Журналы →  Tsvetnye Metally →  2022 →  №6 →  Назад

BENEFICIATION
Название Intensification of thickening processes during pulp dehydration by efficient mixing of suspensions with flocculant solutions
DOI 10.17580/tsm.2022.06.02
Автор Grigorieva A. N., Abiev R. Sh.
Информация об авторе

Elma-Asterion Group of Companies, St. Petersburg, Russia:
A. N. Grigorieva, General Director, Candidate of Technical Sciences, e-mail: an@td-elma.ru

 

St. Petersburg State Technological Institute (Technical University), St. Petersburg, Russia:

R. Sh. Abiev, Head of the Chair for Optimization of Сhemical and Biotechnological Equipment, Professor, Doctor of Technical Sciences, e-mail: rufat.abiev@gmail.com

Реферат

The efficiency of the process of thickening the products of enrichment of non-ferrous metal ores largely depends on the particle size in the pulp, therefore, flocculants are used to intensify the thickening of fine pulps. In the process of mixing, it is important to evenly distribute the flocculant solution over the entire volume of the pulp and not to destroy the formed flakes by excessive shear stresses of the mixer. The process of flocculation during mechanical mixing of the pulp with concentrated solutions of the flocculant is considered. The previously developed method, based on the semi-empirical Prandtl turbulence model, for selecting mixing devices, taking into account agitator`s geometry, was confirmed. It has been established that the choice of the optimal rotational speed of the agitator is related to the magnitude of turbulent friction stresses created by the agitator`s blades. The results of experimental studies on mixing a suspension with a high-molecular flocculant Greenlife K40 of cationic action using different types of mixing device are presented. The comparison was made between traditional turbine and three-bladed agitators, as well as the developed conical agitator with a new geometry. The efficiency of the mixing devices was determined by comparing the size of the formed flakes. It has been established that larger and stronger flakes are formed in the case of using a conical mixer.

Ключевые слова Mixing device, flocculant, suspension, turbulent stresses, flakes, pulp
Библиографический список

1. Joseph-Soly S., Asamoah R., Addai-Mensah J. Superabsorbent recycling for process water recovery. Chemical Engineering Journal Advances. 2021. No. 6. pp. 1–7.
2. Nosova О. V., Grishchenko V. А., Krashevskiy М. I. Selection of flocculants for thickening products of metallurgical production. Nauchny vestnik Arktiki. 2019. No. 5. pp. 13–20.
3. Timoshenko L. I., Antsiferova S. А., Samoylov V. G., Markosyan S. М. Study of the thickening process before the hydrometallurgical processing of gold-bearing ores. Obogashchenie Rud. 2010. No. 1. pp. 27–29.
4. Gandurina L. V. Wastewater treatment using synthetic flocculants: monograph. Moscow : ZAO DAR/VODGEO, 2007. 98 p.
5. Fitzpatrick S. B., Fradin E., Gregory J. Temperature effects on flocculation, using different coagulants. Water Science and Technology. 2004. No. 12. pp. 171–175.
6. Gudoshnikov А. V. Application of an intelligent block to improve the efficiency of the thickening process. Vestnik sovremennykh issledovaniy. 2017. No. 11. pp. 191–193.
7. Grigoryeva А. N., Abiev R. Sh. To the choice of the type and speed of rotation of the agitator for efficient mixing of flocculants in water. Voda i ekologiya: problemy i resheniya. 2020. No. 2. pp. 27–36.
8. Vasilyev М. P. Intensification of dispersion and mass transfer processes using pulsating and vortex effects: Dissertation … Candidate of Technical Sciences. Ivanovo, 2018. 204 p.
9. Kolmogorov А. N. Local structure of turbulence in an incompressible viscous fluid at very high Reynolds numbers. Uspekhi fizicheskikh nauk. 1967. No. 11. pp. 476–481.
10. Sauter J. Die Grоssenbestimmung der in Gemischnebeln von Verbrennungskraftmaschinen vorhandenen Brennstoffteilchen. Berlin : VDI-Verl, 1926. 74 p.
11. Ulrikh Е. V., Shevchenko Т. V., Pirogov А. N., Midutsina Yu. S. Study of the rheological properties of flocculants. Khimicheskaya promyshlennost segodnya. 2011. No. 5. pp. 25–28. 12. Abiev R. Sh., Grigoreva A. N. Mixing device. Patent RF, No. 2683078. Applied: 06.06.2018. Published: 26.03.2019.
13. Hu P., Liang L., Xie G., Zhou Sh., Peng Y. Effect of slurry conditioning on flocculant-aided filtration of coal tailings studied by low-field nuclear magnetic resonance and X-raymicro-tomography. International Journal of Mining Science and Technology. 2020. Vol. 30. pp. 859–864.

Language of full-text русский
Полный текст статьи Получить
Назад