Influence of gamma radiation on the composition and physicochemical characteristics of olefins: post-radiation effects
- 作者: Guliyeva N.G.1, Jabbarova L.Y.1, Mustafayev I.I.1, Aliyeva-Chichek S.F.1
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隶属关系:
- Institute of Radiation Problems, Ministry of Science and Education of the Republic of Azerbaijan
- 期: 卷 66, 编号 1 (2024)
- 页面: 75-80
- 栏目: Articles
- URL: https://ter-arkhiv.ru/0033-8311/article/view/661176
- DOI: https://doi.org/10.31857/S0033831124010121
- ID: 661176
如何引用文章
详细
The effect of gamma radiation on olefins was studied under static conditions at an absorbed dose of 65 kGy and at a dose rate of P = 0.076 Gy/s. The effect of radiation on the physicochemical characteristics and structural and group composition of the resulting olefins has been established. Post-irradiation effects were studied immediately after irradiation and during 1, 2, 4, and 7 months later. When fuels are irradiated, polymerization of unsaturated hydrocarbons occurs. After cessation of irradiation, the postpolymerization process occurs The chemical instability of olefins in fuels leads to the formation of carbon deposits in the engine system, tanks, and valves. IR spectra, iodine values, density, and kinematic viscosity of irradiated samples were measured.
作者简介
N. Guliyeva
Institute of Radiation Problems, Ministry of Science and Education of the Republic of Azerbaijan
编辑信件的主要联系方式.
Email: clala@mail.ru
阿塞拜疆, B. Vahabzade, 9, Baku, AZ1143
L. Jabbarova
Institute of Radiation Problems, Ministry of Science and Education of the Republic of Azerbaijan
Email: clala@mail.ru
阿塞拜疆, B. Vahabzade, 9, Baku, AZ1143
I. Mustafayev
Institute of Radiation Problems, Ministry of Science and Education of the Republic of Azerbaijan
Email: clala@mail.ru
阿塞拜疆, B. Vahabzade, 9, Baku, AZ1143
S. Aliyeva-Chichek
Institute of Radiation Problems, Ministry of Science and Education of the Republic of Azerbaijan
Email: clala@mail.ru
阿塞拜疆, B. Vahabzade, 9, Baku, AZ1143
参考
- Джаббарова Л.Ю., Мустафаев И.И., Мирзаева А.С., Ибадов Н.Я. // Радиохимия. 2023. Т. 65. № 4. С. 363–371.
- Jabbarova L.Y., Mustafayev I.I., Akperov R.Y., Mirzayeva A.S. // J. Radiat. Res. 2022. Vol. 9. № 1. P. 58–63.
- Jabbarova L.Y., Mustafayev I.I. // High Energy Chem. 2021. Vol. 55. P. 37.
- Джаббарова Л.Ю., Мустафаев И.И., Ибадов Н.А. // ЖПС. 2022. Т. 89. № 3. C. 315–322.
- Jabbarova L.Y., Mustafayev I.I. // Int. Scientific Forum Nuclear Science and Technologies. Al-maty: Inst. Nuclear Physics, Ministry of Energy of the Republic of Kazakhstan. 2022. № 2(2). P. 286–287.
- Ismailova M.K. // J. Radiat. Res. 2017. Vol. 4. N 2. P. 66–72.
- Шаймухаметова И.Ф., Богданова С.А., Аллаяров С.Р., Демидов С.В. // ХВЭ. 2021. T. 55. № 5. C. 380–388.
- Ибадов Н.А., Сулейманов Б.А., Гурбанов М.А., Абдуллаев Э.Т., Аббасова Д.Р. // Int. Sci. J. Altern. Energy Ecol. 2009. N 5 (73). P. 22.
- Гулиева Н.Г., Мамедова С.Г., Алиева-Чичек С.Ф. // Исследовательский центр «Endless Light in Science». 2022. C. 161–167.
- Ismailova M.K. // Advances in Science and Technology. Moscow: Actualnost RF, Moscow, 2019. Issue 15. P. 23–24.
- Савиных Ю.В., Орловский В.М., Лоскутова Л.В. // Известия вузов. Физика. 2015. Т. 58. № 9/3. С. 131–134.
- Kulieva U.A., Kurbanov M.A. // Russ. J. Phys. Chem. B. 2020. Vol. 14. № 1. P. 111–116.
- Идрисов Т.С., Курбанов М.А., Кулиева У. // Оптика и спектроскопия. 2020. T. 128. № 12. C. 1969
- Сараева В.В. Радиолиз углеводородов в жидкой фазе. Современное состо яние вопроса. М.: Изд-во Моск. ун-та, 1986. 256 с.
- Радиационная химия углеводородов / Под ред. Г. Фельдиака // М.: Энергоатомиздат, 1985. С. 303.
- Милинчук К., Клиншпонт Э.Р., Тупиков В.И. Основы радиационной стойкости органиче-ских материалов. М.: Энергоатомиздат, 1994.
- Тарасевич Б.Н. ИК-спектры основных классов органических соединений (справочные материалы). М.: МГУ им. М.В. Ломоносова, 2012. С. 54.
- Эрих В.Н. Химия нефти и газа. Л.: Химия, 1969. С. 280.
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