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Guggenheim, Stephen, Eggleton, Richard A. (1986) Cation exchange in ganophyllite. Mineralogical Magazine, 50 (357) 517-520 doi:10.1180/minmag.1986.050.357.15

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Reference TypeJournal (article/letter/editorial)
TitleCation exchange in ganophyllite
JournalMineralogical MagazineISSN0026-461X
AuthorsGuggenheim, StephenAuthor
Eggleton, Richard A.Author
Year1986 (September)Volume50
Issue357
PublisherMineralogical Society
Download URLhttps://rruff.info/doclib/MinMag/Volume_50/50-357-517.pdf+
DOIdoi:10.1180/minmag.1986.050.357.15Search in ResearchGate
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Mindat Ref. ID3887Long-form Identifiermindat:1:5:3887:8
GUID0
Full ReferenceGuggenheim, Stephen, Eggleton, Richard A. (1986) Cation exchange in ganophyllite. Mineralogical Magazine, 50 (357) 517-520 doi:10.1180/minmag.1986.050.357.15
Plain TextGuggenheim, Stephen, Eggleton, Richard A. (1986) Cation exchange in ganophyllite. Mineralogical Magazine, 50 (357) 517-520 doi:10.1180/minmag.1986.050.357.15
In(1986, September) Mineralogical Magazine Vol. 50 (357) Mineralogical Society
Abstract/NotesAbstractGanophyllite has been shown to have alkali cation exchange capability. Partial cesium exchange for K + Na in large (> 0·3 mm) grains shows that the exchangeable cations migrate parallel to X, the crystallographic direction for the ‘interlayer’ tunnels. Such exchange capability supports the suggestion that the alkali elements are located in zeolite-like sites attached to the sides of the tunnels. Exchange experiments show that complete sodium substitution for potassium is possible also. Eggletonite, the Na analogue of ganophyllite, is shown to have an identical superlattice to ganophyllite, indicating that eggletonite differs from ganophyllite only by the exchangeable cation.

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MineralCitation Details
Eggletonite
Ganophyllite


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