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      A Comprehensive Review of Rare Earth Elements Recovery from Coal-Related Materials

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      Minerals
      MDPI AG

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          Abstract

          Many studies have been published in recent years focusing on the recovery of rare earth elements (REEs) from coal-related materials, including coal, coal refuse, coal mine drainage, and coal combustion byproducts particularly fly ash. The scientific basis and technology development have been supported by coal geologists and extractive metallurgists, and through these efforts, the concept has progressed from feasibility assessment to pilot-scale production over the last five years. Physical beneficiation, acid leaching, ion-exchange leaching, bio-leaching, thermal treatment, alkali treatment, solvent extraction, and other recovery technologies have been evaluated with varying degrees of success depending on the feedstock properties. In general, physical beneficiation can be a suitable low-cost option for preliminary upgrading; however, most studies showed exceedingly low recovery values unless ultrafine grinding was first performed. This finding is largely attributed to the combination of small RE-bearing mineral particle size and complex REE mineralogy in coal-based resources. Alternatively, direct chemical extraction by acid was able to produce moderate recovery values, and the inclusion of leaching additives, alkaline pretreatment, and/or thermal pretreatment considerably improved the process performance. The studies reviewed in this article revealed two major pilot plants where these processes have been successfully deployed along with suitable solution purification technologies to continuously produce high-grade mixed rare earth products (as high as +95%) from coal-based resources. This article presents a systematic review of the recovery methods, testing outcomes, and separation mechanisms that are involved in REE extraction from coal-related materials. The most recent findings regarding the modes of occurrence of REEs in coal-related materials are also included.

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          Estimations of Clarkes for Carbonaceous biolithes: World averages for trace element contents in black shales and coals

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            Geochemistry of trace elements in Chinese coals: A review of abundances, genetic types, impacts on human health, and industrial utilization

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              Coal deposits as potential alternative sources for lanthanides and yttrium

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                Author and article information

                Journal
                MBSIBI
                Minerals
                Minerals
                MDPI AG
                2075-163X
                May 2020
                May 17 2020
                : 10
                : 5
                : 451
                Article
                10.3390/min10050451
                f4283b2f-5654-4213-bc50-639fc52f336a
                © 2020

                https://creativecommons.org/licenses/by/4.0/

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