Designing a Technology of Industrial Sewage Waters Purification from the Spent Polishing Powder Based on Ceric Oxide

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Abstract:

The primary activity of an enterprise, where the wastewater samples have been taken, is applying lacquer coatings to glass and the mirrors production. For washing glass before the application of coatings a suspension of powder based on ceric oxide is prepared, which is used as a polishing solution. The physical and chemical properties of industrial sewage waters, generated after glass polishing, and of the initial and spent polishing powder based on ceric oxide have been researched. The optimal doses of flocculating agents for purifying wastewaters in order to reduce turbidity, suspended solids concentration and dry residue have been determined. After the flocculation the advanced treatment of the water was done, by means of filtering elements with pore size 5 and 1 μm, produced by the Pentek Company. The process scheme of wastewater purification, including the physico-chemical method (flocculation) and mechanical purification method by using bag filters, has been developed.

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Solid State Phenomena (Volume 284)

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719-725

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October 2018

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© 2018 Trans Tech Publications Ltd. All Rights Reserved

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[1] E.O. Grafova, Resource-saving technology of water treatment in the dry, filters, Monthly Scientific Journal «Water Treatment», 1 (2014) 64-67.

Google Scholar

[2] I. Chigaev, L. Komarova, Technology of Groundwater Treatment Based on Nanofiltration, Ecology and Industry of Russia, 21(8) (2017) 8-12.

DOI: 10.18412/1816-0395-2017-8-8-12

Google Scholar

[3] Filtering material, method of its manufacture and method of filtering. Invention 2317843, Russian Federation.

Google Scholar

[4] Bag filter. Invention 2380134, Russian Federation.

Google Scholar

[5] Drinking water filter. Invention 2486136, Russian Federation.

Google Scholar

[6] Filter material. Invention 2521378, Russian Federation.

Google Scholar

[7] Device used for purification of the natural waters and sewage. Invention 2317129, Russian Federation.

Google Scholar

[8] Method of deep purification of sewage waters. Invention 2339588, Russian Federation.

Google Scholar

[9] Bahareh Asadollahi Esfahani, Banafsheh Asadollahi Esfahani, Mina Shams Koupaei, Seyyedeh Zahra Ghasemi, Industrial Waste Water Treatment By Membrane Systems, Indian Journal of Fundamental and Applied Life Sciences, 4 S1 (2014) 1168-1177.

Google Scholar

[10] Modernisation of filtering station by means of technology vacuum merman ultrafiltrations, Monthly Scientific Journal «Water Treatment», 10 (2014) 53-54.

Google Scholar

[11] M.A. Terentyev, Main principles of the organisation of economic system of an effective deadlock microfiltration at clearing of the big streams of water, Monthly Scientific Journal «Water Treatment», 9 (2015) 65-69.

Google Scholar

[12] Polyacrylamide flocculant. Invention 2350635, Russian Federation.

Google Scholar

[13] Flocculant composition based on polyacrylamide. Invention 2358995, Russian Federation.

Google Scholar

[14] Flocculant modification method. Invention 2529229, Russian Federation.

Google Scholar

[15] Flocculant for treating waste water. Invention 2453504, Russian Federation.

Google Scholar

[16] M. Czemierska, A. Szcześ, A. Jarosz-Wilkołazka, Purification of wastewater by natural flocculants, Journal of Biotechnology, Computational Biology and Bionanotechnology, 96(4) (2015) 272-278.

DOI: 10.5114/bta.2015.57731

Google Scholar

[17] L.P. Alekseeva, L.V. Kurova, Features the use of organic cationic flocculants in the purification of water from surface sources, Monthly Scientific Journal «Water supply and the sanitary technics», 4 (2012) 20-27.

Google Scholar

[18] B.J. Dighe, P.R. Patil, M. Mishra, Reduction of Ammonia and Turbidity in Wastewater of Pharmaceutical Industry, 4 (5) (2015) 2949-2954.

Google Scholar

[19] B.M. Grishin, S.M. Salmin, A.I. Sheyin, Experimental studies of water purification with the use of contact coagulation on the coarse boot, Monthly Scientific Journal «Water Treatment», 4 (2015) 26-32.

Google Scholar

[20] S.V. Sverguzova, L.A. Porozhnyuk, D.Y. Ipanov, A.V. Shamshurov, E.V. Novikova, Colloid-chemical Properties of Electric Arc furnaces' Dust in Processes of Wastewater Treatment, Ecology and Industry of Russia, 7 (2013) 22-25.

Google Scholar

[21] A method of producing alumosilicious flocculant-coagulant. Invention 2588535, Russian Federation.

Google Scholar