ASTM C1493-2001 Standard Test Method for Non-Destructive Assay of Nuclear Material in Waste by Passive and Active Neutron Counting Using a Differential Die-Away System《用差动衰减系统钝化-活化.pdf
《ASTM C1493-2001 Standard Test Method for Non-Destructive Assay of Nuclear Material in Waste by Passive and Active Neutron Counting Using a Differential Die-Away System《用差动衰减系统钝化-活化.pdf》由会员分享,可在线阅读,更多相关《ASTM C1493-2001 Standard Test Method for Non-Destructive Assay of Nuclear Material in Waste by Passive and Active Neutron Counting Using a Differential Die-Away System《用差动衰减系统钝化-活化.pdf(15页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: C 1493 01Standard Test Method forNon-Destructive Assay of Nuclear Material in Waste byPassive and Active Neutron Counting Using a DifferentialDie-Away System1This standard is issued under the fixed designation C 1493; the number immediately following the designation indicates the year o
2、foriginal adoption or, in the case of revision, 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 a system that performs nonde-stru
3、ctive assay (NDA) of uranium or plutonium, or both, usingthe active, differential die-away technique (DDT), and passiveneutron coincidence counting. Results from the active andpassive measurements are combined to determine the totalamount of fissile and spontaneously-fissioning material indrums of s
4、crap or waste as large as 208 L. Corrections aremade to the measurements for the effects of neutron modera-tion and absorption, assuming that the effects are averaged overthe volume of the drum and that no significant lumps of nuclearmaterial are present. These systems are most widely used toassay l
5、ow-level and transuranic waste, but may also be used forthe measurement of scrap materials. While this test method isspecific to the second-generation Los Alamos National Labo-ratory (LANL) passive-active neutron assay system, the prin-ciple applies to other DDT systems.1.1.1 In the active mode, the
6、 system measures fissile iso-topes such as235U and239Pu. The neutrons from a pulsed,14-MeV neutron generator are thermalized to induce fission inthe assay item. Between generator pulses, the system detectsprompt-fission neutrons emitted from the fissile material. Thenumber of detected neutrons betwe
7、en pulses is proportional tothe mass of fissile material. This method is called the differ-ential die-away technique.1.1.2 In the passive mode, the system detects time-coincident neutrons emitted from spontaneously fissioningisotopes. The primary isotopes measured are238Pu,240Pu,and242Pu; however, t
8、he system may be adapted for use onother spontaneously-fissioning isotopes as well. The number ofcoincident neutrons detected is proportional to the mass ofspontaneously-fissioning material.1.2 The active mode is used to assay fissile material in thefollowing ranges.1.2.1 For uranium-bearing items,
9、the DDT can measurethe235U content in the range from 0.02 to over 100 g.Normally, the assay of items bearing only uranium is per-formed using matrix-specific calibrations to account for theeffect of the matrix on the active signal.1.2.2 For plutonium-bearing items, the DDT method mea-sures the239Pu
10、content in the range between 0.01 and 20 g.1.3 The passive mode is capable of assaying spontaneously-fissioning nuclei, over a nominal range from 0.05 to 15 gof240Pu, or equivalent. The passive mode can also be used tomeasure large (for example, kg) quantities of238U.1.4 This test method requires kn
11、owledge of the relativeabundances of the plutonium or uranium isotopes to determinethe total plutonium or uranium mass.1.5 This test method will give biased results when the wasteform does not meet the calibration specifications and themeasurement assumptions presented in this test method regard-ing
12、 the requirements for a homogeneous matrix, uniformsource distribution, and the absence of nuclear material lumps,to the extent that they effect the measurement.1.6 The complete active and passive assay of a 208 L drumis nominally 10 min or less.1.7 Improvements to this test method have been reporte
13、d (1,2, 3, 4).2Discussions of these improvements are not includedin this test method.1.8 This standard may involve hazardous materials, opera-tions, and equipment. This standard does not purport toaddress all of the safety concerns, if any, associated with itsuse. It is the responsibility of the use
14、r of this standard toestablish appropriate safety and health practices and deter-mine the applicability of regulatory limitations prior to use.Specific precautionary statements are given in Section 8.2. Referenced Documents2.1 ASTM Standards:C 859 Terminology Relating to Nuclear Materials3C 986 Guid
15、e for Developing Training Programs in theNuclear Fuel Cycle3C 1009 Guide for Establishing a Quality Assurance Pro-gram for Analytical Chemistry Laboratories within theNuclear Industry3C 1030 Test Method for Determination of Plutonium Isoto-pic Composition by Gamma-Ray Spectrometry31This test method
16、is under the jurisdiction of ASTM Committee C26 on NuclearFuel Cycle and is the direct responsibility of Subcommittee C26.10 on Non-Destructive Assay.Current edition approved Feb. 10, 2001. Published May 2001.2The boldface numbers given in parentheses refer to a list of references at theend of the t
17、ext.3Annual Book of ASTM Standards, Vol 12.01.1Copyright ASTM, 100 Barr Harbor Drive, West Conshohocken, PA 19428-2959, United States.C 1068 Guide for Qualification of Measurement Methodsby a Laboratory within the Nuclear Industry3C 1128 Guide for the Preparation of Working ReferenceMaterials for Us
18、e in the Analysis of Nuclear Fuel CycleMaterials3C 1156 Guide for Establishing Calibration for a Measure-ment Method used to Analyze Nuclear fuel Cycle Materi-als3C 1207 Test Method for Nondestructive Assay of Plutoniumin Scrap and Waste by Passive Neutron CoincidenceCounting3C 1210 Guide for Establ
19、ishing a Measurement SystemQuality Control Program for Analytical Chemistry Labo-ratories within the Nuclear Industry3C 1215 Guide for Preparing and Interpreting Precision andBias Statements in Test Method Standards used in theNuclear Industry32.2 ANSI Standard:ANSI N15.20 Guide to Calibrating Nonde
20、structive AssaySystems42.3 U.S. Government Documents:DOE Order 435.1 (supercedes DOE Order 5820.2A Radio-active Waste ManagementDOE Order 474.1 (supercedes DOE Order 5633.3B) Con-trol and Accountability of Nuclear MaterialsDOE Order 5630.2 Control and Accountability of NuclearMaterials, Basic Princi
21、plesDOE /WIPP-069 Waste Acceptance Criteria for the WasteIsolation Pilot Plant10CFR71 Packaging and Transport of Radioactive Materi-als40CFR191 Environmental Radiation Protection Standardsfor Management and Disposal of Spent Nuclear Fuel,High-Level, and Transuranic Radioactive WasteUSNRC Regulatory
22、Guide 5.11 Nondestructive Assay ofSpecial Nuclear Materials Contained in Scrap and WasteUSNRC Regulatory Guide 5.53 Qualification, Calibration,and Error Estimation Methods for Nondestructive Assay3. Terminology3.1 DefinitionsThe following definitions are needed inaddition to those presented in Termi
23、nology C 859.3.1.1 active mode, ndetermines total fissile mass of theassayed item through thermal neutron interrogation and sub-sequent detection of prompt-fission neutrons released frominduced fission. A 14-MeV neutron generator is pulsed at anominal rate of 50 Hz. The pulsed neutrons rapidly therm
24、alizein the chamber and in the assay item. Thermal neutrons arecaptured by fissile material which then fissions and immedi-ately releases more neutrons which are detected prior to theinitiation of the next pulse. The prompt-neutron count rate isproportional to the mass of fissile material. This mode
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