Technologies for the Beryllium Concentrate and Beryllium Hydroxide Production from Phenakite–Bertrandite Mineral Raw Material

被引:0
|
作者
V. E. Matyasova
Yu. M. Trubakov
A. V. Lavrent’ev
A. V. Kurkov
机构
[1] Leading Research Institute of Chemical Technology,
[2] Fedorovsky All-Russian Scientific Research Institute of Mineral Resources,undefined
来源
Journal of Mining Science | 2018年 / 54卷
关键词
Phenakite; bertrandite; fluorite; flotation; beryllium concentrate; autoclave; electrolysis bath; fluorite concentrate; cation-exchange membrane; hydrolysis; beryllium hydroxide;
D O I
暂无
中图分类号
学科分类号
摘要
The results of the research and tests in production of beryllium concentrate of the superior and commercial grades as well as the marketable fluorite concentrate from ore and waste of the Ermakovsky deposit are presented. The ore and waste contain a mineral complex which is hard to separate using fat acids and features an increased content of fluorite. Production of the marketable flotation concentrate is based on fixation of calcium in pulp using sodium carbonate, caustic soda and sodium tripolyphosphate. The autoclave-membrane electrolysis technology is developed for the production of marketable beryllium hydroxide from beryllium concentrates. The technology consists of a set of successive operations: dissociation in autoclave, separation of the suspension after the autoclave dissociation, removal of admixtures from the solutions, membrane electrodyalysis of alkaline solutions, hydrolysis of sodium beryllate and separation of beryllium hydroxide. The processing data of the test beryllium concentrates obtained using the autoclave-membrane electrolysis technology are given.
引用
收藏
页码:831 / 839
页数:8
相关论文
共 50 条
  • [31] Release of beryllium from mineral ores in artificial lung and skin surface fluids
    Matthew G. Duling
    Aleksandr B. Stefaniak
    Robert B. Lawrence
    Steve J. Chipera
    M. Abbas Virji
    Environmental Geochemistry and Health, 2012, 34 : 313 - 322
  • [32] A NEW POLYTYPE OF TAAFFEITE - A RARE BERYLLIUM MINERAL FROM GRANULITES OF CENTRAL AUSTRALIA
    HUDSON, DR
    WILSON, AF
    THREADGO.IM
    MINERALOGICAL MAGAZINE AND JOURNAL OF THE MINERALOGICAL SOCIETY, 1967, 36 (279): : 305 - &
  • [33] Evaluating the properties of organic and mineral sludge as a raw material for the production of sorption material
    Sapronova, Zh A.
    Makridina, Yu L.
    Starostina, I., V
    Spirin, M. N.
    Fomina, E., V
    INTERNATIONAL CONFERENCE ON WORLD TECHNOLOGICAL TRENDS IN AGRIBUSINESS, 2021, 624
  • [34] Production of powders and sintered materials form mineral raw material
    Vinogradov, V.V.
    Ablesimov, N.E.
    Poroshkovaya Metallurgiya, 1992, (01): : 6 - 10
  • [35] Plasmochemical technologies for processing of hydrocarbonic raw material with syngas production
    Rutberg, PG
    Bratsev, AN
    Ufimtsev, AA
    HIGH TEMPERATURE MATERIAL PROCESSES, 2004, 8 (03): : 433 - 445
  • [36] PRODUCTION OF LITHIUM, BERYLLIUM, AND BORON FROM BARYON INHOMOGENEOUS PRIMORDIAL NUCLEOSYNTHESIS
    THOMAS, D
    SCHRAMM, DN
    OLIVE, KA
    MATHEWS, GJ
    MEYER, BS
    FIELDS, BD
    ASTROPHYSICAL JOURNAL, 1994, 430 (01): : 291 - 299
  • [37] Resource-Saving Technology for Nepheline Concentrate Production from High-Silica Raw Material
    V. V. Marchevskaya
    T. N. Mukhina
    Journal of Mining Science, 2022, 58 : 619 - 627
  • [38] Resource-Saving Technology for Nepheline Concentrate Production from High-Silica Raw Material
    Marchevskaya, V. V.
    Mukhina, T. N.
    JOURNAL OF MINING SCIENCE, 2022, 58 (04) : 619 - 627
  • [39] K/π production ratios from 450 GeV/c protons on beryllium
    Ambrosini, G
    Arsenescu, R
    Bernier, K
    Biino, C
    Bonesini, M
    Bonivento, W
    Borer, K
    Brooijmans, G
    Catanesi, MG
    Collazuol, G
    Daniels, D
    Dittus, F
    Elsener, K
    Godley, A
    Grant, A
    Gregoire, G
    Guglielmi, A
    Kabana, S
    Klingenberg, R
    Lehmann, G
    Linden, T
    Linssen, L
    Marchionni, A
    Mishra, SR
    Moffitt, L
    Moser, U
    Palladino, V
    Pietropaolo, F
    Pretzl, K
    Pullia, A
    Radicioni, E
    Ragazzi, S
    Schacher, J
    Sergiampietri, F
    Soler, FJP
    Stoffel, F
    Tabarelli de Fatis, T
    Terranova, F
    Tovey, SN
    Tsesmelis, E
    Weber, M
    PHYSICS LETTERS B, 1998, 420 (1-2) : 225 - 232
  • [40] [BeBr2(SMe2)2], a versatile starting material for beryllium chemistry -: One pot synthesis from beryllium powder
    Himmel, Daniel
    Krossing, Ingo
    ZEITSCHRIFT FUR ANORGANISCHE UND ALLGEMEINE CHEMIE, 2006, 632 (12-13): : 2021 - 2023