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Microfluidic Alpha Spectrometry of UOX PWR UNF in a Molten Salt

机译:熔融盐中UOX PWR UNF的微流控阿尔法光谱

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This paper presents the computational performance of microfluidic channels (MFCs) within a semiconductor detector to monitor changes in the elemental and isotopic composition of a UOX pressurized water reactor used nuclear fuel dissolved in a KCl/LiCl molten salt. The results indicate that the use of MFC limits alpha energy loss sufficiently enough to use energy windowing techniques in spectral analysis.It was found that elemental and isotopic changes as low as 1% may be feasible, with the time to detection (TTD) ranging from seconds to hours. The TTD is inversely dependent on the number of MFCs within the sensor and the activity of the element/isotope undergoing concentration transients.
机译:本文介绍了半导体检测器中微流体通道(MFCs)的计算性能,以监测溶解在KCl / LiCl熔融盐中的核燃料使用的UOX压水堆的元素和同位素组成的变化。结果表明,使用MFC可以充分限制α能量损失,足以在光谱分析中使用能量窗口技术。发现元素和同位素变化低至1%可行,检测时间(TTD)为秒到几小时。 TTD反过来取决于传感器中MFC的数量以及经历浓度瞬变的元素/同位素的活性。

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