DOI QR코드

DOI QR Code

Design, construction, and characterization of a Prompt Gamma Neutron Activation Analysis (PGNAA) system at Isfahan MNSR

  • M.H. Choopan Dastjerdi (Reactor and Nuclear Safety Research School, Nuclear Science and Technology Research Institute) ;
  • J. Mokhtari (Reactor and Nuclear Safety Research School, Nuclear Science and Technology Research Institute) ;
  • M. Toghyani (Reactor and Nuclear Safety Research School, Nuclear Science and Technology Research Institute)
  • Received : 2023.01.23
  • Accepted : 2023.08.08
  • Published : 2023.12.25

Abstract

In this research, a prompt gamma neutron activation analysis (PGNAA) system is designed and constructed based on the use of a low power research reactor. For this purpose, despite the fact that this reactor did not include beam tubes, a thermal neutron beam line is installed inside the reactor tank. The extraction of the beam line from inside the tank made it possible to provide the neutron flux from the order of 106 n.cm-2.s-1. Also, because the beam line is installed in a tangential position to the reactor core, its gamma level has been minimized. Also, a suitable radiation shield is considered for the detector to minimize the background radiation and prevent radiation damage to the detector. Calculations and measurements are done in order to characterize this system, as well as spectrometry of several samples. The results of evaluations and experiments show that this system is suitable for performing PGNAA.

Keywords

References

  1. K. Krane, Introductory Nuclear Physics, WileyVCH, Weinheim, 1999.
  2. M.D. Glascock, An Overview of Neutron Activation Analysis, University of Missouri Research Reactor (MURR), Columbia, MO, 2006.
  3. M.A. Lone, R.A. Leavitt, D.A. Harrison, Prompt gamma rays from thermal-neutron capture, Atomic Data and Nuclear Data Tables 26 (6) (1981) 511-559.
  4. Z. Alfassi, Activation Analysis, 2, CRC Press, 1990.
  5. R.R. Greenberg, P. Bode, E.A.D.N. Fernandes, Neutron activation analysis: a primary method of measurement, Spectrochimica Acta B: Atomic Spectroscopy 66 (3-4) (2011) 193-241.
  6. R.M. Lindstrom, Z. R'evay, Prompt gamma neutron activation analysis (PGAA): recent developments and applications, Journal of Radioanalytical and Nuclear Chemistry 314 (2) (2017) 843-858.
  7. INTERNATIONAL ATOMIC ENERGY AGENCY, The Applications of Research Reactors, IAEA, Vienna, 2014. Technical Document No. 1234.
  8. SAR, Isfahan Miniature Neutron Source Reactor (MNSR) Safety Analysis Report (SAR), AEOI-Internal Report, NSTRI, Iran, 2011.
  9. Version 1.0, 19, IAEA Working Document, Database of PGNAA Facilities, Prompt Gamma Neutron Activation Analysis, Jointly Prepared and Managed by the TUM and IAEA, February 2015. Vienna (Austria).
  10. J. Robinson, M. Hartman, S. Reese, Design, construction and characterization of a prompt gamma activation analysis facility at the Oregon State University TRIGA® reactor, Journal Of Radioanalytical and Nuclear Chemistry 283 (2) (2010) 359-369.
  11. J. Mokhtari, M.C. Dastjerdi, Development and characterization of a large thermal neutron beam for neutron radiography at Isfahan MNSR, Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment 1051 (2023), 168209.
  12. M.C. Dastjerdi, J. Mokhtari, A. Asgari, E. Ghahremani, A neutron radiography beamline relying on the isfahan miniature neutron source reactor, Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment 928 (2019) 20-25.
  13. A. Moslehi, M.C. Dastjerdi, F. Torkzadeh, J. Mokhtari, Feasibility study of Isfahan MNSR as a calibration thermal neutron source, Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment 1024 (2022), 166026.
  14. M.C. Dastjerdi, J. Mokhtari, M. Toghyani, B. Soleimani, Feasibility study on PGNAA experiments using a prototype neutron beam at Isfahan MNSR, Journal of Instrumentation 18 (2023), P07031.
  15. Z. Ghasemi, M. Hassanvand, M.C. Dastjerdi, J. Mokhtari, Design of a radiation shield for an HPGe detector for a reactor-based PGNAA facility, Radiation Physics and Chemistry 210 (2023), 111045.
  16. M. Vatani, M. Hassanvand, J. Mokhtari, M.C. Dastjerdi, Design of an in-tank thermal neutron beam for PGNAA application at Isfahan MNSR, Nuclear Engineering and Design 412 (2023), 112451.