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Partitioning of aluminum atoms in crystallographically non-equivalent tetrahedral sites of the zeolite offretite by 29Si MAS NMR

โœ Scribed by T.H. Chen; K.X. Wang; W.L. Luo; Z.Y. Yuan; J.Z. Wang; D.T. Ding; H.X. Li; C. Hu


Publisher
Elsevier Science
Year
1996
Tongue
English
Weight
243 KB
Volume
252
Category
Article
ISSN
0009-2614

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โœฆ Synopsis


For the zeolite offretite, a formula is proposed which includes the framework Si/AI ratio (R), the partitioning ratio of AI over two crystallographically non-equivalent tetrahedral sites (r) and intensities of the observed peaks in the 29Si MAS NMR spectrum. By this formula, the framework Si/AI ratio of offretite can be estimated from the 29Si MAS NMR spectrum. Combined with chemical analysis of the Si/Al ratio, Al partitioning in two kinds of T sites can also be deduced. It is concluded that the T B sites are favored by AI atoms in parent offretites and Al atoms at T B sites can more easily be substituted isomorphously by Si when treated with (NH4)2SiF 6. The formula proposed here is based only on experiments and may be used to testify some statistical models of AI distributions in offretites.


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The evaluation of non-equivalent tetrahe
โœ J.M. Thomas; J. Klinowski; S. Ramdas; B.K. Hunter; D.T.B. Tennakoon ๐Ÿ“‚ Article ๐Ÿ“… 1983 ๐Ÿ› Elsevier Science ๐ŸŒ English โš– 417 KB

Keccivcd 16 August 19S3 '9Si MAS NMR spectra of zeolites are much sinlplified followins dealumination and the resultin\_e spectra yield a quantitxtivc correlation betnecn chemical shift and tetrahedral angle. This corrclntion is useful in the structural elucidation of zeolitts. silicas and other alu