
【国外标准】 Standard Test Method for Measuring Reaction Rates by Analysis of Molybdenum-99 Radioactivity From Fission Dosimeters (Withdrawn 2002)
本网站 发布时间:
2024-02-28
- ASTM E343-96
- Withdrawn, No replacement
- 定价: 0元 / 折扣价: 0 元
- 在线阅读
开通会员免费在线看70000余条国内标准,赠送文本下载次数,单本最低仅合13.3元!还可享标准出版进度查询、定制跟踪推送、标准查新等超多特权!  
查看详情>>

适用范围:
1.1 This test method covers the measurement of reaction rates by determining the amount of the fission product 99 Mo produced by the non-threshold reactions 241 Am(n,f), 235 U(n,f), and 239 Pu(n,f) and by the threshold reactions 238 U(n,f), 237 Np(n,f), and 232 Th(n,f). 1.2 These reactions produce many fission products, among which is 99 Mo, having a half-life of 65.94 h. Because of unresolved or interfering gamma rays when gamma-ray spectrometry is accomplished, the competing activity from other fission products requires that a chemical separation be employed to isolate the 99 Mo. 99 Mo emits gamma rays of several energies, which are easily detected and identified by a gamma-ray spectrometer. 1.3 With suitable techniques, neutron fluence rates can be measured in the range 10 to approximately 10 14 n[dot]cm [dot]s . 1.4 The measurement of time-integrated reaction rates with fission dosimeters by 99 Mo analysis is limited by the half-life of Mo to irradiation times up to about 300 h. 1.5 The values stated in SI units are to be regarded as the standard. 1.6 This 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.
标准号:
ASTM E343-96
标准名称:
Standard Test Method for Measuring Reaction Rates by Analysis of Molybdenum-99 Radioactivity From Fission Dosimeters (Withdrawn 2002)
英文名称:
Standard Test Method for Measuring Reaction Rates by Analysis of Molybdenum-99 Radioactivity From Fission Dosimeters (Withdrawn 2002)标准状态:
Withdrawn, No replacement-
发布日期:
-
实施日期:
出版语种:
- 其它标准
- 上一篇: ASTM E3427-24 Standard Guide for Measuring Intensity, Polydispersity, Size, Zeta Potential, Molecular Weight, and Concentration of Nanoparticles in Liquid Suspension Using Laser-Amplified Detection/Power Spectrum Analysis (LAD/PSA) Technology
- 下一篇: ASTM E344-23 Terminology Relating to Thermometry and Hydrometry
- 推荐标准
- ASTM B1-13(2018) Standard Specification for Hard-Drawn Copper Wire
- ASTM B100-20 Standard Specification for Wrought Copper-Alloy Bearing and Expansion Plates and Sheets for Bridge and Other Structural Use
- ASTM B1002-16(2020) Standard Specification for Refined Indium
- ASTM B1003-16(2023) Standard Specification for Seamless Copper Tube for Linesets
- ASTM B1004-16(2022) Standard Practice for Contact Performance Classification of Electrical Connection Systems
- ASTM B1005-17(2023) Standard Specification for Copper-Clad Aluminum Bar for Electrical Purposes (Bus Bar)
- ASTM B1008-18 Standard Test Method for Stress-Strain Testing for Overhead Electrical Conductors
- ASTM B1010/B1010M-19 Standard Specification for Copper-Clad Steel Electrical Conductor for Tracer Wire Applications
- ASTM B1011/B1011M-22 Standard Specification for Cobalt Alloy Spring Wire
- ASTM B1013-22 Standard Specification for High Fluidity (HF) Zinc-Aluminum Alloy Thin Wall Die Castings
- ASTM B1014-20 Standard Specification for Welded Copper and Copper Alloy Condenser and Heat Exchanger Tubes with a Textured Surface(s)
- ASTM B1019-21 Standard Test Method for Determination of Surface Oxides on Copper Rod(for Electrical Purposes)
- ASTM B1020/B1020M-22 Standard Specification for Seamless Nickel Alloy Mechanical Tubing and Hollow Bar
- ASTM B1021-21 Standard Test Method for Peel Resistance of Metal Sheets Joined by High Strength Bonds
- ASTM B1022-22 Standard Specification for Zinc-Aluminum-Magnesium Alloys in Ingot Form for Coating Steel Sheet by the Hot-Dip Process