Author Identifier (ORCID)

Gregory S. Hewson: https://orcid.org/0009-0002-0872-9288

Martin I. Ralph: https://orcid.org/0000-0002-5893-6886

Marcus Cattani: https://orcid.org/0000-0002-7586-7288

Abstract

Intake of naturally occurring radioactive materials (NORM), particularly the inhalation of thorium-bearing dust in mineral sand operations, has traditionally been assessed via personal air sampling (PAS). However, data from bioassay studies suggest that the actual intake determined via PAS may be underestimated. This review integrates thorium intake estimates derived from historical bioassay datasets, such as urine, faeces, lung counting, and thoron-in-breath tests, with historical PAS data. The findings indicated that bioassay-based predictions of intake were consistently greater, with mean bioassay-to-PAS intake ratios ranging from 2.6 to 4.2. The contributing factors to this discrepancy include biokinetic model uncertainties, potential dust sampler bias, the PAS strategy, high variability of exposure within similar exposure groups (SEGs), self-absorption of alpha particles during the radiometric analysis of filtered dust samples, and nonaccounting for respiratory protection. This review suggests improvements to current PAS-based dose assessments, including sampling and analysis protocols. We recommend that PAS be supplemented by targeted bioassay monitoring, where feasible, to improve dose estimation and worker protection in NORM industries.

Keywords

thorium, personal air sampling, internal dosimetry, mining, natural radiation

Document Type

Journal Article

Date of Publication

6-8-2026

Publication Title

Radiation and Environmental Biophysics

Publisher

Springer

School

School of Medical and Health Sciences

Creative Commons License

Creative Commons Attribution 4.0 License
This work is licensed under a Creative Commons Attribution 4.0 License.

Comments

Hewson, G. S., Ralph, M. I., & Cattani, M. (2026). NORM dust intake: Comparison of personal air sampling and bioassays. Radiation and Environmental Biophysics. Advance online publication. https://doi.org/10.1007/s00411-026-01233-8

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Link to publisher version (DOI)

10.1007/s00411-026-01233-8