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磷石膏堆中稀土元素、钇和钪的迁移:环境和经济影响。

Mobility of rare earth elements, yttrium and scandium from a phosphogypsum stack: Environmental and economic implications.

机构信息

Department of Earth Sciences & Research Center on Natural Resources, Health and the Environment (RENSMA), Faculty of Experimental Sciences, Avda. Fuerzas Armadas s/n, 21071 Huelva, Spain.

Department of Earth Sciences & Research Center on Natural Resources, Health and the Environment (RENSMA), Faculty of Experimental Sciences, Avda. Fuerzas Armadas s/n, 21071 Huelva, Spain.

出版信息

Sci Total Environ. 2018 Mar 15;618:847-857. doi: 10.1016/j.scitotenv.2017.08.220. Epub 2017 Oct 18.

Abstract

This paper investigates the mobility and fluxes of REE, Y and Sc under weathering conditions from an anomalously metal-rich phosphogypsum stack in SW Spain. The interactions of the phosphogypsum stack with rainfall and organic matter-rich solutions, simulating the weathering processes observed due to its location on salt-marshes, were simulated by leaching tests (e.g. EN 12457-2 and TCLP). Despite the high concentration of REE, Y and Sc contained in the phosphogypsum stack, their mobility during the leaching tests was very low; <0.66% and 1.8% of the total content of these elements were released during both tests. Chemical and mineralogical evidences suggest that phosphate minerals may act as sources of REE and Y in the phosphogypsum stack while fluoride minerals may act as sinks, controlling their mobility. REE fractionation processes were identified in the phosphogypsum stack; a depletion of LREE in the saturated zone was identified due probably to the dissolution of secondary LREE phosphates previously formed during apatite dissolution in the industrial process. Thus, the vadose zone of the stack would preserve the original REE signature of phosphate rocks. On the other hand, an enrichment of MREE in relation to HREE of edge outflows is observed due to the higher influence of estuarine waters on the leaching process of the phosphogypsum stack. Despite the low mobility of REE, Y and Sc in the phosphogypsum, around 104kg/yr of REE and 40kg/yr of Y and Sc are released from the stack to the estuary, which may imply an environmental concern. The information obtained in this study could be used to optimize extraction methods aimed to recover REE, Y and Sc from phosphogypsum, mitigating the pollution to the environment.

摘要

本文研究了西班牙西南部一处富含金属磷石膏堆在风化条件下 REE、Y 和 Sc 的迁移和通量。通过淋滤试验(如 EN 12457-2 和 TCLP)模拟磷石膏堆与降雨和富含有机物的溶液的相互作用,模拟了由于其位于盐沼上而观察到的风化过程。尽管磷石膏堆中含有高浓度的 REE、Y 和 Sc,但在淋滤试验过程中它们的迁移性非常低;在这两种试验中,这些元素的总含量中有<0.66%和 1.8%被释放。化学和矿物学证据表明,磷灰石矿物可能是磷石膏堆中 REE 和 Y 的来源,而氟化物矿物可能是它们的汇,控制着它们的迁移性。在磷石膏堆中识别出了 REE 分馏过程;由于在磷灰石溶解过程中形成的次生轻稀土磷酸盐的溶解,饱和带中轻稀土的消耗可能是造成这种情况的原因。因此,堆的非饱和带将保留磷灰石岩石的原始 REE 特征。另一方面,由于河口对磷石膏堆淋滤过程的影响较高,边缘流出物中中稀土相对于重稀土的富集。尽管 REE、Y 和 Sc 在磷石膏中的迁移性较低,但仍有 104kg/yr 的 REE 和 40kg/yr 的 Y 和 Sc 从堆中释放到河口,这可能引起环境关注。本研究获得的信息可用于优化旨在从磷石膏中回收 REE、Y 和 Sc 的提取方法,减轻对环境的污染。

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