ASTM E705-1996(2002) Standard Test Method for Measuring Reaction Rates by Radioactivation of Neptunium-237《用镎237的放射激活性测定反应速率的测试方法》.pdf
《ASTM E705-1996(2002) Standard Test Method for Measuring Reaction Rates by Radioactivation of Neptunium-237《用镎237的放射激活性测定反应速率的测试方法》.pdf》由会员分享,可在线阅读,更多相关《ASTM E705-1996(2002) Standard Test Method for Measuring Reaction Rates by Radioactivation of Neptunium-237《用镎237的放射激活性测定反应速率的测试方法》.pdf(4页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E 705 96 (Reapproved 2002)Standard Test Method forMeasuring Reaction Rates by Radioactivation of Neptunium-2371This standard is issued under the fixed designation E 705; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision,
2、the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon (e) indicates an editorial change since the last revision or reapproval.1. Scope1.1 This test method covers procedures for measuring reac-tion rates by assaying a fission product (F.P.) fro
3、m the fissionreaction237Np(n,f)F.P.1.2 The reaction is useful for measuring neutrons withenergies from approximately 0.7 to 6 MeV and for irradiationtimes up to 30 to 40 years.1.3 Equivalent fission neutron fluence rates as defined inPractice E 261 can be determined.1.4 Detailed procedures for other
4、 fast-neutron detectors arereferenced in Practice E 261.1.5 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is theresponsibility of the user of this standard to establish appro-priate safety and health practices and determine the applica-bilit
5、y of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:E 170 Terminology Relating to Radiation Measurementsand Dosimetry2E 181 Test Methods for Detector Calibration and Analysisof Radionuclides2E 261 Practice for Determining Neutron Fluence Rate, Flu-ence, and Spectra by
6、Radioactivation Techniques2E 262 Test Method for Determining Thermal Neutron Re-action and Fluence Rates by Radioactivation Techniques2E 320 Test Methods for Cesium-137 in Nuclear Fuel Solu-tions by Radiochemical Analysis2E 393 Test Method for Measuring Reaction Rates by Analy-sis of Barium-140 from
7、 Fission Dosimeters2E 482 Guide for Application of Neutron Transport Methodsfor Reactor Vessel Surveillance, E706 (IID)2E 704 Test Method for Measuring Reaction Rates by Ra-dioactivation of Uranium-2382E 844 Guide for Sensor Set Design and Irradiation forReactor Surveillance, E706 (IIC)2E 944 Guide
8、for Application of Neutron Spectrum Adjust-ment Methods in Reactor Surveillance, (IIA)2E 1005 Test Method for Application and Analysis of Radio-metric Monitors for Reactor Vessel Surveillance, E706(IIIA)2E 1018 Guide for Application of ASTM Evaluated CrossSection Data File, Matrix E 706 (IIB)23. Ter
9、minology3.1 Definitions:3.1.1 Refer to Terminology E 170.4. Summary of Test Method4.1 High-purity237Np ( 1 MeV) fluence rate of 1 3 1011cm2s1,provided the237Np is shielded from thermal neutrons (see Fig.2 of Guide E 844).5.4.2 Fission product production from photonuclear reac-tions, that is, (g,f) r
10、eactions, while negligible near-power andresearchreactor cores, can be large for deep-water penetrations(1).45.5 Good agreement between neutron fluence measured by237Np fission and the54Fe(n,p)54Mn reaction has been dem-onstrated (2). The reaction237Np(n,f) F.P. is useful since it isresponsive to a
11、broader range of neutron energies than mostthreshold detectors.5.6 The237Np fission neutron spectrum-averaged crosssection in several benchmark neutron fields are given in Table3 of Practice E 261. Sources for the latest recommended crosssections are given in Guide E 1018. In the case of the237Np(n,
12、f)F.P. reaction, the recommended cross section sourceis the ENDF/B-VI cross section (MAT = 9346) revision 1 (3).Fig. 1 shows a plot of the recommended cross section versusneutron energy for the fast-neutron reaction237Np(n,f)F.P.6. Apparatus6.1 Gamma-Ray Detection Equipment that can be used toaccura
13、tely measure the decay rate of fission product activity arethe following two types (4):6.1.1 NaI(T1) Gamma-Ray Scintillation Spectrometer (seeTest Methods E 181 and E 1005).6.1.2 Germanium Gamma-Ray Spectrometer (see TestMethods E 181 and E 1005)Because of its high resolution,the germanium detector
14、is useful when contaminant activitiesare present.6.2 Balance, providing the accuracy and precision requiredby the experiment.6.3 Digital Computer, useful for data analysis, but is notnecessary (optional).7. Materials7.1 Neptunium-237 Alloy or OxideHigh-purity237Np inthe form of alloy wire, foil, or
15、oxide powder is available.7.1.1 The237Np target material should be furnished with acertificate of analysis indicating any impurity concentrations.7.2 Encapsulating MaterialsBrass, stainless steel, copper,aluminum, vanadium, and quartz have been used as primaryencapsulating materials. The container s
16、hould be constructedin such a manner that it will not create significant perturbationof the neutron spectrum or fluence rate and that it may beopened easily, especially if the capsule is to be openedremotely. Certain encapsulation materials, for example, quartzand vanadium, allow gamma-ray counting
17、without opening thecapsule since there are no interfering activities.8. Procedure8.1 Select the size and shape of the sample to be irradiated,taking into consideration the size and shape of the irradiationspace. The mass and exposure time are parameters that can bevaried to obtain a desired count ra
18、te for a given neutron fluencerate.8.2 Weigh the sample to the accuracy and precision requiredof the experiment; encapsulate; and, if irradiated in a thermalneutron environment, surround with a suitable high-meltingthermal neutron absorber.4The boldface numbers in parentheses refer to the list of re
19、ferences appended tothis test method.TABLE 1 Recommended Nuclear Parameters for Certain FissionProductsFissionProductParentHalf-LifeA(6)PrimaryRadiationA(7) (keV)g Probability ofDecayA(7)MaximumUsefulIrradiationDuration95Zr 64.04 (4) d 724.199 (5) 0.4417 (19) 6 months756.729 (12) 0.544699Mo 65.94 (1
20、) h 0.1213 739.5 300 hours0.0435 777.921103Ru 39.254 (8) d 497.084 (10) 0.910 (23) 4 months137Cs 30.0 (2) yr 661.660 (3)B0.8510B3040 years140Ba140La 12.746 (10) d 537.31 (4) 0.2439 11.5 months1596.54 (14) 0.9540C1.1515D144Ce 284.9 (2) d 133.515 (8) 0.1109 (4) 23 yearsAThe lightface numbers in parent
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