Recovery of Residual Lead from Automotive Battery Recycling Slag Using Deep Eutectic Solvents

Author:

Salgado Bruna1ORCID,Endara Diana1,Aragón-Tobar Carlos F.1ORCID,de la Torre Ernesto1,Ullauri Luis1

Affiliation:

1. Department of Extractive Metallurgy, Escuela Politécnica Nacional, Ladrón de Guevara E11-253, P.O. Box 17-01-2759, Quito 170525, Ecuador

Abstract

In this study, we address the ecological challenges posed by automotive battery recycling, a process notorious for its environmental impact due to the buildup of hazardous waste like foundry slag. We propose a relatively cheap and safe solution for lead removal and recovery from samples of this type of slag. The analysis of TCLP extracts revealed non-compliance with international regulations, showing lead concentrations of up to 5.4% primarily in the form of anglesite (PbSO4), as detected by XRF/XRD. We employed deep eutectic solvents (DES) as leaching agents known for their biodegradability and safety in hydrometallurgical processing. Five operational variables were systematically evaluated: sample type, solvent, concentration, temperature, and time. Using a solvent composed of choline chloride and glycerin in a 2:1 molar ratio, we achieved 95% lead dissolution from acidic samples at 90 °C, with agitation at 470 rpm, a pulp concentration of 5%, and a 5 h duration. Furthermore, we successfully recovered 55% of the lead in an optimized solution using an electrowinning cell. This research demonstrates the ability of DES to decontaminate slag, enabling compliance with regulations, the recovery of valuable metals, and new possibilities for the remaining material.

Funder

Department of Extractive Metallurgy (DEMEX) of the Escuela Politécnica Nacional

Publisher

MDPI AG

Reference44 articles.

1. A new process of lead recovery from waste lead-acid batteries by electrolysis of alkaline lead oxide solution;Pan;Electrochem. Commun.,2012

2. Electrochemical study and recovery of Pb using 1:2 choline chloride/urea deep eutectic solvent: A variety of Pb species PbSO4, PbO2, and PbO exhibits the analogous thermodynamic behavior;Liao;Electrochim. Acta,2016

3. Qualitative lead extraction from recycled lead–acid batteries slag;Smaniotto;J. Hazard. Mater.,2009

4. Reactivity of waste generated during lead recycling: An integrated study;Lassin;J. Hazard. Mater.,2007

5. Pure Earth (2023, January 08). World’s Worst Pollution Problems: The Toxics Beneath Our Feet, Green Cross Switzerland. Available online: https://www.worstpolluted.org/docs/WorldsWorst2016.pdf.

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