ASTM E204-1998(2002) Standard Practices for Identification of Material by Infrared Absorption Spectroscopy Using the ASTM Coded Band and Chemical Classification Index《根据ASTM编码带及化学分.pdf
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1、Designation: E 204 98 (Reapproved 2002)Standard Practices forIdentification of Material by Infrared AbsorptionSpectroscopy, Using the ASTM Coded Band and ChemicalClassification Index1This standard is issued under the fixed designation E 204; the number immediately following the designation indicates
2、 the year oforiginal 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 These practices describe a data system generat
3、ed from1955 through 1974. It is in world-wide use as the largestpublicly available data base. It is recognized that it does notrepresent the optimum way to generate a new data base withthe most modern computerized equipment.1.2 These practices describe procedures for identification ofindividual chem
4、ical substances using infrared absorption spec-troscopy and band indexes of spectral data. Use of absorptionspectroscopy for qualitative analysis has been described bymany (1-8),2but the rapid matching of the spectrogram of asample with a spectral data in the literature by use of a bandindex system
5、designed for machine sorting was contributed byKuentzel (9). It is on Kuentzels system that theASTM indexesof absorption spectral data are based.1.3 Use of these practices requires, in addition to a record-ing spectrometer and access to published reference spectra, theencoded data and suitable data
6、handling equipment.31.4 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
7、 use.2. Referenced Documents2.1 ASTM Standards:E 168 Practices for General Techniques of Infrared Quanti-tative Analysis4E 932 Practice for Describing and Measuring Performanceof Dispersive Infrared Spectrometers4E 1252 Practice for General Techniques for QualitativeInfrared Analysis43. Summary of P
8、ractices3.1 Arepresentative sample of the material to be analyzed isseparated into its individual components, if required, and eachcomponent is introduced into a suitable sample cell or matrix,mainly according to its physical state. The spectrum is re-corded over a characterizing range. The choice o
9、f spectralrange and instrument is dictated by a general consideration ofthe chemical nature of the sample (3-5). A note is made of thespectral positions of prominent absorption bands and, option-ally, of known chemical and physical properties of the material.The qualitative chemical composition of t
10、he material may thenbe identified by searching the coded data file for compoundshaving matching characteristics. Details on searching proce-dures are available elsewhere.5Details of the code are in thefollowing sections.4. Apparatus4.1 Infrared SpectrophotometerAspectrophotometer withcapabilities eq
11、uivalent to an instrument with a rock salt prismoperated under parameters compatible with Analytical Spectra(8, 10) and with wavelength accuracy to 0.05 m by compari-son with the indene spectrum in Practice E 932.4.2 Laboratory procedures for obtaining spectra are de-scribed in Refs (3-5) and in Pra
12、ctices E 168, and E 1252.4.3 Data-Handling EquipmentIt is possible to convertdata on the ASTM magnetic tape to IBM cards, and to usesorters or collators to manipulate the data. However, the file islarge and it is more efficient, and with good software, moreeffective, to use computers. These may be e
13、ither dedicated ortime-shared. Thus, the minimum equipment requirement is a1These practices are under the jurisdiction of ASTM Committee E-13 onMolecular Spectroscopy and are the direct responsibility of Subcommittee E13.03on Infrared Spectroscopy.Current edition approved Dec. 10, 1998. Published Au
14、gust 1999. Originallypublished as E 20462T. Discontinued 1998. Reinstated December 1998.2The boldface numbers in parentheses refer to the list of references at the end ofthese practices.3The ASTM Infrared Spectral Index, AMD 33 and its supplements may bepurchased in the form of magnetic tapes, from
15、Sadtler Research Labs., Inc., 3316Spring Garden St., Philadelphia, PA 19104.4Annual Book of ASTM Standards, Vol 03.06.5Publicly available systems are as follows: IRGO, Chemir Labs., 761 W.Kirkham, St. Louis, MO 63122; SPIR (Canada only), National Research Council,100 Sussex Dr., Ottawa, Ontario, Can
16、ada K1A OR6.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United Sputer, a program, and the coded data (and either batchprocessing facilities) or a teletypewriter or terminal withmodem for accessing these resources5for interactive searches.5. In
17、dex5.1 The index data on approximately 145 000 spectra areavailable on magnetic tape. The main absorption bands of eachspectrum are coded to the nearest 0.1 m.5.2 In addition to the code for spectral data of chemicalsubstances, there are codes for chemical-structure classifica-tion, empirical formul
18、a, melting or boiling point, and serialnumber reference. Other codes include data on sample state,wavelength intervals of strongest bands, and no-data areas. Fora given substance, the coded spectral data are almost invariablyunique as is the pattern for coded chemical structure andphysical propertie
19、s. Variables may be searched in any desiredcombination to locate a standard spectrum similar to that of asample of unknown composition, to correlate type of structurewith absorption band positions, to locate spectra of compoundshaving given structural features in common, and in other waysthat are to
20、o numerous to include here.5.3 Spectral and chemical data from the users own labora-tory may be coded in a compatible system from details givenin subsequent sections.5.4 Molecular formula-name tabulations comprise comple-mentary data systems for use in conjunction with the spectralband codes and che
21、mical classification tapes. These carry themolecular formulas, chemical names, and reference serialnumbers for the compounds included in the indexes describedin 5.1 and 5.2. The tapes are commercially available and theindexes have been published in book form as alphabetical,numerical, and molecular
22、formula indexes (11,12,13). Thesebooks enable one to determine the name of the compoundinvolved from a knowledge of the serial number of a spectro-gram or to locate a published standard spectrogram for acompound when the name is known. The serial-number listingpermits one to obtain the names of poss
23、ible solutions toanalytical problems from spectra serial numbers produced bysearch operations even though complete files of standardspectra (as listed in Table 1) are not at hand. Often the name ofthe compound together with other available information willsuffice; however, it is desirable to have as
24、 many standardspectra as feasible on hand for detailed study and comparison,because positive identification depends upon matching theunknown spectrum with one from published material or oneobtained from a bona fide sample of the compound. Themolecular formula and alphabetical indexes are useful fora
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