ASTM C1750-2011 Standard Guide for Development Verification Validation and Documentation of Simulated High-Level Tank Waste《仿真高强度灌装(放射性)废料的开发 验证 批准和建档标准指南》.pdf
《ASTM C1750-2011 Standard Guide for Development Verification Validation and Documentation of Simulated High-Level Tank Waste《仿真高强度灌装(放射性)废料的开发 验证 批准和建档标准指南》.pdf》由会员分享,可在线阅读,更多相关《ASTM C1750-2011 Standard Guide for Development Verification Validation and Documentation of Simulated High-Level Tank Waste《仿真高强度灌装(放射性)废料的开发 验证 批准和建档标准指南》.pdf(14页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: C1750 11Standard Guide forDevelopment, Verification, Validation, and Documentation ofSimulated High-Level Tank Waste1This standard is issued under the fixed designation C1750; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revi
2、sion, 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 Intent:1.1.1 The intent of this guideline is to provide generalconsiderations for the development, v
3、erification, validation,and documentation of high-level waste (HLW) tank simulants.Due to the expense and hazards associated with obtaining andworking with actual wastes, especially radioactive wastes,simulants are used in a wide variety of applications includingprocess and equipment development and
4、 testing, equipmentacceptance testing, and plant commissioning. This standardguide facilitates a consistent methodology for development,preparation, verification, validation, and documentation ofwaste simulants.1.2 This guideline provides direction on (1) defining simu-lant use, (2) defining simulan
5、t-design requirements, (3) devel-oping a simulant preparation procedure, (4) verifying andvalidating that the simulant meets design requirements, and (5)documenting simulant-development activities and simulantpreparation procedures.1.3 Applicability:1.3.1 This guide is intended for persons and organ
6、izationstasked with developing HLW simulants to mimic certaincharacteristics and properties of actual wastes. The process forsimulant development, verification, validation, and documen-tation is shown schematically in Fig. 1. Specific approvalrequirements for the simulants developed under this guide
7、lineare not provided. This topic is left to the performing organi-zation.1.3.2 While this guide is directed at HLW simulants, muchof the guidance may also be applicable to other aqueous basedsolutions and slurries.1.3.3 The values stated in SI units are to be regarded as thestandard. The values give
8、n in parentheses are for informationonly.1.4 User Caveats:1.4.1 This guideline is not a substitute for sound chemistryand chemical engineering skills, proven practices and experi-ence. It is not intended to be prescriptive but rather to provideconsiderations for the development and use of waste simu
9、lants.1.4.2 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-bility of regulatory limitations prior to use.2. Refe
10、renced Documents2.1 ASTM Standards:2C1109 Practice for Analysis of Aqueous Leachates fromNuclear Waste Materials Using Inductively CoupledPlasma-Atomic Emission SpectroscopyC1111 Test Method for Determining Elements in WasteStreams by Inductively Coupled Plasma-Atomic EmissionSpectroscopyC1752 Stand
11、ard Guide for Measuring Physical and Rheo-logical Properties of Radioactive Solutions, Slurries, andSludgesD4129 Test Method for Total and Organic Carbon in Waterby High Temperature Oxidation and by Coulometric De-tection2.2 Environmental Protection Agency SW-846 Methods:Method 3010A Acid digestion
12、of Aqueous Samples andExtracts for total metals for Analysis by FLAA or ICPSpectroscopyMethod 3050B Acid Digestion of Sediments, Sludges andSoilsMethod 3051A Microwave Assisted Acid Digestion ofSediments, Sludges and SoilsMethod 3052 Microwave Assisted Acid Digestion of Sili-ceous and Organically Ba
13、sed MatriciesMethod 6010C Inductively Coupled Plasma-Atomic Emis-sion SpectrometryMethod 6020A Inductively Coupled Plasma-Mass Spec-trometryMethod 9056A Determination of Inorganic Anions by IonChromatography1This specification is under the jurisdiction of ASTM Committee C26 onNuclear Fuel Cycle and
14、is the direct responsibility of Subcommittee C26.13 onSpent Fuel and High Level Waste.Current edition approved June 1, 2011. Published September 2011. DOI:10.1520/C1750-11.2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For An
15、nual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.3. Terminology3.1 Definitions of Terms Specific to This Standard:3.1.1 cog
16、nizant engineer, nlead engineer responsible foroverall supervision and direction of simulant development.3.1.2 simulant, na solution or slurry that mimics orreplicates selected chemical, physical or rheological properties,or both, of an actual process or waste stream.3.1.3 simulant development test
17、plan, na document thatdescribes the simulant development process that results in asimulant that meets the usage and design requirements identi-fied in the simulant requirements specification.3.1.4 simulant preparation procedure, na document thatspecifies the step by step process of producing the sim
18、ulant.3.1.5 simulant requirements specification, na documentthat specifies the simulant use and design requirements.3.1.6 simulant validation, nestablishment of documentedevidence that confirms that behavior of the simulant adequatelymimics the targeted actual waste behavior. Simulant validationcan
19、be expressed by the query, “Are you making the correctsimulant?” and refers back to the needs for which the simulantis being developed.3.1.7 simulant verification, nestablishment of docu-mented evidence which provides a high degree of assurancethat the simulant meets the predetermined design and qua
20、lityrequirements. Simulant verification can be expressed by thequery, “Are you making the simulant properly?”3.2 Acronyms:3.2.1 ASMEAmerican Society of Mechanical Engineers3.2.2 DIDeionized Water3.2.3 GFCGlass Forming Chemicals3.2.4 HLWHigh-Level Waste3.2.5 LAWLow-Activity Waste3.2.6 N/ANot Applicab
21、le3.2.7 NQA-1Nuclear Quality Assurance3.2.8 PSDParticle Size Distribution3.2.9 QAQuality Assurance3.2.10 QCQuality Control4. Summary of Guide4.1 This guide provides general considerations on the de-velopment, preparation, validation, verification, and documen-tation of HLW simulants.4.2 The first st
22、ep in the process is to define the purpose forwhich the simulant will be used. This first step also includesspecifying the target values or range of values for the chemicalcomposition and physical and rheological properties of thesimulant. The quality assurance requirements are also definedin the fi
23、rst step in accordance with the project requirements forwhich the simulant is being developed.4.3 The next step is to define the simulant design require-ments. This involves determining the necessary and sufficientsimulant properties to be measured for each affected unitoperation. Key simulant prope
24、rties and acceptance criteria aredeveloped with regard to the project requirements for whichthe simulant is being developed. Standardized chemical, physi-cal and rheological property measurements are referenced.Topics to be considered during the development and scale-upof the simulant preparation pr
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