Zugriffsnummer 49252
Dokumenttyp Zeitschriftenartikel Open Access Hybrid
Peer Review mit Peer Review
Sprache Englisch
Titel Novel optical technologies for emergency preparedness and response: Mapping contaminations with alpha-emitting radionuclides
Autor(in); Institution
Luchkov, Maksym; 6.3, Strahlenschutzdosimetrie, PTB-Braunschweig
Dangendorf, Volker; 6.1, Radioaktivität, PTB-Braunschweig
Giesen, Ulrich; 6.4, Neutronenstrahlung, PTB-Braunschweig
Langner, Frank; 6.4, Neutronenstrahlung, PTB-Braunschweig
Olaru, Claudia; Horia Hulubei National Institute for R&D in Physics and Nuclear Engineering (IFIN-HH), Magurele, ROMANIA
Zadehrafi, Mastaneh; Horia Hulubei National Institute for R&D in Physics and Nuclear Engineering (IFIN-HH), Magurele, ROMANIA
Klose, Annika; Gottfried Wilhelm Leibniz Universität Hannover, Institut für Radioökologie und Strahlenschutz, Hannover, GERMANY
Kalmankoski, Kim; Tampere University, Physics Unit, Photonics Laboratory, Tampere, FINLAND
Sand, Johan; Alfa Rift Ltd, Tampere, FINLAND
Ihantola, Sakari; Alfa Rift Ltd, Tampere, FINLAND
Toivonen, Harri; Alfa Rift Ltd, Tampere, FINLAND
Walther, Clemens; Gottfried Wilhelm Leibniz Universität Hannover, Institut für Radioökologie und Strahlenschutz, Hannover, GERMANY
Röttger, Stefan; 6.1, Radioaktivität, PTB-Braunschweig
Ioan, Mihail-Razvan; Horia Hulubei National Institute for R&D in Physics and Nuclear Engineering (IFIN-HH), Magurele, ROMANIA
Toivonen, Juha; Tampere University, Physics Unit, Photonics Laboratory, Tampere, FINLAND
Krasniqi, Faton S.; 6.3, Strahlenschutzdosimetrie, PTB-Braunschweig
Quelle/Jahr Nuclear Instruments and Methods in Physics Research A: 1047 (2023), 1 - 9
Artikelnummer 167895
ISSN 0168-9002 (PRINT)
DOI
Verlag Amsterdam: Elsevier
Freie Schlagworte Radioluminescence ; Optical detection of alpha emitters ; Emergency preparedness ; Lens-based detection systems ; UV-A ; UV-B
Zusammenfassung Radiological emergencies involving an accidental or deliberate dispersion of alpha-emitting radionuclides in the environment can cause significant damage to humans and societies in general. Currently, there is a metrology gap in managing such emergencies due to the lack of detectors that can measure alpha particles at distances greater than their range in air: most conventional alpha detectors are only effective when placed just a few centimeters above the contaminated area. This paper presents the development and testing of lens based optical detection systems that utilize alpha particle-induced ultraviolet (UV) luminescence of air, known as alpha radioluminescence. Telescopes based on fused silica and Poly(methyl 2-methylpropenoate) (PMMA) Fresnel lenses were investigated for their usability in facilitating emergency management related to alpha-emitting radionuclides. Careful matching of the diameter and focal length of the receiving optics, the response of the photocathode, and the passband of the filter allows detection sensitivities as high as 34 s-1 MBq-1 at 2 m source-to-detector distance and background count rate of about 3 s-1 in the UV-C spectral region, and suppression of daylight background count rate down to 16 s-1. By flushing the source with nitrogen (N2) containing trace amounts of nitric oxide (NO), a groundbreaking sensitivity of 1.3 × 105 s-1 MBq-1 has been achieved, allowing detection limits as low as 100 Bq with room lighting on, and 70 Bq in a dark environment. In the UV-A spectral region, a detection limit of 4 kBq could be achieved in a dark environment. These optical detection systems are aimed to facilitate a rapid, coordinated, and effective response in emergency situations involving the release of alpha-emitting radionuclides by mounting them on a tripod or an unmanned aerial device (UAV).
Kostenfreier Zugang Open Access Hybrid
Rechteinformation CC BY 4.0 ; Creative Commons Attribution 4.0 License
Themenbereich der Metrologie Ionisierende Strahlung
Förderinformationen (1) Förderername: European Commission (EC)
Förderer ID: 0000 0001 2242 8989
Förderer ID Typ: ISNI
Förderprogramm: EMPIR 2019 Environment
Titel der Förderung: 19ENV02: RemoteALPHA: Remote and real-time optical detection of alpha-emitting radionuclides in the environment
Förderungsnummer: 19ENV02
URI der Förderung: https://www.euramet.org/research-innovation/search-research-projects/details/project/remote-and-real-time-optical-detection-of-alpha-emitting-radionuclides-in-the-environment/?L=0&tx_eurametctcp_project%5Baction%5D=show&tx_eurametctcp_project%5Bcontroller%5D=Project&cHash=89489347d92d3f0c9dca079a5bbad14e

Zitierung

Luchkov, M., Dangendorf, V., Giesen, U., Langner, F., Olaru, C., Zadehrafi, M., Klose, A., Kalmankoski, K., Sand, J., Ihantola, S., Toivonen, H., Walther, C., Röttger, S., Ioan, M.-R., Toivonen, J., & Krasniqi, F. S. (2023). Novel optical technologies for emergency preparedness and response: Mapping contaminations with alpha-emitting radionuclides. Nuclear Instruments and Methods in Physics Research A, 1047, 1–9. https://doi.org/10.1016/j.nima.2022.167895

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