Obtaining Nickel Concentrates from Sludge Produced in the Process of Electrochemical Metal Surface Treatment

Author:

Świnder HenrykORCID,Lejwoda PawełORCID

Abstract

AbstractThe article presents the possibility of recovering nickel from waste produced as a result of wastewater neutralization during the electrochemical surface treatment of metals. Leaching the sludge with concentrated hydrochloric acid enabled the metals contained in the sludge from precipitate to the solution with the efficiency of 74.4% (Se) to 100% (Zn). The content of elements was determined using the ICP-OES method. The next step was the precipitation of metals from the obtained solution using various reagents. The precipitating reagents used were 0.5 M sodium hydroxide solution, 0.5 M sodium sulphide solution and 1% dimethylglyoxime solution. Selective precipitation made it possible to obtain nickel concentrates with the content of nickel ranging from 15.3 to 98.2% for the first two methods, whereas in the case of the third method based on a dimethylglyoxime solution, the obtained nickel concentrate purity was 94.3%. The process of leaching nickel-dimethylglyoxime complex (Ni-DMG) with sulphuric acid and crystallization enabled obtaining 99.4% purity nickel sulphate, which can be reused in the nickel plating of selected metals. The research shows that waste generated in the process of neutralization of wastewater from electroplating plants is a potentially important source of recycled nickel concentrates.

Funder

ministerstwo nauki i szkolnictwa wyższego

Publisher

Springer Science and Business Media LLC

Subject

Pollution,Water Science and Technology,Ecological Modeling,Environmental Chemistry,Environmental Engineering

Reference13 articles.

1. Blank, A. B., Bulgakova, A. M., Sizonenko, N. T., & Zhurnal, A. E. (1961). Successive extraction and photometric determination of traces of copper, nickel, iron, and manganese. Analiticheskoi Khimii, 16, 715–719.

2. Brooks C.S., (1985). Metal recovery from waste sludge’s Clyde Spear. Proceedings of the 39th Industrial Waste Conference, Glastonbury, CT, USA, 529–535

3. European Commission (2020). Communication from the Commission to the European Parliament, the Council, the European Economic and Social Committee and the Committee of the Regions. Critical raw materials resilience: Charting a path towards greater security and sustainability. COM(2020) 474 final, Brussels, Belgium

4. Claassen, A. (1966). The determination of nickel with dimethylglyoxime in iron and steel containing cobalt and copper. The Analyst, 91, 725–731.

5. International Organization for Standardization, (2012). Water quality - Determination of pH, EN ISO 10523, Brussels, Belgium.

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