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Russian Multilayer Metal–Ceramic Membranes: Structure, Application, and Perspectives

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Abstract

The main trends in modifying the structure of bilayer metal-ceramic membranes developed in Russia to fabricate next-generation multilayer metal–ceramic membranes (MMCM) with a wide range of pore sizes from 0.4 to 100 nm and a narrow pore size distribution have been considered. The examples of MMCM structures of various morphologies, the possibilities of further approach to their modification, and possible applications have been shown. Schematic diagrams of existing and prospective membrane units based on metal–ceramic membranes have been demonstrated. The advantages and promising areas of application of such units are discussed.

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REFERENCES

  1. V. N. Lapovok, V. I. Novikov, and L. I. Trusov, RU Patent No. 2 040 371 (1995).

  2. L. I. Trusov, V. N. Lapovok, and V. I. Novikov, US Patent No. 5 364 586 (1994).

  3. L. I. Trusov, V. P. Fedotov, and V. I. Novikov, US Patent No. 5 830 340 (1998).

  4. V. I. Novikov, V. S. Vasil’kovskii, A. B. Senyavin, and A. B. Petunin, RU Patent No. 2 424 083 (2011).

  5. V. I. Novikov and E. M. Solov’ev, RU Patent No. 2 579 713 (2016).

  6. V. I. Novikov, A. I. Sharapaev, A. B. Petunin, and A. G. Muradova, Khim. Tekhnol. 16, 667 (2015).

    Google Scholar 

  7. www.aspect.ru/.

  8. L. I. Trusov, Krit. Tekhnol. Membr., No. 9, 20 (2001).

  9. B. G. Ershov, V. M. Gelis, V. V. Milyutin, et al., Vopr. Radiat. Bezopasn., No. 4, 36 (2009).

  10. R. A. Penzin, V. M. Gelis, L. I. Trusov, et al., RU Patent No. 2 172 032 (2000).

  11. V. M. Gelis, Yu. V. Glagolenko, N. N. Davidenko, et al., RU Patent No. 2 223 923 (2002).

  12. E. V. Khataibe, A. N. Nechaev, L. I. Trusov, et al., Krit. Tekhnol. Membr., No. 16, 3 (2002).

  13. www.redstaratom.ru/.

  14. E. V. Khataibe, A. N. Nechaev, V. V. Berezkin, et al., Krit. Tekhnol. Membr., No. 17, 3 (2003).

  15. M. V. Tsodikov, V. V. Teplyakov, M. I. Magsumov, et al., Kinet. Catal. 47, 25 (2006).

    Article  CAS  Google Scholar 

  16. V. L. Tarasov, L. I. Trusov, and V. P. Fedotov, RU Patent No. 2 381 824 (2007).

  17. I. I. Ivanova, L. I. Trusov, E. E. Knyazeva, et al., RU Patent No. 2 322 390 (2006).

  18. L. I. Trusov and V. P. Fedotov, RU Patent No. 2 312 702 (2006).

  19. L. I. Trusov and V. P. Fedotov, RU Patent No. 2 312 703 (2006).

  20. I. I. Ivanova, L. I. Trusov, E. E. Knyazeva, et al., RU Patent No. 2 382 671 (2008).

  21. D. A. Fedosov, A. V. Smirnov, E. E. Knyazeva, et al., Krit. Tekhnol. Membr., No. 44, 28 (2009).

  22. D. A. Fedosov, A. V. Smirnov, E. E. Knyazeva, and I. I. Ivanova, Pet. Chem. 51, 657 (2011).

    Article  CAS  Google Scholar 

  23. V. S. Mitin, V. I. Novikov, A. I. Sharapaev, and A. G. Muradova, Pet. Chem. 56, 920 (2016).

    Article  CAS  Google Scholar 

  24. V. M. Ievlev, A. I. Dontsov, V. I. Novikov, et al., Metally, No. 5, 70 (2018).

    Google Scholar 

  25. G. A. Dibrov, V. V. Volkov, V. P. Vasilevsky, et al., J. Membr. Sci. 470, 439 (2014).

    Article  CAS  Google Scholar 

  26. V. V. Omel’chuk, O. V. Dorodnoi, L. F. Barmin, et al., in Proceedings of the 4th International Scientific-and-Technical Conference on Safety of VVER Nuclear Power Plants (Gidropress, Podolsk, 2006), p. 68.

  27. V. I. Novikov, A. S. Romanov, A. S. Filimonenko, and V. S. Vasil’kovskii, RU Patent No. 1 23 343 (2012).

  28. V. I. Novikov, A. S. Romanov, A. S. Filimonenko, et al., RU Patent No. 102 531 (2011).

  29. E. M. Solov’ev, V. I. Novikov, and V. V. Chelnokov, et al., RU Patent No. 145 027 (2014).

  30. M. G. Berengarten, E. A. Belyaev, V. V. Vorob’ev, and V. I. Novikov, Demanding Scientific and Technical Problems of Ensuring Chemical Safety of Russia: For the 80th Anniversary of the Birth of the Lenin Prize Winner, Academician of the Russian Academy of Sciences, Lieutenant General Anatoly Demyanovich Kuntsevich: Proceedings of II Russian Conference with International Participation, Ed. by A. V. Roshchin (MTsNIP, Kirov, 2017), p. 78 [in Russian].

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Correspondence to A. Yu. Alentiev.

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Translated by S. Zatonsky

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Novikov, V.I., Kryachko, V.V., Tarasov, Y.I. et al. Russian Multilayer Metal–Ceramic Membranes: Structure, Application, and Perspectives. Membr. Membr. Technol. 1, 127–136 (2019). https://doi.org/10.1134/S251775161903003X

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