Отрывок: This work presents recent development of a high pressure photoionization mass spectrometer (PIMS) apparatus. The apparatus was completed and tested in 2016. The key features are high-pressure flow photolysis reactor capable of operation at <100 atm and <700 K simultaneously and enhanced detection efficiency to counter the reduction of sensitivity due to dilution of reaction media by buffer gas. The test results indicate that it can probe oxidation kinetics at the engine-re...
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dc.contributor.authorAntonov, Ivan-
dc.contributor.authorSheps, Leonid-
dc.date.accessioned2018-08-09 09:51:03-
dc.date.available2018-08-09 09:51:03-
dc.date.issued2018-
dc.identifierDspace\SGAU\20180809\71275ru
dc.identifier.citationAntonov I. Developing novel PIMS apparatus to study oxidation kinetics at engine-relevant pressures / I Antonov, L. Sheps // 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. 37ru
dc.identifier.isbn978-5-4317-0298-3-
dc.identifier.urihttp://repo.ssau.ru/handle/International-Conference-on-Combustion-Physics-and-Chemistry/Developing-novel-PIMS-apparatus-to-study-oxidation-kinetics-at-enginerelevant-pressures-71275-
dc.language.isoenru
dc.publisherPublishing OOO “Insoma-Press”ru
dc.titleDeveloping novel PIMS apparatus to study oxidation kinetics at engine-relevant pressuresru
dc.typeThesisru
dc.textpartThis work presents recent development of a high pressure photoionization mass spectrometer (PIMS) apparatus. The apparatus was completed and tested in 2016. The key features are high-pressure flow photolysis reactor capable of operation at <100 atm and <700 K simultaneously and enhanced detection efficiency to counter the reduction of sensitivity due to dilution of reaction media by buffer gas. The test results indicate that it can probe oxidation kinetics at the engine-re...-
Располагается в коллекциях: International Conference on Combustion Physics and Chemistry

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