Sorption Method of Zinc (Zn2+) Removal from Galvanic Wastewater of a Machine-Building Plant

Article Preview

Abstract:

This article contains studies, during which the removal of zinc from industrial wastewater of the OOO Rostselmash machine-building plant (Rostov-on-Don) was carried out, using a sorption cleaning method, based on the use of an anacard nut shell grown in the Republic of Côte d'Ivoire. According to the experimental data, the cleaning efficiency was 94%, which confirms the ability of the anacard nutshell to carry out sorption purification of industrial wastewater.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

966-969

Citation:

Online since:

September 2018

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2018 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] Tagutchou Jean-Philippe, Naquin Pascale, Caractérisation et traitement thermochimique des coques d'anacarde en vue de leur valorisation énergétique dans les procédés de transformation artisanale de noix de cajou; Colloque Eau, Déchets et Développement Durable, 21 – 24 mars 2012, Agadir, Maroc. pp.28-35.

DOI: 10.4267/dechets-sciences-techniques.2722

Google Scholar

[2] Soro Doudjo; Thèse: «Couplage de procédés membranaires pour la clarification et la concentration du jus de pomme de cajou: performances et impacts sur la qualité des produits» MONTPELLIER SUPAGRO; Page 1 ; (2012).

DOI: 10.1051/fruits:2005010

Google Scholar

[3] Informations: Chambre de Commerce et d'Industrie de Côte d'Ivoire. Information on: cci.ci/3.0/component/content/article/133-telechargements/683-fiches-sectorielles.

Google Scholar

[4] Yu.I. Perederiy, I.N. Kurakov, M.V. Malikov, Adsorbents based on carbon-containing materials, Moscow, ZAO Metallurgizdat, (2014).

Google Scholar

[5] L. Ye. Pustovaya, T.A. Tyurina, B.V. Talpa, E. M. Bayan; Adsorbability of talpus-ro and talpus-kk mould; Vestnik Donskogo Gosudarstvennogo Tekhnicheskogo Universiteta. 12 (2-1) (63) (2012) 151-152.

Google Scholar

[6] H. Kinle, E. Bader. Active coals and its industrial application, Khimiya, Leningrad, (1986).

Google Scholar

[7] K.K. Kishibaev, A.T. Kabulov, R.R. Tokpaev, A.A. Atchabarova, S.A. Efremov, S.V. Nechipurenko, M.K. Nauryzbaev, V.M. Mukhin; IR spectroscopy of activated carbons based on furfural copolymers. Khimicheskiye i metallurgicheskie nauki, Vestnik KazNTU. 4 (2014).

DOI: 10.1134/s107042721603006x

Google Scholar

[8] V.V. Pavlenko, Synthesis and use of multifuncional carbon nanostructured materials based on plant fiber, Almaty, (2014).

Google Scholar

[9] A.S. Khalil, N.S. Serpokrylov, A.S. Smolyanichenko, S.V. Starovoitov, Mathematical description of sorption on modified rice straw, Izhenerniy vestnik Dona. 1 (2018). Information on: ivdon.ru/uploads/article/pdf/IVD_16_Halil_N.pdf_8115529461.pdf.

Google Scholar

[10] Setianto W.B, Yoshikawa S, Smith Jr.R.L, Inomata H, Florusse L.J, Peters C.J., Pressure profile separation of phenol c liquid compounds from cashew (Anacardium occidentale) shell with supercritical carbon dioxide and aspects of its phase equilibria,, Journal of Supercritical Fluids. 48 (2009).

DOI: 10.1016/j.supflu.2008.11.018

Google Scholar

[11] Smith Jr. R.L., Malaluan R.M., Setianto W.B., Inomata H., Arai K.. Separation of cashew (Anacardium Occidentale L.) nut shell liquid with supercritical carbon dioxide. Bioresour Technol. 2003 May;88 (1): pp.1-7.

DOI: 10.1016/s0960-8524(02)00271-7

Google Scholar