Innovative method of oil preliminary purification from sulfur by ozone at well production preparation units
UDC: 665.666.4:553.982.2:665.625.6
DOI: -
Authors:
BEBKO Dmitry A.
1,2,
VELICHKO Evgeny I.
3
1 Maikop State Technological University, Yablonovsky, Adygea, Russia
2 Kuban state agrarian university named after I.T. Trubilin, Krasnodar, Russia
3 Kuban State Technological University, Krasnodar, Russia
Keywords: ozone, concentration, processing duration, electromagnetic impact, amount of sulfur content in oil products, preparation of well products
Annotation:
Active sulfur compounds, namely hydrogen sulfide, mercaptans, carbon monoxide sulfide, are poisons for secondary petrochemical processes. They reduce the consumer properties of the final products, increasing their corrosive activity and giving them an unpleasant odor. In addition, sulfur can harm some catalysts used in technological units for refining petroleum products (gasoline, diesel fuel, oil). It also negatively impacts the environment. Therefore, it should be removed. The authors of the article overview oil purification methods and analyze the effect of ozone on oil. Currently, there exist traditional methods of oil purification from sulfur: the ion chromatography method, the alkaline method (for light oil), the method of using selective substances (for heavy oil). The authors propose to use an innovative method of cleaning oil products from sulfur by means of ozone and improving the quality of oil products at well product preparation units.
Bibliography:
1. Soderzhanie sery v nefti i nefteproduktakh: vliyanie, GOST, PDK, metody opredeleniya i ochistki. – URL: https://electrochemistry.ru/primenenie/opredelenie-elementnogo-sostava/sera-v-nefti/
2. Semenova S.A., Patrakov Yu.F. Vliyanie ozonirovaniya na komponentnyy sostav nefti i nefteproduktov // Vestn. Kuzbas. gos. tekhn. un-ta. – 2018. – № 2(126). – S. 134–139. – DOI: 10.26730/1999-4125-2018-2-134-139
3. GOST R 52030-2003. Nefteprodukty. Potentsiometricheskiy metod opredeleniya merkaptanovoy sery. – Vved. 2003–07–01. – M.: IPK Izd-vo standartov, 2003. – III, 12 s.
4. GOST R 57033-2016. Nefteprodukty zhidkie. Opredelenie sledovykh kolichestv khloridov, ftoridov i bromidov metodom ionnoy khromatografii so szhiganiem obraztsa (CIC). – Vved. 2017–07–01. – M.: Standartinform, 2016. – III, 16 s.
5. Pat. 2786974 Ros. Federatsiya, MPK C10G 32/00, C10G 27/14. Sposob predvaritel'noy obrabotki nefteprodukta v ozonovozdushnoy smesi dlya snizheniya soderzhaniya sery / D.A. Bebko, D.A. Normov, T.A. Shcherbatova, I.A. Shcherbatov; patentoobladatel' FGBOU VO "Maykopskiy gos. tekhnolog. un-t". – № 2022111658; zayavl. 27.04.2022; opubl. 26.12.2022, Byul. № 36.
6. Bykov I.Yu., Kazartsev E.V. Realizatsiya rezul'tatov issledovaniya pri sovershenstvovanii oborudovaniya dlya intensifikatsii obezvozhivaniya i obessolivaniya tyazheloy nefti // Str-vo neftyanykh i gazovykh skvazhin na sushe i na more. – 2020. – № 3(327). – S. 27–32. – DOI: 10.33285/0130-3872-2020-3(327)-27-32
7. Abdul'manov R.R., Shaydakov V.V., Smol'nikov E.S. Problemy metodologicheskikh osnov, tekhnicheskikh i tekhnologicheskikh trebovaniy k proektirovaniyu blokov izmereniya pokazateley kachestva nefti // Str-vo neftyanykh i gazovykh skvazhin na sushe i na more. – 2024. – № 2(374). – S. 70–73.