DISSOLUTION OF AMMONIUM PARATUNGSTATE TETRAHYDRATE IN AQUEOUS AMMONIA BEFORE AND AFTER LOW-TEMPERATURE CALCINATION

被引:9
|
作者
VANPUT, JW
DUYVESTEYN, WPC
LUGER, FGJ
机构
[1] Delft University of Technology, Department of Raw Materials Technology
关键词
D O I
10.1016/0304-386X(91)90018-H
中图分类号
TF [冶金工业];
学科分类号
0806 ;
摘要
Ammonium paratungstate tetrahydrate, APT.4H2O dissolves rather slowly in aqueous ammonia at room temperature. Dissolution at higher temperatures increases the rate of dissolution, but the amount of dissolved tungsten decreases due to the lower solubility of ammonia at higher temperatures which results in a lower pH of the solution. The rate of dissolution was found to be independent of the crystal size. It is therefore concluded that the rate-controlling step occurs in the solution, and is probably H2W124210- --> 2HW6O215-. Calcination of APT.4H2O in air, nitrogen and hydrogen/nitrogen mixtures, into an X-ray amorphous product, is shown to be one way to improve the dissolution rate and to increase the dissolved amount of APT.4H2O. The highest solubilities can be obtained by calcining APT.4H2O in air or nitrogen at temperatures ranging from 250 to 310-degrees-C for approximately 2 h. When the temperature is too low or the residence time is too short some crystalline APT.4H2O will still exist; WO3 is formed when the temperature is too high or the residence time too long. It is supposed that the large H2W12O4210- structure is broken during the calcination process.
引用
收藏
页码:1 / 18
页数:18
相关论文
共 50 条
  • [31] LOW-TEMPERATURE HEAT CAPACITY AND ENTROPY OF AMMONIUM TETRAMETAPHOSPHATE
    WAKEFIELD, ZT
    LUFF, BB
    SHERIDAN, RC
    JOURNAL OF CHEMICAL AND ENGINEERING DATA, 1971, 16 (02): : 195 - +
  • [32] INVESTIGATION OF THE LOW-TEMPERATURE PHASE OF SODIUM-POTASSIUM TARTRATE TETRAHYDRATE [RS]
    WLODARZ, M
    BRONOWSKA, W
    DZIEDZIC, J
    PHASE TRANSITIONS, 1987, 8 (04) : 316 - 316
  • [33] Study on Effect of Calcination and Ag Loading on Ag/TiO2 Catalyst for Low-Temperature Selective Catalytic Oxidation of Ammonia
    Guan, Bin
    Chen, Junyan
    Zhuang, Zhongqi
    Zhu, Lei
    Ma, Zeren
    Hu, Xuehan
    Zhu, Chenyu
    Zhao, Sikai
    Shu, Kaiyou
    Dang, Hongtao
    Zhu, Tiankui
    Huang, Zhen
    CATALYSIS LETTERS, 2025, 155 (01)
  • [34] Melting of low-temperature reduced cinder in calcination of nickel concentrate for anodes
    Miroevskij, G.P.
    Popov, I.O.
    Bryukvin, V.A.
    Paretskij, V.M.
    Tsvetnye Metally, 2001, (02): : 111 - 112
  • [35] Structure of manganese diacetate tetrahydrate and low-temperature methyl-group dynamics
    Nicolaï, B
    Kearley, GJ
    Cousson, A
    Paulus, W
    Fillaux, F
    Gentner, F
    Schröder, L
    Watkin, D
    ACTA CRYSTALLOGRAPHICA SECTION B-STRUCTURAL SCIENCE, 2001, 57 (01): : 36 - 44
  • [36] LOW-TEMPERATURE OXIDATION OF MONOSILANE BY OXYGEN IN THE PRESENCE OF AMMONIA
    VASILEVA, LL
    NENASHEVA, LA
    DULTSEV, FN
    KINETICS AND CATALYSIS, 1989, 30 (03) : 532 - 536
  • [37] Low-Temperature Decomposition of Ammonia Borane in the Presence of Titania
    Komova, O. V.
    Simagina, V. I.
    Odegova, G. V.
    Chesalov, Yu. A.
    Netskina, O. V.
    Ozerova, A. M.
    INORGANIC MATERIALS, 2011, 47 (10) : 1101 - 1106
  • [38] Water removal from ammonia by low-temperature filtration
    I. V. Vorotyntsev
    I. V. Kozyrev
    D. N. Shablykin
    Inorganic Materials, 2012, 48 : 267 - 271
  • [39] LOW-TEMPERATURE DYEING OF WOOL BY AMINE OR AMMONIA PRETREATMENTS
    HANNA, HL
    ABDOU, LA
    ELKHATIB, EM
    ABDELFATTAH, SH
    AMERICAN DYESTUFF REPORTER, 1985, 74 (07): : 42 - 44
  • [40] Low-temperature decomposition of ammonia borane in the presence of titania
    O. V. Komova
    V. I. Simagina
    G. V. Odegova
    Yu. A. Chesalov
    O. V. Netskina
    A. M. Ozerova
    Inorganic Materials, 2011, 47 : 1101 - 1106