魏计房, 邓春梅, 张馨星, 王荣元, 王伟, 杨朋金, 张蒙蒙. 海水中40K的γ能谱分析方法[J]. 海洋环境科学, 2018, 37(3): 438-443. DOI: 10.12111/j.cnki.mes20180319
引用本文: 魏计房, 邓春梅, 张馨星, 王荣元, 王伟, 杨朋金, 张蒙蒙. 海水中40K的γ能谱分析方法[J]. 海洋环境科学, 2018, 37(3): 438-443. DOI: 10.12111/j.cnki.mes20180319
WEI Ji-fang, DENG Chun-mei, ZHANG Xin-xing, WANG Rong-yuan, WANG Wei, YANG Peng-jin, ZHANG Meng-meng. γ-spectrum analysis of 40K in seawater[J]. Chinese Journal of MARINE ENVIRONMENTAL SCIENCE, 2018, 37(3): 438-443. DOI: 10.12111/j.cnki.mes20180319
Citation: WEI Ji-fang, DENG Chun-mei, ZHANG Xin-xing, WANG Rong-yuan, WANG Wei, YANG Peng-jin, ZHANG Meng-meng. γ-spectrum analysis of 40K in seawater[J]. Chinese Journal of MARINE ENVIRONMENTAL SCIENCE, 2018, 37(3): 438-443. DOI: 10.12111/j.cnki.mes20180319

海水中40K的γ能谱分析方法

γ-spectrum analysis of 40K in seawater

  • 摘要: 利用高纯锗γ谱仪对海水中的40K含量进行了直接测量。基于LabSOCS无源效率刻度技术,得出最大探测效率对应的样品最佳几何外形和参数,使得海水样品中的40K含量分析在3 h内便可以完成且样品净计数的相对标准误差小于10%。同其他分析方法相比,γ能谱分析法影响因素少、无需任何前处理且测量过程简单,因此在海洋辐射环境本底调查工作中作为一种替代方法值得推广。

     

    Abstract: The concentration of 40K in seawater was measured directly by HPGe γ spectrometer. Based on the LabSOCS software, the maximum detection efficiency corresponding to the optimal geometric shape and parameters was calculated, as a result, the analysis of the concentration of 40K in seawater can be finished in 3 hours with relative standard deviation less than 10% for sample net count. Compared with other methods, γ-spectrum analysis has few influencing factors, and it does not need any pretreatment process which is very convenient. Therefore, the γ-spectrum analysis is worth promoting as an alternative method in environmental radiological baseline study.

     

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