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首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >Use of alpha spectroscopy for conducting rapid surveys of transuranic activity on air sample filters and smears.
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Use of alpha spectroscopy for conducting rapid surveys of transuranic activity on air sample filters and smears.

机译:α能谱进行快速的使用超铀元素的调查活动的空气样本过滤器和涂片。

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This paper demonstrates the utility of a portable alpha Continuous Air Monitor (CAM) as a bench top scalar counter for multiple sample types. These include using the CAM to count fixed air sample filters and radiological smears. In counting radiological smears, the CAM is used very much like a gas flow proportional counter (GFPC), albeit with a lower efficiency. Due to the typically low background in this configuration, the minimum detectable activity for a 5-min count should be in the range of about 10 dpm which is acceptably below the 20 dpm limit for transuranic isotopes. When counting fixed air sample filters, the CAM algorithm along with other measurable characteristics can be used to identify and quantify the presence of transuranic isotopes in the samples. When the radiological control technician wants to take some credit from naturally occurring radioactive material contributions due to radon progeny producing higher energy peaks (as in the case with a fixed air sample filter), then more elaborate techniques are required. The techniques presented here will generate a decision level of about 43 dpm for such applications. The calibration for this application should alternatively be done using the default values of channels 92-126 for region of interest 1. This can be done within 10 to 15 min resulting in a method to rapidly evaluate air filters for transuranic activity. When compared to the 1-h count technique described by , the technique presented in the present work demonstrates a technique whereby more than two thirds of samples can be rapidly shown (within 10 to 15 min) to be within regulatory compliant limits. In both cases, however, spectral quality checks are required to insure sample self attenuation is not a significant bias in the activity estimates. This will allow the same level of confidence when using these techniques for activity quantification as is presently available for air monitoring activity quantification using CAMs.
机译:本文演示了一个便携式的效用α连续空气监测(CAM)作为板凳标量计数器为多个样本类型。包括使用凸轮数固定的空气样本过滤器和辐射涂片。放射性涂片,使用凸轮像一个气体流量正比计数器(GFPC),尽管效率较低。通常低背景在这个配置中,最小可探测活动5分钟数应该在约10 dpm的范围是什么可以接受低于20 dpm超铀元素的限制同位素。凸轮算法以及其他可衡量的可以用来识别和特征量化超铀的同位素的存在的样本。技术人员想要一些信贷天然放射性物质由于氡子核产生贡献更高的能量峰值(如固定的情况空气样品过滤器),然后更复杂的技术是必需的。这将生成一个决策水平约为43dpm这样的应用程序。这个应用程序或者应该做的使用默认值92 - 126的通道感兴趣的区域1。15分钟的快速方法超铀元素活动评估空气过滤器。相比1小时计数技术所描述的,提出的技术现在的工作展示了一种技术,通过该技术超过三分之二的样本可以迅速显示(在10到15分钟)内监管的限制。然而,光谱质量检查要求确保样本自我衰减不是活动显著偏差估计。当将允许相同级别的信心使用这些技术的活动量化是目前用于空气监控活动量化使用摄像头。

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