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STUDY CORROSION PROCESSES OF OIL EQUIPMENT

https://doi.org/10.30724/1998-9903-2018-20-1-2-138-143

Abstract

The work carried out studies of corrosion processes when in contact with carbon steel aggressive media. As an aggressive environment are considered water-oil emulsions with different concentrations of oil, we revealed the corrosion rates of oil’s dependency concentration. 

About the Authors

E. S. Dremicheva
Kazan state power engineering university
Russian Federation

Elena S. Dremicheva - Cand. sci. (techn.), docent, Department Technology of water and fuel



E. R. Zvereva
Kazan state power engineering university
Russian Federation

Elvira R. Zvereva – Dr. sci. (techn.), professor, Department Technology of water and fuel



References

1. Wang B., Liang W., Guo Z., Liu W. Biomimetic super-lyophobic and super-lyophilic materials applied for oil/water separation: a new strategy beyond nature. DOI: 10.1039/c4cs00220b // Chemical Society Reviews. 2015. No. 44. Issue 1. Р. 336-361.

2. Kitonov G.A., Baranov A.N. Protection of oil equipment against corrosion // New science: From idea to result. 2016. No. 5-2 (84). P. 168-171.

3. Katz N.G., Starikov V.P., Parfenova S.N. Chemical resistance of materials and protection of oil and gas processing equipment against corrosion: a textbook. M.: Mechanical Engineering, 2011.

4. Katz N.G., Vasiliev S.V., Parfenova S.N., Zhivaeva V.V., Dorovsky I.V. The controlling factor of the corrosion process and the efficiency of the protective alloys // Protecting the environment in the oil and gas complex. 2013. No. 4. P. 38-41.

5. Nizamov K.R. Improving the reliability of oilfield pipelines: dis. ... Dr. Tech. Sciences: 25.00.17. Ufa, 2001. 299 p.

6. Efremenko A.P., Spaschenko A.Yu., Sadretdinov I.F., Aleksandrova K.V. Investigation of the influence of the characteristics of specimen-witnesses on the effectiveness of corrosion monitoring // Electronic scientific journal Oil and gas. 2014. No. 3. P. 134-151.

7. Guidance document «The methodology for assessing the aggressiveness of oilfield environments and the protective effect of corrosion inhibitors in the transport of water-cut oil» No. RD 39-3-669-81 // VNIISPTneft. 1982.

8. Interstate standard «Carbon steel of ordinary quality. Marks (with Change №1)» from 01/07/2008 GOST 380-2005 // Standartinform. 2009.

9. Nizamov K.R., Musin R.R. Carbon-acid corrosion of equipment and pipelines in oil production at the fields of Western Siberia // Problems of collecting, preparing and transporting oil and oil products. 2014. No. 3 (97). P. 96-102.

10. Zvereva E.R., Zueva O.S., Khabibullina R.V., Mingaleeva G.R., Akhmetvalieva G.R., Salikhzyanova D.R., Khatmullina Z.F. Influence of Additives Based on Carbon Nanotubes on the Rheological Characteristics of Liquid Boiler Fuel // Chemistry and Technology of Fuels and Oils. 2016. No. 5 (597). P. 15-19.

11. Zvereva E.R. Dmitriev AV, Shageev M.F., Akhmetvalieva G.R. Results of industrial tests of a carbonate additive to fuel oil // Teploenergetika. 2017. No. 8. P. 50-56.


Review

For citations:


Dremicheva E.S., Zvereva E.R. STUDY CORROSION PROCESSES OF OIL EQUIPMENT. Power engineering: research, equipment, technology. 2018;20(1-2):138-143. (In Russ.) https://doi.org/10.30724/1998-9903-2018-20-1-2-138-143

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ISSN 1998-9903 (Print)
ISSN 2658-5456 (Online)