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采用无焙烧强化酸浸法从含钒页岩浮选精矿中提取钒及热力学研究。

Vanadium Extraction from the Flotation Concentrate of Vanadium-Bearing Shale by Process of Non-Roasting Enhanced Acid Leaching and Thermodynamics.

机构信息

Faculty of Land Resource Engineering, Kunming University of Science and Technology, Kunming 650093, China.

出版信息

Molecules. 2023 Mar 16;28(6):2706. doi: 10.3390/molecules28062706.

Abstract

The purpose of this work is to significantly improve the vanadium grade of vanadium-bearing shale after flotation preconcentration, which is conducive to reducing the acid consumption and industrial costs in the subsequently enhanced acid leaching of vanadium. Vanadium concentrate from vanadium-bearing shale enriched by flotation is used for acid-leaching feed. The leaching effects of two kinds of acid-leaching systems were compared, and the mechanism of acid leaching on the mineral structure was also described. The difficulty of spontaneous reactions of vanadium-bearing minerals such as garnet in an acid-leaching system was studied through thermodynamics. Additionally, several characterization methods were used to evaluate the improvement of leaching performance. The addition of oxidants and fluorinating aids strengthens the acid-leaching process, which greatly destroys the structure of a garnet, which is conducive to the extraction of vanadium in a flotation concentrate. The leaching efficiency can reach 94.86%, and the acid consumption is also reduced. Through the mechanism study of the leaching system, it is expected that when the enhanced acid-leaching process is put into industrial production, the effective leaching of vanadium can be accurately controlled, and the difficulty of subsequent vanadium enrichment and purification can be reduced.

摘要

本工作旨在大幅度提高含钒页岩浮选预富集后的钒品位,有利于降低随后强化酸浸提钒过程中的酸耗和工业成本。用浮选富集得到的含钒页岩精矿作为酸浸进料。比较了两种酸浸体系的浸出效果,并描述了酸浸对矿物结构的作用机制。通过热力学研究了含钒矿物如石榴石在酸浸体系中自发反应的难度。此外,还采用了几种表征方法来评估浸出性能的提高。氧化剂和氟化助剂的添加增强了酸浸过程,这极大地破坏了石榴石的结构,有利于浮选精矿中钒的提取。浸出效率可达 94.86%,同时也降低了酸耗。通过对浸出体系的机理研究,有望在强化酸浸过程投入工业生产时,能够准确控制钒的有效浸出,降低后续钒富集和提纯的难度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f98/10052970/319b61dd5ea7/molecules-28-02706-g001.jpg

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