氧化酸性沥滤铁镍矿渣以实现可持续金属回收和减少责任

IF 2.5 3区 材料科学 Q3 GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY Journal of Sustainable Metallurgy Pub Date : 2024-03-25 DOI:10.1007/s40831-024-00812-7
Vinício Francisco Ibiapina, Marta Eloisa Medeiros, Júlio Carlos Afonso, Iranildes Daniel dos Santos
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摘要

红土矿的火法冶金加工会产生大量镍铁渣,其中可能含有有价值的金属。本文介绍了一种利用氧化酸性浸出法从镍铁渣样品中回收金属并减少责任物质的新型湿法冶金路线。采用盐酸和过氧化氢作为浸出剂。在筛选设计中采用了 24-1 分因子设计,共进行了 11 次实验,以评估盐酸浓度(3.0-6.0 mol L-1)、H2O2 浓度(0.5-2.5 mol L-1)、浸出时间(30-240 分钟)和固液比(75-125 g L-1)。盐酸和 H2O2 浓度对质量和金属浸出率的影响具有统计学意义。在 Doehlert 设计所指示的最佳区域:5.4-6.0 mol L-1 HCl、0.7-1.5 mol L-1 H2O2、25 °C、120 分钟和 100 g L-1 固液比下,钴和镍的浸出率超过 80%,铁的浸出率约为 75%。超过 70 wt% 的炉渣被溶解。不溶物主要是 Fe3O4 和 SiO2。铬的浸出率很低。温和的实验条件,即温度、浸出时间和浸出剂浓度,使这条新路线对处理中低质量的镍铁渣和减少这种责任对环境的影响非常有吸引力。
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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Oxidative Acidic Leaching of Ferronickel Slag for Sustainable Metals Recovery and Liability Reduction

Pyrometallurgical processing of lateritic ore produces huge amounts of ferronickel slags, which may contain valuable metals. This paper describes a novel hydrometallurgical route to recover metals from ferronickel slag samples and reduce liability matters using oxidative acidic leaching. Hydrochloric acid and hydrogen peroxide were employed as leachants. A 24–1 factorial fractional design with 11 experiments was employed as a screening design to evaluate HCl concentration (3.0–6.0 mol L–1), H2O2 concentration (0.5–2.5 mol L–1), leaching time (30–240 min), and solid–liquid ratio (75–125 g L–1). HCl and H2O2 concentrations were statistically significant for mass and metals leaching yields, which were studied by Doehlert design with 9 experiments with a response surface methodology (RSM). More than 80 wt% of cobalt and nickel, and ~ 75 wt% of iron were leached under the optimum region indicated by Doehlert design: 5.4–6.0 mol L–1 HCl, 0.7–1.5 mol L–1 H2O2, 25 °C, 120 min, and 100 g L–1 solid–liquid ratio. Over 70 wt% of the slag mass was dissolved. The insoluble matter is essentially Fe3O4 and SiO2. Chromium was poorly leached. The mild experimental conditions, namely temperature, leaching time, and leachant concentrations make the novel route very attractive for processing medium- to low-quality ferronickel slags and for reducing the environmental impact of this liability.

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来源期刊
Journal of Sustainable Metallurgy
Journal of Sustainable Metallurgy Materials Science-Metals and Alloys
CiteScore
4.00
自引率
12.50%
发文量
151
期刊介绍: Journal of Sustainable Metallurgy is dedicated to presenting metallurgical processes and related research aimed at improving the sustainability of metal-producing industries, with a particular emphasis on materials recovery, reuse, and recycling. Its editorial scope encompasses new techniques, as well as optimization of existing processes, including utilization, treatment, and management of metallurgically generated residues. Articles on non-technical barriers and drivers that can affect sustainability will also be considered.
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