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[52] P.M. Fenn, The nucleation and growth of alkali feldspars from hydrous melts, Can.
Mineral. 15 (1977) 135 161.
[53] P.J. Wyllie, O.F. Tuttle, Experimental investigation of silicate system containing
two volatile components. Part II. The effects of NH 3 and HF, in addition of
H 2 O, on the melting temperatures of albite and granite, Am. J. Sci. 259 (1961)
128
143.
[54] D.A.C. Manning, The effect of fluorine on liquidus phase relationships in the system
Qz Ab Or with excess water at 1 Kb, Contrib. Mineral. Petrol. 76 (1981) 206 215.
[55] D.B. Dingwell, The structure and properties of fluorine-rich silicate melts: implications
for granite petrogenesis (abstract), in: R.P. Toylor, D.F. Strong (Eds), Granite-Related
Mineral Deposits, Canadian Institute of Mining, Extended Abstracts of Conference on
Granite-Related Mineral Deposits, Halifax, 1985, pp. 72 81.
[56] L.N. Kogarko, L.D. Krigman, N.S. Sharudilo, Experimental investigations of the effect
of alkalinity of silicate melts on the separation of fluorine into the gas phase,
Geochem. Int. 8 (1968) 782 790.
[57] J.D. Webster, J.R. Holloway, R.L. Hervig, Phase equilibria and volatile partitioning in
a Be-, U- and F-enriched vitrophyre from spor mountain, Utah. Geochim. Cosmochim,
Acta 51 (1987) 389 402.
[58] D.A.C. Manning, J.S. Martin, M. Pichavant, C.M.B. Henderson, The effect of F, B and
Li on melt structures in the granite system: different mechanisms? in: C.M.B.
Henderson (Ed.), Progress in Experimental Petrology, National Environment Research
Council Publication Series D, vol. 25, 1984, pp. 36 41.
[59] B.H.W.S. De Jong, G.E. Brown Jr., Polymerization of silicate and aluminate tetrahedra
in glasses, melts and aqueous solutions—II. The network modifying effects of Mg 1 2 ,
K 1 ,Na 1 ,Li 1 ,OH 2 ,F 2 ,Cl 2 ,H 2 O, CO 2 and H 3 O 1 on silicate polymers, Geochim.
Cosmochim. Acta 44 (1980) 1627 1642.
[60] J.C. Bailey, Fluorine in granitic rocks and melts: a review, Chem. Geol. 19 (1977) 1 42.
[61] P. Cerny, R.E. Meintzer, A.J. Anderson, Extreme fractionation in rare-element granite
pegmatites: selected examples of data and mechanisms, Can. Mineral. 23 (1985)
381 421.
[62] D. London, Magmatic
hydrothermal transition in the Tanco rare-element pegmatite:
evidence from fluid inclusions and phase equilibrium experiments, Am. Mineral.
(71)
(1986) 376 395.
[63] P.J. Bray, NMR studies of borates, in: L.D. Pye, V.D. Frenchette, N.J. Kriedl (Eds),
Borate Glasses: Structure, Properties, Applications, 1, Plenum Press, New York, NY,
1978.
[64] W.J. Dell, P.J. Bray, S.Z. Xiao, IIB NMR studies and structural modeling of
Na 2 O a B 2 O 3 a SiO 2 glasses of high soda content, J. Non-Cryst. Solids 58 (1983)
1 16.
[65] R. Oestrike, K. Geisinger, A. Navrotsky, G.L. Turner, R.J. Kirkpatrick, Structure and
thermochemistry of glasses along the join NaAlSi 3 O 8 NaBSi 3 O 8 : the effect of boron,
Geol. Soc. Am. Abstr. Prog. 18 (1986) 709.
[66] A. Navrotsky, K.L. Geisinger, P. McMillan, G.V. Gibbs, The tetrahedral framework in
glasses and melts—inferences from molecular, thermodynamics and physical proper-
ties, Phys. Chem. Min. 11 (1985) 284 298.
[67] J.E. Mendel, The Storage and Disposal of Radioactive Waste as Glass in Canisters.
PNL-2764, Pacific Northwest Laboratories, Richland, Washington, DC, 1978.
[68] D. London, Internal differentiation of rare-element pegmatites: effects of boron, phos-
phorus and fluorine, Geochim. Cosmochim. Acta 51 (1987) 403 420.
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