Submit an Article
Become a reviewer
Vol 221
Pages:
661-667
Download volume:
RUS ENG
Article

Development and manufacturing cycle for potassium nitrate and phosphate producing by conversion method

Authors:
A. I. Alekseev1
B. A. Dmitrievskii2
About authors
  • 1 — Ph.D., Dr.Sci. professor Saint-Petersburg Mining University
  • 2 — Ph.D., Dr.Sci. professor, Director of Sciences NPO «Mineral»
Date submitted:
2015-11-07
Date accepted:
2016-01-10
Date published:
2016-10-24

Abstract

Analysis of the Russian market of potash mineral fertilizers in 2014 and forecast for 2015-2019 show [http://businesstat.ru/images/demo/potash_fertilizers_russia.pdf] that today the most widespread potash fertilizer is the potassium chloride. But chloride-free potassium-containing products are in the highest demand at the fertilizer market. One of possible solutions to this problem is recrystallization of the potassium chloride or potassium-containing mineral ores using nitrate-containing or phosphorus-containing salt products. The basis for justifying processing conditions for polymineral potassium-containing salt raw materials and salt mineral ores is the data on phase equilibria in multicomponent water-salt systems. Knowledge of the regularities of phase equilibria in multicomponent salt systems helps to develop optimal conditions for complex processing of polymineral natural and technical raw materials. Below it is present the results of technological calculations for processing potash mineral raw materials with account of the complex nature of its utilization. Based on the analysis of the solubility diagrams of mutual salt systems different cyclic processes for production of potassium dihydrogen phosphate and nitrate and sodium chloride from dihydrogen phosphate and sodium nitrate and potassium chloride by conversion method have been designed, and ways of these processes optimization have been proposed for reducing the cost of certain technical operations.

Область исследования:
(Archived) Metallurgy and concentration
Keywords:
potassium mineral raw materials solubility diagram dihydrogen phosphate potassium nitrate sodium chloride
10.18454/pmi.2016.5.661
Go to volume 221

References

  1. Abramov V.Ya., Alekseev A.I., Badal'yants Kh.A. Complex processing of apatite-nepheline raw materials. Мoscow: Metallurgiya. 1990, p.392 [in Russian].
  2. Alexeev A.I., Alexeev A.A. Chemistry of water. St. Petersburg: Khimizdat, 2007, p.884 [in Russian].
  3. Anosov V.Ya., Ozerov M.I., Fialko Yu.A. Fundamentals of physical and chemical analysis. Moscow: Nauka, 1976, p.504 [in Russian].
  4. Valyashko V.M. Principles of building phase diagrams for salt aqueous systems in wide temperature and pressure ranges. Zhurnal neorganicheskoi khimii. 1981. Vol.26. N 11, p.3044-3054 [in Russian].
  5. Viktorov M.M. Graphical calculations in technology of inorganic substances. Leningrad: Khimiya, 1972, p.464 [in Russian].
  6. Goroshenko Ya.G., Soliev L. Main methodology directions of physical and chemical analysis of complex and multicomponent systems (To 125th anniversary of N.S.Kurnakov). Zhurnal neorganicheskoi khimii. 1987. Vol.32. N 7, p.1-5 [in Russian].
  7. Dmitrevskii B.A. Graphical calculations on the basis of phase diagrams of salt systems. LTI. Leningrad, 1982, p.82 [in Russian].
  8. Dmitrevskii B.A. Properties, production and application of mineral fertilizers. St. Petersburg: Prospekt Nauki, 2013, p.326 [in Russian].
  9. Dmitrevskii B.A. Technology of inorganic substances. SPbGTI (TU). St. Petersburg, 2010, p.122 [in Russian].
  10. Dmitrevskii B.A., Jekeev M. Graphical calculations on the basis of phase diagrams of salt systems. YuKGU im. M.Auezova, Shymkent, 2016, p.125 [in Russian].
  11. Mazunin S.A, Chechulin V.L. Desalting as a physical and chemical basis for low-waste methods of potassium and ammonium phosphates production. Permskii gos. nats. issled. un-t. 2012, p.114 [in Russian].
  12. Posin M.E. Technology of mineral fertilizers. Leningrad: Khimiya, 1983, p.336 [in Russian].
  13. Sokolovskii A.A., Yakhontova E.L. Application of equilibrium solubility diagrams in technology of mineral salts. Мoscow: Khimiya, 1982. p.264 [in Russian].
  14. Soliev L., Goroshenko Ya.G. Study of conditions of sulfate potassium salts crystallization from chloride-sulfate solutions. Khimicheskaya tekhnologiya. 1982. N 3, p.17-19 [in Russian].
  15. Solov'ev A.P., Balashova E.F., Osipov A.K. On desalting phenomena in triple aqueous systems from sodium, potassium and ammonium chlorides and phosphates. Interaction between potassium, magnesium and ammonium chlorides and their nitrates and phosphates. Mordovskii gos. un-t. Saransk, 1977, p.42-45 [in Russian].
  16. Zdanovskis A.B., Solov'eva E.F., Lagowska E.I. et al. Experimental data on solubility of multi-component salt aqueous systems. In 2 vol. 4 books. St. Petersburg: Khimizdat, 2003. Vol.1. Book 1, p.608 [in Russian].

Similar articles

Measurement of the thickness of the sprayed nickel coatings on large-sized cast iron products
2016 V. A. Syasko
Development of import subtituting technologies for increasing productivity of sintering machines and strength of agglomerates
2016 V. L. Trushko, V. A. Utkov
А analysis and classification of resource saving technologies for reproduction of mineral resources оf titanium industry
2016 S. V. Fedoseev, Dzhada Sanneris, M. V. Tochilo
Serpentines of chrysotile – pecoraite series as genesis indicators of nickel deposits in the Urals weathering crusts
2016 I. V. Talovina, G. Khaide
Control systems of sintering processes in rotary tubular kilns with using of thermovisors scanning
2016 Yu. V. Sharikov, T. O. Koiranen
Russia and Germany: new opportunities for cooperation in the primary sector
2016 I. B. Sergeev, O. Yu. Lebedeva