1. Nyneshnie i budushchie tendentsii v oblasti aviatsionnogo shuma i emissii aviatsionnykh dvigateley. Rabochiy dokument A37-WP/26 [Present and Future Aircrat Noise and Emissions Trends. Working Paper A37-WP/26]. Monreal, IKAO, 2010. 9 p. (in Russian)
2. Arbekov, A., Dermer, P., Kunikeev, B. Povyshenie effektivnosti i snizhenie shuma gazoturbinnykh ustanovok [Increasing Effectiveness and Decreasing Noise of Gas Turbine Units]. Bezopasnost´ v tekhnosfere [Safety in Technosphere]. 2015, V. 4, I. 5, pp. 31-35. DOI:https://doi.org/10.12737/16961
3. The United Nations Framework Convention on Climate Change, UN FCCC/1992/84, GE.05-62220 (E) 200705. 25 p.
4. Ezrokhi Yu.A., Kalenskii S.M., Polev A.S., Drygin A.S. Predvaritel’noe issledovanie kharakteristik gibridnykh turboreaktivnykh dvukhkonturnykh dvigateley razlichnykh skhem dlya blizhne- i srednemagistral’nykh samoletov [Preliminary research of characteristics of various implementations of hybrid turbofan engines for short- and medium-haul aircrafts]. Nauka i obrazovanie MGTU im. N.E. Baumana [Science and Education of the Bauman MSTU]. 2012, I. 3. Available at: http://technomag.bmstu.ru/doc/381537.html (accessed 15 September 2015). (in Russian)
5. Arkhipov D.V., Tumashev R.Z. Raschetnoe issledovanie vliyaniya tangentsial’nogo naklona i kosogo obtekaniya lopatok napravlyayushchego apparata na rabotu stupeni osevogo kompressora [Numerical Investigation of Influence of Tangent Pitch and Slanting Flow of Guide Vanes on the Axial Compressor Stage Parameters]. Nauka i obrazovanie MGTU im. N.E. Baumana [Science and Education of the Bauman MSTU]. 2015, I. 11, pp. 178-192. DOI:https://doi.org/10.7463/1115.0825832 (in Russian)
6. Molyakov V.D., Kunikeev B.A. Osobennosti proektirovaniya effektivnykh turbin s uchetom vliyaniya radial’nogo zazora [Designing efficient turbines taking into account radial clearance]. Izvestiya vysshikh uchebnykh zavedeniy. Mashinostroenie [Proceedings of Higher Educational Institutions. Маchine Building]. 2014, I. 9 (654), pp. 9-18. DOI:https://doi.org/10.18698/0536-1044-2014-9-9-18
7. Burtsev S.A., Kiselev N.A. Leont’ev A.I. Osobennosti issledovaniya teplogidravlicheskikh kharakteristik rel’efnykh poverkhnostey [Peculiarities of Studying Thermohydraulic Characteristics of Relief Surfaces]. Teplofizika vysokikh temperatur [High Temperature]. 2014, V. 52, I. 6, pp. 869-872. DOI:https://doi.org/10.1134/S0018151X14060054.
8. Aviatsiya i al’ternativnye vidy aviatsionnogo topliva. Rabochiy dokument A37-WP/23 [Aviation and Alternative Fuels. Working Paper A37-WP/23]. Monreal, IKAO, 2010. 5 p.
9. Yanovskii L.S., Raznoschikov V.V. Emissiya uglekislogo gaza silovymi ustanovkami transportnykh samoletov na al’ternativnykh toplivakh [Carbon dioxide emission by power units of transport aircrats on alternative fuels]. Zashchita okruzhayushchei sredy v netegazovom komplekse [Environmental protection in the oil and gas industry]. 2012, I. 4, pp. 32-37. (in Russian)
10. Ivanov V.L., Shegolev N.L., Skibin D.A. Povyshenie effektivnosti dvukhkonturnogo turboventilyatornogo dvigatelya vvedeniem promezhutochnogo okhlazhdeniya pri szhatii [Improving the efficiency of a bypass turbofan engine by intermediate cooling during compression]. Izvestiya vysshikh uchebnykh zavedeniy. Mashinostroenie [Proceedings of Higher Educational Institutions. Маchine Building]. 2014, I. 11, pp. 75-83. DOI:https://doi.org/10.18698/0536-1044-2014-11-75-83
11. Ezrokhi Yu.A., Kalenskii S.M., Polev A.S., Drygin A.S., Ryabov P.A. Sravnitel’nyy analiz parametrov i kharakteristik razlichnykh skhem silovoy ustanovki s dopolnitel’nym vynosnym vintoventilyatorom [Comparative analysis of parameters and characteristics of diferent power plant schemes with an additional remote propfan]. Nauka i obrazovanie MGTU im. N.E. Baumana [Science and Education of the Bauman MSTU]. 2012, I. 12, pp. 541-556. DOI:https://doi.org/10.7463/1212.0511469 (in Russian).
12. Burtsev S.A., Samoylov M.Yu, Simakov M.V. Analiz ekologicheskikh aspektov primeneniya perspektivnykh skhem silovykh ustanovok blizhne- i srednemagistral’nykh samoletov [Ecological Aspects of Implementing Prospective Propulsion Schemes of Short and Medium Haul Aircrafts]. Bezopasnost’ v tekhnosfere [Safety in Technosphere]. 2015, V. 4, I. 2, pp. 67-72. DOI:https://doi.org/10.12737/11335 (in Russian)
13. Nikolaikin N.I. Novye prioritety v sfere zashchity okruzhayushchey sredy ot vozdeystviya grazhdanskoy aviatsii dvigatelyami [New Priorities in the Environment Protection against Civil Aviation Inluence]. Bezopasnost’ v tekhnosfere [Safety in Technosphere]. 2013, V. 2, I. 5, pp. 25-30 (in Russian).
14. Chernova N.I., Kiseleva S.V., Popel’ O.S. Effektivnost’ proizvodstva biodizelya iz mikrovodorosley [Efficiency of the biodiesel production from microalgae]. Teploenergetika [Thermal Engineering]. 2014, I. 6, pp. 14-21. DOI:https://doi.org/10.1134/S0040363614060010
15. Senko O.V., Gladchenko M.A., Lyagin I.V., Nikolskaya A.B., Maslova O.V., Chernova N.I., Kiseleva S.V., Korobkova T.P., Efremenko E.N., Varfolomeyev S.D. Transformatsiya biomassy fototrofnykh mikroorganizmov v metan [Biomass transformation of phototrophic microorganisms to methane]. Mezhdunarodnyy nauchnyy zhurnal Al’ternativnaya energetika i ekologiya [International Scientific Journal for Alternative Energy and Ecology]. 2012, I. 3, pp. 89-94. (in Russian)
16. Gurov V. Unikal’nyy samolet Tu-155 s vodorodnym dvigatelem [The unique Tu-155 hydrogen-powered]. Dvigatel [Engine]. 2013, I. 5, pp. 4-6.
17. Galeev A.G. Obzor razrabotok po ispytaniyu raketnykh dvigateley i energeticheskikh ustanovok na vodorodnom toplive i problemam obespecheniya ikh bezopasnosti [Review of Development on Testing Rocket Engines and Power Plants on Hydrogen Fuel and the Problem of Ensuring Their Safety]. Mezhdunarodnyy nauchnyy zhurnal Al’ternativnaya energetika i ekologiya [International Scientific Journal for Alternative Energy and Ecology]. 2015, I. 12, pp. 16-27. DOI:https://doi.org/10.15518/isjaee.2015.12.002.
18. Le Duigou A., Miguet M., Amalric Y. French hydrogen markets in 2008 -Overview and future prospects. International Journal of Hydrogen Energy. 2011, V. 36, I. 15, pp. 8822-8830. doihttps://doi.org/10.1016/j.ijhydene.2011.05.006.
19. Matskerle Yu. Sovremennyy ekonomichnyy avtomobil’ [Modern economical car]. Moscow, Mechanical Engineering Publ., 1987. 320 p.
20. Dunikov D., Borzenko V., Malyshenko S. Influence of impurities on hydrogen absorption in a metal hydride reactor. International Journal of Hydrogen Energy. 2012. V. 37. pp. 13843-13848. DOI:https://doi.org/10.1016/j.ijhydene.2012.04.078.
21. Burtsev S.A., Kochurov D.S., Schegolev N.L. Issledovanie vliyaniya sostava binarnykh smesey inertnykh gazov na ikh teplofizicheskie svoystva [Investigation of the helium proportion influence on the Prandtl number value of gas mixtures]. Nauka i obrazovanie MGTU im. N.E. Baumana [Science and Education of the Bauman MSTU]. 2015, I. 5, pp. 314-329. DOI:https://doi.org/10.7463/0514.0710811. (in Russian)
22. Dunikov D.O., Borzenko V.I., Malyshenko S.P., Blinov D.V., Kazakov A.N. Perspektivnye tekhnologii ispol’zovaniya biovodoroda v energoustanovkakh na baze toplivnykh elementov (obzor) [Prospective Technologies for Using Biohydrogen in Power Installations on the Basis of Fuel Cells (a Review)]. Teploenergetika [Thermal Engineering]. 2013, V. 60, I. 3, pp. 202-211. DOI:https://doi.org/10.1134/S0040601512110043.
23. Abbas H.F., Wan Daud W.M.A. Hydrogen production by methane decomposition: A review. International Journal of Hydrogen Energy. 2010. V. 35, I. 3, pp. 1160-1190. DOI:https://doi.org/10.1016/j.ijhydene.2009.11.036.
24. 潘相敏,林瑞,李昕等. 氢能与燃料电池的研发及商业化 进展[J]. 科技导报, 2011, 29(27): 第73-79页. (Pan X, Lin R, Li X, Ma J. Research Development and Commercialization Advances of Hydrogen Energy and Fuel Cell // Science & Technology Review. 2011. V. 29, Iss. 27, P. 73-79. (in Chinese))
25. 李建秋, 方川与徐梁飞, 燃料电池汽车研究现状及发展.汽 车安全与节能学报, 2014. 5(1): 第17-29页. (LI Jianqiu,FANG Chuan,XU Liangfei.Current status and trends of the research and development for fuel cell vehicles[J].J Automotive Safety and Energy, 2014, 5(1), pp. 17-29 (in Chinese))
26. Semenov V.L. Vozmozhnosti realizatsii infrastruktury zapravki, khraneniya i ispol’zovaniya vodoroda [Possibilities of Realization of an Infrastructure of Refueling, Storage and Hydrogen Use]. Nasosy. Turbiny. Sistemy [Pumps. Turbines. System]. 2012, I. 2, pp. 14-18.