ASTM E1791-1996(2000) Standard Practice for Transfer Standards for Reflectance Factor for Near-Infrared Instruments Using Hemispherical Geometry《半球形几何结构的近红外线仪器反射系数传送标准的标准规程》.pdf
《ASTM E1791-1996(2000) Standard Practice for Transfer Standards for Reflectance Factor for Near-Infrared Instruments Using Hemispherical Geometry《半球形几何结构的近红外线仪器反射系数传送标准的标准规程》.pdf》由会员分享,可在线阅读,更多相关《ASTM E1791-1996(2000) Standard Practice for Transfer Standards for Reflectance Factor for Near-Infrared Instruments Using Hemispherical Geometry《半球形几何结构的近红外线仪器反射系数传送标准的标准规程》.pdf(4页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E 1791 96 (Reapproved 2000)Standard Practice forTransfer Standards for Reflectance Factor for Near-InfraredInstruments Using Hemispherical Geometry1This standard is issued under the fixed designation E 1791; the number immediately following the designation indicates the year oforiginal
2、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.INTRODUCTIONThe internationally accepted standard of reflectance is the perfect
3、 reflecting diffuser. This idealreflecting surface reflects 100 % of the radiant power incident on it, such that the radiance is the samefor all directions within the hemisphere of solid angles. No physical realization of this standard exists.Optical properties of standards prepared from pressed pla
4、ques of barium sulfate (BaSO4)orpolytetrafluoroethylene (PTFE), as well as commercially available samples of sintered PTFE (1-4),2can approximate those of a white material. For further information, see CIE Publication No. 46 (5) andSpecification D 1457. Additional transfer standards are required tha
5、t have a very stable reflectancefactor that is constant with wavelength and that have a range of values from near zero to close to thatof the perfect reflecting diffuser. Such materials as carbon-black doped sintered PTFE (6-8) fulfill thisrequirement. The principle uses of a reflectance factor stan
6、dard are for transfering an absolute scaleof reflectance to a more durable material or for calibrating near-infrared (NIR) spectrophotometers forlinearity of reflectance scale. In theory, this transfer, conducted from first principles, should be quiteeasy. In practice, values are likely to be requir
7、ed for parameters that are unknown, proprietary, orrequire a highly sophisticated level of skill. Some, but not all, of these parameters are discussed in thispractice.1. Scope1.1 This practice covers procedures for the preparation anduse of acceptable transfer standards for NIR spectrophotom-eters.
8、Procedures for calibrating the reflectance factor ofmaterials on an absolute basis are contained in CIE PublicationNo. 44 (9). Both the pressed powder samples and the sinteredPTFE materials are used as transfer standards for such calibra-tions because they have very stable reflectance factors that a
9、renearly constant with wavelength and because the distributionof flux resembles closely that from the perfect reflectingdiffuser.1.2 The values stated in SI units are to be regarded as thestandard. The values given in parentheses are for informationonly.1.3 This standard does not purport to address
10、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. Referenced Documents2.1 ASTM Standards:D 1457 Specificatio
11、n for Polytetrafluoroethylene (PTFE)Molding and Extrusion Materials3E 131 Terminology Relating to Molecular Spectroscopy4E 259 Practice for Preparation of Pressed Powder WhiteReflectance Factor Transfer Standards for HemisphericalGeometry5E 284 Terminology of Appearance53. Terminology3.1 Definitions
12、Terms and definitions in TerminologyE 284 are applicable to this practice.3.2 Descriptions of Terms Specific to This StandardThefollowing definitions are particularly important to this practice.3.2.1 linearitythe ability of a photometric system to yielda linear relationship between the radiant power
13、 incident on itsdetector and some measureable quantity provided by thesystem. (E 131)3.2.2 near-infrared, adjthe region of the electromagneticspectrum for radiation of wavelengths between 780 and 2500nm (0.78 and 2.50 m).1This practice is under the jurisdiction of ASTM Committee E-13 on MolecularSpe
14、ctroscopy and is the direct responsibility of Subcommittee E13.11 on Chemo-metrics.Current edition approved March 10, 1996. Published May 1996.2The boldface numbers in parentheses refer to the list of references at the end ofthis practice.3Annual Book of ASTM Standards, Vol 08.01.4Annual Book of AST
15、M Standards, Vol 03.06.5Annual Book of ASTM Standards, Vol 06.01.1Copyright ASTM, 100 Barr Harbor Drive, West Conshohocken, PA 19428-2959, United States.3.2.3 perfect reflecting diffuserideal reflecting surface thatneither absorbs nor transmits light, but reflects diffusely,with the radiance of the
16、reflecting surface being the same for allreflecting angles, regardless of the angular distribution of theincident light.3.2.4 reflectance, r, nratio of the reflected radiant orluminous flux to the incident flux in the given conditions (1).3.2.4.1 The term reflectance is often used in a general sense
17、or as an abbreviation for reflectance factor. Such usage may beassumed unless the definition is specifically required by thecontext.3.2.5 reflectance factor, R, nratio of the flux reflectedfrom the specimen to the flux reflected from the perfectreflecting diffuser under the same geometric and spectr
18、alconditions of measurement (2).4. Summary of Practice4.1 Procedures for the preparation of packed powdersamples of barium sulfate and PTFE can be found in PracticeE 259. Sintered PTFE samples are commercially available.6Reflectance data for this material are given in Table 1. Thesematerials provide
19、 close approximation to the optical propertiesof the perfect reflecting diffuser and may be used to transfer ascale of reflectance factor to another material or instrument.4.2 Sintered carbon-black doped PTFE samples are alsocommercially available7and are described in Table 2. Thesematerials provide
20、 close approximation to the optical propertiesof a perfect reflecting diffuser with spectrally neutral absor-bance features and may be used to transfer a scale of linearityin reflectance factor to another material or instrument.5. Significance and Use5.1 Most commercial reflectometers and spectropho
21、tom-eters with reflectance capability measure relative reflectance.The instrument reading is the ratio of the measured radiationreflected from the reference specimen to the measured radia-tion reflected by the test specimen. That ratio is dependent onspecific instrument parameters.5.2 National stand
22、ardizing laboratories and some researchlaboratories measure reflectance on instruments calibratedfrom basic principles, thereby establishing a scale of absolutereflectance as described in CIE Publication No. 44 (5). Thesemeasurements are sufficiently difficult and of prohibitive costthat they are us
23、ually left to laboratories that specialize in them.5.3 A standard that has been measured on an absolute scalecould be used to transfer that scale to a reflectometer. Whilesuch procedures exist, the constraints placed on the mechanicalproperties restrict the suitability of some of the optical prop-er
24、ties, especially those properties related to the geometricdistribution of reflected radiation. Thus, reflectance factorstandards that are sufficiently rugged or cleanable to use aspermanent transfer standards, with the exception of the sinteredPTFE standards, depart considerably from the perfect dif
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