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东非农业土壤中磷矿石和矿物肥料中的铀。

Uranium in phosphate rocks and mineral fertilizers applied to agricultural soils in East Africa.

机构信息

Tanzania Atomic Energy Commission, Directorate of Nuclear Technology and Technical Services, P. O. Box 743, Arusha, Tanzania.

Nelson Mandela African Institution of Science and Technology (NM-AIST), School for Materials, Energy, Water, Environmental Science and Engineering, P.O. Box 447, Arusha, Tanzania.

出版信息

Environ Sci Pollut Res Int. 2023 Mar;30(12):33898-33906. doi: 10.1007/s11356-022-24574-5. Epub 2022 Dec 11.

Abstract

Phosphate rock, pre-concentrated phosphate ore, is the primary raw material for the production of mineral phosphate fertilizer. Phosphate rock is among the fifth most mined materials on earth, and it is also mined and processed to fertilizers in East Africa. Phosphate ore can contain relevant heavy metal impurities such as toxic cadmium and radiotoxic uranium. Prolonged use of phosphate rock powder as a fertilizer and application of mineral fertilizers derived from phosphate rock on agricultural soils can lead to an accumulation of heavy metals that can then pose an environmental risk. This work assesses the uranium concentrations in four major phosphate rocks originating from East Africa and four mineral phosphate fertilizers commonly used in the region. The concentration measurements were performed using energy-dispersive X-ray fluorescence spectrometry. The results showed that the uranium concentration in phosphate rock ranged from as low as 10.7 mg kg (Mrima Hill deposit, Kenya) to as high as 631.6 mg kg (Matongo deposit, Burundi), while the concentrations in phosphate fertilizers ranged from 107.9 for an imported fertilizer to 281.0 mg kg for a local fertilizer produced from Minjingu phosphate rock in Tanzania. In this context, it is noteworthy that the naturally occurring concentration of uranium in the earth crust is between 1.4 and 2.7 mg kg and uranium mines in Namibia commercially process ores with uranium concentrations as low as 100-400 mg kg. This study thus confirms that East African phosphate rock, and as a result the phosphate fertilizer produced from it can contain relatively high uranium concentrations. Options to recover this uranium are discussed, and it is recommended that public-private partnerships are established that could develop economically competitive technologies to recover uranium during phosphate rock processing at the deposits with the highest uranium concentrations.

摘要

磷矿、预富集磷矿是生产矿物磷肥的主要原料。磷矿是地球上开采量排名第五的矿产资源,同时也在东非地区进行开采和加工以制成肥料。磷矿可能含有相关的重金属杂质,如有毒的镉和放射性铀。长期将磷矿粉作为肥料使用,并在农业土壤上施用源自磷矿的矿物肥料,可能会导致重金属积累,从而对环境构成风险。本工作评估了来自东非的四种主要磷矿和该地区常用的四种矿物磷肥中的铀浓度。浓度测量使用能量色散 X 射线荧光光谱法进行。结果表明,磷矿中的铀浓度范围从低至 10.7mgkg(肯尼亚 Mrima Hill 矿床)到高至 631.6mgkg(布隆迪 Matongo 矿床),而磷肥中的浓度范围从进口肥料的 107.9mgkg 到坦桑尼亚 Minjingu 磷矿生产的本地肥料的 281.0mgkg。在此背景下,值得注意的是,铀在地球地壳中的自然存在浓度为 1.4 至 2.7mgkg,而纳米比亚的铀矿商业上加工的矿石铀浓度低至 100-400mgkg。因此,本研究证实了东非磷矿,以及由此制成的磷肥,可能含有相对较高的铀浓度。讨论了回收这些铀的选择方案,并建议建立公私伙伴关系,以开发具有经济竞争力的技术,从铀浓度最高的矿床在磷矿加工过程中回收铀。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3cda/10017646/13c0e4ef2ca6/11356_2022_24574_Fig1_HTML.jpg

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