The reaction of phlogopite plus quartz to enstatite, potassium feldspar, and aqueous fluid in the system KMASH-KCl was reversed at 2-12 kbar and 750-875 °C and at low H 2 O activities by reversal of the H 2 O content of concentrated KCl solutions equilibrated with product and reactant assemblages. Synthetic 1M phlogopite [KMg 3 AlSi 3 O 10 (OH) 2 ] and enstatite (MgSiO 3 ) maintained end-member stoichiometry throughout, and the potassium feldspar (KAlSi 3 O 8 ) was a high sanidine, based on unit-cell refinements. The broad P-T-X H₂O and narrow reversal ranges of this investigation were possible because of the low and well-defined H 2 O activity, yet powerful fluxing action, of concentrated KCl solutions. Solubility experiments on quartz and potassium feldspar in our P-T-X H₂O range showed that fluid-phase solution of silicate constituents was too small to have affected the H 2 O activity in the experiments. The new determinations are more definitive than previous work done at very low pressures with pure H 2 O or in CO 2 -H 2 O mixtures. They establish the standard free energy of the reaction in the experimental range with an uncertainty of about 1 kJ and indicate that the synthetic phlogopite has maximal (Al-Si) disorder under our experimental conditions. The standard enthalpy of reaction at 298 K is 106.54 ± 2.0 kJ (2σ) based on our reversals, a value 6 kJ less positive than that currently used by many workers in calculations of biotite stability and H 2 O activity in the petrogenesis of high-grade metamorphic rocks. The lower thermal stability that we find for phlogopite requires revision in estimates of H 2 O activity of granulite facies metamorphism: typical values for the natural assemblage orthopyroxene-biotite-garnet-potassium feldspar-plagioclase-quartz at deepcrustal metamorphic conditions (750-850 ³C, 5-10 kbar) are a H₂O = 0.4-0.6 compared with values of 0.15-0.30 which would have been estimated with previously available data on phlogopite stability. An important consequence of the expanded H 2 O activity range of granulites is that alkali chloride solutions of only moderate concentration [X H₂O = 0.5-0.7], H 2 O which are the values observed in actual fluid inclusions in many kinds of igneous and metamorphic rocks, are a feasible alternative to the vapor-absent conditions considered necessary by many workers based on previous low estimates of a H₂O . Participation of concentrated brines in deep-crust/upper mantle metamorphic processes enables alkali metasomatism and other kinds of chemical transport in an aqueous fluid without large-scale melting of the crust.
Inhalt
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Öffentlich zugänglichPhase relations in the system MgO-NaCl-H2O: The dehydroxylation of brucite in the presence of NaCl-H2O fluids13. November 2015
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Öffentlich zugänglichExperimental determination of the reaction: Magnesite + enstatite = forsterite + CO2 in the ranges 6–25 kbar and 700–1100 °13. November 2015
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Öffentlich zugänglichAn experimental study of the pressure-temperature stability of MgMgAl-pumpellyite in the system MgO-Al2O3-SiO2-H2O13. November 2015
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Öffentlich zugänglichOff-center hot spots: Double thermocouple determination of the thermal gradient in a 1.27 cm (1/2 in.) CaF2 piston-cylinder furnace assembly13. November 2015
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Öffentlich zugänglichViscosity data for hydrous peraluminous granitic melts: Comparison with a metaluminous model13. November 2015
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Öffentlich zugänglichReplacement of primary monazite by apatite-allanite-epidote coronas in an amphibolite facies granite gneiss from the eastern Alps13. November 2015
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Öffentlich zugänglichChemical microstructure of Franciscan jadeite from Pacheco Pass, California13. November 2015
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Öffentlich zugänglichEffects of Mg-Fe2+ substitution in calcite-structure carbonates: Thermoelastic properties13. November 2015
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Öffentlich zugänglichHigh-pressure single-crystal X-ray diffraction and infrared spectroscopic studies of the C2/m-P21/m phase transition in cummingtonite13. November 2015
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Öffentlich zugänglichFull multiple scattering calculations of the X-ray absorption near edge structure at the magnesium K-edge in pyroxene13. November 2015
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Öffentlich zugänglichInterpretation of XPS Mn(2p) spectra of Mn oxyhydroxides and constraints on the mechanism of MnO2 precipitation13. November 2015
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Öffentlich zugänglichReactions of aqueous Au1+ sulfide species with pyrite as a function of pH and temperature13. November 2015
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Öffentlich zugänglichMineralogy of the Louvres Merovingian garnet cloisonné jewelry: Origins of the gems of the first kings of France13. November 2015
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Öffentlich zugänglichTemperature dependence of the OH⁻ absorption in SiO2 glass and melt to 1975 K13. November 2015
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Öffentlich zugänglichHigh-temperature multi-nuclear NMR investigation of analcime13. November 2015
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Öffentlich zugänglichAtomic-resolution transmission electron microscope evidence for the mechanism by which chlorite weathers to 1:1 semi-regular chlorite-vermiculite13. November 2015
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Öffentlich zugänglichStructure and formation mechanism of low-angle grain boundaries in chlorite13. November 2015
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Öffentlich zugänglichStacking disorder and polytypism in enargite and luzonite13. November 2015
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Öffentlich zugänglichRelationships between microstructure and composition in enargite and luzonite13. November 2015
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Öffentlich zugänglichDescription and crystal structure of Yvonite, Cu(AsO3OH)2H2O13. November 2015
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Öffentlich zugänglichGeorgeericksenite, Na6CaMg(IO3)6(CrO4)2(H2O)12, a new mineral from Oficina Chacabuco, Chile: Description and crystal structure13. November 2015
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Öffentlich zugänglichLETTER. Crystal structure of a new spinelloid with the wadsleyite structure in the system Fe2SiO4-Fe3O4 and implications for the Earth’s mantle13. November 2015
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Öffentlich zugänglichHeat capacity and thermodynamic properties for coesite and jadeite, reexamination of the quartz-coesite equilibrium boundary13. November 2015