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Mahdi Gharabaghi, Mehdi Irannajad, Amir Reza Azadmehr and Majid Ejtemaei

leaching of cadmium from Cd-Ni zinc plant residues , Journal of Hazardous Materials, 163 , 880-890 (2009). [7] M. Gharabaghi, M. Irannajad, A.R. Azadmehr: Acidic leaching of cadmium from zinc plant residue , Physicochem. Problem of Mineral Processing, 47 , 91-104 (2011). [8] D.J. Hanson: Nickel Chemical and Engineering News , 81 , 82 (2003). [9] G.M. Mudd: Global trends and environmental issues in nickel mining: Sulfi des versus laterites , Ore Geology Reviews [In Press, Corrected Proof] (2010). [10] M

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Szymon Różański

References [1] Hall GEM, Gauthier G, Pelchat JC, Pelchat P, Vaive JE. Application of a sequential extraction scheme to ten geological certified reference materials for the determination of 20 elements. J Anal At Spectrom. 1996;11:787-796. DOI: 10.1039/JA9961100787.[2] Miller WP, Martens DC, Zelazny LW. Effect of sequence in extraction of trace metals from soils. Soil Sci Soc J of America. 1986;50:598-601. DOI: 10.2136/sssaj1986.03615995005000030011x. [3] Rauret GJF, López-Sánchez JF, Sahuquillo A, Rubio R, Davidson C

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Zohreh Doroudi and Ali Niazi

. & Azizi, A. (2008). Orthogonal Signal Correction – Partial Least Squares Method for Simultaneous Spectrophotometric Determination of Nickel, Cobalt, and Zinc. Turk. J. Chem. 32, 217–228. 22. Hejazi, L., Mohammadi, D.E., Yamini, Y. & Brereton, R.G. (2004). Solid-phase extraction and simultaneous spectrophotometric determination of trace amounts of Co, Ni and Cu using partial least squares regression. Talanta 62(1), 185–191 DOI: 10.1016/S0039-9140(03)00412-0. 23. Niazi, A., Azizi A. & Ramezani, M. (2008). Simultaneous spectrophotometric determination of

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Hüseyin Altundağ, Mustafa Şahin Dündar and Can Serkan Keskin

;17(4):306-311. DOI: 10.1504/IJEP.2002.000674. [26] Dundar MS, Pala MF. Monitoring of lead, zinc, cadmium, nickel, chromium, copper in street dust samples in Adapazari, Turkey, after earthquake. Trace Elements and Electrolytes. 2003;20(2):104-107. [27] Dundar MS, Altundag H, Eyupoglu V, Keskin CS, Tutunoglu C. Determination of heavy metals in lower Sakarya river sediments using a BCR-sequential extraction procedure. Environ Monit Assess. 2012;184:33-41. DOI: 10.1007/s10661-011-1944-7. [28] Dundar MS, Deryaoglu N. Heavy metal

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Hanna Jaworska, Agata Bartkowiak and Szymon Różański

. McGrath S.P., 1995. Chromium and Nicel. Heavy metails in soil ed. B.J. Alloway Blac. Acad. & Prof.: 54.65. Panwar B.S., Ahmed K.S. Mittal S.B., 2002. Phytoremediation of nickel-contaminated soils by Brassica Species. Environment. Development and Sustainability 4: 1.6. Perlak Z., 2000. Różnicowanie siê metali ciêżkich w profilach gleb ł¹kowych doliny Odry w rejonie Bytomia Odrza ñskiego cz. II. Zeszyty Problem. Post. Nauk Rol. 471: 1099. 1107. Rooney P.C., Zhao F-J., McGrath P.S., 2007. Phytotoxicity of

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Oksana Velgosová, Jana Kaduková and Renáta Marcinčáková

References ABDALLAH, M., EL-ETRE, A.Y.: Corrosion Inhibition of Nickel in Sulfuric Acid Using Tween Surfactants, Portug. Electrochimica Acta, 21, 2003, 315-326. BARTOLOZZI, M., BRACCINI, G., BONVINI, S., Marconi, P.F.: Hydrometallurgical recovery process for nickel-cadmium spent batteries. J. Power Sources, 55, 1995, 247-250. CABRERA, G., GÓMEZ, J.M., CANTERO, D.: Influence of heavy metals on growth and ferrous sulphate oxidation by Acidithiobacillus ferrooxidans in pure and mixed cultures, Process

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Vladimír Repka, Roderik Fiala, Milada Čiamporová, Michal Martinka and Ján Pavlovkin

REFERENCES AITKEN, A. 2006. 14-3-3 proteins: a historic overview. In Seminars of Cancer Biology , vol. 16 , pp. 162–172. ARTIUSHENKO, T. – SYSHCHYKOV, D. – GRYSHKO, V. – ČIAMPOROVÁ, M. – FIALA, R. – REPKA, V. – MARTINKA, M. – PAVLOVKIN, J. 2014. Metal uptake, antioxidant status and membrane potential in maize roots exposed to cadmium and nickel. In Biologia , vol. 69 , pp. 1142–1147. BENAVIDES, M.P. – GALLEGO, S.M. – TOMARO, M.L. 2005. Cadmium toxicity in plants. In Brazilian Journal of Plant Physiology , vol. 17 , pp. 21–34. BOL, J

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Lidia Dąbrowska

., Tellier S., Astruc M.: Fractionation studies of trace elements in contaminated soils and sediments: a review of sequential extraction procedures, Trends in Analytical Chemistry, 21, (2002) 451-467. 5. Hulanicki A.: Współczesna chemia analityczna. Wybrane zagadnienia (Contemporary analytical chemistry. Selected problems), Wydawnictwo Naukowe PWN, Warszawa 2001. 6. Kelderman P., Osman A.A.: Effect of redox potential on heavy metal binding forms in polluted canal sediments in Delft (The Netherlands), Water Research, 41, (2007) 4251

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Ameet Kumar, Aamna Balouch, Ashfaque Ahmed Pathan, Abdullah, Muhammad Saqaf Jagirani, Ali Muhammad Mahar, Muneeba Zubair and Benazir Laghari

precipitation from aqueous sulfate media,” JOM Journal of the Minerals, Metals and Materials Society, vol. 55, pp. 42-46, 2003. [24] G. Escudero, E. Espinoza, and F. Rao, “Chemical Precipitation of Nickel Species from Waste Water,” International Research Journal of Pure and Applied Chemistry, vol. 15, p. 1, 2017. [25] K. Tanong, L.-H. Tran, G. Mercier, and J.-F. Blais, “Recovery of Zn (II), Mn (II), Cd (II) and Ni (II) from the unsorted spent batteries using solvent extraction, electrodeposition and precipitation methods,” Journal of cleaner production, vol. 148

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Paschal Okiroro Iniaghe and Gilbert Umaye Adie

.E. Musson, Y.C. Jang, T.G. Townsend, I.H. Chung, Characterization of lead leachability from cathode ray tubes using the toxicity characterization leaching procedure, Environ. Sci. & Technol. 34 (2000) 4376-4381. [14]. A. Keith, K. Kessling, K.F. Fitzwater, J. Pichtel, D. Houy, Assessment of Pb, Cd, Cr and Ag leaching from electronics waste using four extraction methods, J. Environ. Sci. & Health A43 (2008) 1717-1724. [15]. T.C. Ling, C.S. Poon, Utilization of recycled glass derived from cathode ray tube glass as fine aggregate in cement