ASTM D3942-2003 Standard Test Method for Determination of the Unit Cell Dimension of a Faujasite-Type Zeolite《八面沸石单位晶格尺寸的标准试验方法》.pdf
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1、Designation: D 3942 03Standard Test Method forDetermination of the Unit Cell Dimension of a Faujasite-Type Zeolite1This standard is issued under the fixed designation D 3942; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year
2、 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 the determination of the unitcell dimension of zeolites having the faujasite crystal stru
3、cture,including synthetic Y and X zeolites, their modifications suchas the various cation exchange forms, and the dealuminized,decationated, and ultra stable forms of Y. These zeolites havecubic symmetry with a unit cell parameter usually within thelimits of 24.2 and 25.0 (2.42 and 2.50 nm).1.2 The
4、samples include zeolite preparation in the variousforms, and catalysts and adsorbents containing these zeolites.The zeolite may be present in amounts as low as 5 %, such asin a cracking catalyst.1.3 This standard does not purport to address all of thesafety concerns, if any, associated with its use.
5、 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:E 691 Practice for Conducting an Interlaboratory Study toDetermine the Precisi
6、on of a Test Method23. Summary of Test Method3.1 A sample of the zeolite Y or X, or catalyst containingzeolite is mixed with powdered silicon. The zeolite unit celldimension is calculated from the X-ray diffraction pattern ofthe mixture, using the silicon reflections as a reference.4. Significance a
7、nd Use4.1 Zeolites Y and X, particularly for catalyst and adsorbentapplications, are a major article of manufacture and commerce.Catalysts and adsorbents comprising these zeolites in variousforms plus binder and other components have likewise becomeimportant. Y-based catalysts are used for fluid cat
8、alytic crack-ing (FCC) and hydrocracking of petroleum, while X-basedadsorbents are used for desiccation, sulfur compound removal,and air separation.4.2 The unit cell dimension of a freshly synthesizedfaujasite-type zeolite is a sensitive measure of compositionwhich, among other uses, distinguishes b
9、etween the twosynthetic faujasite-type zeolites, X and Y. The presence of amatrix in a Y-containing catalyst precludes determination of thezeolite framework composition by direct elemental analysis.4.3 Users of the method should be aware that the correlationbetween framework composition and unit cel
10、l dimension isspecific to a given cation form of the zeolite. Steam or thermaltreatments, for example, may alter both composition and cationform. The user must therefore determine the correlation thatpertains to his zeolite containing samples.3In addition, onemay use the method solely to determine t
11、he unit cell dimen-sion, in which case no correlation is needed.4.4 Other crystalline components may be present in thesample whose diffraction pattern may cause interference withthe selected faujasite-structure diffraction peaks. If there isreason to suspect the presence of such components, then a f
12、ulldiffractometer scan should be obtained and analyzed to selectfaujasite-structure peaks free of interference.5. Apparatus5.1 X-Ray Diffractometer, able to scan at 0.25 2u/min. 2uvalues in the following discussions were based on dataobtained with a copper tube, although other tubes such asmolybdenu
13、m can be used.NOTE 1A step-scanning accessory, to scan at a rate of 0.25 or less2u/min, will increase the accuracy of the determination and will facilitatemeasurement in samples of low zeolite content.5.2 Drying Oven, set at 110C.1This test method is under the jurisdiction of ASTM Committee D32 onCa
14、talysts and is the direct responsibility of Subcommittee D32.05 on Zeolites.Current edition approved March 10, 2003. Published April 2003. Originallyapproved in 1980. Last previous edition approved in 1997 as D 394297.2Annual Book of ASTM Standards, Vol 14.02.3Three correlations have been published
15、for pure synthetic faujasite-typezeolites in the sodium or calcium form: Breck, D. W. and Flanigen, E. M. in“Molecular Sieves”, Society of Chemical Industry, London, 1968, p. 47, Wright A. C.,Rupert, J. P. and Granquist W. T. Amer. Mineral., Vol 53, 1968, p. 1293; andDempsy, E., Kuehl, G. H., and Ol
16、son, D. H., Journal of the Physical Chemistry,Vol73, 1968, p. 387.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.5.3 Hydrator, maintained at 35 % relative humidity by asaturated solution of salts such as CaCl26H2O maintained at23C 6
17、 3C.6. Reagents and Materials6.1 Silicon powder, finely ground or ball-milled to a particlediameter less than 5 m as determined by microscope. NISToffers a Standard Reference Material (silicon) as an X-rayinternal standard (SMR 640) suitable for powder diffractionmeasurements.7. Procedure7.1 Place a
18、bout 1.5 g of powdered zeolite sample in thedrying oven at 110C for 1 h.NOTE 2The drying step eliminates excess water from the sample priorto equilibration at constant-humidity hydration. Most catalyst samples,when received, will not contain excess water. Some sensitive samples mayrequire a lower ac
19、tivation temperature.7.2 Blend1gofpowdered zeolite sample with about 0.05 gof silicon in a mortar and grind until intimately mixed. Place athin bed of the mixed sample in the hydrator for at least 16 h.Some samples may require a longer equilibration time.7.3 Pack the hydrated sample in the diffracto
20、meter mount.7.4 Determine the X-ray diffraction pattern across the rangefrom 50 to 60 2u.NOTE 3Smaller slits are desirable for better peak resolution.NOTE 4In some catalyst samples, the zeolite reflections at about 53.4and 57.8 2u may be of insufficient intensity for accurate measurement.When this o
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