Отрывок: A comparison of the experimental and simulation data has shown that the mechanism correctly describes the relative content of the most abundant oxygen-containing cations (CH5O+, C2H3O+) in flames, as well as of the C3H5+ cation found experimentally in a rich flame (ϕ=1.5). However, the mechanism significantly underestimates the relative mole fraction of the C3H3+, a key cation in fuel-rich flames. Several aromatic and cyclic cations with the general formula CxHy were also de...
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Поле DC | Значение | Язык |
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dc.date.accessioned | 2022-10-06 14:28:54 | - |
dc.date.available | 2022-10-06 14:28:54 | - |
dc.date.issued | 2022 | ru |
dc.identifier | RU\НТБ СГАУ\490191 | ru |
dc.identifier.citation | Study of cation chemistry in ethylene flames // International Conference on Physics and Chemistry of Combustion and in Extreme Environments (Samara, Russia, 12-16 July 2022) / V. N. Azyazov, A. M. Mayorova. - Samara : Publishing OOO “Insoma-Press”, 2022. - P. 69. | ru |
dc.identifier.uri | http://repo.ssau.ru/handle/International-Conference/Study-of-cation-chemistry-in-ethylene-flames-98850 | - |
dc.language.iso | eng | ru |
dc.source | International Conference on Physics and Chemistry of Combustion and in Extreme Environments (Samara, Russia, 12-16 July 2022) | ru |
dc.title | Study of cation chemistry in ethylene flames | ru |
dc.type | Text | ru |
dc.textpart | A comparison of the experimental and simulation data has shown that the mechanism correctly describes the relative content of the most abundant oxygen-containing cations (CH5O+, C2H3O+) in flames, as well as of the C3H5+ cation found experimentally in a rich flame (ϕ=1.5). However, the mechanism significantly underestimates the relative mole fraction of the C3H3+, a key cation in fuel-rich flames. Several aromatic and cyclic cations with the general formula CxHy were also de... | - |
Располагается в коллекциях: | International Conference on Combustion Physics and Chemistry |
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978-5-4317-0481-9_2022-69.pdf | 452.69 kB | Adobe PDF | Просмотреть/Открыть |
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