STRUCTURAL BEHAVIOR OF AL3+ IN SILICATE MELTS: IN SITU, HIGH-TEMPERATURE MEASUREMENTS AS A FUNCTION OF BULK CHEMICAL COMPOSITION

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dc.contributor.author Mysen B.
dc.date.accessioned 2020-11-27T03:52:11Z
dc.date.available 2020-11-27T03:52:11Z
dc.date.issued 1995
dc.identifier https://elibrary.ru/item.asp?id=661783
dc.identifier.citation Geochimica et Cosmochimica Acta, 1995, , 3, 455-474
dc.identifier.issn 0016-7037
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/19695
dc.description.abstract The anionic structure of aluminosilicate melts has been determined along the join Li2Si2O5-Li2(LiAl)2O5 (LS2-LA2) with microRaman spectroscopy in the temperature range 25°-1460°C. Those data are compared with the structural behavior of melts along the join Na2Si2O5-Na2(NaAl)2O5 (NS2-NA2) in the same temperature interval. In these systems, Li+ and Na+ serve both to charge-balance Al3+ in tetrahedral coordination and as network-modifiers. The NBOT (T = Si + Al) equals unity in theAl(Al + Si) ) range examined (0-0.3).In the Al-free endmember glass and melt systems, the three species, Q4, Q3, and Q2 coexist and the expression, (1) 2Q3 # Q2 + Q4, describes the equilibrium. Substitution of Na- or Li-charge-balanced Al3+ for Si4+ results in stabilization of an additional, more depolymerized structural unit, Q1. An additional equilibrium, (2) 2Q2 # Q1 + Q3, is needed, therefore, for a complete description of the equilibria. In the LS2-LA2 system, the ΔH for this latter reaction (ΔH2) ranges between #0 and -87 kJ/mol and is negatively correlated with Al(Al + Si). In the NS2-NA2 system, the ΔH2 is positive with values between 16 and 37 kJ/mol and is positively correlated with Al(Al + Si). Equilibrium (1) is affected by equilibrium (2) in the Al-bearing melts, so that in the NS2-NA2 melt system, equilibrium (1) shifts to the left with temperature (ΔH1 = -10--15 kJ/mol), whereas in the LS2-LA2 system, equilibrium (1) shifts more strongly to the right with temperature than in the absence of Al (ΔH1 is positively correlated withAl(Al + Si) with values in the range 6-48 kJ/mol). Activity coefficients for Q2 units in the melts calculated from liquidus phase relations in combination with the determined mol fractions of structural units in the melts show simple relations between activity coefficient of the unit and its molar abundance in the melts.
dc.title STRUCTURAL BEHAVIOR OF AL3+ IN SILICATE MELTS: IN SITU, HIGH-TEMPERATURE MEASUREMENTS AS A FUNCTION OF BULK CHEMICAL COMPOSITION
dc.type Статья


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