METHOD FOR DISPOSAL OF REVERSE OSMOSIS CONCENTRATE OF THERMAL POWER PLANTS
Abstract and keywords
Abstract (English):
Currently, thermal power plants make the largest contribution to the production of electricity. In order to compensate for the loss of steam and condensate, many thermal power plants use membrane methods, such as reverse osmosis systems, to prepare additional water. However, the use of reverse osmosis systems results in the production of highly mineralized concentrate, which cannot be discharged into surface water bodies or sewage systems without prior treatment. The article discusses the possibility of using reverse osmosis concentrate from thermal power plants as mineralized water for injection into oil reservoirs in order to increase the oil displacement coefficient.

Keywords:
reverse osmosis concentrate, oil reservoir, wastewater treatment
Text
Text (PDF): Read Download
References

1. Vysockij S.P., Pechenoga A.A. Sovershenstvovanie obratnoosmoticheskogo obessolivaniya vody // Nauchnyj vestnik NII Respirator. 2020. № 2 (57). S. 82–89.

2. Dytnerskij Yu.I. Obratnyj osmos i ul'trafil'traciya. M.: Himiya, 1978. 352 s.

3. Recycling of reverse osmosis (ro) reject water as a mixing water of calcium sulfoaluminate / H. Lee [et al.] // (CSA) Cement for Brick Production. Appl. Sci. 2019. Vol. 9. P. 2–15.

4. Potential of reverse osmosis reject water as a growth medium for the production of algal metabolites–A state-of-the-art review. J. / M.S. Rana [et al.] // Water Process. Eng. 2020. Vol. 40. P. 2214–7144.

5. Metal recovery from reverse osmosis concentrate. J. / T. Jeppesen [et al.] // Journal of Cleaner Production. 2009. T. 17. № 7. C. 703–707.

6. Shilkina D.A., Gonopol'skij A.M. Tekhnologiya obrashcheniya s koncentratom obratnoosmoticheskih ustanovok // Sistema upravleniya ekologicheskoj bezopasnost'yu: sb. nauch. tr. XVII Mezhdunar. nauch.-prakt. konf. Ekaterinburg: UrFU, 2023. S. 305–310.

7. Gudkov N.O., Burlakov I.A., Koryagina T.F. Vybor vody dlya zavodneniya neftyanyh plastov mestorozhdenij Stavropol'skogo Kraya // Neftepromyslovoe delo. 1965. № 2. S. 23–27.

8. Ryabchikov B.E. Sovremennye metody podgotovki vody dlya promyshlennogo i bytovogo ispol'zovaniya: proizvodstvenno-prakticheskoe izdanie. M.: DeLi print, 2004. 301 c.

9. Nikolaeva L.A., Zajnullina E.R., Sayahov R.I. Ochistka obratnoosmoticheskogo koncentrata zoloshlakovymi othodami TES // Ekologiya i promyshlennost' Rossii. 2024. T. 28. № 9. S. 10–15.

10. Nikolaeva L.A., Zajnullina E.R. Issledovanie processa obessolivaniya koncentrata ustanovok obratnogo osmosa othodom energetiki // Izvestiya vysshih uchebnyh zavedenij. Problemy energetiki. 2022. T. 24. № 2. S. 186–195.

11. Stupochenko V.E. Nauchnoe obosnovanie metodov intensifikacii razrabotki glinosoderzhashchih kollektorov i usovershenstvovannyh polimernyh tekhnologij s cel'yu povysheniya nefteotdachi plasta: dis. … d-ra tekhn. nauk. M.: VNIIneft', 2000. 438 s.

12. LoSalTM Enhanced Oil Recovery: Evidence of Enhanced Oil Recovery at the Reservoir Scale / A. Lager [et al.] // SPE 113976. 2008. Vol. 63. № 1. P. 9–19.

13. Maksutova R.A. Tekhnologiya i tekhnika dlya povysheniya proizvoditel'nosti skvazhin i nefteotdachi plastov. M.: VNIIneft', 1991. 191 c.

14. Galeev R.G. Povyshenie vyrabotki trudnoizvlekaemyh zapasov uglevodorodnogo syr'ya. M.: KUBK-a, 1997. 352 c.

Login or Create
* Forgot password?