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Transmutation of nuclear wastes using photonuclear reactions triggered by Compton backscattering photons at the Shanghai laser electron gamma source

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【作者】 陈金根徐望王宏伟郭威马余刚蔡翔舟陆广成徐毅潘强岩袁仁勇徐加强阎喆范功涛沈文庆

【Author】 CHEN Jin-Gen1;1) XU Wang1 WANG Hong-Wei1 GUO Wei1 MA Yu-Gang1 CAI Xiang-Zhou1 LU Guang-Cheng1 XU Yi1,2 PAN Qiang-Yan1 YUAN Ren-Yong1 XU Jia-Qiang1 YAN Zhe1 FAN Gong-Tao1,2 SHEN Wen-Qing1 1 (Shanghai Institute of Applied Physics, CAS, Shanghai 201800, China) 2 (Graduate University of Chinese Academy of Sciences, Beijing 100049, China)

【机构】 Shanghai Institute of Applied Physics, CAS

【摘要】 Based on the facility of the Shanghai Laser Electron Gamma Source (SLEGS), the transmutation for nuclear wastes such as 137Cs and 129I is investigated. It is found that nuclear waste can be transmuted efficiently via photonuclear reaction triggered by gamma photons generated from Compton backscattering between CO2 laser photons and 3.5 GeV electrons. The nuclear activities of 137Cs and 129I are evaluated and compared with the results of transmutation triggered by bremsstrahlung gamma photons driven by ultra intense laser. Due to the better character of gamma photon spectrum as well as the high brightness of gamma photons, the transmutation rate of Compton backscattering method is much higher than that of the bremsstrahlung method.

【Abstract】 Based on the facility of the Shanghai Laser Electron Gamma Source (SLEGS), the transmutation for nuclear wastes such as 137Cs and 129I is investigated. It is found that nuclear waste can be transmuted efficiently via photonuclear reaction triggered by gamma photons generated from Compton backscattering between CO2 laser photons and 3.5 GeV electrons. The nuclear activities of 137Cs and 129I are evaluated and compared with the results of transmutation triggered by bremsstrahlung gamma photons driven by ultra intense laser. Due to the better character of gamma photon spectrum as well as the high brightness of gamma photons, the transmutation rate of Compton backscattering method is much higher than that of the bremsstrahlung method.

【基金】 Knowledge Innovation Project of Chinese Academy of Sciences (KJCX2-SW-N13);China Postdoctoral ScienceFoundation, National Natural Science Foundation of China (10475108, 10605036, 10405032);One Hundred Person Project of SINAP;Shanghai Development Foundation for Science and Technology (06QA14062)
  • 【文献出处】 中国物理C ,Chinese Physics C , 编辑部邮箱 ,2008年08期
  • 【分类号】TL94
  • 【被引频次】5
  • 【下载频次】67
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