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Realization and characterization of a protective coating for plastic scintillators used as sensors of radioactive contaminants in water

机译:用于塑料闪烁体的保护涂层的实现和特性,该涂层用作水中放射性污染物的传感器

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A new sensor for alpha particles based on plastic scintillators immersed in water was demonstrated to provide a viable solution for real-time detection of radioactive contaminants in water. It is obtained by stacking an array of plastic modules composed by a thin layer of Ag-doped zinc sulphide, ZnS(Ag), deposited on a plastic scintillator foil. Alpha particles are detected in the ZnS(Ag) layer, whereas beta are detected inside the plastic substrate. One still unexplored aspect of this novel detection technology is how the long-term contact with water affects the detector performance. To protect its surface from water-induced damages, we identified a coating protocol based on a poly(methyl-methacrylate) film deposited by spraying on the ZnS(Ag) active layer of the scintillator. The ageing process of the scintillator was carried out by using suitable aqueous solutions and the effect on the sensing layer was monitored by measuring its wettability and surface morphology. The performance of the coated scintillator was tested by measuring the efficiency with alpha radioactive sources.
机译:一种基于浸入水中的塑料闪烁体的新型α粒子传感器被证明为实时检测水中的放射性污染物提供了可行的解决方案。它是通过堆叠塑料模块阵列获得的,这些模块由沉积在塑料闪烁体箔片上的薄薄一层Ag掺杂的硫化锌ZnS(Ag)组成。在ZnS(Ag)层中检测到alpha粒子,而在塑料基材内部检测到beta。这种新型检测技术的一个尚未开发的方面是长期与水接触如何影响检测器性能。为了保护其表面免受水引起的损害,我们确定了一种基于聚(甲基丙烯酸甲酯)膜的涂层方案,该膜是通过在闪烁器的ZnS(Ag)活性层上喷涂而沉积的。通过使用适当的水溶液进行闪烁体的老化过程,并通过测量其润湿性和表面形态来监测对传感层的影响。通过测量α放射源的效率来测试涂层闪烁体的性能。

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