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回收氨浸渣中钼资源的新工艺研究与生产实践 被引量:6

NEW TECHNOLOGY AND PRODUCTION PRACTICE ON THE RECOVERY OF AMMONIA LEACHING RESIDUE FROM MOLYBDENUM RESOURCES
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摘要 通过对氨浸渣中钼的物相分析,对钼的不同赋存形态的化合物的性质进行研究,以次氯酸钠为氧化剂,以碳酸钠为浸出剂,通过实验研究,探索出常压条件下湿法回收氨浸渣中钼资源的新工艺。用于生产实践,钼金属回收率高,能耗低,取得了良好的经济效益和节能减排的环保效益。 By phase analysis of molybdenum in ammonia leaching residue,the nature for the forms of different compounds was studied.With sodium hypochlorite as oxidant,sodium carbonate as agent,through experimental research,new hydrometallurgy technology for molybdenum resource recovery from ammonia leaching residue was explored under the condition of atmospheric pressure.High molybdenum metal recovery,low energy consumption,good economic benefits and environmental benefits of energy-saving emission reduction were gained by this technology.
作者 陈敏
出处 《中国钼业》 2011年第5期4-6,共3页 China Molybdenum Industry
关键词 氨浸渣 物相 次氯酸钠 碳酸钠 节能减排 ammonia leaching residues phase sodium hypochlorite sodium carbonate energy conservation and platoon reduction
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  • 1符剑刚,钟宏,黄永平,卜向明.Mn^(3+)/Mn^(2+)间接电氧化法分解辉钼矿[J].中南大学学报(自然科学版),2004,35(5):797-801. 被引量:6
  • 2盘茂森,朱云.高压浸出钼酸钙中钼的实验研究[J].中国钼业,2005,29(6):19-21. 被引量:20
  • 3彭泽田.从钼氨浸渣中回收钼[J].中国钼业,1996,20(4):24-25. 被引量:6
  • 4张文钲,康太成,黄宪法.钼冶炼[M].西安:西安交通大学出版社,1987.
  • 5A·H泽列克曼等著,宋晨光等译.稀有金属冶金学[M].北京:冶金工业出版社,1982.
  • 6李洪桂.稀有金属及高熔点金属提取手册[M].长沙:中南工大出版社,1998.
  • 7赵维保.辉钼矿真空分解制备高纯氧化钼的方法[P].中国专利:CN 101254949A,2008.
  • 8钼精矿技术条件 GB 3200-89.中华人民共和国国家标准[S].1989.
  • 9李洪桂.有色金属提取冶金手册[M].稀有高熔点金属(上)北京:冶金工业出版社.1999.8.265
  • 10陈殿耿[等]编写,李华昌,符斌.实用化学手册[M]化学工业出版社,2006.

共引文献12

同被引文献43

  • 1田建荣,张俊锋,崔杰.对钼酸铵生产过程中Cu^(2+)、Fe^(2+)、K^+在各个工序损失规律的探讨[J].中国钼业,2004,28(4):30-32. 被引量:10
  • 2傅剑锋,武秋立.响应面法分析Fenton氧化垃圾渗滤液的过程[J].化工进展,2006,25(12):1493-1495. 被引量:19
  • 3解兴锋,周军,赵新瑞.氨浸渣对钼酸铵回收率影响分析[J].有色金属(冶炼部分),2007(4):24-26. 被引量:6
  • 4朱炳辰.化学反应工程[M].化学工业出版社,2012:218-225.
  • 5CAO Zhan-fang, ZHONG Hong, QIU Zhao-hui, LIU Guang-yi, ZHANG Wen-xuan. A novel technology for molybdenum extraction from molybdenite concentrate[J]. Hydrometallurgy, 2009, 99(5): 2-6.
  • 6JOSEPH D L, LEONID N S. Thermodynamic modeling of atmospheric hydrometallurgical removal ol~J]. Hydrometallurgy, 2014, 150: 9-13.
  • 7VANDENBERGA J A M, YANG Y. NAUTA H H K, VAN SANDWlJK A, REUTER M A. Comprehensive processing of low grade sulphidic molybdenum ores[J]. Minerals Engineering, 2002, 15: 879-883.
  • 8KUMAR M, MANKHAND T R, MURTH D S R, MUKHOPADHYAY R, PRASAD P M. Refining of a low-grade molybdenite concentrate[J]. Hydrometallurgy, 2007, 86(2): 56-62.
  • 9WANG Ming-yu, WANG Xue-wen, LIU Wan-li. A novel technology of molybdenum extraction from low grade Ni-Mo ore[J]. Hydrometallurgy, 2009, 79(2): 126-130.
  • 10CHEN Yun, FENG Qi-ming, SHAO Yan-hai, ZHANG Guo-fan, OU Le-ming, LU Yi-ping. Investigations on the extraction of molybdenum and vanadium from ammonia leaching residue of spent catalyst[J]. International Journal of Mineral Processing, 2006, 79(1): 42-48.

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