DEVELOPMENT AND TESTING OF CORROSION INHIBITORS PROPERTIES BASED ON QUATERNARY AMMONIUM COMPOUNDS
Abstract
Corrosion inhibitors are widely used for protection of technological equipment and pipelines in the oil and gas industry. However, the operation of these objects under the influence of corrosive media of high aggressiveness and the widespread use of new constructive materials call for development of increasingly effective reagents. In this regard, the creation of competitive inhibitors that provide a high protective effect is a very urgent task, the solution of which is of significant importance for the country's economy. The paper considers the synthesis of new corrosion inhibitors based on quaternary ammonium compounds and the study of the effectiveness of their practical application in the implementation of anticorrosion protection of oilfield equipment made of carbon steel 20 and low-alloy steel. It has been established that as a result of the synthesis based on triethanolamine and orthophosphoric acid, triethylamine and 1,3-dichloropropene, and also condensation of polyethylene polyamine with 1,2-dichrolylethane, it is possible to obtain high-molecular compounds that effectively inhibit corrosion processes in oil and gas equipment proceeding along the electrochemical mechanism. To study the protective properties of the developed corrosion inhibitors, gravimetric analysis was used. It has been established that some nitrogen- and phosphorus-containing quaternary compounds under conditions similar to those in oil fields exhibit rather high inhibitory protection effects, and therefore can be recommended as a basis for the creation of new inhibitors of corrosion of tubular steels in mineralized reservoir environments. It is shown that the maximum inhibitory protection effects of the developed inhibitors are achieved at their moderate concentrations in the mineralized formation water, and with an increase in the concentration, the corrosion rate of the tested tubular steels is substantially reduced.
Forcitation:
Khaydarova G.R., Tyusenkov F.S., Bugai D.E., Raskildina G.Z., Islamutdinova A.A., Sidorov G.M. Development and testing of corrosion inhibitors properties based on quaternary ammonium compounds. Izv. Vyssh. Uchebn. Zaved. Khim. Khim. Tekhnol. 2018. V. 61. N7. P. 130-136
References
Gareev A.G. Bases of corrosion of metals. Ufa: UGNTU. 2011. 256 p. (in Russian).
Tsygankova L.E., Fomenkov O.A., Esina M.N. Protec-tive properties of same imhibitors of hydrogen sulphide and carbon dioxide corrosion. Izv. Vyssh. Uchebn. Zaved. Khim. Khim. Tekhnol. 2009. V. 52. N 1. P. 66 (in Russian).
Gareev A.G., Khudyakov M.A., Kravtsov V.V. Destruc-tion of oil and gas equipment: Ufa: UGNTU, In-t dop. prof. obrazovaniya. 2010. 143 p. (in Russian).
Laptev A.B., Spivak A.E., Cherepashkin S.E., Tsypyshev O.Yu., Bugay D.E., Akhiyarov R.Zh., Ryabukhina V.N. Inhibitory ability of the conservation composition based on imidazolines in acidic aqueous media. Problemy sbora, podgotovki i transporta nefti i nefteproduk-tov. 2015. V. 102. N 4. P. 139-150 (in Russian).
Akhiyarov R.Zh., Ibragimov I.G., Laptev A.B., Latypov O.R., Bugay D.E., Alaev A.A. Estimation of economic effi-ciency of integrated water treatment at oil production enter-prises. Problemy sbora, podgotovki i transporta nefti i nefteproduktov. 2009. N 2. P. 58-63 (in Russian).
Semenova I.V., Florianovich G.M., Khoroshilov A.V. Corrosion and corrosion protection. M.: FIZMATLIT. 2002. 336 p. (in Russian).
Bugay D.E., Latypov O.R., Cherepashkin S.E. Corro-sion-resistant materials. Ufa: Neftegazovoe delo. 2012. 197 p. (in Russian).
Kravtsov V.V. Corrosion and protection of the internal sur-face of steel tanks. Ufa: USPTU. 2011. 169 p. (in Russian).
Rizvanov R.G., Mulikov D.Sh., Karetnikov D.V., Cherepashkin S.E., Shirgazina R.F. Corrosion resistance of «tube – tubesheet» weld joint obtained by friction welding. Nanotehnologii v stroitel’stve. 2017. V. 9. N 4. P. 97–115 (in Russian). DOI: 10.15828/2075-8545-2017-9-4-97-115.
Gareev A.G., Nasibullina O.A., Rizvanov R.G. A study of stress corrosion cracking of the main gas and oil pipelines. Neftegazovoe delo: Elektron. Nauch. Zhurn. 2012. N 6. P. 126-146. URL: http://ogbus.ru/authors/Gareev/Gareev_2.pdf (in Russian).
Gareev A.G., Nasibullina O.A., Rizvanov R.G., Khazhiev A.G. Investigation of the internal surface of the pipeline of the oil-gathering system of the North-Krasnoyarsk field. Problemy sbora, podgotovki i transporta nefti i nefteproduk-tov. 2016. V. 102. N 2. P. 58-64 (in Russian).
Tyusenkov A.S. Chemical resistance of steel 13CrV (rus 13ХФА). J. Chem. Technol. Metallurgy. 2017. V. 52. Iss. 4. P. 766-772.
Latypov O.R., Boev E.A., Cherepashkin S.E. Reduction of corrosive activity of the oilfields. Sb. Nauch. Trudov. SWorld. 2014. V. 6. Iss. 4(37). P. 84 (in Russian).
Latypov O.R., Bugai D.E., Boev E.V. Method of controlling electrochemical parameters of oil industry processing liquids. Chem. Petrol. Eng. 2015. V. 51. Iss. 3. P. 283-285.
Latypov O.R. Reduction of Salt Deposits on the Surface of Oilfield Equipment by Management of Electrochemical Parameters of the Medium. Chem. Petrol. Eng. 2015. V. 51. Iss. 7. P. 522-525.
Guseynov R.M., Radzhabov R.A., Makhmudov Kh.M., Kelbikhanov R.K. Study of an electrochemical cell with a reversible electrode boundary - a solid electrolyte or an ion melt by linear potential and current scanning methods. Izv. Vyssh. Uchebn. Zaved. Khim. Khim. Tekhnol. 2018. V. 61. N 4-5. P. 57-63 (in Russian). DOI: 10.6060/tcct.20186104-05.5574.
Faritov A.T., Rozhdestvenskii Yu.G., Yamshchikova S.A., Minnikhanova E.R., Tyusenkov A.S. Improvement of the linear polarization resistance method for testing steel corrosion inhibitors. Russian Metallurgy. 2016. N 11. P. 1035-1041. DOI: 10.1134/S0036029516110070.
Khaydarova G.R., Islamutdinova A.A., Dmitriev Yu.K., Sidorov G.M., Ivanov A.N. Corrosion inhibitor based on nitrogen-phosphorus-containing media compounds. Nefte-gazovoe delo. 2015. V. 13. N 4. P. 169-173 (in Russian).
Khaydarova G.R., Islamutdinova A.A., Dmitriev Yu.K., Sidorov G.M., Ivanov A.N. Inhibitor corrosion of oilfields based on nitrogen-containing compounds and wastes of or-ganochlorine production. Neftegazovoe delo. 2015. V. 13. N 4. P. 163-168 (in Russian).
Khaydarova G.R., Islamutdinova A.A., Dmitriev Yu.K., Sidorov G.M., Ivanov A.N. nhibitor of corrosion of oilfield environments. Neftegazovoe delo. 2015. V. 13. N 4. P. 249-253 (in Russian).