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Extraction of Molybdenum and Uranium from Low-Grade Molybdenum Bearing Ore Containing Uranium through Mechanical Activation Following Acid Leaching

浸出(土壤学) 硫酸 冶金 浸出剂 材料科学 环境科学 土壤科学 土壤水分
作者
Yongliang Wang,Wang Congying,Hui Liu,YunSheng Meng
出处
期刊:Mineral Processing and Extractive Metallurgy Review [Taylor & Francis]
卷期号:45 (4): 304-313 被引量:3
标识
DOI:10.1080/08827508.2022.2159960
摘要

ABSTRACTExtraction of molybdenum (Mo) from jordisite is difficult due to the amorphous state of MoS2. In this study, mechanical activation was employed to pretreat this type of ore with a low Mo content of 0.26%, and then molybdenum and uranium were both extracted from the milled ore using sulfuric acid. The effects of milling time, oxidant, and optimal leaching conditions were investigated in the laboratory. The results show that the mechanical activation will reduce the particle size and increase the specific surface area of the ore under certain milling conditions. Mechanical activation without oxidants in a hypoxia environment is not conductive to the recovery of molybdenum. When the oxidant of MnO2 is added during the milling process, the Mo recovery will increase greatly. The effect of mechanical activation on U recovery is not so obvious. The phenomenon of agglomerate will occur during the milling process, which will reduce Mo recovery seriously, especially when the milling time is more than 120 min. The Mo and U recovery can reach 84.52% and 61.39%, respectively, after optimization of sulfuric acid leaching process conditions.KEYWORDS: Molybdenumuraniummechanical activationacid leachingagglomerate AcknowledgmentsThe authors gratefully acknowledge the research funding from China National Nuclear Corporation (No. A101-6), and also the support from the National Key Research and Development Program (No. 2019YFC1904204).Disclosure statementNo potential conflict of interest was reported by the authors.Correction StatementThis article has been republished with minor changes. These changes do not impact the academic content of the article.
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