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Mechanisms of biological recovery of rare-earth elements from industrial and electronic wastes: A review

机译:工业和电子废物稀土元素生物恢复机制:综述

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摘要

Increasing application of rare earth elements (REE) in electronics, renewable energy, biomedical devices, and industrial products has increased their demand globally. Enhanced production of industrial and electronic wastes has led the researchers to focus on the REE recovery from these alternative economic sources. Recent developments in bioprocess technology have created suitable avenues of REE recovery from waste materials. This review focuses on secondary sources of REE including industrial wastes, mine wastes, and electronic wastes. Detailed mechanisms of REE biorecovery from waste mineral sources have been discussed elaborately. The influence of physico-chemical operational parameters on the efficiency of REE biorecovery from source materials has also been thoroughly elaborated. Analyses in terms of economic perspectives indicate that REE biorecovery from waste materials may be a cost-effective approach. This review directs future research towards the development of enhanced REE biorecovery from wastes on a large commercial scale.
机译:稀有地球元素(REE)在电子,可再生能源,生物医学设备和工业产品中越来越多的应用增加了他们的需求。增强的工业和电子废物的生产导致研究人员专注于从这些替代经济来源中恢复的重新恢复。 BioProcess技术的最新发展已从废料中创造了合适的REE恢复途径。该评论重点介绍了雷埃的二级来源,包括工业废物,矿山废物和电子废物。讨论了废物矿物来源的REE生物渗透物的详细机制。物理化学操作参数对来自源材料源材料效率的影响,也得到了彻底阐述。在经济观点方面分析表明废料中的芦荟生物植物植物可能是一种经济有效的方法。本综述指示未来的研究在大型商业规模上从废物中发展加强雷埃生物妇生。

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