Leaching of copper slags by direct photooxidation mechanism using ultraviolet light

IF 3.7 2区 材料科学 Q1 METALLURGY & METALLURGICAL ENGINEERING Journal of Central South University Pub Date : 2024-06-24 DOI:10.1007/s11771-023-5534-y
Zeynel Abidin Sari, M. Deniz Turan
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Abstract

The dissolution behaviors of Cu and Fe from copper slags were investigated with photochemical reactions. Experiments were run intermittently with a quartz glass jacket in a glass reactor, by submerging ultraviolet (UV) lamps and using glass tube as an air supply distributed under the reactor. The behaviors of UVA (365 nm), UVB (311 nm), UVC (254 nm), and vacuum-UV (VUV) (185 nm) light at different wavelengths in a leaching solution were examined. All experiments were conducted comparatively in the presence and absence of UV lamps under identical conditions. The adaptation of the radical formation mechanism to the leaching environment and its usability in leaching by creating an oxidative solution medium were investigated. In the experiments in the UV light (185 nm) and non-UV light environments under optimum conditions, the copper extraction rates were obtained as 85.1% and 70.7%, respectively. In conclusion, the metal dissolution (Cu) behaviors at optimum conditions during leaching from copper slags in the photoreactor systems with UV (185 nm) light were more efficient than those without UV light. Moreover, photochemical reactor is a new approach to adapt them to hydrometallurgy applications and examine the process.

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利用紫外线的直接光氧化机制沥滤铜渣
通过光化学反应研究了铜渣中铜和铁的溶解行为。实验是在玻璃反应器中使用石英玻璃夹套,通过浸没式紫外线(UV)灯管和分布在反应器下方的玻璃管作为空气供应间歇进行的。研究了不同波长的 UVA(365 nm)、UVB(311 nm)、UVC(254 nm)和真空紫外线(VUV)(185 nm)在浸出液中的行为。所有实验都是在有紫外线灯和无紫外线灯的相同条件下进行的。研究了自由基形成机制对沥滤环境的适应性,以及通过创建氧化溶液介质进行沥滤的可用性。在紫外光(185 纳米)和无紫外光环境的最佳条件下进行的实验中,铜的提取率分别为 85.1%和 70.7%。总之,在有紫外光(185 nm)的光化学反应器系统中,铜渣浸出过程中最佳条件下的金属溶解(Cu)行为比无紫外光的光化学反应器系统更有效。此外,光化学反应器也是将其应用于湿法冶金并研究其过程的一种新方法。
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来源期刊
Journal of Central South University
Journal of Central South University METALLURGY & METALLURGICAL ENGINEERING-
CiteScore
6.10
自引率
6.80%
发文量
242
审稿时长
2-4 weeks
期刊介绍: Focuses on the latest research achievements in mining and metallurgy Coverage spans across materials science and engineering, metallurgical science and engineering, mineral processing, geology and mining, chemical engineering, and mechanical, electronic and information engineering
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