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Extraction of rare earths from bastnaesite concentrates: A critical review and perspective for the future

期刊

MINERALS ENGINEERING
卷 171, 期 -, 页码 -

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.mineng.2021.107081

关键词

Rare earths; Bastnaesite concentrates; Extractive metallurgy; Cleaner production; Sustainability

资金

  1. National Basic Research Program of China [2012CBA01205]

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Rare earth elements play an indispensable role in modern high technology, making the efficient exploitation and utilization of rare earth resources crucial. Current industrial processes are chemical and energy intensive, leading to negative impacts on the environment, thus further improvement towards cleaner production is necessary.
Considering the indispensable role of rare earth elements in the field of modern high technology, the efficient exploitation and utilization of rare earth resources is of great importance. As one of the world's major rare earth minerals, bastnaesite significantly bears on scientific development and social progress. In order to provide some reference for future research and production, this paper retraces the history of the metallurgical processes of bastnaesite concentrates and critically reviews the current commercial industrial processes. Most of these processes are chemical and energy intensive, and the discharge of large quantities of low-grade waste has a serious negative impact on the ecological environment. The recently developed methods in laboratory scale towards cleaner production are then evaluated. More improvements are still needed to further simplify the process and reduce the reliance on strong acidic and alkali chemicals as well as the demand for energy. According to these evaluations, the prospects for process optimization are discussed, and the areas where further research is needed are suggested. To achieve sustainable development of the rare earth resources in bastnaesite, it is essential for the design of ideal process to comprehensively consider environmental impact, human health, economic benefits and resource utilization efficiency.

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