辐射防护 ›› 2023, Vol. 43 ›› Issue (S1): 52-55.

• 辐射防护监测 • 上一篇    下一篇

气载流出物中碳-14对氚测量的干扰分析

保莉, 杨有坤, 廉冰, 郭琛, 马旭媛, 杨海兰   

  1. 中国辐射防护研究院 国家环境保护辐射环境与健康重点实验室,太原 030006
  • 收稿日期:2023-03-06 出版日期:2023-08-15 发布日期:2023-09-14
  • 通讯作者: 廉冰。E-mail:lianbing00@sina.com
  • 作者简介:保莉(1986—),女,2009 年本科毕业于清华大学核工程与核技术专业,2015 年毕业于中国辐射防护研究院辐射防护及环境保护专业,获硕士学位,副研究员。E-mail:blinda008@163.com

Analysis on the interference of carbon-14 on tritium monitoring in gaseous effluent

BAO Li, YANG Youkun, LIAN Bing, GUO Chen, MA Xuyuan, YANG Hailan   

  1. China Institute for Radiation Protection Key Laboratory of Radiation Environment & Health of the Ministry of Ecology and Environment, Taiyuan 030006
  • Received:2023-03-06 Online:2023-08-15 Published:2023-09-14

摘要: 氚是核设施气态流出物中重要的放射性核素,作为低能纯β核素,目前多采用累积取样、实验室分析的方式进行监测。气载流出物中的氚取样后未经纯化的制样测量,可能会存在其他核素干扰的问题。对气载流出物中的碳-14对氚的测量干扰进行定量分析,可为气载流出物中氚的准确测量提供参考。通过氚、碳-14取样特点分析确定取样阶段的干扰,制备并测量单核素和氚碳双标记样品,明确碳-14对氚测量阶段的干扰影响。取样阶段,碳-14在氚的水捕集液中的吸收量随温度变化而变化,在10 ℃时CO2在300 mL氚捕集液中的溶解度为0.70 g。测量阶段,碳-14对氚的影响会因液闪谱仪的设计工作原理而异,如Quantulus1220型超低水平液闪谱仪,在氚测量模式下不能忽略碳-14的计数贡献;而LSA2000A型低水平液闪谱仪,在氚测量模式下可以不考虑碳-14的计数贡献。

关键词: 氚, 碳-14, 干扰, 液闪

Abstract: Tritium is an important radionuclide in gaseous emissions from nuclear facilities. As a low-energy pure β radionuclide, tritium is mostly monitored by cumulative sampling and laboratory analysis. After tritium is sampled in airborne effluent and measured without purification, there may be interference from other radionuclides. The interference of carbon-14 in airborne effluent on tritium measurement is quantitatively analyzed, which provides reference for accurate and quantitative monitoring of tritium in airborne effluent. According to the sampling characteristics of tritium and carbon-14, the interference in the sampling stage is determined, and the mono-nuclear and tritium-carbon double-labeled samples are prepared and measured to determine the interference effect of carbon-14 on tritium measurement stage. In the sampling stage, the influence of carbon-14 on tritium varies with the temperature, and the solubility of CO2 in tritium capture solution is 0.70 g at 10 ℃. In the measurement stage, the influence of carbon-14 on tritium will vary according to the design and working principle of liquid scintillation spectrometer. For example, if Quantulus1220 ultra-low level liquid scintillation spectrometer is used, the counting contribution of carbon-14 can not be ignored in tritium measurement mode; If LSA2000A liquid scintillation spectrometer is used, the counting contribution of carbon-14 can be ignored in tritium measurement mode.

Key words: tritium, carbon-14, interference, LSC

中图分类号: 

  • TL75+1