[1] 廖运璇, 卢瑛, 涂兴明, 等. 环境水体中90Sr和137Cs的监测方法[J]. 核化学与放射化学, 2018, 40(1): 62-66. LIAO Yunxuan, LU Ying, TU Xingming, et al. Monitoring method of 90Sr and 137Cs in environmental water[J]. Journal of Nuclear and Radiochemistry, 2018, 40(1): 62-66. [2] Castrillejo M, Casacuberta N, Breier C F, et al. Reassessment of 90Sr, 137Cs, and 134Cs in the coast off Japan derived from the Fukushima Dai-ichi nuclear accident[J]. Environmental Science & Technology, 2016, 50(1): 173-180. [3] LIN W, MO M, YU K, et al. Establishing historical 90Sr activity in seawater of the China seas from 1963 to 2018[J]. Marine Pollution Bulletin, 2022,176:113476. [4] Noureddine A, Menacer M, Boudjenoun R, et al. 137Cs in seawater and sediment along the Algerian coast[J]. Radioactivity in the Environment, 2006, 8: 156-164. [5] 环境保护部. 水和生物样品灰中铯-137的放射化学分析方法: HJ 816—2016[S]. 北京: 中国环境科学出版社, 2016. [6] ZHANG F, WANG J, LIU D, et al. Distribution of 137Cs in the Bohai Sea, Yellow Sea and East China Sea: sources, budgets and environmental implications[J]. Science of the Total Environment, 2019, 672(1): 1004-1016. [7] 全国海洋标准化技术委员会. 海洋环境放射性核素监测技术规程: HY/T 235—2018 [S]. 北京: 中国标准出版社, 2018. [8] 环境保护部. 水和生物样品灰中锶-90的放射化学分析方法:HJ 815—2016[S]. 北京: 中国环境科学出版社, 2016. [9] Grahek , Romarić Mač efat. Determination of radioactive strontium in seawater[J]. Analytica Chimica Acta, 2005,534(2): 271-279. [10] 邓芳芳, 林武辉, 林静, 等. 海水中90Sr测量的国际比对研究[J]. 海洋环境化学, 2018, 37(3): 448-463. DENG Fangfang, LIN Wuhui, LIN Jing, et al. International comparison of 90Sr analysis in seawater[J]. Marine Environmental Science, 2018, 37(3): 448-463. [11] IAEA. Worldwide open proficiency test: Determination of natural and artificial radionuclides in moss-soil and water[R]. IAEA-CU-2009-03. Vienna, 2011. [12] 高泽全, 保莉, 王瑞俊, 等. 放射性比对土壤样品制备的不确定度评定分析[J]. 四川环境, 2017, 36(3): 111-115. GAO Zequan, BAO Li, WANG Ruijun, et al. Assessment and analysis of uncertainty of the soil sample preparation for radioactive inter-comparison[J]. Sichuan Environment, 2017, 36(3): 111-115. [13] 李晓芸, 娄海林, 李爱云, 等. 水中239Pu比对样品的液闪测量和均匀性检验[J]. 核电子学与探测技术, 2020,40(6): 907-911. LI Xiaoyun, LOU Hailin, LI Aiyun, et al. The liquid scintillation counting measurement and homogeneity test of the 239Pu aqueous samples for the interlaboratory comparison[J]. Nuclear Electronics & Detection Technology, 2020,40(6): 907-911. [14] 林静, 黄德坤, 于涛. 海水中134Cs、137Cs和60Co的联合分析[J]. 核化学与放射化学, 2019, 41(5): 474-479. LIN Jing, HUANG Dekun, YU Tao. Combined measurement of 134Cs,137Cs and 60Co in seawater[J]. Journal of Nuclear and Radiochemistry, 2019, 41(5): 474-479. [15] Osvath I, Tarjan S, Pitois A, et al. IAEA’s ALMERA network: Supporting the quality of environmental radioactivity measurements[J]. Applied Radiation and Isotopes, 2016, 109: 90-95. [16] 卢瑛, 娄海林, 李爱云, 等. 奶粉中60Co、137Cs和90Sr测量的实验室间比对结果[J]. 中国辐射卫生, 2020, 29(6): 621-624. LU Ying, LOU Hailin, LI Aiyun, et al. Intercomparison of milk powder 90Sr, 60Co and 137Cs analysis among laboratories[J]. Chinese Journal of Radiological Health, 2020, 29(6): 621-624. [17] 中国合格评定国家认可委员会. 能力验证样品均匀性和稳定性评价指南: CNAS-GL03[S]. 北京: 中国标准出版社, 2018. |