TEM STUDY OF THE ALTERATION OF INTERSTITIAL GLASS IN MORB BY INORGANIC PROCESSES

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dc.contributor.author Zhou W.
dc.contributor.author Peacor D.R.
dc.contributor.author Alt J.C.
dc.contributor.author Van der Voo R.
dc.contributor.author Kao L.S.
dc.date.accessioned 2021-02-12T04:05:03Z
dc.date.available 2021-02-12T04:05:03Z
dc.date.issued 2001
dc.identifier https://www.elibrary.ru/item.asp?id=596904
dc.identifier.citation Chemical Geology, 2001, 174, 1-3, 365-376
dc.identifier.issn 0009-2541
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/24749
dc.description.abstract Scanning electron microscopy (SEM) and transmission electron microscopy (TEM) observations on a suite of mid-ocean ridge basalts (MORB) reveal abundant interstitial glass, which differs in occurrence and composition from basaltic glass at pillow rims. Interstitial glass consists dominantly of SiO2 and Al2O3 and is depleted in other cations, representing a highly differentiated residual material. Low-temperature alteration by seawater solutions results in the formation of saponite (Mg-rich variety of smectite) replacing the interstitial glass; the Si/Al ratio of this saponite reflects that of the source glass. Chemical changes during this transition differ from those resulting from alteration of basaltic or rhyolitic glass. Alteration of interstitial glass results in uptake of Mg and Fe and loss of Si and Al, but there is little or no leaching of alkalis. This reflects a strong control on chemical reactions by solution composition (high Na and Mg concentrations of seawater fluids). In contrast to basaltic glass at pillow rims, our observations do not reveal microbial activities in the alteration of interstitial glass.
dc.subject MORB
dc.subject GLASS ALTERATION
dc.subject CLAY MINERALOGY
dc.subject TEM
dc.title TEM STUDY OF THE ALTERATION OF INTERSTITIAL GLASS IN MORB BY INORGANIC PROCESSES
dc.type Статья


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