Neftyanaya Provintsiya
electronic peer-reviewed scholarly publication
Neftyanaya provintsiya No.1(29),2022

Prospects of hydrogen economy

R.Z. Sakhabutdinov
DOI: https://doi.org/10.25689/NP.2022.1.91-119

Abstract


Over the past year, hydrogen economy has become the subject of extensive discussions in Russia. The paper considers hydrogen natural occurrence, generation, commercial production technologies, and the challenges associated with drastic expansion of hydrogen applications. Hydrogen is shown to be an energy carrier rather than a direct energy source despite its widespread use. Factors contributing to the rapid growth of hydrogen economy are considered. It is demonstrated that poor efficiency of renewable energy sources coupled with substantial expenses on green energy transition leave large-scale expansion of hydrogen energy projects in serious doubt.

Key words:

hydrogen, energy economy, hydrogen economy, electrolysis, methane, energy efficiency, decarbonization, renewable energy sources, carbon dioxide

References

Chemical encyclopedia: in 5 volumes. Vol. 1: A – Darzana/Khunyants (Ed.in.Ch). Moscow: Sovetskaya entsiklopediya Publ., 1988. 623 p. (in Russian)

Gresov A. I., Obzhirov A. I., Yatsuk A. V. K voprosu vodorodonosnosti ugol'nykh basseynov Dal'nego Vostoka [Hydrogen potential of coal basins in the Far East revisited]. Nauki o Zemle [Earth Sciences], 2010, No. 1 (15), pp. 19—32. (in Russian)

Perevozchikov G.V. Pole vodoroda na mestorozhdenii Gazli po dannym geokhimicheskikh issledovaniy v neftegazonosnom regione Sredney Azii [Geochemical research on hydrogen accumulation in the Gazli gas field]. Neftegazovaya geologiya. Teoriya i praktika [Petroleum Geology - Theoretical and Applied Studies], 2012, vol. 7, No.1. Available at http://www.ngtp.ru/rub/1/5_2012.pdf. (in Russian)

Larin V.N. Nasha Zemlya (proiskhozhdenie, sostav, stroenie i razvitie iznachal'no gidridnoy Zemli) [Our Earth: origin, composition, structure, and evolution of primordially hydridic Earth)]. Moscow: Agar Publ., 2005. 242 p. (in Russian)

Polevanov V.P., Glazev S.Yu. Poiski mestorozhdeniy prirodnogo vodoroda v Rossii kak osnova vstraivaniya v novyy tekhnologicheskiy uklad [Searches for natural hydrogen deposits in Russia as a basis for integration into a new technological order]. Nedropol'zovanie XXI vek [Subsoil Use XXI Century], 2020, No. 4, pp.12-23. (in Russian)

Larin V.N. Sposob ispol'zovaniya veshchestva mantii Zemli dlya polucheniya vodoroda [Hydrogen generation from Earth's mantle]. Inventor’s Cert. 2244817, RF, Int. Cl. E21B 43/295 (2000.01), C01B 3/06 (2000.01), Appl. date: 15 October 2003, Pub. date: 20 January 2005. 6 p. (in Russian)

Fortov V.E., Popel' O.S. Energetika v sovremennom mire [Power engineering in modern world]. Moscow: Intellekt Publ., 2011. 168 p. (in Russian)

Zaychenko V.M., Shterenberg V.A., Shpil'rayt E.E. Poluchenie zhidkikh motornykh topliv iz prirodnogo gaza v obosnovanie kontseptsii energetiki, svobodnoy ot CO2 [Production of liquid motor fuels from natural gas to justify the concept of CO2-free energy]. Bulletin of the International Fuel and Power Association, 2000, No. 28: Proc. of the 2nd Moscow International Forum: Energy and Society, pp.143. (in Russian)

Kislov V.R. Uglekislotnaya konversiya metana s ispol'zovaniem kislotnykh katalizatorov na osnove karbidov [Carbon dioxide conversion of methane using carbide-based acid catalysts]. PhD thesis, Мoscow, 2017. 135 p. (in Russian)

Makaryan I.A., Sedov I.V., Nikitin A.V., Arutyunov V.S. Sovremennye podkhody k polucheniyu vodoroda iz uglevodorodnogo syr'ya [Modern approaches to the production of hydrogen from hydrocarbon raw materials.]. Nauchnyy zhurnal Rossiyskogo gazovogo obshchestva [Scientific Journal of Russian Gas Society], 2020, No. 1, pp. 50-68. (in Russian)

Dolgopolov S.Yu., Lomov I.V., Shamanin I.V. Vvedenie v yaderno-vodorodnuyu energetiku [Introduction to nuclear-hydrogen economy], Tomsk: Tomsk Polytechnical University, 2008. 168 p. (in Russian)

Aminov R.Z., Bayramov A.N. Kombinirovanie vodorodnykh energeticheskikh tsiklov s atomnymi elektrostantsiyami [Combination of hydrogen energy cycles with nuclear power plants], Мoscow: Nauka Publ., 2017. 254 p. (in Russian)

Ponomarev-Stepnoy N.N. Atomnaya energetika i ee budushchee [Nuclear energy and its future]. Russian energy sector. Challenges and perspectives: Proc. of Scientific Session of the Russian Academy of Sciences. Moscow: Nauka Publ., 2006, pp. 273-283. (in Russian)

Ergin D. The new map: energy, climate, and the clash of nations. Moscow: Alpina Publ., 2021. 444 p. (translated from English)

Authors

R.Z. Sakhabutdinov, Dr.Sc., Professor, Chief Research Associate, Wellstream Treatment Department, TatNIPIneft Institute – PJSC TATNEFT
32, Musa Jalil st., Bugulma, 423236, Russian Federation
E-mail: rifkat@tatnipi.ru

For citation:

R.Z. Sakhabutdinov Perspektivy razvitija vodorodnoj jenergetiki [Prospects of hydrogen economy]. Neftyanaya Provintsiya, No. 1(29), 2022. pp. 91-119. DOI https://doi.org/10.25689/NP.2022.1.91-119 (in Russian)

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