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Homepage>BS Standards>13 ENVIRONMENT. HEALTH PROTECTION. SAFETY>13.060 Water quality>13.060.60 Examination of physical properties of water>BS EN ISO 13164-4:2023 Water quality. Radon-222 Test method using two-phase liquid scintillation counting
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immediate downloadReleased: 2023-07-28
BS EN ISO 13164-4:2023 Water quality. Radon-222 Test method using two-phase liquid scintillation counting

BS EN ISO 13164-4:2023

Water quality. Radon-222 Test method using two-phase liquid scintillation counting

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Standard number:BS EN ISO 13164-4:2023
Pages:26
Released:2023-07-28
ISBN:978 0 539 17977 4
Status:Standard

BS EN ISO 13164-4:2023 Water Quality - Radon-222 Test Method Using Two-Phase Liquid Scintillation Counting

Introducing the BS EN ISO 13164-4:2023, a comprehensive guide to water quality testing that focuses on the Radon-222 test method using two-phase liquid scintillation counting. This standard is a must-have for professionals in the field of water quality testing, environmental science, and public health. It provides a detailed, step-by-step guide to accurately measure the presence of Radon-222 in water samples, ensuring the safety and health of communities worldwide.

Key Features

The BS EN ISO 13164-4:2023 standard is a 26-page document, packed with valuable information and guidelines. It was released on July 28, 2023, and is the latest version of the standard, ensuring that you have the most up-to-date information at your fingertips.

The standard is identified by the ISBN number 978 0 539 17977 4, guaranteeing its authenticity and credibility. This standard is recognized and accepted globally, making it a valuable resource for professionals around the world.

Radon-222 Test Method

The main focus of the BS EN ISO 13164-4:2023 standard is the Radon-222 test method using two-phase liquid scintillation counting. This method is known for its accuracy and reliability in detecting the presence of Radon-222, a radioactive gas that can be harmful to human health if present in high concentrations in water.

The standard provides a detailed guide on how to perform the test, including the preparation of the water sample, the use of the two-phase liquid scintillation counting technique, and the interpretation of the results. This ensures that you can perform the test accurately and confidently, ensuring the safety of the water supply.

Why Choose BS EN ISO 13164-4:2023?

The BS EN ISO 13164-4:2023 standard is a trusted resource for professionals in the field of water quality testing. It is recognized globally and is based on the latest scientific research and findings. By choosing this standard, you are ensuring that you are using a method that is accurate, reliable, and trusted by professionals worldwide.

Furthermore, the standard is easy to understand and follow, making it suitable for both experienced professionals and those new to the field. It provides clear instructions and guidelines, ensuring that you can perform the Radon-222 test accurately and effectively.

Ensure the safety and health of your community by choosing the BS EN ISO 13164-4:2023 standard for your water quality testing needs. With its detailed guidelines and proven methods, it is the ultimate resource for professionals in the field.

Order Your Copy Today

Don't miss out on this essential resource for water quality testing. Order your copy of the BS EN ISO 13164-4:2023 standard today and ensure the safety and health of your community. Remember, clean water is a fundamental human right, and with this standard, you can help ensure that right for everyone.

DESCRIPTION

BS EN ISO 13164-4:2023


This standard BS EN ISO 13164-4:2023 Water quality. Radon-222 is classified in these ICS categories:
  • 13.060.60 Examination of physical properties of water
  • 17.240 Radiation measurements
  • 13.280 Radiation protection
This document describes a test method for the determination of radon-222 (222Rn) activity concentration in non-saline waters by extraction and liquid scintillation counting. The 222Rn activity concentrations, which can be measured by this test method utilizing currently available instruments, are above 0,5 Bq·l?1 which is the typical detection limit for a 10 ml test sample and a measuring time of 1 h. It is the responsibility of the laboratory to ensure the validity of this test method for water samples of untested matrices. Annex A gives indication on the necessary counting conditions to meet the required detection limits for drinking water monitoring.