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Applicability of the closed-circuit accumulation chamber technique to measure radon surface exhalation rate under laboratory conditions

机译:闭环累积室技术的适用性测量实验室条件下的氡表面呼气率

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摘要

A layer of phosphogypsum was placed at the bottom of two large volume boxes. This system allowed to measure the surface radon exhalation from phosphogypsum without altering the emitting material. The limits and optimal setup of the closed-circuit accumulation chamber technique were thoroughly studied. More precisely, the performance of different radon exhalation fitting methods was analyzed in the reference exhalation boxes, employing different measurement devices and three smaller operational accumulation chambers. As expected, the best approach to obtain the radon exhalation rate depends upon the effective decay constant of the measurement system and the time employed to perform the measurement. The time until the linear approximation can no longer be applied was scrutinized. Although this approximation is usually applied routinely in the literature, the effective time constant of the chamber is often not low enough for the linear fit to be applied safely, providing statistically acceptable measurements that can lead to significative underestimations of the radon exhalation rate.
机译:将一层磷酸缺口置于两个大容量箱的底部。该系统允许测量从磷酸缺口的表面氡呼气而不改变发射材料。彻底研究了闭环累积室技术的限制和最佳设置。更确切地说,在参考呼气箱中分析了不同氡气呼气拟合方法的性能,采用不同的测量装置和三个较小的操作累积室。如所预期的那样,获得氡呼气速率的最佳方法取决于测量系统的有效衰减常数以及用于执行测量的时间。仔细审查了不再应用线性近似的时间。尽管该近似通常在文献中通常常规应用,但是腔室的有效时间常数通常不足以足够低,以便安全地应用线性配合,提供统计上可接受的测量,这可能导致氡呼气速率的重要性低估。

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