RADIATION PROTECTION ›› 2023, Vol. 43 ›› Issue (6): 549-555.

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Development of a prototype instrument for α-surface contamination measurement based on air Radioluminescence

JIN Chenghe, ZHAO Yuan, WANG Yu, CAO Qinjian, XIONG Wanchun, HUANG Mingxiao, LIU Liye, LI Yan, DONG Jiajie, XIA Sanqiang   

  1. China Institute for Radiation Protection Shanxi Provincial Key Laboratory for Radiation Safety and Protection CNNC Key Laboratory of radiation protection Technology, Taiyuan 030006
  • Received:2023-04-10 Online:2023-11-20 Published:2023-12-25

Abstract: Optical detection method of α surface contamination based on air Radioluminescence was one of the active area of research since its first demonstration at the beginning of this century. Compared to other kinds of α surface contamination measurement methods, the optical detection method of α surface contamination has the following advantages: it can realize non-contact α surface contamination measurement, it can effectively measure non-flat surface α contamination, and finally it can effectively reduce the risk of surface contamination. But on the other hand, affected by low emission yield of air Radioluminescence from α particle energy deposition, the detection limit of optical detection method of α surface contamination is too high compared with other kinds of α surface contamination methods. In this paper we presented a prototype instrument for measurement of α surface contamination. The instrument is based on optical detection of air Radioluminescence from α radiation, and work in telescope scanning mode. Primary performance testing results show that, the sensitivity of the prototype instrument is 2.63 s-1/kBq, and the MDA is 1.0 kBq at 1 m distance from object lens and 10 s measurement time. Field experiment shows that the prototype instrument can also accurately measure space distribution of α surface contamination.

Key words: α surface contamination, air radioluminescence, optical detection

CLC Number: 

  • TL75+2.3