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含锌冶金粉尘处理技术的发展和现状 被引量:40

Development and Current States of Techniques of Disposal Zinc-Containing Dust in Metallurgical Industry
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摘要 随着冶金工业的发展,含锌粉尘产出量和锌含量不断提高,对其中锌、铁的回收利用也提出了更高的要求。针对含锌冶金粉尘处理和综合利用的课题,概述了国内外相关技术的发展历程和现状,分析总结了各种处理技术的特点,并介绍了一种基于选择性氯化原理的含锌粉尘处理新思路。 With the development of metallurgical industry, the output of zinc containing dust and its zinc contents increased continuously. Zinc and iron contained in this dust should be separated and recycled with more effective techniques. The domestic and foreign development and current states of disposal techniques of zinc-containing dust were summarized, and the characteristics of these various techniques were analyzed. At last, a new method to deal with the zinc-containing dust based on the principle of the selective chlorination was introduced.
出处 《钢铁研究学报》 CAS CSCD 北大核心 2011年第7期1-5,9,共6页 Journal of Iron and Steel Research
基金 国家科技支撑计划资助项目(2006BAE03A10)
关键词 含锌粉尘 选择性氯化 回收利用 zinc-containing dust selective chlorination recycling
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参考文献21

  • 1日本铁鲴饬会.铁鲴便览[M].4版.日本:日本铁鲷协会,2002.
  • 2电炉集座タスト调查フックケルヮ,国内外にねふゐ电炉集论座タスト今后の动向调查[M].日本:电炉业改善促进协会,1996.
  • 3王东彦,王文忠,陈伟庆,周荣章,林宗彩.含锌铅钢铁厂粉尘处理技术现状和发展趋势分析[J].钢铁,1998,33(1):65-68. 被引量:66
  • 4张丙怀,郭兴忠,阳海彬,唐元位.钢铁厂含锌铅粉尘中锌铅分离理论及实践[J].有色金属(冶炼部分),2002(1):7-11. 被引量:22
  • 5郭廷杰.日本钢铁厂含铁粉尘的综合利用[J].中国资源综合利用,2003,21(1):4-5. 被引量:21
  • 6松浦宏行.金属酸化物の选捉的塩化挥凳反庙の物理化学[D].东京:东京大学,2006.
  • 7周云,彭开玉,李辽沙,王世俊,王海川,董元篪.电炉含锌粉尘在微波场下脱锌的试验研究[J].金属矿山,2006,35(2):82-84. 被引量:14
  • 8Satoshi Iton, Akira Tsubone, Kazuyo Matsubae-Yokoyama, et al. New EAF Dust Treatment Process With the Aid of Strong Magnetic Field [J].ISIJ International,2008,48(10): 1339.
  • 9Won Gap Seo, Hiroyuki Matsuura, Fumitaka Tsukihashi. Calculation of Phase Diagrams for the FeCI2, PhClz, and ZnCI2 Binary Systems by Using Molecular Dynamics Simula tion [J]. Metallurgical and Materials Transactions, 2006,37 (B) : 239.
  • 10Hiroyuki Matsuura, Tasulu Hamano, Fumitaka Tsukihashi. Removal of Zn and Pb From Fe203 ZnFe204 ZnO-PbO Mix- ture by Selective Chlorination and Evaporation Reactions [J].SIJ International, 2006,46 (8) ~ 1113.

二级参考文献21

  • 1陈津,刘浏,曾加庆,任瑞刚,刘金营.微波加热还原含碳铁矿粉试验研究[J].钢铁,2004,39(6):1-5. 被引量:62
  • 2崔礼生,韩跃新.难选冶金矿石预处理现状[J].金属矿山,2005,34(7):6-9. 被引量:19
  • 3张丙怀,李明阳,刁岳川,王朝东.电炉粉尘高效利用的实验室研究[J].安全与环境学报,2005,5(6):16-19. 被引量:10
  • 4许华忠.实用金属材料手册(下)[M].武汉:湖北科学技术出版社,1995.1 293-1 297.
  • 5EACOTT J G. Techno - economic feasibility of zinc and lead recovery from electric arc furnace baghouse dust [J]. CIM Bulletin, 1984, 77(869) :75 -81.
  • 6SERBENT H. Large scale test for the treatment of BF sludges and BOF dust according to the Waelz process[J]. Ironmaking Proc, 1975, 34 : 194 - 205.
  • 7YATSUNAMI K. New process for treating electric arc furnace dust (the HTR process) [ J ]. Electric Furnace Con Proc, 1981, 39:35-50.
  • 8CHAN C Y. The behavior of A1 in MSW incinerator fly ash during thermal treatment [ J ]. Journal of Hazardous Materials, 2000, B76: 103- 111.
  • 9BEST T E. In - flight plasma reduction of electrical arc furnace dust in carbon monoxide [ J ]. Canadian Metallurgical Quarterly, 2001,40( 1 ) :61 -78.
  • 10HALIKIA I. Kinetics study of the solid state reaction between ( - Fe2O3 and ZnO for zinc ferrite formation[J]. Canadian Metallurgical Quarterly, 1994, 33(2) : 99 - 109.

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