Submit an Article
Become a reviewer
Vol 203
Pages:
120-127
Download volume:
RUS
Article

Methods fine purification of circulating water for industry

Authors:
Yu. V. Sharikov1
R. D. Pavlov2
About authors
  • 1 — Ph.D., Dr.Sci. professor National Mineral Resources University (Mining University)
  • 2 — Ph.D. associate professor National Mineral Resources University (Mining University)
Date submitted:
2012-10-21
Date accepted:
2012-12-07
Date published:
2013-04-30

Abstract

Main features of purification of recycled water of industrial enterprises have been considered. It has been shown that using membrane methods of purification allows to remove of dissolved metals salts from recycled water and to bring their concentration to standardized level. Using this method doesn’t require such large energy consumption as evaporation method. The analyze of membrane purification methods have been fulfilled. Mathematical model of this process has been developed. The solution algorithm has been developed and some results of simulation of membrane purification have been presented.

Область исследования:
(Archived) Environmental protection technologies, research, processing and utilization of technogenic structures, recycling of ...
Keywords:
recycled water membrane methods purification sedimentations treatment mathematical modelling
Go to volume 203

References

  1. Bredikhin M.N. Membrane water treatment methods // Innovation. Technology. 2007. No7. P. 20-23.
  2. Brock T. Membrane filtration: Trans. from English. Moscow, 1987. 464 p.
  3. Dubyago V.P., Perepechkin L.P., Katalevsky E.E.Polymeric membranes. Moscow, 1981. 232 p.
  4. Duhin S.S., Sidorova M.P., Yaroshchuk A.E. Electrochemistry and reverse osmosis membranes. Leningrad, 1991. 192 p.
  5. Dytnersky Yu.I. Baromembranes processes. Theory and Design. Moscow, 1986. 272 p.
  6. Dytnersky Yu.I. Processes and apparatuses of chemical technology: Textbook for high schools. Moscow, 1995. Part 2. 368 p.
  7. Zubkov B.V., Chumakov S.V. Encyclopedic dictionary of young technology. Moscow, 1988. 464 p.
  8. Lazarev S.I. Methods electrical barometric membrane separation solutions. Tambov, 2007. 83 p.
  9. Lazarev S.I. Calculated electrical barometric membrane devices. Tambov, 2007. 80 p.
  10. Mulder M. Introduction to membrane technology: Trans. from English. Moscow, 1999. 513 p.
  11. Pavlov R.D. Process control system membrane treatment of industrial water circulating metallurgical enterprises (for example, «Metakhim »): Dissertation for the degree of candidate of technical sciences. Saint-Petersburg, 2010. 22 p.
  12. Application of low pressure reverse osmosis membranes for desalination of Caspian Sea – the temperature factor / A.V.Desyatov, A.V. Aseev, A.E.Baranov, N.N.Kazantseva, O.A.Podymova, I. A.Prokhorov // Water treatment, water conditioning, water supply. 2008. N 1. P.17-28.
  13. Timasheff S.F. Physical chemistry of membrane processes. Moscow, 1988. 240 p.
  14. Cherkasov S. Reverse Osmosis // Journal S.O.K. 2005. N 11. P. 18-24.
  15. Shaposhnik V.A. Membrane separation techniques of mixtures // Soros educational Journal. 1999. N 9. P. 27-32.

Similar articles

Assessment and reduction of negative impact landfills for disposal of industrial and domestic waste environmental
2013 T. A. Petrova
The improvement of the wastewater treatment system at the apatite-nepheline factory n 2
2013 M. A. Pashkevich, M. Sh. Barkan, F. S. Nachevkin
Mineral forms of the finding of toxic elements in granitoids
2013 I. M. Gembitskaya, V. I. Alekseev, V. V. Gembitskii, M. V. Gvozdetskaya
Estimation of the condition of the soil-vegetative complexes having stress at atmospheric impact
2013 D. S. Korelskiy, M. A. Chukaeva
Estimation of influence of sailings of dead rock on the condition of atmospheric air at open-cast mining iron ore of deposits located in northern regions
2013 V. S. Kuznetsov
Seniority fixing in north regions: map-related project with estimation of climatic factors
2013 I. B. Movchan, A. A. Yakovleva, S. I. Prokopova