Research of Mechanisms of Copper Ions Removal out of Sewage of Machine-Building Productions by Combined Reagent Based on Industrial Wastes

Article Preview

Abstract:

The need for sewage purification of machine-building production from copper compounds which possess toxic, allergic, cancerogenic, gonadotropny and embryotoxic action, has been justified. The methods of studying of component and mineralogical composition of wastes, which are used for purification of model mortars, have been given. Some methods of purification of mortars from copper ions have been considered. The need for the search of alternative methods of purification, taking into consideration the composition and properties of the purified environments, and also taking into account the possible reset of purified sewage into natural reservoirs, has been shown. It has been revealed, that application of calcium- containingwaste as reagent won't help to additional alkalization of natural reservoirs. Prospects of use of regional industrial wastes for extraction of copper ions out of model mortarshave been shown. The mechanism of purification of model drains from copper ions by a combined reagent has been described.

You might also be interested in these eBooks

Info:

Periodical:

Solid State Phenomena (Volume 265)

Pages:

851-855

Citation:

Online since:

September 2017

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2017 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] J.V. Moore, S. Ramamurti, Heavy metals in natural waters, Mir, Moscow, (1987).

Google Scholar

[2] D.N. Smirnov, V.E. Genkin, Sewage purifying in processing of metals, Metallurgy, Moscow, (1980).

Google Scholar

[3] L.V. Milovanov, Sewage purifying of the enterprises of nonferrous metallurgy, Metallurgy, Moscow, (1971).

Google Scholar

[4] L.I. Sidelnikova, Biotechnology in purifying of industrial sewage from ions of heavy metals, Chemistry, Leningrad, (1994).

Google Scholar

[5] A.M. Koganovsky, Purifying and use of sewage in industrial water-supply, Chemistry, Leningrad, (1987).

Google Scholar

[6] K.B. Lebedev, V.N. Antonov, A.I. Ozerov, Purifying and monitoring of sewage of enterprises of nonferrous metallurgy, Metallurgy, Moscow, (1983).

Google Scholar

[7] G.S. Karnaukh, V.I. Kostiuk, Utilization of sewage by method of the reverse osmosis, Naukovadumka, Kiev, (1982).

Google Scholar

[8] S.V. Sverguzova, L. A Porozhnyuk, T. A Vasilenko, Complex neutralization of sewage, utilization of precipitates of water purification and recycling of gypso-and metal-containing industrial wastes: monograph, BSTU publishing, Belgorod, (2009).

Google Scholar

[9] L.M. Smolenskaya, M.M. Latypova, M.I. Vasilenko, I.V. Starostina, E.A. Pendyurin, Sorbents for sewage purifying from ions of heavy metals, Sorbents as a factor of quality of life and health: All-Russian scientific conference with international part, BSTU publishing, Belgorod, (2004).

Google Scholar

[10] A.I. Zhukov, I.L. Mongayt, I.D. Rodziller, Methods of purifying of production sewage, Stroyizdat, Moscow, (1977).

Google Scholar

[11] Koganovsky, T.M. Levchenko, I.G. Rod, P.M. Marutovsky, Adsorption sewage purifying, Technique, Kiev, (1981).

Google Scholar

[12] V. G Kutsiy, Deleting of Cu2+, Co2+, Ni2+, Mn2+, Fe3+ and Cr6+ from water solutions by oxides of metals, Ekotekhnologiya and resursosnabzheniye, 2 (2004) 46-49.

Google Scholar

[13] L.A. Porozhnyuk, S.V. Sverguzova, A.N. Lopanov, Use of aluminum-containing waste for aqueous media purification from the compounds of hexavalent chromium, Research journal of Applied Science, 9(12) (2014) 1206-1210.

Google Scholar

[14] E.S. Klimov, M.V. Buzayeva, Natural sorbents and complexons in sewage purifying, USTU, Ulyanovsk, (2011).

Google Scholar

[15] N.S. Lupandina, N. Yu. Kiryushina, Zh.A. Sverguzova, D.A. Yellnikoff, Use of production waste for sewage purifying, EKIP Ecology and industry of Russia, Moscow. 5 (2010) 38-41.

Google Scholar

[16] Zh.A. Sverguzova, D.A. Yellnikoff, S.V. Sverguzova, About the possibility of withdrawal of sugar industry for purifying ofsewage, Vestnik of BSTU named after V. G. Shukhov, Belgorod. 3 (2011) 128-133.

Google Scholar

[17] L.M. Smolenskaya, Yu.A. Kilyushik, O.A. Leyko, T.V. Druzhinina, Research of processes of sorbtion of nickelions and cadmium ionsout of water mortars of complexites on the basis of modified polyamide fiber, Chemical fibers, Moscow, 3 (2011) 48-52.

Google Scholar

[18] S.I. Pechenyuk, Sorbtion of anions on oxyhydroxygroups of metals, in: Sorbtion and chromotographic processes, Moscow, 8(3) (2008) 380-429.

Google Scholar

[19] L.A. Porozhnyuk, E.N. Chemerichenko, Deleting of Ni2+, Cu2+ and CrO42- byaluminum-containing technogenic waste, Vestnik BSTU named after V. G. Shukhov, Belgorod, 4 (2013) 161-163.

Google Scholar

[20] A. D. Smirnov, Sorbtion water purification, Chemistry, Leningrad, (1982).

Google Scholar

[21] G. S. Fomin, Water. Monitoring of chemical, bacterial and radiation safety according to the international standards, Proektor, Moscow, (2000).

Google Scholar