A new method for the measurement of the activity of high-concentration 226Ra in solution based on 222Rn production rate

被引:0
|
作者
Wang, Chao [1 ]
Bai, Zixuan [1 ]
Zhang, Enze [1 ]
Ma, Wenliang [2 ]
Zhao, Xiaosheng [2 ]
Tang, Quan [1 ]
机构
[1] Univ South China, Sch Nucl Sci & Technol, Hengyang 421009, Peoples R China
[2] Chengdu New Radiomed Technol Co Ltd, Chengdu 610200, Peoples R China
关键词
Rn-222 production rate; High-concentration Ra-226; RAD7; Rapid measurement; RADIUM ISOTOPES; ALPHA-SPECTROMETRY; SAMPLES;
D O I
10.1007/s10967-024-09628-x
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Traditional methods for measuring the Ra-226 activity are time-consuming and the equipment is large and inconvenient to carry. This article proposes a new method for quickly measuring the activity of high-concentration Ra-226 using RAD7, which is simple to operate, does not require chemical separation. The Rn-222 production rate is obtained by measuring the Rn-222 concentration in a nonequilibrium state using RAD7, and the Ra-226 activity is yielded according to the law of radioactive decay. Verification experimental results demonstrate that, compared with the FD125 measurement method, the proposed method reduces the measurement time by 92%, with result deviation within 6%. Therefore, the proposed method can provide technical support for rapid measurement during the Ra-226 production process.
引用
收藏
页码:5741 / 5746
页数:6
相关论文
共 50 条
  • [21] Measurement of 222Rn and 226Ra in water by absorption of radon in polycarbonates and etching alpha-tracks
    Dimitrova, I.
    Mitev, K.
    Pressyanov, D.
    Georgiev, S.
    Boshkova, T.
    RADIATION MEASUREMENTS, 2011, 46 (01) : 119 - 126
  • [22] Determination of 222Rn and 226Ra in water using a large volume ionisation chamber
    Salih, I
    Pettersson, H
    Lund, E
    JOURNAL OF ENVIRONMENTAL RADIOACTIVITY, 2000, 48 (02) : 235 - 245
  • [23] 226Ra, 222Rn AND PERMEABILITY OF BELGIAN SOILS IN RELATION WITH INDOOR RADON RISK
    Licour, C.
    Tondeur, F.
    Gerardy, I.
    Alaoui, N. Medaghri
    Dubois, N.
    Perreaux, R.
    Gerardy, N.
    Christiaens, D.
    RADIATION PROTECTION DOSIMETRY, 2017, 177 (1-2) : 168 - 172
  • [24] Estimation of 222Rn exhalation rate and assessment of radiological risk from activity concentration of 226Ra, 232Th and 40K
    Bangotra, Pargin
    Mehra, Rohit
    Jakhu, Rajan
    Kaur, Kirandeep
    Pandit, Pragya
    Kanse, Sandeep
    JOURNAL OF GEOCHEMICAL EXPLORATION, 2018, 184 : 304 - 310
  • [25] A comparative evaluation of 222Rn sealing materials for 226Ra analysis by gamma spectrometry
    Seo, Han Chang
    Lee, Hyeon-Woo
    Kim, Kyeong Ho
    Kang, Jeongsoo
    Chae, Jung-Seok
    JOURNAL OF ENVIRONMENTAL RADIOACTIVITY, 2025, 285
  • [26] Concentrations of 222Rn, 226Ra and 228Ra in surface sea water of the Bay of Bengal
    Ghose, S
    Alam, MN
    Islam, MN
    JOURNAL OF ENVIRONMENTAL RADIOACTIVITY, 2000, 47 (03) : 291 - 300
  • [27] Occurrence of 222Rn, 226Ra, 228Ra and U in groundwater in Fujian Province, China
    Zhuo, WH
    Iida, T
    Yang, XT
    JOURNAL OF ENVIRONMENTAL RADIOACTIVITY, 2001, 53 (01) : 111 - 120
  • [28] Determination of 226Ra Activity Using Gamma Spectrometry with 226Ra-222Rn Disequilibrium
    Li, Qi
    Wang, Shilian
    Zhao, Yungang
    Liu, Shujiang
    Fan, Yuanqing
    Shi, Jianfang
    Jia, Huaimao
    Yu, Weixiang
    HEALTH PHYSICS, 2015, 109 (02): : 113 - 116
  • [29] Assessments of 226Ra and 222Rn concentration in well and tap water from Sik, Malaysia, and consequent dose estimates
    Ahmad, Nisar
    Rehman, Javed
    Rehman, Jalil ur
    Nasar, Gulfam
    HUMAN AND ECOLOGICAL RISK ASSESSMENT, 2019, 25 (07): : 1697 - 1706
  • [30] Rapid sequential determination of 222Rn and 226Ra in drinking water by liquid scintillation counting
    Ryu, Jeonghyeon
    Lee, Hyeon-Woo
    Chae, Jung-Seok
    TALANTA, 2022, 239