Отрывок: In this work the C3F7I + Ar reaction was studied by sequential application of atomic and molecular resonance absorption spectroscopy (ARAS and MRAS) using resonance line of iodine atom I at 183.04 nm and CF2 radical band at 251.9 nm behind reflected shock waves. As a source of resonance radiation of iodine atoms and CF2 radical, a microwave discharge lamp representing a flowing quartz tube was used, through which a...
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dc.contributor.authorEmelianov, A.V.-
dc.contributor.authorEremin, A.V.-
dc.contributor.authorYatsenko, P.I.-
dc.date.accessioned2018-08-14 15:22:59-
dc.date.available2018-08-14 15:22:59-
dc.date.issued2018-
dc.identifierDspace\SGAU\20180813\71384ru
dc.identifier.citationEmelianov A.V. Application of ARAS and MRAS methods to study the kinetics of CF2 radical formation in pyrolysis of C3F7I / A.V. Emelianov, A.V. Eremin, P.I. Yatsenko // International Conference on Combustion Physics and Chemistry // (Samara, Russia, 24-28 July): proceeding of the conference / Samara University; Edited by A.M. Mebel and V.N. Azyazov – Samara: Publishing OOO “Insoma-Press”, 2018 – p. 111ru
dc.identifier.isbn978-5-4317-0298-3-
dc.identifier.urihttp://repo.ssau.ru/handle/International-Conference-on-Combustion-Physics-and-Chemistry/Application-of-ARAS-and-MRAS-methods-to-study-the-kinetics-of-CF2-radical-formation-in-pyrolysis-of-C3F7I-71384-
dc.language.isoenru
dc.publisherPublishing OOO “Insoma-Press”ru
dc.titleApplication of ARAS and MRAS methods to study the kinetics of CF2 radical formation in pyrolysis of C3F7Iru
dc.typeThesisru
dc.textpartIn this work the C3F7I + Ar reaction was studied by sequential application of atomic and molecular resonance absorption spectroscopy (ARAS and MRAS) using resonance line of iodine atom I at 183.04 nm and CF2 radical band at 251.9 nm behind reflected shock waves. As a source of resonance radiation of iodine atoms and CF2 radical, a microwave discharge lamp representing a flowing quartz tube was used, through which a...-
Располагается в коллекциях: International Conference on Combustion Physics and Chemistry

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