期刊文献+

三元正极废粉还原焙烧—水浸提锂过程氟磷杂质的影响 被引量:5

Effect of Fluorine and Phosphorus Impurity on Recovery of Lithium from Spent NCM Cathode Powder by Reduction Roasting-Water Leaching Process
下载PDF
导出
摘要 针对含氟/磷杂质组分的三元正极废粉和纯三元正极粉开展还原焙烧—水浸试验,发现相同试验条件下,含杂三元正极废粉锂的浸出率明显低于纯三元正极粉,氟/磷杂质组分是影响还原焙烧—水浸提锂效果的关键因素,还原焙烧过程中,由于氟/磷的影响,正极材料中的锂部分转化为不溶于水的LiF和Li3PO4,进而损失于水浸渣中。 Spent NCM cathode powder with/without fluorine and phosphorus impurities were treated by reduction roasting-water leaching.The results show that lithium leaching efficiency in spent NCM cathode powder containing fluorine and phosphorus impurities was significantly lower than that of pure NCM cathode powder under same experimental conditions.Fluorine and phosphorus impurities are the key factors affecting lithium recovery during reduction roasting-water leaching,which can be explained by that parts of lithium in NCM cathode powder is converted into insoluble LiF and Li3PO4 during reduction roasting process.
作者 廖财斌 任国兴 肖松文 LIAO Cai-bin;REN Guo-xing;XIAO Song-wen(Changsha Research Institute of Mining and Metallurgy Co.,Ltd.,Changsha 410012,China;School of Metallurgy and Environment,Central South University,Changsha 410083,China)
出处 《有色金属(冶炼部分)》 CAS 北大核心 2020年第12期42-47,共6页 Nonferrous Metals(Extractive Metallurgy)
基金 长沙市科技支撑计划项目(kq1602212) 中央企业电动车产业联盟共性技术项目(JS-211)。
关键词 废旧锂离子电池 三元正极粉 还原焙烧 spent lithium-ion battery NCM cathode powder reduction roasting lithium phosphorus fluorine
  • 相关文献

参考文献1

二级参考文献16

  • 1刘恒,孙红刚,周大利,张萍,尹光福.改进的固相法制备磷酸铁锂电池材料[J].四川大学学报(工程科学版),2004,36(4):74-77. 被引量:36
  • 2Yu Feng,Zhang Jingjie.Reaction mechanism and electrochem-ical performance of LiFePO4/C cathode materials synthesized bycarbothermal method. Electrochimica Acta . 2009
  • 3Shyue Ping Ong,Lei Wang,Byoungwoo Kang,Gerbrand Ceder.Li-Fe-P-O2phase diagram from first principles calculations. Chemistry of Materials . 2008
  • 4Kim C W,Park J S,Lee K S.Effect of Fe2P on the electronconductivity and electrochemical performance of LiFePO4synthe-sized by mechanical alloy using Fe3+raw material. PowerSources . 2006
  • 5Belharouak I,Johnso C,Amine K.Synthesis and electrochemi-cal analysis of vapor deposited carbon-coated LiFePO4. Elec-trochemistry Communications . 2005
  • 6Ho Chul Shin,Won Cho,Ho Jang.Electrochemical propertiesof t he carbon-coated LiFePO4as a cathode material for lithium-ion secondary batteries. Journal of Power Sources . 2006
  • 7Delacourt C,Poizot P,Levasseur S,Masquelier C.Sizeeffects on carbon free LiFePO4powders:The key to superior ener-gy density. Electrochem.Solid State Lett . 2006
  • 8GABERSCEK M,DOMINKO R,JAMNIK J.Is small particle size more important than carbon coating An example study on LiFePO4cathodes. Electrochemistry Communications . 2007
  • 9Yang S,Zavalij PY,Whittingham MS.Hydrothermal synthesis of lithium iron phosphate cathodes. Electrochemistry . 2001
  • 10S Franger,F L Cras,C Bourbon,H Bonault.4</sub> synthesis routes for enhanced electrochemical performance&amp;sid=Electrochemical Acta&amp;aufirst=S Franger');&#xA; ">LiFePO<sub>4</sub> synthesis routes for enhanced electrochemical performance. Electrochemical Acta . 2002

共引文献5

同被引文献58

引证文献5

二级引证文献17

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部