ASTM C1387-2008 Standard Guide for the Determination of Technetium-99 in Soil《土壤里锝99的测定的标准指南》.pdf
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1、Designation: C 1387 08Standard Guide forthe Determination of Technetium-99 in Soil1This standard is issued under the fixed designation C 1387; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of last revision. A number in p
2、arentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope1.1 This guide is intended to serve as a reference forlaboratories wishing to perform Tc-99 analyses in soil. Severaloptions are given for selection o
3、f a tracer and for the method ofextracting the Tc from the soil matrix. Separation of Tc fromthe sample matrix is performed using an extraction chroma-tography resin. Options are then given for the determination ofthe Tc-99 activity in the original sample. It is up to the user todetermine which opti
4、ons are appropriate for use, and togenerate acceptance data to support the chosen procedure.1.2 Due to the various extraction methods available, varioustracers used, variable detection methods used, and lack ofcertified reference materials for Tc-99 in soil, there is insuffi-cient data to support a
5、single method written as a standardmethod.1.3 The values stated in SI units are to be regarded asstandard. No other units of measurement are included in thisstandard.2. Referenced Documents2.1 ASTM Standards:2C 859 Terminology Relating to Nuclear Materials3C 998 Practice for Sampling Surface Soil fo
6、r RadionuclidesC 999 Practice for Soil Sample Preparation for the Deter-mination of RadionuclidesD 1193 Specification for Reagent WaterE11 Specification for Wire Cloth and Sieves for TestingPurposes3. Terminology3.1 For definitions of terms in this guide, refer to Terminol-ogy C 859.4. Summary of Gu
7、ide4.1 There are no stable isotopes of technetium.Technetium-99 is produced by the fission of uranium andplutonium, and has been released to the environment vianuclear weapons testing and nuclear materials processing. Inan oxidizing environment, it exists as the very mobile pertech-netate ion, TcO4.
8、 Technetium-99 is a long-lived (half-life213,000 years), weak beta (beta max of 293 keV) emittingradioisotope.4.2 For the analysis of Tc-99 in soil, a tracer is added to thesample matrix, or spiked duplicate samples are prepared, andthen the Tc is extracted from the soil matrix by one of severalmeth
9、ods, including acid leaching or one of various fusionmethods. The resulting solution is passed through an extractionchromatography column. Technetium is known to be retainedby the extraction chromatography material while most otherelements pass through the column. The column is washed withdilute aci
10、d to remove any remaining interferents. The resinmay then be counted directly by adding it to a liquid scintil-lation cocktail and counting by liquid scintillation spectrom-etry, or the Tc may be eluted from the resin for alternativecounting or mass spectrometric techniques.5. Significance and Use5.
11、1 This guide offers several options for the determinationof Tc-99 in soil samples. Sample sizes of up to 200 g arepossible, depending on the method chosen to extract Tc fromthe soil matrix. It is up to the user to determine if it isappropriate for the intended use of the final data.6. Interferences6
12、.1 Any radionuclide not completely removed by the ex-traction chromatography column that has a beta decay energysimilar to or higher than Tc-99 will interfere when countingtechniques are used for quantification of the Tc-99 activity.6.2 Any elements with a mass-to-charge ratio (m/z) of 99(that is, n
13、aturally occurring isotope of Ru-99, or other artifi-cially produced elements of sufficient half-life with similarm/z) can interfere when using mass spectrometry for quantifi-cation of the Tc-99 activity. Any element with the same m/z asthe isotope used as an isotope dilution tracer or internalstand
14、ard will cause a bias in the yield correction. Correctionsshould be included in the mass spectrometry data reduction forknown interferences.6.3 Additional interferences may be encountered, depend-ing on the tracer and measurement technique chosen. It is up tothe user to determine and correct for any
15、 additional interfer-ences.1This guide is under the jurisdiction of ASTM Committee C26 on Nuclear FuelCycle and is the direct responsibility of Subcommittee C26.05 on Methods of Test.Current edition approved July 15, 2008. Published August 2008. Originallyapproved in 1998. Last previous edition appr
16、oved in 2003 as C 1387 03.2For 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.3Withdrawn.1Copyright ASTM Internat
17、ional, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.7. Apparatus7.1 Apparatus for the Extraction of Tc from Sample Matrix:7.1.1 See the individual extraction method descriptions tocompile a list of the equipment needed for the chosen extrac-tion method.7.2 Appa
18、ratus for the Purification of Tc from the SoilExtract:7.2.1 Extraction columnwith a bed volume of severalmilliliters for the extraction chromatography resin.47.2.2 Column extension funnelsthat can be added to theextraction column such that a few hundred milliliters ofsolution can be added to the col
19、umn at one time.7.2.3 Column rackholds columns such that several ex-tractions can be performed simultaneously.7.3 Apparatus for the Quantification of Tc-99:7.3.1 See the individual detection method descriptions tocompile a list of the equipment needed for the chosen detectionmethod.8. Reagents8.1 Pu
20、rity of ReagentsAll chemicals should, at a mini-mum, be of reagent grade and should conform to the specifi-cations of the Committee on Analytical Reagents of theAmerican Chemical Society where such specifications areavailable.5High Purity reagents are suggested if mass spec-trometry is chosen as the
21、 detection method. Other grades ofreagents may be used provided it is first determined that thereagent is of sufficient purity to permit its use without lesseningthe accuracy of the determination.8.2 Purity of WaterUnless otherwise indicated, referencesto water shall be understood to mean reagent wa
22、ter, as definedby Type I of Specification D 1193.8.3 Tracer:8.3.1 Isotope Dilution Yield Determination:8.3.1.1 Radiometric Yield Determination Tc-95m6or Tc-99m7have been used to monitor the chemical yield of theextraction and purification of Tc-99 prior to quantification.Example: Add 10 nCi of Tc-99
23、m as a yield tracer whendetermining yield by gamma spectrometry.8.3.1.2 Mass Spectrometric Yield DeterminationTc-97may be produced in a nuclear reactor in very limited quantitiesto be used as an isotope dilution tracer for the mass spectro-metric determination of Tc-99 (1).8Example: Add 1 ng ofTc-97
24、 as a yield tracer for mass spectrometry.8.3.2 Duplicate Sample Analysis to Monitor Chemical Yield:8.3.2.1 Duplicate samples may be analyzed, one spiked witha known amount of Tc-99 and one unspiked. The chemicalrecovery of the spiked sample is then used to correct theunspiked sample to obtain the or
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