Preview

Alternative Energy and Ecology (ISJAEE)

Advanced search

TO THE FEATURE OF BEHAVIOR OF HYDROGEN IN THE METALS AND ALLOYS, GOT ELECTROLYSIS, AND POSSIBILITY OF THEIR APPLICATION IN ALTERNATIVE ENERGY SOURCES

https://doi.org/10.15518/isjaee.2015.21.012

Abstract

The question of the role of hydrogen energy in the development of the welfare society can be seen in only one aspect, namely the decent life of a community can only be achieved with full use of hydrogen technologies. The potential of hydrogen is far from being exhausted in the traditional energy sector. As the successful solution of the problems of hydrogen storage and the creation of highly efficient fuel cells will be implemented absolutely reliable backup system own needs when abnormal modes of operation of the power plant. One of the limiting factors in the development of hydrogen energy are existing storage technologies (cryogenic and bottled) and energy consuming unsafe.

About the Authors

A. V. Zvyagintseva
Voronezh state technical university, Voronezh, Russia
Russian Federation

candidate of technical sciences, associate professor, Department of Chemistry of the Faculty of Radio Engineering and Electronics



Yu. N. Shalimov
ОJSC research and production Association " LUTCH", Voronezh, Russia
Russian Federation

doctor of Technical Sciences, Professor of electromechanical systems and electricity VSTU. Directs the laboratory of experimental energy saving technologies



M. V. Lutovats
Faculty of business and industrial management Belgrade, Serbia
Czechoslovakia

acad., professor, docent, Faculty of Business and Industrial Management



References

1. Gamburg D.Ju., Semenov V.P., Dubovkin N.F., Smirnov L.N.; Pod red. D.Ju. Gamburga, N.F. Dubovkina. Vodorod. Svojstva, poluchenie, hranenie, transportirovanie, primenenie. [Hydrogen. Properties, production, storage, transport, use.] Ref. Book. Moscow, Himija Publ., 1989.

2. Oudriss A., Creus J., Bouhattate J., Conforto E., Berziou C., Savall C., Feaugas X. Grain size and grain-boundary effects on diffusion and trapping of hydrogen in pure nickel // Acta Materialia. 2012. № 60. P. 6814-6828.

3. Sudzuki K., Fudzimori H., Hasimoto K. Amorfnye metally. [Amorphous metals.] Moscow: Metallurgija Publ., 1987.

4. Fromm E., Uhcida H. Surface phenomena in hydrogen absorption kinetics of metals and intermetallic compounds // J. of Less-Common Metals. 1987. V. 131. P. 1-12.

5. Chene I. Contribution of cathodic Charging to hydrogen storage in metal Hydrides // J. of Less-Common Metals. 1987. V. 131. P. 337-347.

6. Libowitz G.G., Maeland A.J. Hydide formation by BCC solid solution alloys // Materials Science Forum. 1988. V. 31. P. 176-196.

7. Povetkin V.V., Kovenskij I.M. Struktura jelektroliticheskih pokrytij [The structure of the electrolytic coatings]. Moscow: Metallurgija Publ., 1989.

8. Grankin Je.A., Shalimov Ju.N., Ostrovskaja E.N. The dependence of internal friction electrolytic chromium by modes electrocrystallisation // Al'ternativnaja jenergetika i jekologija [Alternative Energy and Ecology]. 2004. № 7. P. 12-18. (in Russian)

9. Novik A., Berri B. Relaksacionnye javlenija v kristallah [Relaxation phenomena in crystals]. Pod red. Je.M. Nadgornogo, Ja.M. Sojfera. Moscow: Atomizdat Publ., 1975.

10. Krishtal M. A., Piguzov Ju. V., Golovin S. A. Vnutrennee trenie v metallah i splavah [Internal friction in metals and alloys]. Moscow: Metallurgija Publ., 1964.

11. Aleksandrov L.N., Mordjuk V.S. Vnutrennee trenie i fizicheskie svojstva tugoplavkih metallov. [Internal friction and physical properties of refractory metals.] Saransk: Mordovian book publisher Publ., 1965.

12. Zvyagintseva A.V. Interaction peculiarities of hydrogen and Ni-B galvanic alloys. Carbon Nanomaterials in Clean Energy Hydrogen Systems. Springer, 2008. P. 437-442.

13. Zvyagintseva A.V., Shalimov Yu.N. On the Stability of Defects in the Structure of Electrochemical Coatings // Surface Engineering and Applied Electrochemistry. 2014. Vol. 50, No. 6. P. 466-477.

14. Zvjaginceva A.V. The dependence of the interaction of metals with hydrogen from the structure of electrochemical systems. Uchenye zapiski Tavricheskogo nacional'nogo universiteta im. V.I. Vernadskogo. Serija «Biologija, himija» [Scientific notes of Taurida National University. Vernadsky. Series «Biology, chemistry»]. 2013. Vol. 26 (65). № 4. P. 259-269. (in Russian)

15. Vlasov N.M., Zvjaginceva A.V. Matematicheskoe modelirovanie vodorodnoj pronicaemosti metallov [Mathematical modeling of the hydrogen permeability of metals]. Voronezh: Voronezhskiy Gos.Univ. Publ., 2012.

16. Zvyginceva A.V., Morozov O.M., Zhurba V.I., Progolaieva V.O. Effects of Deuterium Concentration on Deuterium Desorption Temperature Range from Ni-In Composites // Scientific Journal. Proceedings of the international conference. nanomaterials: applications and properties. 2013. Vol. 2, No. 1. 01NTF37(3pp).


Review

For citations:


Zvyagintseva A.V., Shalimov Yu.N., Lutovats M.V. TO THE FEATURE OF BEHAVIOR OF HYDROGEN IN THE METALS AND ALLOYS, GOT ELECTROLYSIS, AND POSSIBILITY OF THEIR APPLICATION IN ALTERNATIVE ENERGY SOURCES. Alternative Energy and Ecology (ISJAEE). 2015;(21):107-111. (In Russ.) https://doi.org/10.15518/isjaee.2015.21.012

Views: 897


ISSN 1608-8298 (Print)