A review of recovery of zinc 和发展趋势分析.钢铁,1998,33(1):65) oxide from metallurgical zinc dust.China Nonferrous Metall, [54]Zhang J L,Yan Y F,Xu M,et al.Research on removal of Zn from 2018,47(6):39 blast furace dust.Iron Steel,2006,41(10):78 (王冬斌,梁精龙,李慧,等.冶金含锌粉尘中回收氧化锌的工艺 (张建良,月永芳,徐萌,等.高炉含锌粉尘的脱锌处理.钢铁, 综述.中国有色治金,2018,47(6):39) 2006,41(10):78) [67]Hu J G,Du X E,Zhou W T.Present situation of industrialized [55]She X F,Xue QG,Dong JJ.et al.Study on basic properties of RHF technology and its review.Sinter Pelletizing,2013,38(1):36 typical industrial dust from iron and steel plant and analysis of its (胡俊鸽,杜续恩,周文涛.工业化转底炉炼铁技术的现状及评 utilization.Chin J Process Eng,2009,9(Sup 1):7 述.烧结球团,2013,38(1)片36) (佘雪峰,薛庆国,董杰吉,等.钢铁厂典型粉尘的基本物性与利 [68]Wang G,Xue Q G,She X F,et al.Effect of BOF fine dust on the 用途径分析.过程工程学报,2009,9(增刊1):7) performance of carbon-contained pellets for RHF direct reduction [56]She X F,Wang J S,Han Y H,et al.Comprehensive mathematical process.J Wuhan Uniy Sci Technol,2014,37(6):424 model of direct reduction for rotary hearth fumaces.J Univ Sci (王广,薛庆国,余雪峰,等.转炉细灰对转底炉直接还原含碳球 Technol Beijing,2013,35(12):1580 团性能的影响.武汉科技大学学报,2014,37(6):424) (佘雪蜂,王静松,韩毅华,等.转底炉直接还原工艺综合数学模 [69]Sofilie T,Rastovcan-Mioc A,Cerjan-Stefanovic S,et al. 型.北京科技大学学报,2013,35(12):1580) Characterization of steel mill electric-arc furnace dust./Hazard [57]An X W,Wang J S,She X F,et al.Reduction model of carbon- Mater,2004,109(1-3):59 containing pellets made of zinc-bearing dust.J Univ Sci Technol [70]Guo Y H,Zhang C X,Fan B,et al.Analysis and evaluation on Beijing,2013,35(2):155 utilization ways of zinc-bearing sludge and dust from iron and (安秀伟,王静松,佘雪峰,等.含锌粉尘内配碳球团还原模型 steel enterprises.Environ Eng,2010,28(4):83 北京科技大学学报,2013,35(2):155) (郭玉华,张春霞,樊波,等.钢铁企业含锌尘泥资源化利用途径 [58]She X F,Kong L T.Development and function of rotary hearth 分析评价.环境工程,2010,28(4):83) fumnace.Shandong Metall,2015,37(6):1 [71]Wu K,Yang T J,Gudenau H.Treatment of recycling fine dust (余雪峰,孔令坛.转底炉的发展及其功能.山东冶金,2015, formed in ironmaking and steelmaking processes with injecting 37(6):1) method.Iron Steel,1999,34(12):60 [59]Gao G,Li J X,Long H M,et al.Experimental study on improving (吴铿,杨天钧,Gudenau H W.采用喷吹方法处理钢铁厂的细粉 strength of dust and sludge carbon-containing pellets after drying. 尘.钢铁,1999.34(12):60) J Anhui Univ Technol (Nat Sci),2011,28(4):319 [72]Wu K,Dou L W,Yao K H,et al.Research on the foaming process (高岗,李家新,龙红明,等.提高尘泥含碳球团烘干后强度的实 of smelting reduction of blast furnace dust and sludge in iron bath 验研究.安徽工业大学学报(自然科学版),2011,28(4):319) China Environ Sci,2001,21(4):335 [60]Lin X L,Peng Z W,Yan J X,et al.Pyrometallurgical recycling of (吴铿,窦力威,姚克虎,等.高炉粉尘在铁浴熔融还原发泡过程 electric arc furnace dust.JCleaner Prod,2017,149:1079 的研究.中国环境科学,2001,21(4):335) [61]Kawaguchi T,Kashiwaya Y.Preface to the special issue on [73]Hu X J,Guo T,Zhou G Z.Development and current states of "recycling of wastes and environmental problems".IS//Int,2000, techniques of disposal zinc-containing dust in metallurgicalproduce high quality DRI for the EAF. ISIJ Int, 2001, 41(Suppl): S17 Xiao  S.  Itmk3—The  third  generation  coal-based  direct  reduction ironmaking technology. Iron Steel, 2002, 37(8): 40 (晓苏. ITmk3——第三代煤基直接还原炼铁技术. 钢铁, 2002, 37(8):40) [50] Tsuge  O,  Kikuchi  S,  Tokuda  K,  et  al.  Successful  iron  nuggets production  at  ITmk3  pilot  plant  //  61st Ironmaking Conference Proceedings. Nashville, 2002: 511 [51] Wang  X  J. Theoretical Analysis and Experimental Research of RHF Treatment on Matallurgical Zinc-Bearing Wastes [Dissertation]. Chongqing: Chongqing University, 2012 ( 王贤君. 转底炉处理冶金含锌尘泥的理论分析及实验研究[学 位论文]. 重庆: 重庆大学, 2012) [52] Wang  D  Y,  Wang  W  Z,  Chen  W  Q,  et  al.  Present  state  and development  trend  of  disposal  technique  of  in-plant Zn−Pb−bearing dust. Iron Steel, 1998, 33(1): 65 (王东彦, 王文忠, 陈伟庆, 等. 含锌铅钢铁厂粉尘处理技术现状 和发展趋势分析. 钢铁, 1998, 33(1):65) [53] Zhang J L, Yan Y F, Xu M, et al. Research on removal of Zn from blast furnace dust. Iron Steel, 2006, 41(10): 78 (张建良, 闫永芳, 徐萌, 等. 高炉含锌粉尘的脱锌处理. 钢铁, 2006, 41(10):78) [54] She X F, Xue Q G, Dong J J, et al. Study on basic properties of typical industrial dust from iron and steel plant and analysis of its utilization. Chin J Process Eng, 2009, 9(Sup 1): 7 ( 佘雪峰, 薛庆国, 董杰吉, 等. 钢铁厂典型粉尘的基本物性与利 用途径分析. 过程工程学报, 2009, 9(增刊1): 7) [55] She X F, Wang J S, Han Y H, et al. Comprehensive mathematical model  of  direct  reduction  for  rotary  hearth  furnaces. J Univ Sci Technol Beijing, 2013, 35(12): 1580 (佘雪峰, 王静松, 韩毅华, 等. 转底炉直接还原工艺综合数学模 型. 北京科技大学学报, 2013, 35(12):1580) [56] An X W, Wang J S, She X F, et al. Reduction model of carbon￾containing  pellets  made  of  zinc-bearing  dust. J Univ Sci Technol Beijing, 2013, 35(2): 155 (安秀伟, 王静松, 佘雪峰, 等. 含锌粉尘内配碳球团还原模型. 北京科技大学学报, 2013, 35(2):155) [57] She  X  F,  Kong  L  T.  Development  and  function  of  rotary  hearth furnace. Shandong Metall, 2015, 37(6): 1 (佘雪峰, 孔令坛. 转底炉的发展及其功能. 山东冶金, 2015, 37(6):1) [58] Gao G, Li J X, Long H M, et al. Experimental study on improving strength of dust and sludge carbon-containing pellets after drying. J Anhui Univ Technol (Nat Sci), 2011, 28(4): 319 (高岗, 李家新, 龙红明, 等. 提高尘泥含碳球团烘干后强度的实 验研究. 安徽工业大学学报(自然科学版), 2011, 28(4):319) [59] Lin X L, Peng Z W, Yan J X, et al. Pyrometallurgical recycling of electric arc furnace dust. J Cleaner Prod, 2017, 149: 1079 [60] Kawaguchi  T,  Kashiwaya  Y.  Preface  to  the  special  issue  on “recycling of wastes and environmental problems”. ISIJ Int, 2000, [61] 40(3): 211 Rutherford  S  D,  Kopflfle  J  T.  Mesabi  nugget:  the  world ’s  fifirst commercial ITmk3 plant. Iron Steel Technol. 2010, 7(3): 38 [62] Li  W,  Tan  B  F,  Li  K  J,  et  al.  Research  status  and  development trend  of  zinc-containing  solid  waste  recycling  in  iron  and  steel plants. Energy Sav Nonferrous Metall, 2021, 37(1): 8 (李威, 谭炳富, 栗克建, 等. 钢铁厂含锌固废资源循环利用研究 现状及发展态势. 有色冶金节能, 2021, 37(1):8) [63] Zhang L F. Study on treatment of Zn-containing dust of iron and steel  plants  by  rotary  hearth  furnace  process  in  China. Sinter Pelletizing, 2012, 37(3): 57 (张鲁芳. 我国转底炉处理钢铁厂含锌粉尘技术研究. 烧结球团, 2012, 37(3):57) [64] Du  X  E,  Wang  Z  Y,  Wang  J  S,  et  al.  Problem  of  rotary  hearth furnace and development advice. Metall Collect, 2013(2): 42 (杜续恩, 王再义, 王俊山, 等. 转底炉工艺技术存在的问题与发 展建议. 冶金丛刊, 2013(2):42) [65] Wang D B, Liang J L, Li H, et al. A review of recovery of zinc oxide  from  metallurgical  zinc  dust. China Nonferrous Metall, 2018, 47(6): 39 (王冬斌, 梁精龙, 李慧, 等. 冶金含锌粉尘中回收氧化锌的工艺 综述. 中国有色冶金, 2018, 47(6):39) [66] Hu  J  G,  Du  X  E,  Zhou  W  T.  Present  situation  of  industrialized RHF technology and its review. Sinter Pelletizing, 2013, 38(1): 36 (胡俊鸽, 杜续恩, 周文涛. 工业化转底炉炼铁技术的现状及评 述. 烧结球团, 2013, 38(1):36) [67] Wang G, Xue Q G, She X F, et al. Effect of BOF fine dust on the performance of carbon-contained pellets for RHF direct reduction process. J Wuhan Univ Sci Technol, 2014, 37(6): 424 (王广, 薛庆国, 佘雪峰, 等. 转炉细灰对转底炉直接还原含碳球 团性能的影响. 武汉科技大学学报, 2014, 37(6):424) [68] Sofilić  T,  Rastovcan-Mioc  A,  Cerjan-Stefanović  S,  et  al. Characterization  of  steel  mill  electric-arc  furnace  dust. J Hazard Mater, 2004, 109(1-3): 59 [69] Guo  Y  H,  Zhang  C  X,  Fan  B,  et  al.  Analysis  and  evaluation  on utilization  ways  of  zinc-bearing  sludge  and  dust  from  iron  and steel enterprises. Environ Eng, 2010, 28(4): 83 (郭玉华, 张春霞, 樊波, 等. 钢铁企业含锌尘泥资源化利用途径 分析评价. 环境工程, 2010, 28(4):83) [70] Wu  K,  Yang  T  J,  Gudenau  H.  Treatment  of  recycling  fine  dust formed  in  ironmaking  and  steelmaking  processes  with  injecting method. Iron Steel, 1999, 34(12): 60 (吴铿, 杨天钧, Gudenau H W. 采用喷吹方法处理钢铁厂的细粉 尘. 钢铁, 1999, 34(12):60) [71] Wu K, Dou L W, Yao K H, et al. Research on the foaming process of smelting reduction of blast furnace dust and sludge in iron bath. China Environ Sci, 2001, 21(4): 335 (吴铿, 窦力威, 姚克虎, 等. 高炉粉尘在铁浴熔融还原发泡过程 的研究. 中国环境科学, 2001, 21(4):335) [72] Hu  X  J,  Guo  T,  Zhou  G  Z.  Development  and  current  states  of techniques  of  disposal  zinc-containing  dust  in  metallurgical [73] · 1748 · 工程科学学报,第 43 卷,第 12 期
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