State Key Laboratory of NBC Protection for Civilian, Beijing, China; CTBT Beijing National Data Centre and Beijing Radionuclide Laboratory, Beijing, China.
CTBT Beijing National Data Centre and Beijing Radionuclide Laboratory, Beijing, China.
Appl Radiat Isot. 2021 Jun;172:109669. doi: 10.1016/j.apradiso.2021.109669. Epub 2021 Mar 6.
Airborne radionuclide monitoring is considered to be the most certain way to detect a clandestine nuclear weapon test. The activity concentration of radioxenon samples collected by the radionuclide stations of the International Monitoring System (IMS) for the Comprehensive Nuclear-Test-Ban Treaty (CTBT) is generally performed at the low-level, hence it is necessary to improve the detection sensitivity of the radioactivity measuring apparatus for radionuclide monitoring. The Compton-suppressed spectrometer (CSS) has the advantage of reducing the background and improving the sensitivity in the environmental level measurement. Therefore, the measurement of the relevant radioxenon sample at the environmental level is feasible by using CSS. To assess the performance of CSS for radioxenon measurements, the Compton-suppressed and unsuppressed spectra of the Xe and Xe samples have been acquired, and subsequently, the information of the full energy peaks (FEP) in the spectra were compared. The assessment indicates that CSS can provide high sensitivity, simple operation, and straightforward activity determination, and it can be regarded as an appropriate apparatus in the radioxenon measurement.
空气放射性核素监测被认为是探测秘密核武器试验最可靠的方法。国际监测系统(IMS)的放射性核素站为全面禁止核试验条约(CTBT)收集的氙放射性样品的活度浓度通常在低水平进行,因此有必要提高放射性测量仪器对放射性核素监测的探测灵敏度。康普顿抑制谱仪(CSS)具有降低本底和提高环境水平测量灵敏度的优点。因此,使用 CSS 可以对相关的氙环境水平样品进行测量。为了评估 CSS 对氙测量的性能,已经获得了 Xe 和 Xe 样品的康普顿抑制和未抑制谱,并随后比较了谱中的全能峰(FEP)信息。评估表明,CSS 可以提供高灵敏度、简单的操作和直接的活度测定,因此可以被视为氙测量中的合适仪器。