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Reduction leaching of rare earth from ion-adsorption type rare earths ore with ferrous sulfate

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【作者】 肖燕飞冯宗玉胡谷华黄莉黄小卫陈迎迎龙志奇

【Author】 XIAO Yanfei;FENG Zongyu;HU Guhua;HUANG Li;HUANG Xiaowei;CHEN Yingying;LONG Zhiqi;National Engineering Research Center for Rare Earth Materials,General Research Institute for Nonferrous Metals;Grirem Advanced Materials Co.,Ltd.;School of Metallurgy and Chemical Engineering,Jiangxi University of Science and Technology;Chalco Guangxi Nonferrous Rare Earth Development Co.,Ltd.;School of Chemical Engineering,China University of Petroleum;

【机构】 National Engineering Research Center for Rare Earth Materials,General Research Institute for Nonferrous MetalsGrirem Advanced Materials Co.,Ltd.School of Metallurgy and Chemical Engineering,Jiangxi University of Science and TechnologyChalco Guangxi Nonferrous Rare Earth Development Co.,Ltd.School of Chemical Engineering,China University of Petroleum,Beijing

【摘要】 The practice of in-situ leaching of the ion-adsorption type rare earths ore with ammonium sulfate could only leach most of rare earth in ion-exchangeable phase,but not the colloidal sediment phase.Therefore,the reduction leaching of rare earth from the ion-adsorption type rare earths ore with ferrous sulfate was innovatively put forward.The soak leaching process and the column leaching process were investigated in the present study.It was determined that ion-exchangeable phase could be released,and part of colloidal sediment phase rare earth could be reduction leached by the cations with reduction properties.The mechanism of reduction leaching was discussed with the Eh-pH diagram of cerium.Moreover,the stronger reduction of reductive ions,the greater acidity of leaching agent solution,and the higher reductive ion concentration,could result in the higher rare earth efficiency and the bigger cerium partition in the leaching liquor.In the ferrous sulfate column leaching process,the rare earth leaching rate and the rare earth efficiency were a little higher than with(NH42SO4 agent,and the rare earth efficiency and the partitioning of cerium in leaching liquor could be about 102% and 5.31%,respectively.However,the ferrous sulfate leaching process revealed some problems,so compound leaching with magnesium sulfate and a small amount of ferrous sulfate was proposed to an excellent alternative leaching agent for further studies,which may realize efficiency extraction and be environment-friendly.

【Abstract】 The practice of in-situ leaching of the ion-adsorption type rare earths ore with ammonium sulfate could only leach most of rare earth in ion-exchangeable phase,but not the colloidal sediment phase.Therefore,the reduction leaching of rare earth from the ion-adsorption type rare earths ore with ferrous sulfate was innovatively put forward.The soak leaching process and the column leaching process were investigated in the present study.It was determined that ion-exchangeable phase could be released,and part of colloidal sediment phase rare earth could be reduction leached by the cations with reduction properties.The mechanism of reduction leaching was discussed with the Eh-pH diagram of cerium.Moreover,the stronger reduction of reductive ions,the greater acidity of leaching agent solution,and the higher reductive ion concentration,could result in the higher rare earth efficiency and the bigger cerium partition in the leaching liquor.In the ferrous sulfate column leaching process,the rare earth leaching rate and the rare earth efficiency were a little higher than with(NH42SO4 agent,and the rare earth efficiency and the partitioning of cerium in leaching liquor could be about 102% and 5.31%,respectively.However,the ferrous sulfate leaching process revealed some problems,so compound leaching with magnesium sulfate and a small amount of ferrous sulfate was proposed to an excellent alternative leaching agent for further studies,which may realize efficiency extraction and be environment-friendly.

【基金】 Project supported by National Science and Technology Support Program of China(2015BAB16B01);Training Program of Major Academic and Technical Leaders in Jiangxi Province(20142BCB22005);Top Youth Talent Training Program of "Gan Po 555 Talents Project" of Jiangxi Province
  • 【文献出处】 Journal of Rare Earths ,稀土学报(英文版) , 编辑部邮箱 ,2016年09期
  • 【分类号】TF845
  • 【被引频次】34
  • 【下载频次】191
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