首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >The role of Al-13-polymers in the recovery of rare earth elements from acid mine drainage through pH neutralization
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The role of Al-13-polymers in the recovery of rare earth elements from acid mine drainage through pH neutralization

机译:Al-13聚合物在通过pH中和中和通过pH中和酸性矿氨酸矿引流回收稀土元素的作用

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摘要

Rare Earth Elements (REE) are crucial to the development of new technologies, given their strategic importance, a wide range of actions has been implemented to ensure sustainable and affordable supplies. Acid Mine Drainage (AMD) besides being one of the major environmental issues faced by the mining industry is a naturally occurring process involving a considerable amount of REE. The recovery of REE from AMD, which is considered a secondary source, has been investigated worldwide over the past few years aiming at sustainability. The current work seeks to provide an understanding of the geochemistry of the REE in an AMD system and also of its respective treatment through pH neutralization, as a contribution to the development of novel REE recovery technologies. The approach proposed herein employed acid mine water and sediment sampling, ICP-OES, XRD, SEM-EDS, TEM, Al-27 MAS-NMR and XPS analysis, BCR sequential extraction and geochemical modelling by PHREEQC. The results showed that the REE content in the AMD investigated is very high being Ln(3+), LnSO(4)(+) and LnF(2+) the dominant species in the impoundments at pH +/- 3.5. The neutralization of the AMD with an alkali agent promoted a high REE recovery and produced an amorphous precipitate containing 14% of REE oxides. This precipitate contains Al-13-polymers and accounts for the REE removal when the pH is raised to 8, thus promoting adsorption and entrapment simultaneously. Sequential extraction revealed that the REE could be efficiently leached with the use of acetic acid, thus supporting novel and promising recovery technologies through co-precipitation processes.
机译:稀土元素(REE)对新技术的发展至关重要,鉴于战略​​重要性,已实施广泛的行动,以确保可持续和实惠的供应。除了采矿业所面临的主要环境问题之一之外,酸性矿山排水(AMD)是一种自然发生的过程,涉及相当数量的REE。从旨在可持续发展的过去几年,全世界都在全世界调查了来自AMD的REE的回收。目前的工作旨在了解AMD系统中REE地球化学的理解,并通过pH中和,作为对新型REE恢复技术的发展的贡献。本文所提出的方法采用酸性矿泉水和沉积物采样,ICP-OES,XRD,SEMEDS,TEM,Al-27MAS-NMR和XPS分析,BCR顺序提取和Phreeqc的地球化学建模。结果表明,AMD中的REE含量为LN(3+),LNSO(4)(+)和LNF(2+)在pH +/- 3.5时的显性物种是非常高的。用碱剂中和AMD的中和促进了高再恢复,并产生含有14%的REE氧化物的无定形沉淀物。该沉淀物含有Al-13-聚合物,并且当pH升至8时,鉴于REE去除,从而同时促进吸附和夹带。序贯提取显示,通过使用乙酸可以有效地浸出REE,从而通过共沉淀过程支持新颖和有前途的恢复技术。

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