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ASTM C 1295 : 2015 : REDLINE

Superseded

Superseded

A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.

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superseded

A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.

Standard Test Method for Gamma Energy Emission from Fission and Decay Products in Uranium Hexafluoride and Uranyl Nitrate Solution

Available format(s)

PDF

Superseded date

21-03-2024

Language(s)

English

Published date

21-07-2015

CONTAINED IN VOL. 12.01, 2015 Defines the measurement of gamma energy emitted from fission and decay products in uranium hexafluoride (UF[6]) and uranyl nitrate solution.

1.1This test method covers the measurement of gamma energy emitted from fission products in uranium hexafluoride (UF6) and uranyl nitrate solution. This test method may also be used to measure the concentration of some uranium decay products. It is intended to provide a method for demonstrating compliance with UF6 specifications C787 and C996, uranyl nitrate specification C788, and uranium ore concentrate specification C967.

1.2The lower limit of detection is 5000 MeV Bq/kg (MeV/kg per second) of uranium and is the square root of the sum of the squares of the individual reporting limits of the nuclides to be measured. The limit of detection was determined on a pure, aged natural uranium (ANU) solution. The value is dependent upon detector efficiency and background.

1.3The fission product nuclides to be measured are 106Ru/106Rh, 103Ru, 137Cs, 144Ce, 144Pr, 141Ce, 95Zr, 95Nb, and 125Sb. Among the uranium decay product nuclides that may be measured is 231Pa. Other gamma energy-emitting fission and uranium decay nuclides present in the spectrum at detectable levels should be identified and quantified as required by the data quality objectives.

1.4The values stated in SI units are to be regarded as standard. No other units of measurement are included in this standard.

1.5This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use.

Committee
C 26
DocumentType
Redline
Pages
5
PublisherName
American Society for Testing and Materials
Status
Superseded
SupersededBy

ASTM C 1462 : 2000 : R2005 Standard Specification for Uranium Metal Enriched to More than 15% and Less Than 20%<sup>235</sup> U
ASTM C 1462 : 2000 Standard Specification for Uranium Metal Enriched to More than 15% and Less Than 20%<sup>235</sup> U
ASTM C 1462 : 2000 : R2013 Standard Specification for Uranium Metal Enriched to More than 15 % and Less Than 20 % 235U
ASTM C 1462 : 2000 : R2008 Standard Specification for Uranium Metal Enriched to More than 15 % and Less Than 20 % <sup> 235</sup>U
ASTM C 788 : 2003 : R2009 Standard Specification for Nuclear-Grade Uranyl Nitrate Solution or Crystals
ASTM C 787 : 2015 : REDLINE Standard Specification for Uranium Hexafluoride for Enrichment
ASTM C 788 : 2003 Standard Specification for Nuclear-Grade Uranyl Nitrate Solution or Crystals
ASTM C 788 : 2003 : R2015 Standard Specification for Nuclear-Grade Uranyl Nitrate Solution or Crystals
ASTM C 799 : 2012 Standard Test Methods for Chemical, Mass Spectrometric, Spectrochemical, Nuclear, and Radiochemical Analysis of Nuclear-Grade Uranyl Nitrate Solutions
ASTM C 761 : 2018 : REDLINE Standard Test Methods for Chemical, Mass Spectrometric, Spectrochemical, Nuclear, and Radiochemical Analysis of Uranium Hexafluoride

ASTM E 181 : 2017 : REDLINE Standard Test Methods for Detector Calibration and Analysis of Radionuclides
ASTM C 967 : 2013 : REDLINE Standard Specification for Uranium Ore Concentrate
ASTM C 787 : 2015 : REDLINE Standard Specification for Uranium Hexafluoride for Enrichment
ASTM C 996 : 2015 : REDLINE Standard Specification for Uranium Hexafluoride Enriched to Less Than 5 % <sup> 235</sup>U

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