ASTM C1672-2017 Standard Test Method for Determination of Uranium or Plutonium Isotopic Composition or Concentration by the Total Evaporation Method Using a Thermal Ionization Mass.pdf
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1、Designation: C1672 17Standard Test Method forDetermination of Uranium or Plutonium IsotopicComposition or Concentration by the Total EvaporationMethod Using a Thermal Ionization Mass Spectrometer1This standard is issued under the fixed designation C1672; the number immediately following the designat
2、ion indicates the year oforiginal adoption or, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope1.1 This method describes the determin
3、ation of the isotopiccomposition, or the concentration, or both, of uranium andplutonium as nitrate solutions by the total evaporation methodusing a thermal ionization mass spectrometer (TIMS) instru-ment. Purified uranium or plutonium nitrate solutions aredeposited onto a metal filament and placed
4、in the massspectrometer. Under computer control, ion currents are gener-ated by heating of the filament(s). The ion currents arecontinually measured until the whole sample is exhausted. Themeasured ion currents are integrated over the course of themeasurement and normalized to a reference isotope io
5、n currentto yield isotope ratios.1.2 In principle, the total evaporation method should yieldisotope ratios that do not require mass bias correction. Inpractice, samples may require this bias correction. Comparedto the conventional TIMS method described in Test MethodC1625, the total evaporation meth
6、od is approximately twotimes faster, improves precision of the isotope ratio measure-ments by a factor of two to four, and utilizes smaller samplesizes. Compared to the C1625 method, the total evaporationmethod provides “major” isotope ratios235U/238U and240Pu/239Pu with improved accuracy.1.3 The to
7、tal evaporation method is prone to biases in the“minor” isotope ratios (233U/238U,234U/238U, and236U/238Uratios for uranium materials and238Pu/239Pu,241Pu/239Pu,242Pu/239Pu, and244Pu/239Pu ratios for plutonium materials)due to peak tailing from adjacent major isotopes. The magni-tude of the absolute
8、 bias is dependent on measurement andinstrumental characteristics. The relative bias, however, de-pends on the relative isotopic abundances of the sample. Theuse of an electron multiplier equipped with an energy filter mayeliminate or diminish peak tailing effects. Measurement of theabundance sensit
9、ivity of the instrument may be used to ensurethat such biases are negligible, or may be used to bias correctthe minor isotope ratios.1.4 The values stated in SI units are to be regarded asstandard. When non-SI units are provided in parentheses, theyare for information only.1.5 This standard may invo
10、lve the use of hazardous mate-rials and equipment. This standard does not purport to addressall of the safety concerns, if any, associated with its use. It isthe responsibility of the user of this standard to establishappropriate safety and health practices and determine theapplicability of regulato
11、ry limitations prior to use.2. Referenced Documents2.1 ASTM Standards:2C753 Specification for Nuclear-Grade, Sinterable UraniumDioxide PowderC757 Specification for Nuclear-Grade Plutonium DioxidePowder for Light Water ReactorsC776 Specification for Sintered Uranium Dioxide PelletsC787 Specification
12、for Uranium Hexafluoride for Enrich-mentC833 Specification for Sintered (Uranium-Plutonium) Diox-ide Pellets for Light Water ReactorsC859 Terminology Relating to Nuclear MaterialsC967 Specification for Uranium Ore ConcentrateC996 Specification for Uranium Hexafluoride Enriched toLess Than 5 %235UC10
13、08 Specification for Sintered (Uranium-Plutonium)DioxidePelletsFast Reactor Fuel (Withdrawn 2014)3C1068 Guide for Qualification of Measurement Methods bya Laboratory Within the Nuclear IndustryC1156 Guide for Establishing Calibration for a Measure-ment Method Used to Analyze Nuclear Fuel Cycle Mate-
14、rials1This test method is under the jurisdiction ofASTM Committee C26 on NuclearFuel Cycle and is the direct responsibility of Subcommittee C26.05 on Methods ofTest.Current edition approved Jan. 1, 2017. Published January 2017. Originallyapproved in 2007. Last previous edition approved in 2014 as C1
15、672 07 (2014).DOI: 10.1520/C1672-17.2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.3The last approved versio
16、n of this historical standard is referenced onwww.astm.org.Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United StatesThis international standard was developed in accordance with internationally recognized principles on standardization establishe
17、d in the Decision on Principles for theDevelopment of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee.1C1168 Practice for Preparation and Dissolution of PlutoniumMaterials for AnalysisC1347 Practice for Preparatio
18、n and Dissolution of UraniumMaterials for AnalysisC1411 Practice for The Ion Exchange Separation of Ura-nium and Plutonium Prior to Isotopic AnalysisC1415 Test Method for238Pu Isotopic Abundance By AlphaSpectrometryC1625 Test Method for Uranium and Plutonium Concentra-tions and Isotopic Abundances b
19、y Thermal IonizationMass SpectrometryC1816 Practice for The Ion Exchange Separation of SmallVolume Samples Containing Uranium, Americium, andPlutonium Prior to Isotopic Abundance and ContentAnalysisC1832 Test Method for Determination of Uranium IsotopicComposition by the Modified Total Evaporation (
20、MTE)Method Using a Thermal Ionization Mass SpectrometerD1193 Specification for Reagent WaterD3084 Practice for Alpha-Particle Spectrometry of Water3. Terminology3.1 For definitions of terms used in this test method but notdefined herein, refer to Terminology C859.3.2 Definitions of Terms Specific to
21、 This Standard:3.2.1 isotopic equilibration, nseries of chemical stepsperformed on a mixture of two samples (for example, auranium sample and a uranium spike) to ensure identicalvalency and chemical form prior to purification of the mixture.Failure to perform isotopic equilibration of a sample-spike
22、mixture may result in partial separation of the sample from thespike during the purification procedure, causing a bias in theresults of isotope dilution mass spectrometry measurements.3.2.2 major ratio, nalternate expression for235U/238U (or238U/235U) and240Pu/239Pu isotope ratios.3.2.3 minor ratios
23、, nalternate expression for233U/238U,234U/238U,236U/238U,234U/235U, and236U/235Uor238Pu/239Pu,241Pu/239Pu,242Pu/239Pu, and244Pu/239Pu isotope ratios.3.2.4 turret, nholder for sample filaments, other wordsused: wheel, magazine.3.3 Acronyms:3.3.1 CRMCertified Reference Materials3.3.2 DUDepleted Uraniu
24、m3.3.3 HEUHigh Enriched Uranium3.3.4 IDMSIsotope Dilution Mass Spectrometry3.3.5 IRMMInstitute for Reference Materials and Mea-surements (IRMM is now known as European CommissionJoint Research Center, JRC-Geel)3.3.6 LEULow Enriched Uranium3.3.7 NBLNew Brunswick Laboratory3.3.8 NUNatural Uranium3.3.9
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