7Seofleld J H. Theoretical Photo Ionization Cross Sections from 1 to 1500 keV.Lawrence Hvermore Lab. Rep.UCRL-51326. 1973. 19. 被引量:1
8Hubbell J H, Veigele Wm J, Briggs E A,et al. Atomic Form Factors, Incoherent Scattering Functions and Photon Scattering Cross Sections. Phys. Chem. Ref. Data., 1975. 4:471. 被引量:1
9Hubbell J H, Gimm H A, Dverbo I J. Pair, Triplet and Total Atomic Cross Section (and Mass Attenuation Coefficients) for 1 MeV - 100 GeV Photons in Elements Z =1 to 100. Phys. Chem. Ref. Data., 1980. 9:1023. 被引量:1
10Pages L, Bead E, Joffre H. Energy loss, Range and Bremsstrahlung Yield 10 keV to 100 MeV Electrons in Various Elements and Compounds. Atomic Data., 1972.4(1-4):72. 被引量:1
6European Commission. Radiation Protection 146 -A Review of Consumer Products Containing Radioactive Substances in the European Union[ M ]. Luxembourg:2007. 被引量:1
7European Commission. Radiation Protection 135 -Effluent and dose control from European Union NORM industries Assessment of current situation and proposal for a harmonized Community approach[ M ]. Volume 1 : 2003. 被引量:1
8Directorate - General Environment of European Commission. Practical Use of the Concepts of Clearance and Exemption Part II : Application of the Concepts of Exemption and Clearance to Natural Radiation Sources[ M]. Radiation Protection 122, 2001. 被引量:1
9IAEA. Regulatory and Management Approaches for the Control of Environmental Residues Containing Naturally Occurring Radioactive Material (NORM) [ P]. IAEA - TECDOC - 1484, 2006. 被引量:1
10Wood JL, Benke RR, Rotrer SM, et al. A comparison of minimum detectable and proposed maximum allowable soil concentration cleanup levels for selected radionuclides [ J ]. Health Physics, 1999, 76 (4) :413. 被引量:1