Antioxidant Activity of Asphaltene and Resinous Components in the Magnetic Field
- 作者: Loskutova Y.V.1, Yudina N.V.1, Lukyanets A.V.1
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隶属关系:
- Institute of Petroleum Chemistry, Siberian Branch of the Russian Academy of Sciences
- 期: 编号 2 (2024)
- 页面: 16-22
- 栏目: Articles
- URL: https://jdigitaldiagnostics.com/0023-1177/article/view/661568
- DOI: https://doi.org/10.31857/S0023117724020044
- EDN: https://elibrary.ru/OMRZTT
- ID: 661568
如何引用文章
详细
Using the voltammetric method of oxygen electroreduction, an analysis of the antioxidant activity of resin-asphaltene components isolated from 2 crude oils of different compositions before and after exposure to a magnetic field was carried out. For the studied asphaltenes, weakly polar and polar resins, an increase or decrease in antioxidant activity is observed with increasing sample concentration in the background electrolyte solution. Petroleum antioxidants are part of a complex colloidal structural system and are associated with it by associative interactions that arise as a result of changes in the size and activity of associates of the petroleum system as a whole.
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作者简介
Yu. Loskutova
Institute of Petroleum Chemistry, Siberian Branch of the Russian Academy of Sciences
编辑信件的主要联系方式.
Email: reoloil@ipc.tsc.ru
俄罗斯联邦, Tomsk
N. Yudina
Institute of Petroleum Chemistry, Siberian Branch of the Russian Academy of Sciences
Email: natal@ipc.tsc.ru
俄罗斯联邦, Tomsk
A. Lukyanets
Institute of Petroleum Chemistry, Siberian Branch of the Russian Academy of Sciences
Email: lukyanetsav@mail.ru
俄罗斯联邦, Tomsk
参考
- Syunyaev, R.Z., Safieva, R.Z., Safin, R.R. // JPSE. 2000. V. 26. № 1–4. P. 31. https://doi.org/10.1016/S0920-4105(00)00018-8
- Goncalves J.L., Bombard A.J.F., Soares D.A.W., Alcantara G.B. // Energy&Fuels. 2010. V. 24. № 5. Р. 3144. https://doi.org/10.1021/ef901302y]
- Tukhvatullina A.Z., Barskaya E.E., Kouryakov V.N., Ganeeva Y.M., Yusupova T.N., Romanov G.V. // Petroleum & Environmental Biotechnology. 2013. V. 4. № 4. P. 1. https://doi.org/10.4172/2157-7463.1000152
- Zaidullin I.M., Valieva G.R., Aliev A.K., Lakhova A.I., Petrov S.M. // Chem. Technol. Fuels Oils. 2017. V. 53 P. 470. https://doi.org/10.1007/s10553-017-0825-3
- Sjoblom J., Simon S., Xu Zh. // Colloid Interface Sci. 2015. V. 218. P. 1. https://doi.org/10.1016/j.cis.2015.01.002
- Волкова Г.И., Калинина Т.В., Морозова А.В. // Известия ВУЗов. Химия и химическая технология. 2019. Т. 62. № 12. С. 71. https://doi.org/10.6060/ivkkt.20196212.6016 [Volkova G.I., Kalinina T.V., Morozova A.V. // Izv. Vyssh. Uchebn. Zaved. Khim. Khim. Tekhnol. 2019, vol. 62, no 12. p. 71].
- Hjartnes T.N., Mhatre S., Gao B., Sørland G. H., Simon S., Sjöblom J. // Colloids Surf. А. Physicochemical and Engineering Aspects. 2020. V. 586. № 5. P. 124188. https://doi.org/10.1016/j.colsurfa.2019.124188
- Taheri-Shakib J., Shekarifard A., Naderi H. // Fuel. 2018. V. 228. P. 243. https://doi.org/10.1016/j.fuel.2018.04.141
- Лоскутова Ю.В., Сизова Н.В., Юдина Н.В., Петренко Т.В. // Нефтехимия. 2005. Т. 45. № 2. С. 146. [Loskutova Yu.V., Sizova N.V., Yudina N.V., Petrenko T.V. // Petroleum Chemistry. 2005. V. 45. № 2. P. 126].
- Loskutova Yu.V., Kukhareva E.V., Yudina N.V. // Pet. Chem. 2022. V. 62. P. 250. https://doi.org/10.1134/S0965544122060135
- Korotkova E.I., Karbainov Yu.A., Shevchuk A.V. // Journal of Electroanalytical Chemistry. 2002. V. 518. № 1. P. 56. https://doi.org/10.1016/S0022-0728(01)00664-7
- Korotkova E.I., Karbainov Yu.A. Volt-ampere method determining summary activity of antioxidants. RU2224997C1. 27.02.2004.
- Peinder P., Petrauskas D., Singelenberg F., Salvatori F., Visser T., Soulimani F., Weckhuysen B.M. // Appl. Spectrosc. 2008. V. 62. № 4. P. 414. https://doi.org/10.1366/000370208784046849
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