Structure of K-Substituted Zeolite Clinoptillolite and Its Behavior Upon Compression in Penetrating and Non-Penetrating Media

K-substituted zeolite - clinoptillolite K 6.16 Na 0.16 Ca 0.07 Mg 0.03 (H 2 O) 19.2 |[Al 6.45 Si 29.55 O 72 ] (space group C2/m , a = 17.6490(3) Å, b = 17.9982(2) Å, c = 7.39329(12) Å, β = 116.0655(19)°, V = 2109.63(5) Å 3 , Z = 1) is studied by the single crystal X-ray diffraction analysis under am...

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Veröffentlicht in:Journal of structural chemistry 2018-11, Vol.59 (6), p.1392-1399
Hauptverfasser: Seryotkin, Yu. V., Bakakin, V. V.
Format: Artikel
Sprache:eng
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Zusammenfassung:K-substituted zeolite - clinoptillolite K 6.16 Na 0.16 Ca 0.07 Mg 0.03 (H 2 O) 19.2 |[Al 6.45 Si 29.55 O 72 ] (space group C2/m , a = 17.6490(3) Å, b = 17.9982(2) Å, c = 7.39329(12) Å, β = 116.0655(19)°, V = 2109.63(5) Å 3 , Z = 1) is studied by the single crystal X-ray diffraction analysis under ambient conditions and also upon compression to 4 GPa in penetrating (water-containing) and non-penetrating (paraffin) media. Compression of Ksubstituted clinoptillolite in a water:ethanol (1:1) mixture results in its additional hydration: inclusion of 2.2 additional H 2 O molecules into the structure at the initial stage. Upon further compression the H 2 O concentration increases by two molecules. This is caused by additional occupancy of partially vacant H 2 O sites. The cation environment practically does not change during overhydration. Changes in the coordination polyhedra of cations during compression in paraffin are reduced to a small (0.02-0.1 Å) decrease in bond lengths. Distinctions in the degree of hydration of the K-form upon compression in penetrating and non-penetrating media are manifested in the features of the compressibility of the compound.
ISSN:0022-4766
1573-8779
DOI:10.1134/S0022476618060203