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Development of optical monitor of alpha radiations based on CR-39

机译:基于CR-39的α辐射光学监测仪的开发

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Fukushima accident has highlighted the need to intensify efforts to develop sensitive detectors to monitor the release of alpha emitting radionuclides in the environment caused by the meltdown of the discharged spent fuel. Conventionally, proportional counting, scintillation counting and alpha spectrometry are employed to assay the alpha emitting radionuclides but these techniques are difficult to be configured for online operations. Solid State Nuclear Track Detectors (SSNTDs) offer an alternative off line sensitive technique to measure alpha emitters as well as fissile radionuclides at ultra-trace level in the environment.Recently, our group has reported the first ever attempt to use reflectance based fiber optic sensor (FOS) to quantify the alpha radiations emitted from 232Th. In the present work, an effort has been made to develop an online FOS to monitor alpha radiations emitted from 241Am source employing CR-39 as detector. Here, we report the optical response of CR-39 (on exposure to alpha radiations) employing techniques such as Atomic Force Microscopy (AFM) and Reflectance Spectroscopy.In the present work GEANT4 simulation of transport of alpha particles in the detector has also been carried out. Simulation includes validation test wherein the projected ranges of alpha particles in the air, polystyrene and CR-39 were calculated and were found to agree with the literature values. An attempt has been further made to compute the fluence as a function of the incidence angle and incidence energy of alphas. There was an excellent correlation in experimentally observed track density with the simulated fluence. The present work offers a novel approach to design an online CR-39 based fiber optic sensor (CRFOS) to measure the release of nanogram quantity of 241Am in the environment.
机译:福岛事故突出表明,有必要加大力度开发灵敏的检测器,以监测由排放的乏燃料的熔化引起的环境中α发射放射性核素的释放。常规地,采用比例计数,闪烁计数和α光谱法来分析α发射放射性核素,但是这些技术难以配置用于在线操作。固态核径迹探测器(SSNTD)提供了一种替代的脱机灵敏技术,可在环境中以超痕量水平测量α辐射体和易裂变放射性核素。最近,我们小组报告了有史以来首次尝试使用基于反射率的光纤传感器(FOS)来量化从232Th发出的alpha辐射。在当前的工作中,已努力开发在线FOS,以监视使用CR-39作为探测器的241Am源发出的α辐射。在这里,我们使用原子力显微镜(AFM)和反射光谱等技术报告了CR-39的光学响应(暴露于α射线)。在本工作中,GEANT4还对探测器中α粒子的运输进行了GEANT4模拟。出来。模拟包括验证测试,其中计算了空气,聚苯乙烯和CR-39中α粒子的投影范围,并发现与文献值一致。进一步尝试计算作为α的入射角和入射能量的函数的能量密度。实验观察到的轨道密度与模拟通量之间存在极好的相关性。当前的工作提供了一种新颖的方法来设计基于CR-39的在线光纤传感器(CRFOS),以测量环境中241Am纳克量的释放。

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