论文标题
高精度U和TH浓度测量的实用方法
A practical approach of high precision U and Th concentration measurement in acrylic
论文作者
论文摘要
江门地下中微子天文台将建立世界上最大的液体闪烁体检测器,以研究来自各种来源的中微子。 20 kt液体闪烁体将由于良好的光透明度,化学兼容性和丙烯酸较低的放射性而储存在$ \ sim $ 600 t丙烯酸球体中,直径为35.4 m。丙烯酸中u/th的浓度必须小于1 ppt(10 $^{ - 12} $ g/g),以在JUNO检测器的基准体积中实现低放射性背景。丙烯酸的质量生产已经开始,质量控制需要在丙烯酸中快速可靠的放射测定。我们已经开发了一种实用方法,可以使用电感耦合的等离子体质谱仪(ICP-MS)在丙烯酸到子PPT水平中测量U/Th。丙烯酸中的u/th可以通过在100类环境中蒸发丙烯酸来浓缩,并且将收集残基并将其发送到ICP-MS以测量U/Th。所有其他化学操作均在100级洁净室进行,ICP-MS测量是在1000级清洁室中进行的。通过添加自然的非核$^{229} $ th和$^{233} $ u作为示踪剂来研究恢复效率。具有99%置信度的最终方法检测限制(MDL)可以达到0.02/0.06 pg $^{238} $ u/$^{232} $ th/g丙烯酸,$ \ sim $ \ sim $ 75%$ 75%的恢复效率。该设备和方法不仅可以用于juno丙烯酸的质量控制,而且还可以针对具有极低放射性的其他材料(例如Ultra Pure Water和液体闪光灯)进行进一步优化。
The Jiangmen Underground Neutrino Observatory will build the world's largest liquid scintillator detector to study neutrinos from various sources. The 20 kt liquid scintillator will be stored in a $\sim$600 t acrylic sphere with 35.4 m diameter due to the good light transparency, chemical compatibility and low radioactivity of acrylic. The concentration of U/Th in acrylic is required to be less than 1 ppt (10$^{-12}$ g/g) to achieve a low radioactive background in the fiducial volume of the JUNO detector. The mass production of acrylic has started, and the quality control requires a fast and reliable radioassay on U/Th in acrylic. We have developed a practical method of measuring U/Th in acrylic to sub-ppt level using the Inductively Coupled Plasma Mass Spectrometer (ICP-MS). The U/Th in acrylic can be concentrated by vaporizing acrylic in a class 100 environment, and the residue will be collected and sent to ICP-MS for measuring U/Th. All the other chemical operation is done in a class 100 clean room, and the ICP-MS measurement is done in a class 1000 clean room. The recovery efficiency is studied by adding the natural nonexistent nuclei $^{229}$Th and $^{233}$U as the tracers. The resulting method detection limit (MDL) with 99% confidence can reach 0.02/0.06 pg $^{238}$U/$^{232}$Th /g acrylic with $\sim$75% recovery efficiency. This equipment and method can not only be used for the quality control of JUNO acrylic, but also be further optimized for the radioassay on other materials with extremely low radioactivity, such as ultra-pure water and liquid scintillator.