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Spectroscopic Verification Of The Mineralogy Of An Ultrathin Mineral Film On Depleted Uranium

机译:贫铀中超薄矿物膜矿物学的光谱学验证

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The alteration of a depleted uranium (DU) disk in contact with a synthetic pore water, as a simulant for fertilized agricultural soil, was studied by exposing the DU to a calcium phosphate solution (2.5 × 10~(-3) M Ca, 1 × 10~(-3) M P).Within 12 months this contact resulted in the formation of a thin film of a secondary uranium mineral on the metallic DU.The reaction product was analyzed with both time-resolved laser-induced fluorescence spectroscopy (TRLFS) and infrared spectroscopy.Both techniques identified the reaction product on DU as a uranium(VI) phosphate phase, but only TRLFS provided its unequivocal identification as meta-autunite based on the positions of the fluorescence emission maxima at 487.8, 502.0, 523.6, 547.0, 572.1, and 600.6 nm and fluorescence lifetimes of 410 ± 15 and 3300 ± 310 ns.These results highlight the enhanced performance and sensitivity of the TRLFS technique for mineralogical characterization of thin surface films.Furthermore, they demonstrate that the dissolution of uranium from DU projectiles under the conditions described here is limited by the development and solubility of a meta-autunite secondary phase.The findings have helped clarify the interactions of DU ammunition with phosphate-rich soil-water.
机译:通过将DU暴露于磷酸钙溶液(2.5×10〜(-3)M Ca,1中,研究了与合成孔隙水接触的贫化铀(DU)盘与施肥农业土壤的模拟物的变化。 ×10〜(-3)MP)。这种接触在12个月内导致金属DU上形成了第二铀矿物的薄膜。反应产物均采用了时间分辨激光诱导荧光光谱(TRLFS)进行了分析两种技术都将DU上的反应产物鉴定为磷酸铀(VI)相,但只有TRLFS根据487.8、502.0、523.6、547.0的最大荧光发射位置将其明确鉴定为亚纯金铁矿。 ,572.1和600.6 nm,荧光寿命为410±15和3300±310 ns。这些结果突出了TRLFS技术对薄膜表面矿物学表征的增强的性能和灵敏度。在这里描述的条件下铀从铀弹中的溶解受到亚纯金次生相的发展和溶解性的限制。这些发现有助于阐明铀弹药与富含磷酸盐的土壤-水之间的相互作用。

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