ASTM C791-2011 Standard Test Methods for Chemical Mass Spectrometric and Spectrochemical Analysis of Nuclear-Grade Boron Carbide《核纯级碳化硼的化学质谱和光谱化学化学分析的标准试验方法》.pdf
《ASTM C791-2011 Standard Test Methods for Chemical Mass Spectrometric and Spectrochemical Analysis of Nuclear-Grade Boron Carbide《核纯级碳化硼的化学质谱和光谱化学化学分析的标准试验方法》.pdf》由会员分享,可在线阅读,更多相关《ASTM C791-2011 Standard Test Methods for Chemical Mass Spectrometric and Spectrochemical Analysis of Nuclear-Grade Boron Carbide《核纯级碳化硼的化学质谱和光谱化学化学分析的标准试验方法》.pdf(25页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: C791 11Standard Test Methods forChemical, Mass Spectrometric, and SpectrochemicalAnalysis of Nuclear-Grade Boron Carbide1This standard is issued under the fixed designation C791; the number immediately following the designation indicates the year oforiginal adoption or, in the case of r
2、evision, 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 These test methods cover procedures for the chemical,mass spectrometric, and spectrochemical anal
3、ysis of nuclear-grade boron carbide powder and pellets to determine compli-ance with specifications.1.2 The analytical procedures appear in the following order:SectionsTotal Carbon by Combustion in an Inductive Furnace andInfrared Measurement7-16Total Boron by Titrimetry and ICP OES 17-27Isotopic Co
4、mposition by Mass Spectrometry 28-32Pyrohydrolysis 33-40Chloride by Constant-Current Coulometry 41-49Chloride and Fluoride by Ion-Selective Electrode 50-58Water by Constant-Voltage Coulometry and Weight Loss onDrying59-62Metallic Impurities 63 and 64Soluble Boron by Titrimetry and ICP OES 65-79Free
5、Carbon by a Coulometric Method 80-892. Referenced Documents2.1 ASTM Standards:2C750 Specification for Nuclear-Grade Boron Carbide Pow-derC751 Specification for Nuclear-Grade Boron Carbide Pel-letsD1193 Specification for Reagent Water3. Significance and Use3.1 Boron carbide is used as a control mater
6、ial in nuclearreactors. In order to be suitable for this purpose, the materialmust meet certain criteria for assay, isotopic composition, andimpurity content. These methods are designed to show whetheror not a given material meets the specifications for these itemsas described in Specifications C750
7、 and C751.3.1.1 An assay is performed to determine whether thematerial has the specified boron content.3.1.2 Determination of the isotopic content of the boron ismade to establish whether the content is in compliance with thepurchasers specifications.3.1.3 Impurity content is determined to ensure th
8、at themaximum concentration limit of certain impurity elements isnot exceeded.4. Reagents4.1 Purity of ReagentsReagent grade chemicals shall beused in all tests. Unless otherwise indicated, it is intended thatall reagents shall conform to the specifications of the Commit-tee on Analytical Reagents o
9、f the American Chemical Society,where such specifications are available.3Other grades may beused, provided it is first ascertained that the reagent is ofsufficiently high purity to permit its use without lessening theaccuracy of the determination.4.2 Purity of WaterUnless otherwise indicated, refere
10、ncesto water shall be understood to mean reagent water conformingto Specification D1193.5. Safety Precautions5.1 Many laboratories have established safety regulationsgoverning the use of hazardous chemicals and equipment. Theusers of these methods should be familiar with such safetypractices.6. Samp
11、ling6.1 Criteria for sampling this material are given in Specifi-cations C750 and C751.1These test methods are under the jurisdiction of ASTM Committee C26 onNuclear Fuel Cycle and are the direct responsibility of Subcommittee C26.03 onNeutron Absorber Materials Specifications.Current edition approv
12、ed July 1, 2011. Published December 2011. Originallyapproved in 1975. Last previous edition approved in 2004 as C791 04. DOI:10.1520/C0791-11.2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards vol
13、ume information, refer to the standards Document Summary page onthe ASTM website.3Reagent Chemicals, American Chemical Society Specifications, AmericanChemical Society, Washington, DC. For suggestions on the testing of reagents notlisted by the American Chemical Society, see Analar Standards for Lab
14、oratoryChemicals, BDH Ltd., Poole, Dorset, U.K. and the United States Pharmacopeia andNational Formulary, U.S. Pharmacopeial Convention, Inc. (USPC), Rockville, MD.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.TOTAL CARBON BY COMBU
15、STION IN ANINDUCTIVE FURNACE AND INFRAREDMEASUREMENT7. Scope7.1 This method covers the determination of total carbon innuclear-grade boron carbide in either powder or pellet form.8. Summary of Test Method8.1 The sample and added combustion accelerators (mostlytungsten-and iron-granules) are heated i
16、n an inductive furnaceunder oxygen atmosphere. The high-frequency field of thefurnace couples with electrically conductive components ofsample and combustion accelerators. The sample is heated totemperatures not lower than 1400C and the total carboncontent of the sample is released as carbon dioxide
17、 and,partially, as carbon monoxide. The reaction gas is passedthrough a gas-treatment train to ensure that any carbonmonoxide formed is converted to carbon dioxide and to removedust and moisture. The reaction gas is then transferred to theinfrared absorption cell of the analyzer. The molecular absor
18、p-tion of carbon dioxide is measured by using a narrow-bandoptical filter which is translucent for the wavelength of thecharacteristic infrared absorption of carbon dioxide. The massfraction of carbon dioxide in the reaction gas is proportional topeak-area of the transient absorption signal. The mas
19、s fractionof carbon in the sample is calculated by using a calibrationfunction established by suitable calibration standards measuredunder comparable conditions.9. Interferences9.1 At the specification limits usually established fornuclear-grade boron carbide, interferences are insignificant.10. App
20、aratus10.1 Commonly used laboratory equipment and specialequipment according to the following:10.1.1 Carbon analyzer, with induction furnace and infraredabsorption cell, suitable to correctly determine the massfraction of carbon within the concentration range given byboron carbide.NOTE 1The correctn
21、ess of the analysis result can be proved by usingmatrix analogous reference materials or by comparing with an indepen-dent alternative test method.10.1.2 Analytical balance, capable of reading to the nearest0.01 mg.10.1.3 Ceramic crucible, for example, mullite or alumina.10.1.4 Crucible lid with hol
22、e, for example, mullite oralumina.11. Reagents11.1 Reagents of known analytical grade shall be used,provided it is first ascertained that the reagent is of sufficientlyhigh purity to permit its use without lessening the accuracy ofthe determination.11.1.1 Tungsten granulesNOTE 2Depending on the part
23、icle size of the material the decompo-sition of the sample in the furnace may be improved by partially replacingtungsten granules by tin granules. Tungsten/tin-mixtures are commerciallyavailable.11.1.2 Iron granules11.1.3 Calibration samples, with defined carbon content,preferably certified referenc
24、e materials with composition andcarbon content similar to the analyzed material. Also suitableare primary substances preferably carbonates.11.1.4 Oxygen, purity $ 99.998 % v/v.11.1.5 Pneumatic gas, for example, nitrogen, purity$99.9 % v/v.12. Sampling and Sample Preparation12.1 Sampling has to be pe
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