Sathyabama N, Eappen K P, Mayya Y S
Internal Dosimetry Division, Bhabha Atomic Research Centre, Mumbai 400 085, India.
Radiat Prot Dosimetry. 2006;118(1):61-9. doi: 10.1093/rpd/nci333. Epub 2005 Aug 9.
An electrostatic chamber system used for measuring thoron in the exhaled breath of thorium workers is calibrated using a standard thoron source and a scintillation cell counting system. A formulation based on both a streamlined flow model and a well-mixed flow model in the chamber has been made to estimate thoron concentration in breath from the observed alpha counts. The experimental measurements of the ratio of the outlet and the inlet thoron concentrations across the chamber strongly validate the well-mixed flow model for thoron, as against the streamlined flow model. The progeny collection efficiency on the electrode has been found to be 70%. The study points out a major error by a factor of approximately 25 in the calibration factor reported in an earlier work. From the present study, the minimum detectable limit of the activity of (224)Ra, freely emanating thoron at mouth works out to be 0.36 Bq as against 0.014 Bq reported earlier for the same system.
一种用于测量钍作业人员呼出气体中钍射气的静电室系统,使用标准钍射气源和闪烁室计数系统进行校准。基于室内简化流模型和充分混合流模型,已制定出一种公式,用于根据观测到的α计数估算呼出气体中的钍射气浓度。与简化流模型相比,对室内出口和入口钍射气浓度之比的实验测量有力地验证了钍射气的充分混合流模型。已发现电极上的子体收集效率为70%。该研究指出,早期工作中报告的校准因子存在约25倍的重大误差。根据本研究,口腔处自由散发钍射气的(224)Ra活度的最低可检测限为0.36 Bq,而同一系统早期报告的为0.014 Bq。