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Nanoparticles of uranium and rare earth elements in polymetallic mine waste

dc.contributor.authorSanyal, SKen_AU
dc.contributor.authorEtschmann, BEen_AU
dc.contributor.authorBrugger, Jen_AU
dc.contributor.authorde Vega, RGen_AU
dc.contributor.authorMoro, TTen_AU
dc.contributor.authorWong, Ven_AU
dc.contributor.authorBaggott, Ken_AU
dc.contributor.authorClases, Den_AU
dc.contributor.authorPaton, Len_AU
dc.date.accessioned2026-10-02T05:41:44Zen_AU
dc.date.issued2026-06-15en_AU
dc.date.statistics2026-07-29en_AU
dc.description.abstractWaste from metal mining is a global and escalating issue. Risks are particularly severe for reactive minerals, which, upon exposure to oxygen, water and/or microbial activity, can cause widespread contamination (e.g., acid drainage from sulfide oxidation). This study investigates the nature of colloids within historic U-REE-Cu-rich mine wastes from Mount Painter in the Northern Flinders Ranges, South Australia. The primary mineralogical hosts of uranium (torbernite) and rare earth elements (monazite-(Ce)) are phosphate minerals, which are insoluble phases typically considered to limit U and REE mobility in groundwater. However, single particle ICP-MS analysis revealed substantial concentrations of polymetallic nanoparticles enriched in U-REE-(Fe) and concentrated within the surface layers (0-10 cm) of the waste. Microbial diversity is highest near the surface, which is interpreted to promote the dissolution of phosphate minerals and the transformation of liberated metals into nanoparticles. This correlation suggests the potential for microbial consortia to extract metals from stable minerals and transform them into environmentally mobile colloidal forms, with significant implications for the biogeochemical cycling and environmental management of metals such as U and REE released by mining of both base metals and critical minerals. © 2026 The Author(s). Published by Elsevier B.V. Open Access CC BY 4.0.en_AU
dc.description.sponsorshipWe express our sincere gratitude to Arkaroola Wilderness Sanctuary and the Arkaroola Education and Research Foundation (AERF) (https://www.arkaroola.com.au/foundation) for providing support and access to the sampling sites. Stephen B. Hore (GSSA) provided support and guidance during the field work. We also acknowledge the Monash Centre for Electron Microscopy (MCEM); and the Geological Survey of South Australia (GSSA) for their support. The graphical abstract was created with https://app.biorender.com/en_AU
dc.format.mediumPrint-Electronicen_AU
dc.identifier.articlenumber142213en_AU
dc.identifier.citationSanyal, S. K., Etschmann, B., Brugger, J., de Vega, R. G., Moro, T. T., Wong, V., Baggott, K., Clases, D., & Paton, L. (2026). Nanoparticles of uranium and rare earth elements in polymetallic mine waste. Journal of Hazardous Materials, 511, 142213. doi:10.1016/j.jhazmat.2026.142213en_AU
dc.identifier.issn0304-3894en_AU
dc.identifier.issn1873-3336en_AU
dc.identifier.journaltitleJournal of Hazardous Materialsen_AU
dc.identifier.urihttps://doi.org/10.1016/j.jhazmat.2026.142213en_AU
dc.identifier.urihttps://apo.ansto.gov.au/handle/10238/17392en_AU
dc.identifier.volume511en_AU
dc.languageEnglishen_AU
dc.language.isoenen_AU
dc.publisherElsevieren_AU
dc.subjectUraniumen_AU
dc.subjectRare earthsen_AU
dc.subjectNanoparticlesen_AU
dc.subjectPolymetallic oresen_AU
dc.subjectCopperen_AU
dc.subjectMetalsen_AU
dc.subjectMiningen_AU
dc.subjectSouth Australiaen_AU
dc.subjectMicroorganismsen_AU
dc.subjectBiogeochemistryen_AU
dc.subjectMiningen_AU
dc.subjectEnvironmental impactsen_AU
dc.subjectWaste managementen_AU
dc.titleNanoparticles of uranium and rare earth elements in polymetallic mine wasteen_AU
dc.typeJournal Articleen_AU
dcterms.dateAccepted2026-04-25en_AU

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