Russian Federation
Russian Federation
Russian Federation
Russian Federation
Currently, there is an urgent need to protect the environment from harmful emissions contained in the combustion products of fuel into the atmosphere. One of the main sources of toxic gases in the atmosphere is the automotive industry, which uses internal combustion engines, the most common type of heat engine in the world. Scientists and automotive companies are working on various methods to reduce the toxicity of exhaust gases. One of these methods is the use of water injection. To study the practical application of water injection in internal combustion engines, a system for producing moist saturated water vapor was developed and installed on a VAZ 2105 car. Experimental research will contribute to the study of this issue and demonstrate the possibility of mass application.
heat engine (ICE), automobile transport, fuel, environmental standards, water injection, toxic gases, ecology
1. Kolyshkina, D. V. Negativnoe vozdeystvie avtomobil'nogo transporta na ekologiyu / D. V. Kolyshkina, D. N. Ayydov, L. E. Kuschenko // Innovacionnaya nauka. – 2019. – №. 2. – R. 36-37. EDN: https://elibrary.ru/YXRUYX
2. Avtomobili i ekologiya / ECO portal. – URL: https://ecoportal.su/ (data obrascheniya: 24.02.2026).
3. Zagryaznenie atmosfery avtotransportom: kak proishodit i sposoby snizheniya. – URL: https://rcycle.net/ (data obrascheniya: 18.02.2026).
4. RF budet subsidirovat' ot poloviny zatrat pri perevode avtomobiley na metan / Interfaks. – URL: https://www.interfax.ru/ (data obrascheniya: 25.02.2026).
5. D'yachenko, N. H. Teoriya dvigateley vnutrennego sgoraniya. Rabochie processy / N. H. D'yachenko. – Leningrad : Mashinostroenie, 1974. – 551 s.
6. Kawasaki vypustila pervyy v mire seriynyy DVS, kotorye generiruet elektroenergiyu na gazovoy smesi s 30 % vodoroda / 3DNews. – URL: https://3dnews.ru/ (data obrascheniya: 22.02.2026).
7. RENAULT i GEELY predstavili DVS pod 100 % vozobnovlyaemoe toplivo. – URL: https://auto.mail.ru/ (data obrascheniya: 24.02.2026).
8. Perspektivnye dobavki. Uchenye TPU: dobavlenie vody v toplivo uskoryaet ego sgoranie na 14 %. – URL: https://news.tpu.ru/news/uchenye-tpu-dobavlenie-vody-v-toplivo-uskoryaet-ego-sgoranie-na-14-/ (data obrascheniya: 20.02.2026).
9. Karnauhova, I. V. Vliyanie dissociacii vody na rashod topliva v dvigatelyah vnutrennego sgoraniya / I. V. Karnauhova, V. N. Karnauhov, D. A. Zaharov // Sovremennye problemy nauki i obrazovaniya. – 2015. – № 1-1. – S. 352. EDN: https://elibrary.ru/VIDYJJ
10. Razrabotka shemy eksperimental'noy ustanovki DVS s modernizirovannoy sistemoy podachi toplivo-vodo-vozdushnoy smesi s cel'yu snizheniya vrednyh vybrosov v vyhlopnyh gazah / S. A. Tolstov, S. L. Panchenko, A. S. Tolstova, D. R. Nabatov, R. V. Troschenko // Fizicheskie osnovy naukoemkih tehnologiy v sovremennom mire : Materialy Vserossiyskoy nauchno-metodicheskoy konferencii s mezhdunarodnym uchastiem, posvyaschennoy 80-letiyu so dnya rozhdeniya professora V.V. Postnikova, priurochennoy k 95-letiyu VGLTU im. G.F. Morozova, Voronezh, 15 aprelya 2025 goda. – Voronezh: Voronezhskiy gosudarstvennyy lesotehnicheskiy universitet im. G.F. Morozova, 2025. – S. 136-141. DOI: https://doi.org/10.58168/PHBSc-IT2025_136-141; EDN: https://elibrary.ru/PJYIQV
11. Tolstov, S. A. Snizhenie toksichnosti vyhlopnyh gazov cikla DVS pri rabote na gazoparovodyanoy smesi / S. A. Tolstov, S. L. Panchenko, A. S. Tolstova // Voronezhskiy nauchno-tehnicheskiy Vestnik. – 2025. – T. 3, № 3(53). – S. 82-95. DOI: https://doi.org/10.34220/2311-8873-2025-82-95; EDN: https://elibrary.ru/XPXWEC



