• Title/Summary/Keyword: rare earth

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Effect of Addition Elements on the Production of the 2-17 Type High Performance of the Rare Earth Permanent Magnet Materials by the Reduction and Diffusion Process (환원·확산법에 의한 2-17형 고성능 희토류영구자석 재료의 제조에 있어서 첨가원소의 영향)

  • Song, Chang-Been;Cho, Tong-Rae
    • Journal of the Korean Society for Heat Treatment
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    • v.8 no.4
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    • pp.333-339
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    • 1995
  • The reduction and diffusion process(R-D process) is an economical way to produce the functional materials which contain rare-earth elements and has been applied to the production of rare-earth magnet meterials($SmCo_5$, $Nd_{15}Fe_{77}B_8$), magneto-optical(MO) target materials and hydrogen storage alloy, etc. However, because of difficult to control of the final composition, the R-D process has not been applied to production of the 2-17 type rare earth permanent magnet materials which contain several elements. Therefore, this work was as a basic study for the production of the 2-17 type rare earth permanent materials with composition $Sm(Co_{0.72}Fe_{0.21}Cu_{0.05}Zr_{0.03})_{7.9}$ by the R-D process, the following were mainy examined ; the amount of metallic calcium as a reductant, homogenization condition of the alloy after the R-D reaction, masuring of magnetic properties of the sample after step aging. The sample prepared by the R-D process contained a little more oxygen than that prepared by the melting method, however, showed almost the same magnetic properties.

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Phase Stability and Plasma Erosion Resistance of La-Gd-Y Rare-earth Oxide - Al2O3 Ceramics (La-Gd-Y 희토류계 산화물-알루미나 세라믹스의 상안정화 영역과 내플라즈마 특성)

  • Kim, Kyeong-Beom;Lee, Sung-Min
    • Journal of the Korean Ceramic Society
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    • v.47 no.6
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    • pp.540-545
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    • 2010
  • In this study, we have investigated new plasma resistant materials with less usage of rare-earth oxides than $Y_2O_3$ which is currently used in the semiconductor industry. We observed the stability ranges of $(Gd{\cdot}Y)_3Al_5O_{12}$ and $(La{\cdot}Y)Al_{11}O_{18}$ ternary systems, and measured their etch rates under typical fluorine plasma. $(Gd{\cdot}Y)_3Al_5O_{12}$ system showed an extensive solid solution up to 80 mol% gadolinium, but $(La{\cdot}Y)Al_{11}O_{18}$ showed a negligible substitution between rare-earth ions, which can be explained by the differences between the ionic radii. The etch rates depended on the total amount of rare-earth oxides but not on the substitution of the rare-earth ions. When the specimen was examined using XPS after the exposure to fluorine plasma, the strong surface fluorination was observed with a shift of the binding energy to higher energy.

Study on the Elution Behavior of Rare Earth Elements by Cation Exchange Resin (양이온 교환수지에 의한 희토류 원소의 용리현상에 관한 연구)

  • Ki-Won Cha;Sung-Wook Hong;Kyung-Hwan Kim
    • Journal of the Korean Chemical Society
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    • v.30 no.1
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    • pp.63-68
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    • 1986
  • Elution behavior of rare earth elements have been investigated with the EDTA solution as an eluent using cation exchange resin. Definite amount of the complexed rare earth ions at pH 8.4 is adsorbed through the cation exchanger containing cupric ion as a retaining ion and eluted with EDTA solution. The rare earth ions are eluted more rapidly in the above method than in the method in which uncomplexed rare earth ions are adsorbed on the cation exchange resin bed. In this method, the elution time and amount of eluent are saved but the resolution values also decreased a little. The elution order of complexed ion was determined in accordance with the stability constant of complexes with rare earth elements.

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Physicochemical Property of Borosilicate Glass for Rare Earth Waste From the PyroGreen Process

  • Young Hwan Hwang;Mi-Hyun Lee;Cheon-Woo Kim
    • Journal of Nuclear Fuel Cycle and Waste Technology(JNFCWT)
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    • v.21 no.2
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    • pp.271-281
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    • 2023
  • A study was conducted on the vitrification of the rare earth oxide waste generated from the PyroGreen process. The target rare earth waste consisted of eight elements: Nd, Ce, La, Pr, Sm, Y, Gd, and Eu. The waste loading of the rare earth waste in the developed borosilicate glass system was 20wt%. The fabricated glass, processed at 1,200℃, exhibited uniform and homogeneous surface without any crystallization and precipitation. The viscosity and electrical conductivity of the melted glass at 1,200℃ were 7.2 poise and 1.1 S·cm-1, respectively, that were suitable for the operation of the vitrification facility. The calculated leaching index of Cs, Co, and Sr were 10.4, 10.6, and 9.8, respectively. The evaluated Product Consistency Test (PCT) normalized release of the glass indicated that the glass satisfied the requirements for the disposal acceptance criteria. Furthermore, the pristine, 90 days water immersed, 30 thermal cycled, and 10 MGy gamma ray irradiated glasses exhibited good compressive strength. The results indicated that the fabricated glass containing rare earth waste from the PyroGreen process was acceptable for the disposal in the repository, in terms of chemical durability and mechanical strength.

Immobilization of Radioactive Rare Earth oxide Waste by Solid Phase Sintering (고상소결에 의한 방사성 희토류산화물의 고화)

  • Ahn, Byung-Gil;Park, Hwan-Seo;Kim, Hwan-Young;Lee, Han-Soo;Kim, In-Tae
    • Journal of Nuclear Fuel Cycle and Waste Technology(JNFCWT)
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    • v.8 no.1
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    • pp.49-56
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    • 2010
  • In the pyroprocessing of spent nuclear fuels, LiCl-KCl waste salt containing radioactive rare earth chlorides are generated. The radioactive rare earth oxides are recovered by co-oxidative precipitation of rare earth elements. The powder phase of rare eath oxide waste must be immobilized to produce a monolithic wasteform suitable for storage and ultimate disposal. The immobilization of these waste developed in this study involves a solid state sintering of the waste with host borosilicate glass and zinc titanate based ceramic matrix(ZIT). And the rare-earth monazite which synthesised by reaction of ammonium di-hydrogen phosphate with the rare earth oxides waste, were immobilzed with the borosilicate glass. It is shown that the developed ZIT ceramic wasteform is highly resistant the leaching process, high density and thermal conductivity.

Standardization of Rare Earth Elements in ISO TC 298 and Korea's Standardization Strategy (ISO TC 298에서의 희토류 분야 표준화 현황과 우리나라의 전략 및 과제)

  • Eom, Nu Si A;Abbas, Sardar Farhat;Aneeq, Haq Muhammad;Zarar, Rasheed Mohammad;Lee, Mi Hye;Kim, Bum Sung;Kim, Taek-Soo;Lee, Bin
    • Journal of Powder Materials
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    • v.26 no.3
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    • pp.251-257
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    • 2019
  • Since the ISO decided to deal with rare-earth elements at the $298^{th}$ Technical Committee (TC) in 2015, Korea has participated in four plenary meetings and proposed four standards as of June 2019. The status of ISO TC 298, the standards covered by the TC, and the standardization strategies of Korea are summarized. Korean delegations are actively engaged in WG2, which deals with recycling, proposing four standards for fostering the rare-earth recycling industry. However, the participation of domestic experts is still low compared with the increase in the number of working groups and the number of standards in TC 298. The aim of this article is to summarize the current status of ISO international standards related to rare-earth elements, to encourage relevant experts to participate in standardization, and to develop international standards that accurately reflect the realities of the industry.

Breakage and Surface Oxidation Characteristics of Waste NdFeB Magnet for Recycling (NdFeB 자석 재활용을 위한 파분쇄 및 그에 따른 표면 산화 특성 연구)

  • Kim, Kwanho;Kim, Gahee;Lee, Hoon;Kang, Jungshin
    • Resources Recycling
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    • v.28 no.3
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    • pp.26-34
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    • 2019
  • Due to the increasing demand of rare earth magnet for various application, it is predicted that the amount of waste rare earth magnet will increase sharply. The process of waste rare earth magnet recycling is mainly consisted of leaching and separation of rare earth element contained in the magnet. However, there is no study on the breakage characteristics of the waste rare earth magnet for production of magnet powder. Therefore, in this study, effective crushing/grinding process and breakage characteristics were investigated for waste rare earth magnet. In the case of jaw crusher, the particle size of magnet was effectively reduced without rapid oxidation. In ball mill grinding test, it was found that the grinding process was not performed properly at the early stage of grinding. Moreover, waste rare earth magnet showed very low specific rate of breakage(S) and high fraction of fine particle breakage distribution(B) compared to ordinary minerals. These results can be used as a basic data for developing crushing/grinding circuit of waste rare earth magnet.

Separation of Light Rare Earth Elements by Solvent Extraction with a Mixture of Cationic and Tertiary Amine (양이온 추출제와 아민의 혼합추출제에 의한 경희토류금속의 분리)

  • Lee, Man-Seung;Son, Seong Ho
    • Resources Recycling
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    • v.26 no.2
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    • pp.3-10
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    • 2017
  • Rare earth elements with high purity are demanded for the manufacture of advanced materials. Light rare earth elements are contained in domestic monazite and Ni-MH batteries. In this paper, solvent extraction to separate the light rare earth elements from hydrochloric acid leaching solutions of these resources was discussed. A mixture of cationic and tertiary amine shows synergistic effect on the extraction of LREEs and the extent of pH decrease during extraction is reduced. The effect of solution pH on the extraction and synergism was reviewed. Acquisition of the operation data with mixer-settler on the separation of LREEs by this mixture is necessary to develop a process.

Study on the Precision Analysis of Lanthanides by Atomic Emission Spectroscopy (I). Separation of Rare Earth Elements Using Ln-EDTA Eluent (원자발광광도법에 의한 란탄족 원소의 정밀분석에 관한 연구 (제 1 보) 희토류-EDTA 용리액에 의한 희토류 원소의 분리 회수)

  • Cha Ki-Won;Oh Jin-Hee;Ha Young-Gu;Kim Ha-Suck
    • Journal of the Korean Chemical Society
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    • v.36 no.5
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    • pp.692-696
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    • 1992
  • $NH_4^+ form cation exchange resin was used to separate one rare earth element from the rare earth mixture solution using Ln-EDTA eluent. Rare earth mixture solution was passed through the resin bed and eluted with 0.1M La-EDTA solution as an eluent. In here all the rare earth element except lanthanum ion are eluted and lanthanum ion absorbed in resin bed is eluted using 0.1M EDTA solution. If Ce-EDTA solution instead of La-EDTA solution was used as an eluent, all the rare earth element except cerium ion are eluted and cerium ion is eluted with 0.1M EDTA solution. This method can be applied to separate the individual rare earth element from the mixture. The separation mechanism is as follows: Absorption : 3RNH_4 + Ln^{3+} = R_3Ln + 3NH_4^+, La-EDTA elution : R_3Ln + La-Y- = R_3La + Ln-Y-, EDTA elution : R_3La + HY^3- = La_-Y + RH + 2R^-.$

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Separation of Rare Earth and Aluminium from the Dried Powder of Waste Cerium Polishing Slurry (세륨연마재 폐슬러리 건조분말로부터 희토류와 알루미늄의 분리)

  • Yoon Ho-Sung;Kim Chul-Joo;Kim Sung-Don;Lee Jin-Yaung;Cho Sung-Wook;Kim Joon-Soo
    • Resources Recycling
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    • v.12 no.5
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    • pp.10-15
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    • 2003
  • In this study, the separation of rare earths and aluminium from the dried powder of waste cerium polishing slurry was investigated. Since cerium oxide, 40% of rare earths, is the most stable state in rare earth, the dissolution of cerium oxide in acid solution is not easy. Therefore the dissolution process of cerium oxide by sulfation was examined in order to increase the recovery of rare earth. The rare earths could be separated from aluminum by double salt precipitation using sodium sulfate.