Published October 2021, Pg. 33-37

Section: Nanotechnologies in oil industry

UOT: 622.24:622.276

DOI: 10.37474/0365-8554/2021-10-33-37

Development of nanobentonite using natural resour- ces of Azerbaijan

E.K. Shahbazov Dr. in Tech. Sc. - ”Azerbaijan Oil Industry” Journal

A.A. Guvalov Dr. in Tech. Sc. - Azerbaijan University of Architecture and Construction

Keywords:  
nanoparticle
nanobentonite
oil-gas production
drilling mud
montmorillonite
rheological properties

Currently, one of the key tasks in the manufacture of well-known nanosystems is the substitution of metallic nanomaterials for bentonite-containing ones. The paper reviews the rheological and other parameters, as well as shows the practical significance of specification of application fields based on the mechanism study of swelling process of nanobentonite systems.

Scientific-methodological framework of bentonite benefication has been developed and as a result of research conducted, nanobentonite obtained. It was defined that after raw cleaning from external impurities, it is possible to increase the bentonite amount up to 97 %. Moreover, due to the benefication, the size of nanoparticles in the bentonite crystals decreased to 8.16−10.04 nm.

References:

1. Kh. Yusifzade, E. Shakhbazov. Razrabotka i vnedrenie nanotekhnologiy v neftegazodobyche. – Baku, 2011, 108 s.

2. E.K. Shakhbazov, O A. Dyshin. Nauchnye osnovy sistemy “NANOPAV” dlya bureniya i dobychi nefti i gaza. – Baku, 2011, 59 s.

3. E. Shakhbazov. Nanotekhnologii v neftyanoy promyshlennosti. – Baku, 2012, 231 s.

4. A. Mirzadzhanzade, A. Magerramov, R. Abdullayev, Kh. Yusif-zade, E. Shakhbazov i dr. Nauchnye osnovy razrabotki i vnedreniya nanotekhnologiy v neftyanoy promyshlennosti. “Nanonauka i nanotekhnologii” Entsiklopediya sistem zhizneobespecheniya, Izd-vo UNESKO, izd-vo ЕОТ.5$, Izdatel´skiy dom “MAGISTR-PRESS”, Moskva, 2011, 1000 s.

5. A.L. Shabanov, E.E. Ramazanova. Novye protsessy v bor´be s gidratoobrazovaniem uglevodorodnykh gazov // Azerbaidzhanskoe neftyanoe khozaistvo, 2002, No 6, s. 51-54.

6. Pat. AZ I No 1 2008 0069. Sostav dlya povysheniya dobychi nefti v starykh expluatatsionnykh neftyanykh skvazhinakh. / A.Kh. Mirzadhzanzade, A.B. Magerramov, Kh.B. Yusifzade, (51) Е21В 43/22 (2006.01).

7. E.K. Shakhbazov, E.A. Kazimov. Nanotekhnologii dlya upravleniya svoistvami tribotekhniki bureniya skvazhin na neft´ i gaz // Azerbaidzhanskoe neftyanoe khozaistvo, 2010, No 8.

8. Tzong-Ming Wu, Cheng-Yang Wu. Biodegradable poly (lactic acid) / chitosan-modified montmorilIonite nanocomposites: Preparation and characterization // Polymer Degradation and Stability 91, 2006, pp. 2198-2204.

9. C.H. Hua, Y. Xua, M.S. Xiab, L. Xionga, Z.R. Xua. Effects of Cu2+-exchanged montmorillonite on growth performance, microbial ecology and intestinal morphology of Nile tilapia. Aquaculture, 2007, vol. 270, iss. 1-4, pp. 200-206.

Links