WANG Zhi-ming1, LI Shu-shen1, LIU Chun-li2, JIANG Ling1, YANG Yue-e1, JIANG Hong1, LI Bing1, LI Dan1(1.China Institute for Radiation Protection,Taiyuan 030006, China;2.Peking University, Beijing 100871, China). Three-dimension Migration Test of Radio-nuclides in Weak Phreatic Aquifer[J]. Atomic Energy Science and Technology, 2003, 37(2): 149-149. DOI: 10.7538/yzk.2003.37.02.0149
Citation: WANG Zhi-ming1, LI Shu-shen1, LIU Chun-li2, JIANG Ling1, YANG Yue-e1, JIANG Hong1, LI Bing1, LI Dan1(1.China Institute for Radiation Protection,Taiyuan 030006, China;2.Peking University, Beijing 100871, China). Three-dimension Migration Test of Radio-nuclides in Weak Phreatic Aquifer[J]. Atomic Energy Science and Technology, 2003, 37(2): 149-149. DOI: 10.7538/yzk.2003.37.02.0149
  • A field tracer threedimension migration test in weak phreatic aquifer is conducted. It can be seen from the results of migration test of radionuclides that the peak positions of the radionuclides, 90Sr, 237Np, 238Pu and 241Am, don't move, the mass center of 90Sr, which migrates at fastest velocity among them,only moves 0.32 cm during the 1 023 days, as well as the retardation coefficients, Rd, are 4.0×102 for 90Sr, 1.6×103 for237Np, 2.7×105 for 238Pu and ∞ for 241Am, respectively according to migration velocity of mass center. It shows that loess has stronger sorption capacity for the radionuclides.
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