Hydroxy-Carboxylic Acids as Green and Abundant Ligands for Sustainable Recovery of Copper from a Multimetallic Powder: A Proof of Concept.

IF 7.5 2区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
ChemSusChem Pub Date : 2025-01-14 Epub Date: 2024-10-25 DOI:10.1002/cssc.202401389
Pietro Ostellari, Martina Tapparelli, Giulia Bragaggia, Annalisa Sandon, Maria Cristina Lavagnolo, Leonardo Girardi, Michele Manica, Luigi Salmaso, Silvia Gross
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Abstract

The recovery of copper and other valuable metals had become increasingly strategic for the future of the global economy, particularly in regions lacking abundant mineral resources, such as most European countries. In this study, we investigated the viability of utilizing environmentally friendly, cost-effective, abundant and bio-based ligands, specifically carboxylic acids and their derivatives, for copper leaching in a low-temperature hydrometallurgical process. Our investigation focused on elucidating the impact of substituents in the α position of hydroxy-carboxylic acids on copper solubilization efficacy. Notably, hydroxy-carboxylic acids, like malic acid and lactic acid, were evidenced as particularly promising ligands for leaching copper from a custom-made multimetallic powder. By thoroughly characterizing the obtained complexes (Raman, UV-Vis) and by supporting the experimental efforts by a Design of Experiment (DoE) approach, we optimized the leaching process. The influence of experimental parameters such as pH, temperature, leaching time, and Cu/ligand molar ratio on process yield (determined through Inductively Coupled Plasma - Optical Emission Spectroscopy, ICP-OES, analysis) was thoroughly investigated. Additionally, we developed a subsequent copper recovery step by precipitating copper (II) hydroxide in an alkaline environment, guided by speciation diagrams tailored for each copper-ligand system.

羟基羧酸作为从多金属粉末中可持续回收铜的绿色、丰富配体:概念验证。
铜和其他贵金属的回收对全球经济的未来越来越具有战略意义,尤其是在缺乏丰富矿产资源的地区,如大多数欧洲国家。在本研究中,我们探讨了在低温湿法冶金工艺中利用环保、经济、丰富的生物配体(特别是羧酸及其衍生物)进行铜浸出的可行性。我们的研究重点是阐明羟基羧酸 α 位取代基对铜溶解功效的影响。值得注意的是,苹果酸和乳酸等羟基羧酸被证明是从定制的多金属粉末中浸出铜的特别有前途的配体。通过对获得的配合物进行全面表征(拉曼、紫外可见光),并通过实验设计(DoE)方法支持实验工作,我们对浸出过程进行了优化。我们深入研究了 pH 值、温度、浸出时间和铜/配体摩尔比等实验参数对工艺产量(通过电感耦合等离子体-光学发射光谱,ICP-OES 分析确定)的影响。此外,我们还开发了一个后续铜回收步骤,即在碱性环境中沉淀氢氧化铜 (II),该步骤以针对每种铜配体系统定制的标示图为指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ChemSusChem
ChemSusChem 化学-化学综合
CiteScore
15.80
自引率
4.80%
发文量
555
审稿时长
1.8 months
期刊介绍: ChemSusChem Impact Factor (2016): 7.226 Scope: Interdisciplinary journal Focuses on research at the interface of chemistry and sustainability Features the best research on sustainability and energy Areas Covered: Chemistry Materials Science Chemical Engineering Biotechnology
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