Experimental study of electrical conductivity of displacements of MPO3(M2WO4)–V2O5(M-Na, K)

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Resumo

The electrical conductivity of eutectic two-component oxide-salt compositions has been studied: KPO3–V2O5; NaPO3 is V2O5; Na2WO4 is V2O5 and K2WO4 is V2O5. The patterns of changes in the logarithm of conductivity and specific conductivity from the inverse value of temperature are revealed. It was revealed that the oxide-salt composition 38 mol % NaPO3–62 mol % V2O5 has the highest electrical conductivity, which is a promising electrolyte for the production of refractory metals, as well as as electrolytes in chemical current sources.

Sobre autores

A. Hasanaliev

Dagestan State Pedagogical University named after R. Gamzatov; Scientific Research Institute for General and Inorganic Chemistry

Email: abutdin.rasulov@mail.ru
Makhachkala, Russia; Makhachkala, Russia

P. Hasanalieva

Dagestan State Pedagogical University named after R. Gamzatov

Autor responsável pela correspondência
Email: abutdin.rasulov@mail.ru
Makhachkala, Russia

A. Rasulova

Dagestan State Pedagogical University named after R. Gamzatov

Email: abutdin.rasulov@mail.ru
Makhachkala, Russia

Bibliografia

  1. Расулов А.И., Гаматаева Б.Ю., Гасаналиев А.М. и др. // Расплавы. 2006. № 6. С. 61.
  2. Расулов А.И., Гасаналиев А.М., Мамедова А.К., Гаматаева Б.Ю. // Журн. Физ. химии. 2015. Т. 89. № 4. С. 648. [Rasulov A.I., Gasanaliev A.M., Mamedova A.K., Gamataeva B.Y. // Rus. J. of Physical Chem. A. 2015. Т. 89. № 4. С. 634.]
  3. Taniuchi К., Kanai Т., Inoue A. // Sci. Repts. Tohohu. Niv. 1976. V. 26. № 2–3. P. 136.
  4. Делимарский Ю.К. Марков Б.Ф. Электрохимия расплавленных солей. М.: Металлургиздат, 1960. 326 с.
  5. Гасаналиев А.М., Расулов А.И., Гаматаева Б.Ю., Мамедова А.К. // Журн. физ. химии. 2012. Т. 86. № 2. С. 208. [Gasanaliev A.M., Rasulov A.I., Gamataeva B. Yu., Mamedova A.K. // Rus. J. of Physical Chemistry A. 2012. Т. 86. № 2. С. 154.]
  6. Танутров И.Н., Лямкин С.А., Свиридова М.Н. // Расплавы. 2020. № 2. С. 187.
  7. Такахиро Я. Способ получения металла и способ получения тугоплавкого металла, патент RU2 687 113 C2. МПК C2 5C7/00 (2006.01). https://patents.google.com/patent/RU2687113C2/ru
  8. Шабанов О.М. Строение и свойства переноса расплавленных галогенидов щелочных металлов: дис. … канд. хим. наук: 02.00.00. Свердловск, 1966. 129 с.

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