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从硫化铅精矿中制备红丹和黄丹 被引量:1

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摘要 叙述了从硫化铅精矿中直接浸出铅锌银的技术条件,以及制备红丹、黄丹、硝酸银的方法。结果表明,制得的产品红丹和黄丹的质量都达到了国家一级品以上的标准。
作者 钟晨
出处 《有色冶炼》 1997年第4期39-41,共3页 Non-Ferrous Smelting
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  • 1宋剑飞,李立清,李丹,陈昭宜,李静.用废铅蓄电池制备黄丹和红丹[J].化工环保,2004,24(1):52-55. 被引量:3
  • 2李洪桂.湿法冶金学[M].长沙:中南大学出版社,1991:38.
  • 3李卫锋,贾著红.硫化铅精矿富氧底吹及富氧顶吹熔炼技术[M].长沙:中南大学出版社,2010.
  • 4Martins F M, Neto J M d R, Cunha C J d. Mineral phases of weath- ered and recent electric arc furnace dust [ J ]. Journal of Hazardous Materials, 2008,154 : 417 -425.
  • 5Havlik T, Bemardes A M, Schneider I A H, et al. Hydrometallurgi-cal processing of carbon steel EAF dust [ J ]. Journal of Hazardous Materials,2006,135( 1 ) :311-318.
  • 6Jha M K, Kumar V, Singh R. Review of hydrometallurgical recovery of zinc from industrial wastes [ J ]. Resources, Conservation and Re- cycling,2001,33(2) :1-22.
  • 7Li L, Zhu X, Yang D, et al. Preparation and characterization of nano-structured lead oxide from spent lead acid battery paste [ J ]. Journal of Hazardous Materials ,2012,203:274-282:
  • 8Zhu Xinfeng, Li Lei, Sun Xiaojiao, et al. Preparation of basic lead oxide from spent lead acid battery paste ":ia chemical conversion [J]. Hydrometallury,2012(117/118) :24-31.
  • 9Karami H, Karimi M A, Haghdar S, et al. Synthesis of lead oxide nanoparticles by sonochemical method and its application as cath- ode and anode of lead-acid batteries [ J ]. Materials Chemistry and Physics, 2008,108 : 7 -9.
  • 10Turan M D, Altundogan H S, Ttimen F. Recovery of zine and lead from zinc plant residue[ J]. Hydrometallurgy,2004,75:169-176.

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