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A novel approach towards development of real time chemical dosimetry using pulsating sensor-based instrumentation

机译:利用基于脉冲传感器的仪器开发实时化学剂量的新方法

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摘要

The paper presents an innovative approach towards development of real time dosimetry using a chemical dosimeter for measurement of absorbed radiation dose in the range between 1 and 400 Gy. Saturated chloroform solution in water, a well known chemical dosimeter, is used to demonstrate the concept of online measurement of radiation dose. The measurement approach involves online monitoring of increase in conductivity of saturated chloroform solution due to progressive build up of traces of highly conducting HCl during exposure to gamma irradiation. A high performance pulsating sensor-based conductivity monitoring instrument has been used to monitor such real time change in conductivity of solution. A relation between conductivity shift and radiation dose has been established using radiochemical yield value (G value) of HCl. The G value of HCl in saturated chloroform dosimeter has been determined using laboratory developed pulsating sensor-based devices. In this connection dose rate of Co-60 gamma chamber was determined using Fricke dosimeter following a simple potentiometric measurement approach developed in-house besides conventional spectrophotometry. Results obtained from both measurement approaches agreed well. Complete instrumentation package has also been developed to measure real time radiation dose. The proposed real time radiation dosimeter is successfully tested in several measurement campaigns in order to assure its performance prior to its deployment in field.
机译:本文介绍了一种使用化学剂量计测量1至400 Gy范围内的吸收辐射剂量的实时剂量测定法的创新方法。水中的饱和氯仿溶液是一种众所周知的化学剂量计,用于演示在线测量辐射剂量的概念。测量方法涉及在线监测饱和氯仿溶液的电导率的增加,这是由于在暴露于伽玛射线期间逐渐积累了高导电性HCl的痕迹所致。基于高性能脉动传感器的电导率监测仪器已用于监测溶液电导率的实时变化。使用HCl的放射化学产率值(G值)已经建立了电导率偏移和辐射剂量之间的关系。已使用实验室开发的基于脉冲传感器的设备确定了饱和氯仿剂量计中HCl的G值。在这方面,除常规分光光度法外,还采用内部开发的一种简单的电位测量方法,使用Fricke剂量计确定了Co-60γ室的剂量率。从两种测量方法获得的结果都很好。还开发了完整的仪器套件来测量实时辐射剂量。所提出的实时辐射剂量计已在多个测量活动中成功测试,以确保其在现场部署之前的性能。

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