Журналы →  Obogashchenie Rud →  2019 →  №1 →  Назад

ENVIRONMENTAL TECHNICS AND TECHNOLOGY
Название Using a combination of coagulation and flotation for wastewater treatment
DOI 10.17580/or.2019.01.06
Автор Skorohodov V. F., Kitaeva A. S., Nikitin R. M.
Информация об авторе

Mining Institute of the Kola Science Centre of the Russian Academy of Sciences (Apatity, Murmansk region, Russia):
Skorohodov V. F., Leading Researcher, Doctor of Engineering Sciences, skorohodov@goi.kolasc.net.ru
Kitaeva A. S., Junior Researcher
Nikitin R. M., Researcher

Реферат

Wastewater treatment is an important component in a set of measures to reduce the negative impact of man-made factors on water bodies at mining enterprises. The Mining Institute at the Kola Science Centre of the Russian Academy of Sciences has developed a method for industrial effluent treatment with the use of a carbon-mineral sorbent (a highly porous oleophilic material) formed in the heat treatment of vermiculite with incomplete hydrocarbon fuel combustion. The resulting sorbent has the chemical resistance inherent in vermiculite, high mechanical strength and base exchange properties, while carbon deposition triggers hydrophobization of the outer and inner surfaces of the particles. The basic device for the implementation of the new wastewater treatment method is a flotation machine for the separation of minerals in activated aqueous dispersions of air. The operation principle behind this wastewater treatment device is based on the ability of activated gas bubbles to interact with induced hydrophobic flocculated contaminants present in industrial wastewater. The advantages of the new method include improved removal of undesirable impurities from the water treated through the combined implementation of several processes achieved by introducing a modified natural sorbent and activated aqueous dispersions of air into the working area of the device, which ensure increased surface area at the interphase boundary and specific sorption surface area.

Ключевые слова Wastewater, flotation, activated aqueous dispersion of air, coagulation, sorption, floccules, flotation reagents, MPC
Библиографический список

1. Gornaya entsiklopediya. URL: http://www.mining-enc.ru/v/vodopotreblenie/ (accessed: 8.01.2019).
2. State report “On the state and environmental protection of the Russian Federation in 2017”.
3. Rumyantseva V. A., Drabkova V. G., Izmaylova A. V. Lakes of the European part of Russia. St. Petersburg: LEMA, 2015. 392 p.
4. Jahanshahi M., Taghizadeh M. M. Pre-sedimentation tank effects on water treatment unit operation. Environmental quality. 2018. Vol. 28. pp. 35-42.
5. Pearce G. Introduction to membranes: Filtration for water and wastewater treatment. Filtration and Separation. 2007. Vol. 44. pp. 24-27.
6. De Gisi S., Lofrano G., Grassi M., Notarnicola M. Characteristics and adsorption capacities of low-cost sorbents for wastewater treatment: A review. Sustainable Materials and Technologies. 2016. Vol. 9. pp. 10-40.
7. Prakash N. B., Vimala Sockan, Jayakaran P. Waste water treatment by coagulation and flocculation. International Journal of Engineering Science and Innovative Technology. 2014. Vol. 3. pp. 479-484.
8. Chebakova I. B. Wastewater treatment: studies. manual for university students. G. M. Klyaut (ed.). Omsk: OmGTU, 2001. 84 p.
9. Skorokhodov V. F., Mesyats S. P., Nikitin R. M., Stepannikova A. S. Industrial wastewater treatment technology. X Congress of the CIS countries mineral processors. Collection of materials. Moscow, 2015. pp. 159-161.
10. Pat. 2320548 Russian Federation.
11. Stepannikova A. S., Artemyeva O. A. Improving the efficiency of wastewater treatment of mining enterprises from multicomponent impurities. Problems of subsoil development in the 21st century through the eyes of young people. Materials of the 13th International School of Young Scientists and Specialists, 21-25 November, 2016, Moscow. pp. 296-299.
12. Petrova V. A., Pashkevich М. А. The state of water bodies in the zone of influence of mining enterprises on the example of JSC «Kovdorsky GOK». Almanakh Sovremennoy Nauki i Obrazovaniya. 2011. No. 4 (47). pp. 107.

Language of full-text русский
Полный текст статьи Получить
Назад