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Feasibility study of prompt gamma neutron activation for NDT measurement of moisture in stone and brick

Journal Article · · AIP Conference Proceedings
DOI:https://doi.org/10.1063/1.4864907· OSTI ID:22263828
;  [1]; ;  [2];  [3]
  1. Materials Science and Engineering Dept., U. of Maryland, College Park MD 20742 (United States)
  2. Museum Conservation Institute, Smithsonian Institution, Washington DC 20746 (United States)
  3. Chemical Sciences Division, NIST, Gaithersburg MD 20899 (United States)

The conservation of stone and brick architecture or sculpture often involves damage caused by moisture. The feasibility of a NDT method based on prompt gamma neutron activation (PGNA) for measuring the element hydrogen as an indication of water is being evaluated. This includes systematic characterization of the lithology and physical properties of seven building stones and one brick type used in the buildings of the Smithsonian Institution in Washington, D.C. To determine the required dynamic range of the NDT method, moisture-related properties were measured by standard methods. Cold neutron PGNA was also used to determine chemically bound water (CBW) content. The CBW does not damage porous masonry, but creates an H background that defines the minimum level of detection of damaging moisture. The CBW was on the order of 0.5% for all the stones. This rules out the measurement of hygric processes in all of the stones and hydric processed for the stones with fine scale pore-size distributions The upper bound of moisture content, set by porosity through water immersion, was on the order of 5%. The dynamic range is about 10–20. The H count rates were roughly 1–3 cps. Taking into account differences in neutron energies and fluxes and sample volume between cold PGNA and a portable PGNA instrument, it appears that it is feasible to apply PGNA in the field.

OSTI ID:
22263828
Journal Information:
AIP Conference Proceedings, Journal Name: AIP Conference Proceedings Journal Issue: 1 Vol. 1581; ISSN APCPCS; ISSN 0094-243X
Country of Publication:
United States
Language:
English

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