DENG ZHONGGUO;ZHAO MOTIAN;GAO SHUQIN;LI SILIN Institute of Atomic Energy, Beijing. MASS SPECTROMETRIC MEASURING BURNUP OF NUCLEAR FUEL[J]. Atomic Energy Science and Technology, 1989, 23(1): 44-44. DOI: 10.7538/yzk.1989.23.01.0044
Citation:
DENG ZHONGGUO;ZHAO MOTIAN;GAO SHUQIN;LI SILIN Institute of Atomic Energy, Beijing. MASS SPECTROMETRIC MEASURING BURNUP OF NUCLEAR FUEL[J]. Atomic Energy Science and Technology, 1989, 23(1): 44-44. DOI: 10.7538/yzk.1989.23.01.0044
DENG ZHONGGUO;ZHAO MOTIAN;GAO SHUQIN;LI SILIN Institute of Atomic Energy, Beijing. MASS SPECTROMETRIC MEASURING BURNUP OF NUCLEAR FUEL[J]. Atomic Energy Science and Technology, 1989, 23(1): 44-44. DOI: 10.7538/yzk.1989.23.01.0044
Citation:
DENG ZHONGGUO;ZHAO MOTIAN;GAO SHUQIN;LI SILIN Institute of Atomic Energy, Beijing. MASS SPECTROMETRIC MEASURING BURNUP OF NUCLEAR FUEL[J]. Atomic Energy Science and Technology, 1989, 23(1): 44-44. DOI: 10.7538/yzk.1989.23.01.0044
MASS SPECTROMETRIC MEASURING BURNUP OF NUCLEAR FUEL
The mass spectrometric determination of burnup in the reactor fuel is presented. The accuracies of results obtained by a mounts of ~(236)U growth, ~(235)U decrease and indictor (~(148)Nd) are 1.6-4.0%. The axial distributions of α_5 and burnup(%)in irradiated fuel are demonstrated.