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The application of near infrared spectroscopy for the detection of secondary uranium minerals using a fibre-optic probe

机译:近红外光谱在使用光纤探头检测次生铀矿物中的应用

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The proposed increase in usage of nuclear power implies increased nuclear waste resulting in the formation of many uranyl secondary minerals. These minerals can translocate and a method of easy identification is required. Because many of the minerals contain water and/or OH units, the minerals lend themselves to near infrared spectroscopy. Spectra of a range of uranyl carbonate, sulphate and silicate minerals were obtained using a fibre optic-probe with an attenuated total reflectance cell in reflectance mode. The minerals include andersonite, liebigite, rutherfordine, uranopilite, zippeite, boltwoodite, soddyite, sklodowskite, uranophane and weeksite. These uranyl minerals are characterised by intense bands around 7000 cm{sup}(-1) resulting from the second harmonic of the normal mode of the OH groups. Uranyl silicates show intense bands in the 4200 to 5400 cm{sup}(-1) region. Two sets of bands, which are electronic in nature, are observed: one centred upon 10100cm{sup}(-1) and a second set around 8500 cm{sup}(-1) in the high wavenumber region.
机译:提议增加的核电使用量意味着增加了核废料,导致形成了许多铀酰二级矿物。这些矿物质可能易位,需要一种易于识别的方法。由于许多矿物含有水和/或OH单元,因此这些矿物适合进行近红外光谱分析。使用具有衰减的全反射单元的光纤探针以反射模式获得了一系列碳酸铀酰,硫酸盐和硅酸盐矿物的光谱。矿物质包括扁桃石,褐铁矿,卢瑟福汀,铀矿,锂锌矿,bolt木,钠锰矿,skodowskite,铀石和周界石。这些铀酰矿物质的特征是,由于OH基团的正常模式的二次谐波,在7000 cm {sup}(-1)附近出现了强烈的谱带。铀酰硅酸盐在4200至5400 cm {sup}(-1)区域显示出很强的能带。观察到两组本质上是电子的带:一组在高波数区域中以10100cm {sup}(-1)为中心,另一组在8500 cm {sup}(-1)附近。

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