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Esenli, Fahri, Kumbasar, Isik (1998) X-Ray Diffraction Intensity Ratios I(111)/I(3¯11) of Natural Heulandites and Clinoptilolites. Clays and Clay Minerals, 46 (6) 679-686 doi:10.1346/ccmn.1998.0460608

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Reference TypeJournal (article/letter/editorial)
TitleX-Ray Diffraction Intensity Ratios I(111)/I(3¯11) of Natural Heulandites and Clinoptilolites
JournalClays and Clay Minerals
AuthorsEsenli, FahriAuthor
Kumbasar, IsikAuthor
Year1998Volume46
Issue6
PublisherSpringer Science and Business Media LLC
DOIdoi:10.1346/ccmn.1998.0460608Search in ResearchGate
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Mindat Ref. ID147411Long-form Identifiermindat:1:5:147411:8
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Full ReferenceEsenli, Fahri, Kumbasar, Isik (1998) X-Ray Diffraction Intensity Ratios I(111)/I(3¯11) of Natural Heulandites and Clinoptilolites. Clays and Clay Minerals, 46 (6) 679-686 doi:10.1346/ccmn.1998.0460608
Plain TextEsenli, Fahri, Kumbasar, Isik (1998) X-Ray Diffraction Intensity Ratios I(111)/I(3¯11) of Natural Heulandites and Clinoptilolites. Clays and Clay Minerals, 46 (6) 679-686 doi:10.1346/ccmn.1998.0460608
In(1998) Clays and Clay Minerals Vol. 46 (6) Springer Science and Business Media LLC
Abstract/NotesHeulandite-group zeolites are abundant in the Miocene pyroclastics from Western Anatolia, Turkey. We investigated the relation between the I(111)/I(3¯11) intensity ratios measured by X-ray diffraction (XRD) and the content of exchangeable cations for 15 samples of natural heulandite-group minerals gathered from the Gördes and Bigadiç regions of Western Anatolia. The intensity ratios range from 0.77 to 0.94 in natural heulandites and from 1.38 to 1.80 in natural clinoptilolites. The data obtained from Na-, K- and Ca-exchanged forms of a heulandite and clinoptilolite show that the intensity ratio increases with Na-, K- and Ca-exchange in heulandite and also with Na- and K-exchange in clinoptilolite, whereas it decreases with Ca-exchange in clinoptilolite. The intensity ratios were calculated using the known structural data of clinoptilolites to understand the effect of positions, amounts and kinds of exchangeable cations and water molecules. An increase in Na and Ca may increase or decrease the intensity ratio, depending on their sites and occupancies. Potassium causes a significant increase in the intensity ratio and an increase in Mg decreases the intensity ratio. There is a strong correlation between the intensity ratio I(111)/I(3¯11) and (Na + K)/(Ca + Mg) ratio and thermal stability, both of which have been used to characterize heulandite-group minerals.

Mineral Pages

MineralCitation Details
Clinoptilolite Subgroup
Clinoptilolite-Ca
Clinoptilolite-K
Clinoptilolite-Na
Heulandite-Ca
Heulandite-K
Heulandite-Na


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