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Toxco公司锂回收利用技术突破 被引量:1

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作者 石慧
出处 《电池工业》 CAS 1997年第3期78-,共1页 Chinese Battery Industry
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同被引文献26

  • 1金玉健,梅光军,李树元.盐析法从锂离子电池正极浸出液中回收钴盐的研究[J].环境科学学报,2006,26(7):1122-1125. 被引量:32
  • 2李建刚,赵如松,刘华臣.废旧锂离子电池中有价金属的回收(英文)[J].中山大学学报(自然科学版),2007,46(B06):256-257. 被引量:5
  • 3Sun L, Qiu K Q. Vacuum pyrolysis and hydrometallurgical process for the recovery of valuable metals from spent lithium-ion batteries [J]. Journal of Hazardous Materials, 2011 (194): 378-384.
  • 4周旭,贺文智,李光明,等.废锂电池电极材料资源化分离研究[C].废旧机电产品资源化利用处理技术与新装备开发交流研讨论文集,2009.
  • 5Zhu S G, He W Z, Li G M, et al. Recovering copper from spent Lithium ion battery by a mechanical separation process [C Renewable nternational Conference on Materials for Energy & Environment, 2011:1 008-1 012.
  • 6Lupi C, Pasquali M, Dell'Era A. Waste Management [J]. 2005,25:215-220.
  • 7Pranolo Y, Zhang W, Cheng from spent lithium-ion battery solvent extractant system [J] 37-42. C Y, Recovery of metals leach solutions with a mixed Hydrometallurgy, 2010 (102):.
  • 8Zhao J M, Shen X Y, Deng F L, et al. Synergistic extraction and separation of valuable metals from waste cathodic material of lithium ion batteries using Cyanex272 and PC-88A[J]. Separation and Purification Technology, 2011 (78):345-351.
  • 9Hayashi Masaru, Motonaka Yabuki, Masayuki Onuma, etal. Method of recvering lithium from batteries. US, 6120927A[P].2000-09-19.
  • 10Xin B P, Zhang D, Zhang X, et al. Bioleaching mechanismof Co and Li from spent lithium ion battery by the mixed culture of acidophilic sulfur oxidizing and iron oxidizing bacteria[J]. Biore source Technology, 2009,100(24):6 163- 6 169.

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