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Processing of rare earth concentrates 被引量:2

Processing of rare earth concentrates
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摘要 The paper describes process details for extraction of rare earths from an intermediate grade concentrate of Madhya Pradesh region in India and a South African slag. The xenodme concentrate obtained from the former place was an intermediate grade (47%) rare earth phosphate containing both monazite and xenotime. The South African slag was a low-grade waste product typically containing only 4% of rare earths. The rare earth resource concentrates have been treated individually by different methods such as alkali fusion and alkali leaching to convert them into their mixed oxides. Both types of materials have been processed and greater than 98% solubilization of metal values has been achieved in the intermediate grade xenotime and 80% from the South African slag. The residue of xenotime hydroxide has been washed thoroughly to collect the sodium phosphate, as by-product and the slurry pH have been adjusted to separate rare earths from thorium effectively. Other impurities such as uranium and iron have been removed by precipitation of rare earths by oxalic acid. It has been possible to recover 〉95% yttrium along with other rare earth oxides. The paper describes process details for extraction of rare earths from an intermediate grade concentrate of Madhya Pradesh region in India and a South African slag. The xenodme concentrate obtained from the former place was an intermediate grade (47%) rare earth phosphate containing both monazite and xenotime. The South African slag was a low-grade waste product typically containing only 4% of rare earths. The rare earth resource concentrates have been treated individually by different methods such as alkali fusion and alkali leaching to convert them into their mixed oxides. Both types of materials have been processed and greater than 98% solubilization of metal values has been achieved in the intermediate grade xenotime and 80% from the South African slag. The residue of xenotime hydroxide has been washed thoroughly to collect the sodium phosphate, as by-product and the slurry pH have been adjusted to separate rare earths from thorium effectively. Other impurities such as uranium and iron have been removed by precipitation of rare earths by oxalic acid. It has been possible to recover 〉95% yttrium along with other rare earth oxides.
出处 《Rare Metals》 SCIE EI CAS CSCD 2005年第3期210-215,共6页 稀有金属(英文版)
关键词 XENOTIME SLAG FUSION LEACHING calcining SOLUBILIZATION xenotime slag fusion leaching calcining solubilization
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  • 1Rai S.D., Shivananda S.R., Tiwari K.N., Banerjee D.C., and Rani Kaul, Xenotime bearing inland placers in India and their beneficiation, Explor. Res. At.Miner., 1991, 4: 103.
  • 2Shivananda S.R., Vishawamohan R., and Muralikrishna N., Recovery of xenotime and monazite from alluvial placers along Siri river, [in] Proceedings of National Workshop on Applied Minerology. Bhubaneshwar, 1992: 93.
  • 3Suri A.K. and Gupta C.K., Processing of xenotime to rare earth oxide intermediates, [in] Bautista R.G. and Jackson N., eds, Rare Earth Resources Science,Technology and Applications, The Minerals Metals and Materials Society, 1991
  • 4Singh H., Deshpande S.M, Kotekar M.K., and Mishra S.L., Xenotime processing for separation of yttrium, Proc. Adv. Chem. Eng., 1997, 97: 257.
  • 5Vijayalakshmi R., Mishra S.L., Singh H., and Gupta C.K., Processing of xenotime concentrate by acid digestion and selective thorium precipitation for separation of rare earths, Hydrometallurgy, 2001, 61: 75.
  • 6Murase K., Ozaki T., Machida K.I., and Adachi G.Y.,Extraction and mutual separation of rare earths from concentrates and crude oxides using chemical vapor transport, J. Alloys Compd., 1996, 233: 96.

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