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›› 2014, Vol. 14 ›› Issue (5): 763-769.

• 反应与分离 • 上一篇    下一篇

钒渣焙烧-水热碱浸提钒

刘继鑫 李兰杰 郑诗礼 王少娜 杜浩 谢海云   

  1. 昆明理工大学 承德钢铁集团钒钛工程技术研究中心 中国科学院过程工程研究所 中国科学院过程工程研究所 中国科学院过程工程研究所 昆明理工大学国土资源工程学院
  • 收稿日期:2014-06-27 修回日期:2014-08-26 出版日期:2014-10-20 发布日期:2014-10-20
  • 通讯作者: 刘继鑫

Extraction of Vanadium from Vanadium-containing Slag by Roasting-Hydrothermal Alkali Leaching

LIU Ji-xin LI Lan-jie ZHENG Shi-li WANG Shao-na DU Hao XIE Hai-yun   

  1. Kunming University of Science and Technology Research Center of Vanadium and Titanium Engineering Technology, Chengde Iron and Steel Group Co. LTD Institute of Process Engineering, Chinese Academy of Sciences Institute of Process Engineering, Chinese Academy of Sciences Institute of Process Engineering, Chinese Academy of Sciences Faculty of Land Resource Engineering, Kunming Univ. Sci. & Technol.
  • Received:2014-06-27 Revised:2014-08-26 Online:2014-10-20 Published:2014-10-20
  • Contact: LIU Ji-xin

摘要: 实验研究了不同条件下钒渣焙烧与NaOH溶液水热浸出对钒浸出率的影响,并分析了过程机理. 结果表明,焙烧温度达700℃以上可实现钒铁尖晶石的氧化分解,850℃焙烧2 h是钒渣空白焙烧的最佳条件,浸出的最佳条件是反应温度180℃、钒渣粒度小于74 mm、反应时间2 h、液固比5 L/g、碱浓度30%(w)、搅拌速度500 r/min. 该条件下钒浸出率达95%以上,无有害气体产生.

关键词: 钒渣, 焙烧, 水热浸出, 钒浸出率, NaOH

Abstract: The effects of vanadium slag roasting and NaOH solution of hydrothermal leaching on the leaching rate of vanadium were studied, the optimum parameters of the process were obtained, and the mechanism was analyzed. The results showed that when the roasting temperature reached over 700℃, the oxidative decomposition of vanadium iron spinel could be achieved, the optimum conditions for roasting process were roasting at 850℃ for 2 h. The optimum leaching conditions were obtained as leaching temperature of 180℃, vanadium slag particle size lass than 74 mm, leaching time 2 h, ratio of liquid to solid 5 L/g, concentration of NaOH 30%(w) and stirring speed 500 r/min. Under these conditions, the leaching rate of vanadium could reached 95%. No harmful gases were produced in the roasting and hydrothermal leaching of NaOH.

Key words: vanadium slag, roasting, hydrothermal leaching, leaching rate, NaOH