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Wet Chemical and UV-Vis Spectrometric Iron Speciation in Quenched Low and Intermediate Level Nuclear Waste Glasses

机译:湿化学和UV-Vis光谱铁病,淬火低和中级核废料眼镜

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In this study wet chemical methods combined with UV-Vis spectroscopy were performed to quantify Fe(II)/Fe(III) ratios and total iron content of quenched alkali aluminoboro-silicate (simulated nuclear waste) glasses, applying a colorimetric method. We report lessons learned from experimental challenges encountered associated with the colorimetric method, where 1,10 phenanthroline method is complexed with dissolved glass powder and the resulting solution measured for absorbance at 520 nm to determine Fe(II). To obtain total iron, the solution was then equilibrated with a mild reducing agent to chance all Fe to Fe(II), and the absorbance measured again at 520 nm. These absorbance values allowed for calculation of the Fe(II)/Fe(III) ratio, and the total iron content in the glasses. Total Fe measured is somewhat higher than as-batched target values for waste glasses, but very accurate for reference BCR-2G glass. All quenched alumino-boro-silicate glasses analyzed showed a Fe(II)/Fe(III) ratio between 0.06 (± 0.01) and 0.04 (± 0.01). These values are consistent with those obtained for similar glass compositions melted under analogous conditions, indicating a composition of ca. 94-96% Fe(III).
机译:在该研究中,进行湿化学方法与UV-Vis光谱合并,以定量Fe(II)/ Fe(III)比和淬火碱铝硅酸盐(模拟核废料)玻璃的总铁含量,施加比色法。我们报告了从与比色法相关的实验挑战中学到的经验教训,其中1,10个菲咯啉方法用溶解的玻璃粉末络合,并在520nm处测量的吸光度测量的所得溶液以确定Fe(II)。为了获得总铁,然后用温和的还原剂将溶液平衡,以实现所有Fe(II),并且在520nm下再次测量吸光度。这些吸光度值允许计算Fe(II)/ Fe(III)的比率,以及眼镜中的总铁含量。测量的总Fe比废眼镜的批量目标值略高,但非常准确的参考BCR-2G玻璃。分析的所有淬火铝硼硅酸盐玻璃显示出Fe(II)/ Fe(III)比率在0.06(±0.01)和0.04(±0.01)之间。这些值与用于在类似条件下熔化的类似玻璃组合物的那些一致,表明CA的组成。 94-96%Fe(iii)。

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