The recently commissioned NILE facility at the ISIS Pulsed Neutron & Muon Source has been employed to perform neutron activation analysis with 14 MeV neutrons from its D-T source. In this first study of its kind on NILE, we have placed an intentional focus on the use of these new experimental capabilities for the study of cementitious materials. Following neutron irradiation, the resulting gamma-ray spectra enable us to assess the current capabilities of NILE for non-destructive and quantitative elemental analysis of specimens of direct industrial relevance, and demonstrate adequate sensitivity levels to both major and trace components, some of which are not accessible with other analytical techniques. The dependence of the spectroscopic data on source-to-sample distance also shows order-of-magnitude gains associated with the ability to implement neutron irradiation within a few mm from the source. All in all, the experimental results presented herein evince the suitability and yet-to-tapped potential of NILE to implement neutron-activation analysis with typical irradiation times well under one hour.

Macia-Castello, C., Huidobro, J., Blanco-Lopez, D., Gaboardi, M., Cazzaniga, C., Bhuiyan, N., et al. (2024). Neutron activation on NILE for quantitative chemical analysis – First results and outlook. ??????? it.cilea.surplus.oa.citation.tipologie.CitationProceedings.prensentedAt ??????? International Meeting of Union for Compact Accelerator-Driven Neutron Sources (UCANS-10) [10.1051/epjconf/202429805002].

Neutron activation on NILE for quantitative chemical analysis – First results and outlook

Gaboardi M.;
2024-01-01

Abstract

The recently commissioned NILE facility at the ISIS Pulsed Neutron & Muon Source has been employed to perform neutron activation analysis with 14 MeV neutrons from its D-T source. In this first study of its kind on NILE, we have placed an intentional focus on the use of these new experimental capabilities for the study of cementitious materials. Following neutron irradiation, the resulting gamma-ray spectra enable us to assess the current capabilities of NILE for non-destructive and quantitative elemental analysis of specimens of direct industrial relevance, and demonstrate adequate sensitivity levels to both major and trace components, some of which are not accessible with other analytical techniques. The dependence of the spectroscopic data on source-to-sample distance also shows order-of-magnitude gains associated with the ability to implement neutron irradiation within a few mm from the source. All in all, the experimental results presented herein evince the suitability and yet-to-tapped potential of NILE to implement neutron-activation analysis with typical irradiation times well under one hour.
International Meeting of Union for Compact Accelerator-Driven Neutron Sources (UCANS-10)
2024
10
Rilevanza internazionale
2024
Settore CHEM-01/A - Chimica analitica
Settore PHYS-01/A - Fisica sperimentale delle interazioni fondamentali e applicazioni
English
Article number: 05002
Intervento a convegno
Macia-Castello, C., Huidobro, J., Blanco-Lopez, D., Gaboardi, M., Cazzaniga, C., Bhuiyan, N., et al. (2024). Neutron activation on NILE for quantitative chemical analysis – First results and outlook. ??????? it.cilea.surplus.oa.citation.tipologie.CitationProceedings.prensentedAt ??????? International Meeting of Union for Compact Accelerator-Driven Neutron Sources (UCANS-10) [10.1051/epjconf/202429805002].
Macia-Castello, C; Huidobro, J; Blanco-Lopez, D; Gaboardi, M; Cazzaniga, C; Bhuiyan, N; Dolado, Js; Arana, G; Madariaga, Jm; Fernandez-Alonso, F...espandi
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/398008
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