[1] IAEA. IAEA SSS SF-1: Fundamental Safety Principles [M]. International Atomic Energy Agency, Vienna, 2006.
[2] NEPA-RGI,核电厂环境影响报告书的格式和内容(报批稿)[S].
[3] 白晓平,杜红燕.ERICA程序在核电厂厂址陆生生物辐射影响评价中的应用 [J]. 辐射防护通讯,2012,32(3):4-9.
[4] 杜红燕,白晓平,郑伟.ERICA程序在滨海和内陆核电厂生物辐射影响评价中的应用比较 [C]. 中国核电工程有限公司青年优秀论文集,2011(2):145-150.
[5] 李静晶,刘森林,陈超峰,等.使用RESRAD-BIOTA程序和ERICA程序计算某核电厂址附近水域中华鲟剂量的对比 [J]. 辐射防护通讯,2009,29(6):6-13.
[6] 郑伟,白晓平.液态放射性流出物对水生生物辐射影响评价初探 [J]. 铀矿冶,2008,27(3):134-137.
[7] 白晓平,杜红燕,郑伟. RESRAD-BIOTA和ERICA程序在非人类物种辐射效应评估中的比较研究 [J]. 辐射防护,2011,31(2):65-71.
[8] IAEA. IAEA SRS 19: Generic Models for Use in Assessing the Impact of Discharges of Radioactive Substances to The Environment [M]. International Atomic Energy Agency, Vienna, 2001.
[9] COPPLESTONE D, BIELBY S, JONES S R, et al. Impact Assessment of Ionizing Radiation on Wildlife [R]. Environment Agency R&D Publication 128, 2003.
[10] IAEA. IAEA TRS 422:Sediment Distribution Coefficients and Concentration Factors for Biota in The Marine Environment[M]. International Atomic Energy Agency, Vienna, 2004.
[11] ERICA. Environmental Risk from Ionising Contaminants: Assessment and Management (EC 6th Frame-work Programme) [EB/OL]. http://www.facilia.se/projects/erica.asp.
[12] IAEA. IAEA TRS 472:Handbook of Parameter Values for The Prediction of Radionuclide Transfer in Terrestrial and Freshwater Environments [M]. International Atomic Energy Agency, Vienna, 2010.
[13] Canadian Standard Association. Guidelines for Calculating Derived Release Limits for Radioactive Material in Airborne and Liquid Effluents for Normal Operation of Nuclear Facilities [R]. CAN/CSA-N288. 1-M87. 1987.
[14] IAEA. IAEA TRS 479: Handbook of Parameter Values for The Prediction of Radionuclide Transfer to Wildlife[M]. International Atomic Energy Agency, Vienna, 2014.