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Plasma generation for hydrogen production

https://doi.org/10.15518/isjaee.2025.01.115-129

Abstract

In the art investigation materials of charged particles and electromagnetic waves interactions in plasma setup Magnetic V dipole developing by authors are presented. It was experimentally distinguished that current increasing in specially formed electromagnetic resulting field arises as result of parametric resonance and phase transformations electric energy, kinetic energy of charged particles and magnetic energy. Current loop is formed, where start bifilar current of heteropolar charged particles. It leads also to current increasing with each plasmoid rotation cycle around system center of mass.
Method and the setup were successfully applied for destruction of crystal lattice of minerals, industrial wastes with separation of useful components and metal extraction. Method of plasma resonant electrolysis was developed, and experiments for sedimentation of gold containing pulp carried out. Possibility of gaseous hydrogen producing with application of high frequency plasma resonant electrolysis was experimentally indicated. The process can be built in the MVD setup.

About the Authors

V. G. Kolesnik
Institute of Nuclear Physics of the Academy of Sciences of the Republic of Uzbekistan
Uzbekistan

Kolesnik Viktor Grigoryevich -  senior research officer, Ph.D., head of scientific group 

Uzbekistan, Tashkent, Mirzo-Ulugbek district, urban village Ulugbek 



E. V. Urusova
Institute of Nuclear Physics of the Academy of Sciences of the Republic of Uzbekistan
Uzbekistan

Urusova Elena Viktorovna - senior research officer

Uzbekistan, Tashkent, Mirzo-Ulugbek district, urban village Ulugbek 

+998-95-100-19-35; +998-99-857-36-37 



References

1. Kolesnik V. G. et al. Direct-action accelerators and microwave generators based on them / Tashkent: FAN. – 1990. – P. 260.

2. Solovyov M. I., Kolesnik V. G., Gulyamov U. G. Device for dosing and controlling high-energy charged particles / OIPOTZ No. 44. USSR Author's Certificate No. 405186. – 1973.

3. Kolesnik V. G. Dosing high-energy charged particles on bubble chambers / diss. Cand. Sci. (Eng.). – Dubna, JINR. – 1975.

4. Vodopyanov F. A., Kolesnik V. G. et al. High-voltage direct-action electron accelerator SILHOUETTE // Proceedings of RTI of the USSR Academy of Sciences. – Moscow. – 1982. – No. 42. – Pр. 33-42.

5. Kolesnik V. G., Urusova E. V. Method of energy conversion and device for its implementation / Patent for invention No. IAP 02184 (RUz). – 2002.

6. Kolesnik V. G., Urusova E. V. Electronic device for energy conversion / USSR Author's Certificate No. 1819044. – 1990.

7. Tsitovich P. A., Kolesnik V. G. On the active properties of an autonomous beam of charged particles / Reports of the Academy of Sciences (DAN) of the UzSSR. – 1987. – No. 7. – Pр. 24-29.

8. Gelfeld T. M., Gelfeld A. Yu., Kolesnik V. G. On the motion of particles in electromagnetic fields / DAN UzSSR. – 1988. – No. 10. – Pр. 26-29.

9. Radchenko R. V., Mokrushin A. S., Tyulpa V. V. Hydrogen in power engineering: a textbook / Ekaterinburg: Publishing house of the Ural. University. – 2014. – 229 p.

10. Kravchenko A. V., Kublanovsky V. S., Pivovarov A. A., Pustovoytenko V. P. Low-temperature plasma electrolysis: Theory and practice / Monograph // Dnepropetrovsk: OOO «Accent PP». – 2012. – 223 p.

11. Kolesnik V. G., Urusova E. V.Study of steelmaking waste processing using microwave field / Ferrous metals. – 1999. – No. 5. – Pр. 10-11.

12. Kolesnik V. G., Urusova E. V., Basova E. S. Method of releasing noble, rare and non-ferrous metals from complex compounds of minerals, sludge and waste / Patent of the Republic of Uzbekistan No. IAP 03386 dated 08.05.2007.

13. Kolesnik V. G., Urusova E. V. Device for complex opening and change of structure of raw materials with metal elements / Patent of the Republic of Uzbekistan for invention No. IAP 02287. – 2003.

14. Kolesnik V. G., Urusova E. V. et al. Method for processing ash and slag waste / Patent of the Republic of Uzbekistan No. IAP 03868 dated 20.01.2009

15. Kolesnik V. G., Urusova E. V. Method for extracting tungsten from wolframite concentrates / Patent for invention No. IDP 05311. (RU). – 2002.

16. Kolesnik V. G., Urusova E. V. Method for complex extraction of molybdenum, rhenium and osmium from molybdenum concentrates / Patent for invention No. IDP 05310. (RUz). – 2002.

17. Kolesnik V. G., Urusova E. V. Method for enrichment of iron-containing ores / Patent for invention No. IDP 05193 (RUz). – 2002.

18. Melamud S. G., Kolesnik V. G., Urusova E. V. et al. Study of magnetization of iron-containing ores with microwave field / Ferrous metals. – 2001. – No. 11-12. – Pр. 25-28.

19. Mukhtarova N. N., Kolesnik V. G., Urusova E. V. et al. Study of the influence of ultra-high-frequency electromagnetic field on molybdenum concentrate / Non-ferrous metals. – 2001. – No. 12. – Pр. 99-102.

20. Kolesnik V. G., Urusova E. V., Basova E. S. et al. Study of electromagnetic transformations of mineral raw materials in microwave plasma // Uzbek Physical Journal. – 2013.– No. 1-2. – T. 15. – Pр. 101-111.

21. Kolesnik V. G., Urusova E. V. et al. Production of ultrafine SiO2 powder / Advanced materials // Moscow. – 2011. – No. 12. – Pр 504-509.

22. Kolesnik V. G., Urusova E. V. et al. Method for production of ultrafine-grained titanium dioxide by resonant interaction in electromagnetic fields / Letters on materials. – Moscow. – 2013. – Vol. 3. – Pр. 141-144. www.lettersonmaterials.com.

23. Yuldashev B. S., Kolesnik V. G., Basova E. S., Urusova E. V. Application of microwave field in grinding sulfide gold-bearing ores / Non-ferrous metals. – 2003. – № 2. – Pр. 16-18.

24. Khvan A. B., Kolesnik V. G., Urusova E. V. et al. Study of the possibility of using microwave field for ore preparation processes in gold production // Mining Bulletin of Uzbekistan. – 2002. – № 2. – Pр. 56-60.

25. Verbitskii I. L., Kovalenko A. D., Kolesnik V. G. Scheme of parametric energy conversion / JINR Communications R9-90-371. – Dubna. – 1990.

26. Verbitskii J. L. On the method of solving the Helmholtz equation I. / J. Math. Phys. – 1981 – V. 33. – № 1. – Pp. 32-38; II item – 1982. – V .23. – № 4. – Рp. 510-516.

27. Verbitsky I. L. Generalized projection method / DAN SSSR. – 1987. – № 1. – T. 294. – Рp. 72-75.

28. Kolesnik V. G., Urusova E. V. et al. Method of obtaining nuclear energy / Patent for invention No. IAP 03701. (RUz). – 2008.

29. Kolesnik V. G., Urusova E. V., Basova E. S. et al. Method of generating energy of compensated charge / Patent for invention No. IAP 06510. (RUz). – 2021.

30. Kolesnik V. G., Urusova E. V. Method of accelerating charged particles and accelerator of charged particles / Patent of the Republic of Uzbekistan No. IAP 02121 dated 06.11.2001.

31. Abramenko N. I., Gavrilov N. M., Gromov E. V., Nesterovich A. V., Semenov V. V., Shalnov A. V. Study of electron accumulation in a system with a longitudinal magnetic field / J. Tech. Phys. – 1984. – Issue I. – Vol. 54. – Pр. 93-96.

32. Katsman Yu. A., Benevolensky D. M. Nonlinear klystron grouping of a relativistic electron beam in an accelerating field / Abstracts of reports of the X All-Union. Scientific Conf. on Microwave Electronics. – Minsk. – 1983. – P. 228.

33. Katsman Yu. A., Benevolensky D. M. Nonlinear theory of grouping in a relativistic klystron / Oscillatory processes in charged particle flows // L: SZPI. – 1978. – Pр. 79-86.

34. Alimova K. A., Kolesnik V. G. et al. Selection of parameters of the matching device // Izvestiya AN UzSSR, Ser. phys.-mat. nauk. – 1986. – No. 4. – Pр. 21-24.

35. Kontonistov A. A. Effect of excitation and development of explosive electron emission in a microwave field / Letters to ZhTF. – 1986. – Issue. 9. – V. 12.

36. Artsimovich L. A., Lukyanov S. Yu. Motion of charged particles in electric and magnetic fields. – Moscow.: «Nauka». – 1978.

37. Polak L. S., Sinyarev G. B., Slovetsky D. I., et al. Plasma chemistry / AN SSSR, Sib. Department, Institute of Thermophysics. – 1991. – Vol. 3. – P. 324.

38. Landau L. D., Livshits E. M. Field Theory / M.: Science. – 1967.

39. Charles Slickter. Fundamentals of Magnetic Resonance Theory / Translation, second edition, edited by G. V. Skrotsky // M.: Mir Publishing House. – 1981. – P. 447.

40. Shavrov V. G., Shcheglov V. I. Ferromagnetic Resonance under Orientational Transition Conditions / M.: FIZMATLIT. – 2018. – P. 686.

41. Kolesnik V. G., Urusova E. V., Basova E. S. et al. Method for obtaining silicon and titanium by generating electromagnetic interactions between SiO2 and FeTiO3 particles and magnetic waves / European Patent No 2698196, 2014. (10 countries: Germany, GB, Belgium, Switzerland, Liechtenstein, France, Italy, Netherlands, Sweden, Turkey); Patent of Ukraine #107875, 2015; Patent of South Korea #10-1622750, 2016; Patent of China #1934636, 2016; Patent of the Republic of Uzbekistan No. IAP 05421, 2017.


Review

For citations:


Kolesnik V.G., Urusova E.V. Plasma generation for hydrogen production. Alternative Energy and Ecology (ISJAEE). 2025;(1):115-129. (In Russ.) https://doi.org/10.15518/isjaee.2025.01.115-129

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