ISO 18589-3:2023 PDF
Measurement of radioactivity in the environment — Soil — Part 3: Test method of gamma-emitting radionuclides using gamma-ray spectrometry
Measurement of radioactivity in the environment — Soil — Part 3: Test method of gamma-emitting radionuclides using gamma-ray spectrometry
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 35
- Дата публикации:
- 27 июля 2023 г.
- Издание:
- ISO IS 18589 edition 3 version 1
- ICS:
- 13.080.01
This document specifies the identification and the measurement of the activity in soils of a large number of gamma-emitting radionuclides using gamma spectrometry. This non-destructive method, applicable to large-volume samples (up to about 3 l), covers the determination in a single measurement of all the γ-emitters present for which the photon energy is between 5 keV and 3 MeV. Generic test method and fundamentals using gamma-ray spectrometry are described in ISO 20042. This document can be applied by test laboratories performing routine radioactivity measurements as a majority of gamma-emitting radionuclides is characterized by gamma-ray emission between 40 keV and 2 MeV. The method can be implemented using a germanium or other type of detector with a resolution better than 5 keV. This document addresses methods and practices for determining gamma-emitting radionuclides activity present in soil, including rock from bedrock and ore, construction materials and products, pottery, etc. This includes such soils and material containing naturally occurring radioactive material (NORM) or those from technological processes involving Technologically Enhanced Naturally Occurring Radioactive Materials (TENORM) (e.g. the mining and processing of mineral sands or phosphate fertilizer production and use) as well as of sludge and sediment. This determination of gamma-emitting radionuclides activity is typically performed for the purpose of radiation protection. It is suitable for the surveillance of the environment and the inspection of a site and allows, in case of accidents, a quick evaluation of gamma activity of soil samples. This might concern soils from gardens, farmland, urban or industrial sites that can contain building materials rubble, as well as soil not affected by human activities. When the radioactivity characterization of the unsieved material above 200 μm or 250 μm, made of petrographic nature or of anthropogenic origin such as building materials rubble, is required, this material can be crushed in order to obtain a homogeneous sample for testing as described in ISO 18589‑2.
Abstract
Overview - ISO 18589-3:2023 (gamma-ray spectrometry for soil)
ISO 18589-3:2023 specifies a non-destructive test method for the identification and measurement of gamma-emitting radionuclides in soil using gamma‑ray spectrometry. The method is applicable to large-volume samples (up to about 3 L) and covers photon energies from 5 keV to 3 MeV, with most routine measurements targeting the common gamma emitters between 40 keV and 2 MeV. It supports the use of germanium or other detectors with a resolution better than 5 keV and is intended for routine environmental radioactivity analysis, emergency site inspection and radiation protection surveillance.
Key technical topics and requirements
- Principle and scope: Identification and quantification of a broad range of gamma‑emitters in soils, rocks, construction materials, sediments, sludge and NORM/TENORM materials.
- Sample handling: Packaging, large-volume sample preparation and optional crushing of coarse fractions (see ISO 18589‑2 for unsieved material).
- Equipment: Detector selection (high‑resolution germanium recommended), cryostat/cooler, shielding, preamplifier and analogue/digital acquisition electronics.
- Calibration:
- Energy calibration and efficiency calibration using reference sources and numerical methods.
- Use of appropriate reference sources for laboratory systems.
- Corrections and data processing:
- Dead time, pile-up and decay corrections (see ISO 20042 for fundamentals).
- Self-attenuation (self-absorption) and true coincidence summing corrections.
- Background subtraction, contributions from other radionuclides and laboratory background assessment.
- Quality control and uncertainty:
- Procedures for quality assurance, determination of decision thresholds, detection limits, and reporting standard uncertainty.
- Reporting: Expression of activity per unit mass and detailed test report requirements.
Practical applications and primary users
- Environmental monitoring and surveillance programs (soil, urban and agricultural land).
- Radiation protection and regulatory compliance assessments.
- Emergency response and rapid site inspection after radiological incidents.
- Industries handling NORM/TENORM: mining (mineral sands), phosphate fertilizer production, construction materials testing.
- Accredited testing laboratories, national metrology institutes, environmental agencies, and radiation safety officers.
Related standards
- ISO 20042 - generic test method and fundamentals for gamma‑ray spectrometry (referenced for dead time/pile‑up and measurement fundamentals).
- ISO 18589-2 - guidance on sample preparation and crushing of coarse or anthropogenic materials.
Keywords: ISO 18589-3:2023, gamma-ray spectrometry, gamma-emitting radionuclides, soil radioactivity, NORM, TENORM, environmental monitoring, germanium detector, detection limit, self-attenuation, true coincidence summing.
Технические детали
- Технический комитет
- ISO/TC 85/SC 2 - Radiological protection
- SKU
- ISO 18589-3:2023
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