Reference list for Holland & Powell (1998) Table 7.

A

B

C

D

E

F

G

H

IJ

K

L

M

N

O

P

QR

S

T

UV

W

XYZ
back to main page

Ackermand, D., Seifert, F., & Schreyer, W., 1975. Instability of sapphirine at high pressure. Contributions to Mineralogy and Petrology, 50, 79-92.

Allen, J.M. & Fawcett, J.J., 1982. Zoisite-anorthite-calcite stability relations in H2O-CO2 fluids at 5000 bars: An experimental and SEM study. Journal of Petrology 23, 215-239.

Anovitz, L.M. & Essene, E.J., 1987. Phase equilibria in the system CaCO3-MgCO3-FeCO3. Journal of Petrology 28, 389-414.

Anovitz, L.M., Treiman, A.H., Essene, E.J., Hemingway, B.S., Westrum, E.F.Jr., Wall, V.J., Burriel, R. & Bohlen, S.R., 1985. The heat capacity of ilmenite and phase equilibria in the system Fe-Ti-O. Geochimica et Cosmochimica Acta 49, 2027-2040.

Aranovich, L.Y. & Newton, R.C., 1996. H2O activity in concentrated NaCl solutions at high pressures and temperatures measured by the brucite-periclase equilibrium. Contributions to Mineralogy and Petrology, 125, 200-212.

Baker, E.H., 1962. Calcium oxide-carbon dioxide system in the pressure range 1-300 atmospheres. Journal of the Chemical Society (London), 1962, 464-470.

Baker, J. & Newton, R.C., 1994. Standard thermodynamic properties of meionite, Ca4Al6Si6O24CO3, from experimental phase equilibria. American Mineralogist, 79, 478-484.

Baker, J., & Holland, T.J.B., 1996. Experimental reversals of chlorite compositions in divariant MgO-Al2O3-SiO2-H2O assemblages : implications for order-disorder in chlorites. American Mineralogist, 81, 676-684.

Barnes, H.L. & Ernst, W.G., 1963. Ideality and ionization in hydrothermal fluids. The system MgO-H2O-NaOH. American Journal of Science 261, 129-150.

Bird, G.W., & Fawcett, J.J., 1973. Stability relations of Mg-chlorite-muscovite and quartz between 5 and 10 kbar water pressure. Journal of Petrology 14, 415-428.

Boettcher, A.L. & Wyllie, P.J., 1968. Jadeite stability measured in the presence of silicate liquids in the system NaAlSiO4-SiO2-H2O. Geochimica et Cosmochimica Acta, 32, 999-1012.

Boettcher, A.L., 1970. The system CaO-Al2O3-SiO2-H2O at high temperatures and pressures. Journal of Petrology, 11, 337-339.

Bohlen, S.R. & Boettcher, A.L., 1982. The quartz-coesite transformation: A precise determination and the effects of other components. Journal of Geophysical Research , 7073-7078.

Bohlen, S.R. & Liotta, J.J., 1986. A barometer for garnet amphibolites and garnet granulites. Journal of Petrology 27, 1025-1034.

Bohlen, S.R., Boettcher, A.L., Wall, V.J. & Clemens, J.D., 1983. Stability of phlogopite-quartz and sanidine-quartz: A model for melting in the lower crust. Contributions to Mineralogy and Petrology 83, 270-277.

Bohlen, S.R., Dollase, W.A. & Wall, V.J., 1986. Calibration and applications of spinel equilibria in the system FeO-Al2O3-SiO2. Journal of Petrology 27, 1143-1156.

Bohlen, S.R., Essene, E.J. & Boettcher, A.L., 1980. Reinvestigation and application of olivine-quartz-orthopyroxene barometry. Earth and Planetry Science Letters, 47, 1-10.

Bohlen, S.R., Montana, A., Kerrick, D.M.,1991. Precise determination of the equilibria kyanite = sillimanite and kyanite = andalusite and a revised triple point for Al2SiO5 polymorphs. American Mineralogist, 76, 677-680.

Bohlen, S.R., Wall, V.J. & Boettcher, A.L., 1983. Experimental investigation and application of garnet granulite equilibria. Contributions to Mineralogy and Petrology 83, 52-61.

Bohlen, S.R., Wall, V.J. & Boettcher, A.L., 1983. Experimental investigations and geological applications of equilibria in the system FeO-TiO2-Al2O3-SiO2-H2O. American Mineralogist 68, 1049-1058.

Bose, K. & Ganguly, J., 1995. Quartz-coesite transition revisited. reversed experimental determination at 500-1200°C and retrieved thermochemical properties. American Mineralogist, 80, 231-238.

Bowman A.F., 1975. An investigation of Al2SiO5 phase equilibrium utilizing the scanning electron microscope. 80p. MS thesis, Univ Oregon, Eugene, Oregon.

Boyd, F.R., 1959. Hydrothermal inveatigations of amphiboles. In: Researches in Geochemistry, 1 (ed. Abelson, P.H.). Wiley. New York.

Brey, G., Brice, W.R., Ellis, D.J., Green, D.H., Harris, K.L. & Ryabchikov, I.D., 1983. Pyroxene-carbonate reactions in the upper mantle. Earth and Planetary Science Letters, 62, 63-74.

Burton, J.C., Taylor, L.A. and Chou, I-M, 1982. The fO2-T and fS2-T stability relations of hedenbergite and of hedenbergite-johanseite solid solutions. Economic Geology, 77, 764-783.

Carman, J.H., & Gilbert, M.C., 1983. Experimental studies on glaucophane stability. American Journal of Science 283A, 414-437.

Carpenter M.A. & Salje E.K.H., 1994. Thermodynamics of non-convergent cation ordering in minerals, III: order parameter coupling in K-feldspar. American Mineralogist, 79, 1084-1098.

Carrington, D.P. & Harley, S.L., 1995. Partial melting and phase relations in high-grade metapelites: an experimental petrogenetic grid in KFMASH system. Contributions to Mineralogy and Petrology, 120, 270-291.

Chamberlin L., Beckett J.R. & Stolper E., 1995. Palladium oxide equilibration and the thermodynamic properties of MgAl2O4 spinel. American Mineralogist, 80, 285-296.

Chatterjee, N.D., & Johannes, W., 1974. Thermal stability and standard thermodynamic properties of synthetic 2M1-muscovite, KAl2AlSi3O10(OH)2. Contributions to Mineralogy and Petrology , 48, 89-114.

Chatterjee, N.D., 1970. Synthesis and upper stability of paragonite. Contributions to Mineralogy and Petrology, 27, 244-257.

Chatterjee, N.D., 1972. The upper stability limit of the assemblage paragonite + quartz and its natural occurrences. Contributions to Mineralogy and Petrology 34, 288-303.

Chatterjee, N.D., 1974. Synthesis and upper thermal stability limit of 2M-margarite, CaAl2Al2Si2O10(OH)2. Schweizerische Mineralogische Petrologische Mitteilungen , 54, 753-767.

Chatterjee, N.D., Johannes, W. & Leistner, H., 1984. The system CaO-Al2O3-SiO2-H2O: New phase equilibria data, some calculated phase relations, and their petrological applications. Contributions to Mineralogy and Petrology, 88, 1-13.

Chernosky, J.V. & Autio, L.K. 1979. The stability of anthophyllite in the presence of quartz. American Mineralogist 84, 294-300.

Chernosky, J.V. & Berman, R.G., 1986. Experimental reversal of the equilibrium: Clinochlore : 2 magnesite = 3 forsterite + spinel + 2CO2 + 4H2O. EOS (Transactions of the American Geophysical Union), 67, 1279.

Chernosky, J.V. & Berman, R.G., 1986. The stability of clinochlore in mixed volatile, CO2-H2O fluids. EOS (Transactions of the American Geophysical Union), 67, 407.

Chernosky, J.V. & Berman, R.G., 1991. Experimental reversal of the equilibrium andalusite + calcite = anorthite + CO2. Canadian Mineralogist, 29, 791-802.

Chernosky, J.V., 1973. The stability of chrysotile, Mg3Si2O5(OH)4, and the free energy of formation oftalc, Mg3Si4O10(OH)2. Geological Society of America Abstracts with Programs, 5, 575.

Chernosky, J.V., 1974. The upper stability of clinochlore at low pressure and the free energy of formation of Mg-cordierite. American Mineralogist 59, 496-507.

Chernosky, J.V., 1976. Gibbs free energy of enstatite, clinochlore and hydrous Mg-cordierite evaluated from phase equilibrium data. EOS (Transactions of the American Geophysical Union),. 57, 1020.

Chernosky, J.V., 1976. The stability of anthophyllite - a re-evaluation based onnew experimental data. American Mineralogist, 61, 1145-1155.

Chernosky, J.V., 1978. The stability of clinochlore and quartz at low pressure. American Mineralogist 63, 73-82.

Chernosky, J.V., Day, H.W. & Caruso, L.J., 1985. Equilibria in the system MgO- SiO2-H2O: experimental determination of the stability of Mg-anthophyllite. American Mineralogist 70, 223-236.

Chinner, G.A., & Dixon, J.E., 1974. Some high pressure parageneses of the Allalin Gabbro, Valais, Switzerland. Journal of Petrology, 14, 185-202.

Cho, M., Maruyama, S. & Liou, J.G., 1987. An experimental investigation of heulandite-laumontite equilibrium at 1000 and 2000 bar Pfluid. Contributions to Mineralogy and Petrology, 97, 43-50.

Chopin, C., & Monie, P., 1984. A unique magnesiochloritoid-bearing, high pressure assemblage from the Monte Rosa: a petrologic and 40Ar-39Ar study. Contributions to Mineralogy and Petrology 87, 388-398.

Chopin, C. & Schreyer, W., 1983. Magnesiocarpholite and magnesiochloritoid: Two index minerals of pelitic blueschists and their preliminary phase relations in the model system MgO-Al2O3-SiO2-H2O. American Journal of Science 283A, 72-96.

Chopin, C. & Sobolev, N.V., 1995. Principal mineralogical indicators of UHP in crustal rocks. in Ultrahigh pressure metamorphism (eds R.G. Coleman and X. Wang), 96-131. Cambridge University Press.

Chou, I.-M., 1978. Calibration of oxygen buffers at elevated P and T using the hydrogen fugacity buffer. American Mineralogist, 63, 690-703.

Clark, S.P., 1966. High pressure phase equilibria. In: Clarke, S.P. (ed), Handbook of physical constants. Geological Society of America Memoir, 97, 345-370.

Conolly, J.A.D. & Kerrick, D.M., 1985. Experimental and thermodynamic analysis of prehnite. EOS , 66, 388.

Crawford, W.A. & Fyfe, W.S. 1965. Lawsonite equilibria. American Journal of Science 263, 262-270.

Dalton, J.A. & Wood, B.J., 1993. The partitioning of Fe and Mg between olivine and carbonate and the stability of carbonate under mantle conditions. Contributions to Mineralogy and Petrology, 114, 501-509.

Danckwerth, P., & Newton, R.C., 1978. Experimental determination of the spinel peridotite to garnet peridotite reaction in the system MgO-Al2O3-SiO2 in the range 900°C-1100°C and Al2O3 isopleths of enstatite in the spinel field. Contributions to Mineralogy and Petrology, 66, 189-200.

Dickenson, M.P. & Hewitt, D., 1986. A garnet-chlorite geothermometer. Geological Society of America Abstracts with Programs, 18, 584.

Doroshev, A.M. & Malinovskiy, I.Y., 1974. Upper pressure limit of stability of sapphirine. Doklady Akad. Nauk SSSR, 219, 136-138.

Duffy, C.J. & Greenwood, H.J., 1979. Phase equilibria in the system MgO-MgF2-SiO2-H2O. American Mineralogist, 64, 1156-1174.

Dutrow, B.L. & Holdaway, M.J. (1989): Experimental determination of the upper thermal stability of Fe-staurolite + quartz at medium pressures. Journal of Petrology , 30, 229-248.

Eggert, R.G. & Kerrick, D.M., 1981. Metamorphic equilibria in the siliceous dolomite system: 6 kbar experimental data and geologic implications. Geochimica et Cosmochimica Acta 45, 1039-1049.

Eggler, D.H., Kushiro, I. & Holloway, J.R., 1976. Free energies of decarbonation reactions at mantle pressures 1. Stability of the assemblage forsterite-enstatite-magnesite in the system MgO-SiO2-CO2-H2O. American Mineralogist, 64, 288-293.

Engi, M., 1983. Equilibria involving Al-Cr spinel: Mg-Fe exchange with olivine. Experiments, thermodynamic analysis, and consequences for geothermometry. American Journal of Science, 283-A, 29-71.

Ernst, W.G., 1962. Synthesis, stability relations, and occurrence of riebeckite and riebeckite-arfvedsonite solid solutions. Journal of Geology, 70, 689-736.

Ernst, W.G., 1966. Synthesis and stability relations of ferrotremolite. American Journal of Science, 264, 37-65.

Essene, E., Boettcher, A.L., Furst, G.A. 1972. Indirect measurements of DG for quartz + corundum = kyanite. EOS, 53, 554.

Evans, B.W., Johannes, W., Oterdoom, W.H., & Trommsdorff, V., 1976. Stability of chrysotile and antigorite in the serpentine multisystem. Schweizerische Mineralogische Petrologische Mitteilungen, 56, 79-93.

Fawcett, J.J. & Yoder, H.S., 1966. Phase relationships of chlorites in the system MgO-Al2O3-SiO2-H2O. American Mineralogist 61, 303-310.

Ferry, J.M. & Spear, F.S., 1978. Experimental calibration of the partitioning of Fe and Mg between biotite and garrnet. Contributions to Mineralogy and Petrology 66, 113-117.

Fonarev, V.I. & Konilov, A.N., 1986. Experimental study of Fe-Mg distribution between biotite and orthopyroxene. Contributions to Mineralogy and Petrology 93, 227-235.

Fonarev, V.I. & Korolkov, G.J., 1980. The assemblage orthopyroxene +cummingtonite + quartz. The low-temperature stability limit. Contributions to Mineralogy and Petrology, 73, 413-420.

Ganguly, J. & Newton, R.C., 1968. Thermal stability of chloritoid at high pressures and relatively high oxygen fugacities. Journal of Petrology 9, 444-466.

Ganguly, J., 1969. Chloritoid stability and related paragenesis: Theory, experiments and applications. American Journal of Science, 267, 910-944.

Ganguly, J., 1972. Staurolite stability and related paragenesis: Theory, experiments and applications. Journal of Petrology 13, 335-365.

Gasparik, T. & Newton, R.C., 1984. The reversed alumina contents of orthopyroxene in equilibrium with spinel and forsterite in the system MgO-Al2O3-SiO2. Contributions to Mineralogy and Petrology 85, 186-196.

Gasparik, T., 1984. Experimental study of subsolidus phase relations and mixing properties of pyroxene in the system CaO-Al2O3-SiO2. Geochimica et Cosmochimica Acta, 48, 2537-2545.

Gasparik, T., 1984. Experimental study of subsolidus phase relations and mixing properties of pyroxene in the system CaO-Al2O3-SiO2. Geochimica et Cosmochimica Acta, 48, 2537-2545.

Gasparik, T., 1985. Experimental study of subsolidus phase relations and mixing properties of pyroxene and plagioclase in the system Na2O-CaO-Al2O3-SiO2. Contributions to Mineralogy and Petrology 89, 346-357.

Goldsmith, J.R. & Heard, H.C., 1962. Subsolidus phase relations in the system CaCO3-MgCO3. Journal of Geology,, 69, 45-74.

Goldsmith, J.R. & Jenkins, D.M., 1985. The hydrothermal melting of low and high albite. American Mineralogist, 70, 924-933.

Goldsmith, J.R., & Newton, R.C., 1977. Scapolite-plagioclase stability relations at high pressures and temperatures in the system NaAlSi3O8-CaAl2Si2O8-CaCO3-CaSO4. American Mineralogist 62, 1063-1081.

Goldsmith, J.R., 1980. The melting and breakdown reactions of anorthite at high pressures and temperatures. American Mineralogist 65, 272-284.

Goldsmith, J.R., 1980. Thermal stability of dolomite at high temperatures and pressures. Journal of Geophysical Research 85, 6949-6954.

Goldsmith, J.R., 1981. The join CaAl2Si2O8-H2O (anorthite-water) at elevated pressures and temperatures. American Mineralogist 66, 1183-1188.

Gordon, T.M. & Greenwood, H.J., 1970. The reaction: dolomite + quartz + water = talc + calcite + carbon dioxide. American Journal of Science 268, 225-242.

Green, T.H. & Hellman, P.L., 1982. Fe-Mg partitioning between coexisting garnet and phengite at high pressure, and comments on a garnet-phengite geothermometer. Lithos, 15, 253-266.

Goldsmith, J.R. & Jenkins D.M., 1985. The hydrothermal melting of low and high albite. American Mineralogist, 70, 924-933.

Greenwood, H.J., 1967. Mineral equilibria in the system MgO-SiO2-H2O-CO2. In, Researches in Geochemistry II (ed. P.H. Abelson). Wiley.

Greenwood, H.J., 1967. Wollastonite: Stability in H2O-CO2 mixtures and occurrence in a contact-metamorphic aureole near Salmo, British Columbia, Canada. American Mineralogist, 52, 1669-1680.

Grevel, K.-D., Fockenberg, T., Wunder, B. & Burchard, M., 1994. Experimental determination of the equilibrium curve 2 diaspore = corundum + H2O to high pressures and modified thermodynamic data for diaspore. Terra Nova Abstract Supplement, 20.

Gustafson, W., 1974. The stability of andradite, hedenbergite, and related minerals in the system Ca-Fe-Si-O-H. Journal of Petrology, 15, 455-496.

Haas, H. & Holdaway, M.J., 1973. Equilibria in the system Al2O3-SiO2-H2O involving the stability limits of pyrophyllite and the thermodynamic data of pyrophyllite. American Journal of Science 273, 449-464.

Haas, H., 1972. Diaspore-corundum equilibrum determined by epitaxis of diaspore on corundum. American Mineralogist 57, 1375-1385.

Hackler, R.T. & Wood, B.J., 1989. Experimental determination of Fe and Mg exchange between garnet and olivine and estimation of Fe-Mg mixing properties in garnet. American Mineralogist, 74, 994-999.

Harker, R.I. & Tuttle, O.F., 1955. Studies in the system CaO-MgO-CO2. Part 1: the thermal dissociation of calcite, dolomite and magnesite. American Journal of Science 253, 209-224.

Harker, R.I. & Tuttle, O.F., 1956. Experimental data on the PCO2-T curve for the reaction: calcite + quartz = wollastonite + carbon dioxide. American Journal of Science 254, 239-256.

Harley, S.L., 1984. An experimental study of the partitioning of Fe and Mg between garnet and orthopyroxene. Contributions to Mineralogy and Petrology 86, 359-373.

Harlov, D.E. & Newton, R.C., 1993. Reversal of the metastable kyanite + corundum + quartz and andalusite + corundum + quartz equilibria and the enthalpy of formation of kyanite and andalusite. American Mineralogist, 78, 594-600.

Harlov, D.E. & Newton, R.C., 1993. Reversal of the metastable kyanite + corundum + quartz and andalusite + corundum + quartz equilibria and the enthalpy of formation of kyanite and andalusite. American Mineralogist, 78, 594-600.

Haselton, H.T. Jr., Sharp, W.R. & Newton, R.C., 1978. CO2 fugacity at high temperatures and pressures from experimental decarbonation reactions. Geophysical Research Letters, 5, 753-756.

Hays, J.F., 1967. Lime-alumina-silica. Carnegie Institute of Washington Yearbook, 65, 234-239.

Heinrich, W. & Althaus, E., 1980. Die obere Stabilitätsgrenze von Lawsonit plus Albit bzw Jadeit. Fortschritte der Mineralogie, 58, 49-50.

Hemley, J.J., Marinenko, J.W. & Luce, R.W., 1980. Equilibria in the system Al2O3-SiO2-H2O and some general implications for alteration/mineralisation processes. Economic Geology, 75, 210-228.

Hensen, B.J & Essene, E.J. 1971. Stability of pyrope-quartz in the system MgO-Al2O3-SiO2. Contributions to Mineralogy and Petrology 30, 72-83.

Hensen, B.J., 1972. Phase relations involving pyrope, enstatitess, and sapphiriness in the system MgO-Al2O3-SiO2. Carnegie Institution of Washington Yearbook, 71, 421.

Hertzberg, C.T., 1983. The reaction forsterite + cordierite = aluminous orthopyroxene + spinel in the system MgO-Al2O3-SiO2. Contributions to Mineralogy and Petrology 84, 84-90.

Hewitt, D.A., 1973. Stability of the assemblage muscovite-calcite-quartz. American Mineralogist 58, 785-791.

Hewitt, D.A., 1975. Stability of the assemblage phlogopite-calcite-quartz. American Mineralogist 60, 391-397.

Hewitt, D.A., 1978. A redetermination of the fayalite-magnetite-quartz equilibrium between 650° and 850°C. American Journal of Science, 278, 715-724.

Hochella, M.F., Liou, J.G., Keskinen, M.J. & Kim, H.S., 1982. Synthesis and stability relations of magnesian idocrase. Economic Geology, 77, 798-808.

Hoffmann, C., 1972. Natural and synthetic ferroglaucophane. Contributions to Mineralogy and Petrology, 34, 135-149.

Holdaway, M.J. & Lee, S.M., 1977. Fe-Mg cordierite stability in high-grade pelitic rocks based on experimental, theoretical and natural observations. Contributions to Mineralogy and Petrology, 63, 175-198.

Holdaway, M.J., 1971. Stability of andalusite and the aluminum silicate phase diagram. American Journal of Science 271, 97-131.

Holdaway, M.J., 1972. Thermal stability of Al-Fe epidote as a function of fO2 and Fe content. Contributions to Mineralogy and Petrology 37, 307-340.

Holland, T.J.B., 1979. Experimental determination of the reaction paragonite = jadeite + kyanite + quartz + water, and internally consistent thermodynamic data for part of the system Na2O-Al2O3-SiO2-H2O, with applications to eclogites and blueschists. Contributions to Mineralogy and Petrology, 68, 293-301.

Holland, T.J.B., 1980. The reaction albite = jadeite + quartz determined experimentally in the range 600-1200°C. American Mineralogist 65, 129-134.

Holland, T.J.B. & Ray, N.J., 1985. Glaucophane and pyroxene breakdown reactions in the Pennine units of the eastern Alps. Journal of Metamorphic Geology, 3, 417--438.

Holland, T.J.B., Babu, E.V.S.S.K, & Waters, D.J., 1996. Phase relations of Osumilite and dehydration melting in pelitic rocks: a simple thermodynamic model for the KFMASH system. Contributions to Mineralogy and Petrology 124, 383-394.

Hoschek, G., 1974. Gehlenite stability in the system CaO-Al2O3-SiO2-H2O-CO2. Contributions to Mineralogy and Petrology 47, 245-254.

Hoschek, G., 1995. Stability relations and Al content of tremolite and talc in CMASH assemblages with kyanite + zoisite + quartz + H2O. European Journal of Mineralogy, 7, 353-362.

Huang, W.L. & Wyllie, P.J., 1975. Melting and subsolidus phase relationships for CaSiO3 to 35 kilobars pressure. American Mineralogist 60, 213-217.

Huckenholz, H.G. & Yoder, H.S., 1971. Andradite stability relations in the CaSiO3-Fe2O3 join up to 30 kb. Neues Jahrbuch für Mineralogie Abhandlungen, 114, 246-280.

Huckenholz, H.G., Holzl, E., & Lindhuber, W., 1975. Grossularite, its solidus and liquidus relations in the system CaO-Al2O3-SiO2-H2O up to 10 kbars. Neues Jahrbuch für Mineralogie Abhandlungen, 124, 1-46.

Huebner, J.S., & Eugster, H.P., 1968. Rhodachrosite decarbonation in the system MnO-SiO2-CO2. Geological Society of America Special Publication 121, 144-145.

Huebner, J.S., 1969. Stability relations of rhodachrosite in the system manganese-carbon-oxygen. American Mineralogist 54, 457-481.

Hunt, J.A., & Kerrick, D.M., 1977. The stability of sphene: experimental redetermination and geological implications. Geochimica et Cosmochimica Acta, 41, 279-288.

Irving, A.J. & Wyllie, P.J., 1975. Subsolidus and melting relationships for calcite, magnesite, and the join CaCO3-MgCO3 to 36 kb. Geochimica et Cosmochimica Acta, 39, 35-53.

Irving, A.J., Huang, W.L. & Wyllie, P.J., 1977. Phase relations of portlandite, Ca(OH)2 and brucite, Mg(OH)2 to 33 kilobars. American Journal of Science 277, 313-321.

Jackson, I., 1976. Melting of the silica isotypes SiO2, BeF2 and GeO2 at elevated pressures. Physics of the Earth and Planetary Interiors, 13, 218-231.

Jacobs, G.K. & Kerrick, D.M., 1981. Devolatilisation equilibria in H2O-CO2 and H2O-CO2-NaCl fluids: an experimentaland thermodynamic evaluation at elevated pressures and temperatures. American Mineralogist 66, 1135-1153.

Jamieson, H.E. & Roeder, P.L., 1984. The distribution of Mg and Fe2+ between olivine and spinel at 1300°C. American Mineralogist, 69, 283-291.

Jenkins, D.M. & Chernosky, J.V. Jr., 1986. Phase equilibria and crystallochemical properties of Mg-chlorite. American Mineralogist 71, 924-936.

Jenkins, D.M., 1981. Experimental phase relations of hydrous peridotitesmodelled in the system H2O-CaO-MgO-SiO2. Contributions to Mineralogy and Petrology, 77, 166-176.

Jenkins, D.M., 1983. Stability and composition relations of calcic amphiboles in ultramafic rocks. Contributions to Mineralogy and Petrology, 83, 375-384.

Jenkins, D.M., 1984. Upper pressure stability of synthetic margarite + quartz. Contributions to Mineralogy and Petrology, 88, 332-339.

Jenkins, D.M., 1994. Experimental reversals of the aluminum content of tremolitic amphiboles in the system H2O-CaO-MgO-Al2O3-SiO2. American Journal of Science, 294, 593-620.

Jenkins, D.M., Holland, T.J.B. & Clare, A.K., 1991. Experimental Determination of the Pressure- Temperature Stability Field and Thermochemical Properties of Synthetic Tremolite. American Mineralogist, 76, 458-469.

Jenkins, D.M., Holland, T.J.B. & Clare, A.K., 1991. Experimental determination of the pressure-temperature stability field and thermochemical properties of synthetic tremolite. American Mineralogist, 76, 458-469.

Jenkins, D.M., Newton, R.C., & Goldsmith, J.G., 1983. Fe-free clinozoisite stability relative to zoisite. Nature, 304, 622-623.

Johannes, W. & Metz, P., 1968. Experimentelle Bestimmung von Gleichgewichtsbeziehungen im System MgO-CO2-H2O. Neues Jahrbuch fur Mineralogie Monatshefte, 112, 15-26.

Johannes, W. 1968. Experimental investigation of the reaction forsterite + H2O = serpentine + brucite. Contributions to Mineralogy and Petrology, 19, 309-315.

Johannes, W., & Puhan, D., 1971. The calcite-aragonite transition re-investigated. Contributions to Mineralogy and Petrology, 31, 28-38.

Johannes, W., 1969. An experimental investigation of the system MgO-SiO2-H2O-CO2. American Journal of Science 267, 1083-1104.

Johannes, W., 1980. Melting and subsolidus reactions in the system K2O-CaO-Al2O3-SiO2-H2O. Contributions to Mineralogy and Petrology, 74, 29-34.

Johannes, W., 1984. Beginning of melting in the granite system Qz-Or-Ab-An-H2O. Contributions to Mineralogy and Petrology, 86, 264-273.

Kase, H.-R. & Metz, P. 1980. Experimental investigation of the metamorphism of siliceous dolomites. Contributions to Mineralogy and Petrology, 73, 151-159.

Kawasaki, T. & Matsui, Y., 1983. Thermodynamic analysis of equilibria involving olivine, orthopyroxene and garnet. Geochimica et Cosmochimica Acta 47, 1661-1680.

Kerrick, D.M. & Heninger, S.G., 1984. The andalusite-sillimanite equilibrium revisited. Geological Society of America Abstracts with programs, 16, 558.

Kerrick, D.M. 1968. Experiments on the upper stability limits of pyrophyllite at 1.8 kbar and 3.9 kbar water pressure. American Journal of Science 266, 204-214.

Kitahara, S., Takenouchi, S. & Kennedy, G.C., 1966. Phase relations in the system MgO-SiO2-H2O at high temperatures and pressures. American Journal of Science 264, 223-233.

Klein, C., 1978. Regional metamorphism of Proterozoic iron-formation, Labrador Trough, Canada. American Mineralogist 63, 898-912.

Koziol, A. & Newton, R.C., 1986. Definition of anorthite = grossular + kyanite + quartz in the range 650-1250°C. Geological Society of America abstracts with programs, 188, 661.

Koziol, A.M. & Newton, R.C., 1995. Experimental determination of the reactions magnesite + quartz = enstatite + CO2 and magnesite = periclase + CO2, and enthalpies of formation of enstatite and magnesite. American Mineralogist, 80, 1252-1260.

Koziol, A.M., 1994. Personal communication.

Laird, J., 1982. Amphiboles in metamorphosed basaltic rocks. In Amphiboles, MSA Reviews in Mineralogy, 9B, 113-158.

Laird, J., 1989. Chlorites: Metamorphic petrology. In Hydrous phyllosilicates (exclusive of micas), MSA Reviews in Mineralogy, 19, 405-453.

Lattard, D. & Evans, B.W., 1992. New experiments on the stability of grunerite. European Journal of Mineralogy, 4, 219-238.

Lattard, D. & LeBreton, N., 1994. The P-T-fO2 stability of endmember deerite, Fe12Fe6Si12O40(OH)10. Contributions to Mineralogy and Petrology, 115, 474-487.

Lee, H.Y. & Ganguly, J., 1988. Equilibrium compositions of coexisting garnet and orthopyroxene: experimental determinations in the system FeO-MgO-Al2O3-SiO2, and applications. Journal of Petrology 29, 93-113.

Lindsley, D.H., 1966. P-T projection for part of the system kalsilite-silica. Carnegie Institute of Washington Yearbook, 65, 244-247.

Lindsley, D.H., 1983. Pyroxene thermometry. American Mineralogist, 68, 477-493.

Lindsley, D.H., & Munoz, J.L. 1969. Subsolidus relations along the join hedenbergite-ferrosilite. American Journal of Science, 267-A, 295-324

Liou, J.G., 1970. Synthesis and stability relations of wairakite CaAl2Si4O12.2H2O. Contributions to Mineralogy and Petrology, 27, 259-282.

Liou, J.G., 1971. Stilbite-laumontite equilibrium. Contributions to Mineralogy and Petrology, 31, 171-177.

Liou, J.G., 1971. P-T stabilities of laumontite, wairakite, lawsonite, and related minerals in the system CaAl2Si2O8-SiO2-H2O. Journal of Petrology, 12, 379-411.

Liou, J.G., 1971. Analcime equilibria. Lithos, 4, 389-402.

Liou, J.G., 1973. Synthesis and stability relations of epidote, Ca2Al2FeSi3O12(OH). Journal of Petrology 14, 381-413.

Liou, J.G., 1974. Stability relations of andradite-quartz in the system Ca-Fe-Si-O-H. American Mineralogist 59, 1016-1025.

Luth, W.C., 1967. Studies in the system KAlSiO4-Mg2SiO4-SiO2-H2O: Inferred phase relations and petrologic applications. Journal of Petrology 8, 372-416.

Lykins, R.W. & Jenkins, D.M. 1992. Experimental determination of pargasite stability relations in the presence of orthopyroxene. Contributions to Mineralogy and Petrology, 112, 405-413.

Mahar, E.M., Baker, J.M., Powell, R. Holland, T.J.B. & Howell, N., 1997. The effect of Mn on mineral stability in metapelites. Journal of Metamorphic Geology, 15, 223-238.

Manghnani, M.H., 1970. Analcite-jadeite phase boundary. Physics of the Earth and Planetary Interiors, 3, 456-461.

Manning, C.E. & Bohlen, S.R., 1991. The reaction titanite + kyanite = anothite + rutile and titanite-rutile barometry in eclogites. Contributions to Mineralogy and Petrology, 109, 1-9.

Maresch, W.W. & Mottana, A., 1976. The pyroxmangite - rhodonite transformation for the MnSiO3 composition. Contributions to Mineralogy and Petrology 55, 69-79.

Massonne, H-J., & Schreyer, W., 1989. Stability field of the high pressure assemblage talc + phengite and two new phengite barometers. European Journal of Mineralogy, 1, 391-410.

Massonne, H-J., 1995. Experimental and petrogenetic study of UHPM. in Ultrahigh pressure metamorphism (eds R.G. Coleman and X. Wang). 33-95. Cambridge University Press.

Massonne, H.-J., 1989. The upper thermal stability of chlorite + quartz: an experimental study in the system MgO-Al2O3-SiO2-H2O. Journal of Metamorphic Geology, 7, 567-582.

Massonne, H.J., Mirwald, P.W. & Schreyer, W., 1981. Experimentelle der Reaktionskurve Chlorit + Quartz = Talk + Disthen im System MgO-Al2O3-SiO2-H2O. Fortschritte der Mineralogie, 59, 122-123.

Matsui, Y. & Nishizawa, O., 1974. Iron (II)-magnesium exchange equilibrium between olivine and calcium-free pyroxene over a temperature range 800 to 1300°. Bulletin Societé Minéralogie Cristallographie, 97, 122-130.

McPhail, D.C., Berman, R.G., Greenwood, H.J., 1990. Experimental and theoretical constraints on aluminium substitution in magnesium chlorite, and a thermodynamic model for H2O in magnesium cordierite. Canadian Mineralogist, 28, 859-874.

Metz, P. & Puhan, D. 1971. Korrektur zur arbeit 'Experimentelle untersuchung der metamorphose von kieselig dolomitischen sedimenten 1. Die gleichgewichtsdaten der reaktion 3 dolomit + 4 quartz + H2O = talc + 3 calcit + 3 CO2'. Contributions to Mineralogy and Petrology, 31, 169-170.

Metz, P. 1976. Experimental investigation of the metamorphism of siliceous dolomites III. Equilibrium data for the reaction tremolite + 11 dolomite = 8 forsterite + 13 calcite + 9 CO2 + H2O. Contributions to Mineralogy and Petrology, 58, 137-148.

Miller, Ch., 1986. Alpine high-pressure metamorphism in the Eastern Alps. Schweitzerische Mineralogische und Petrologische Mitteilungen, 66, 139-144.

Moecher, D.P. & Chou, I.M., 1990. Experimental investigation of andradite and hedenbergite equilibria employing the hydrogen sensor technique, with revised estimates of for andradite and hedenbergite. American Mineralogist, 75, 1327-1341.

Mukhopadhyay, B. & Holdaway, M.J., 1994. Cordierite-garnet-sillimanite-quartz equilibrium: New experimental calibration in the system FeO-Al2O3-SiO2-H2O and certain P-T-XH2O relations. Contributions to Mineralogy and Petrology, 116, 462-472.

Myers, J. & Eugster, H.P., 1983. The system Fe-Si-O: Oxygen buffer calibration to 1500K. Contributions to Mineralogy and Petrology 82, 75-90.

Newton, R.C. & Kennedy, G.C., 1963. Some equilibrium relations on the join CaAl2Si2O6-H2O. Journal of Geophysical Research 68, 2967-2983.

Newton, R.C. & Smith, J.V. 1967. Investigation concerning the breakdown of albite at depth in the earth. Journal of Geology, 75, 268-286.

Newton, R.C., 1965. The thermal stability of zoisite. Journal of Geology, 73, 431-441.

Newton, R.C., 1966a. Kyanite-sillimanite equilibrium at 750°C. Science, 151, 1222-1225.

Newton, R.C., 1966b. Kyanite-andalusite equilibrium from 700-800°C. Science, 153, 170-171.

Newton, R.C., 1966c. Some calcite-silicate equilibrium relations. American Journal of Science 264, 204-222.

Newton, R.C., 1972. An experimental determination of the high pressure stability limits of magnesian cordierite under wet and dry conditions. Journal of Geology, 80, 398-420.

Nitsch, K.-H., 1972. Das P-T-XCO2- Stabilitätsfeld von Lawsonit. Contributions to Mineralogy and Petrology 34, 116-134.

Nitsch, K.-H., 1974. Neue Erkentnisse zur Stabilitat fur Lawsonit. Fortschritte der Mineralogie, 51, 34-35.

Nitsch, K.-H., Storre, B., & Topfer, U., 1981. Experimentelle bestimmung der gleichgewichtsdaten die reaktion Margarit + Quartz = Anorthit + Andalusit/Disthen + H2O. Fortschritte der Mineralogie, 59, 139-140.

O'Neill, H. St.C., 1987. Free energies of formation of NiO, CoO, Ni2SiO4, and Co2SiO4. American Mineralogist, 72, 280-291.

O'Neill, H. St.C., 1988. Systems Fe-O and Cu-O: thermodynamic data for the equiliria Fe-``FeO'', Fe-Fe3O4, Fe3O4-Fe2O3, Cu-Cu2O, and Cu2O-CuO from emf measurements. American Mineralogist, 73, 470-486.

O'Neill, H. St.C., Pownceby, M.I. & Wall, V.J., 1988. Ilmenite-rutile-iron and ulvospinel-ilmenite-iron equilibria and the thermochemistry of ilmenite (FeTiO3) and ulvospinel. Geochimica et Cosmochimica Acta, 52, 2065-2072.

O'Neill, H.St.C. & Wood, B.J., 1979. An experimental study of Fe-Mg partitioning between garnet and olivine and its calibration as a geothermometer. Contributions to Mineralogy and Petrology 70, 59-70.

O'Neill, H.St.C., 1987. Quartz-fayalite-iron and quartz-fayalite-magnetite equilibria and the free energy of formation of fayalite (Fe2SiO4) and magnetite (Fe3O4). American Mineralogist, 72, 67-75.

Olesch, M., & Seifert, F,. 1981. The restricted stability of osumilite under hydrous conditions in the system K2O-MgO-Al2O3-SiO2-H2O. Contributions to Mineralogy and Petrology, 76:362-367.

Osborn, E.F. & Shairer, J.F., 1941. The ternary system pseudowollastonite-akermanite-gehlenite. American Journal of Science 239, 713-763.

Ostrovsky, I.A. 1966: PT-diagram of the system SiO2-H2O. Journal of Geology, 5, 127-134.

Pawley, A.R. & Wood, B.J., 1995. The high pressure stability of talc and 10Å phase: potential storage sites for H2O in subduction zones. American Mineralogist, 80, 998-1003.

Pawley, A.R. & Wood, B.J., 1996. The low-pressure stability of phase A, Mg7Si2O8(OH)6. Contributions to Mineralogy and Petrology, 124, 90-97.

Perchuk, L. L. & Lavrent'eva, I. V., 1983. Experimental investigation of exchange equilibria in the system cordierite-garnet-biotite. In Saxena, S. K., ed. Kinetics and Equilibrium in Mineral Reactions. Springer Verlag, pp. 199-240.

Perkins, D. & Vielzeuf, D., 1992. Reinvestigation of fayalite + anorthite = garnet. Contributions to Mineralogy and Petrology, 111, 260-263.

Perkins, D. & Vielzeuf, D., 1992. Reinvestigation of fayalite + anorthite = garnet. Contributions to Mineralogy and Petrology, 111, 260-263.

Perkins, D., III. 1983. The stability of Mg-rich garnet in the system CaO-MgO-Al2O3-SiO2 at 1000-1300°C and high pressure. American Mineralogist, 68, 355-364.

Perkins, D., III., Holland, T.J.B., & Newton, R.C., 1981. The Al2O3 contents of enstatite in equilibrium with garnet in the system MgO-Al2O3-SiO2 at 15-40 kbar and 900°-1600°C. Contributions to Mineralogy and Petrology, 78, 99-109.

Peters, T., 1971. Pyroxmangite: stability in H2O-CO2 mixtures at a total pressure of 2000 bars. Contributions to Mineralogy and Petrology, 32, 267-273.

Peterson, J.W. & Newton, R.C., 1990. Experimental biotite-quartz melting in the KMASH-CO2 system and the role of CO2 in the petrogenesis of granites and related rocks. American Mineralogist, 75, 1029-1042.

Philipp, R.W. & Girsperger 1990. In: Trommsdorff V. and Connolly, J.A.D. 1990. Constraints on phase diagram topology in the system CaO-MgO-SiO2CO2-H2O. Contributions to Mineralogy and Petrology, 104, 1-7.

Pownceby, M. I., Wall, V. J., & O'Neill, H. St. C., 1987. Fe-Mn partitioning between garnet and ilmenite: experimental calibration and applications. Contributions to Mineralogy and Petrology, 97, 116-126.

Rao, B., & Johannes, W., 1979. Further data on the stability of staurolite + quartz. Neues Jahrbuch für Mineralogie Monatshefte, 437-447.

Richardson, S.W., 1968. Staurolite stability in a part of the system Fe-Al-Si-O-H. Journal of Petrology 9, 467-488.

Richardson, S.W., Bell, P.M., & Gilbert, M.C. 1968. Kyanite-sillimanite equilibrium berween 700 and 1500°C. American Journal of Science 266, 513-541.

Richardson, S.W., Gilbert, M.C., & Bell, P.M. 1969. Experimental determination of kyanite-andalusite and andalusite-sillimanite equilibria; the aluminium silicate triple point. American Journal of Science 267, 259-272.

Robertson, E.C., Birch, A.F., & MacDonald, G.J.F., 1957. Experimental determination of jadeite stability relations between 700°C and 1500°C.American Journal of Science 255, 115-137.

Robie, R.A., Hemingway, B.S. & Fisher, J.R., 1979. Thermodynamic properties of minerals and related substances at 298.15 K and 1 bar (105 Pascals) pressure and at higher temperatures. United States Geological Survey Belletin, 1452, 456p.

Rosenberg, P.E., 1967. Subsolidus relations in the system CaCO3-MgCO3-FeCO3 between 350 and 550°C. American Mineralogist 52, 787-797.

Scarfe, C.M., Luth, W.C. & Tuttle, O.F., 1966. An experimental study bearing on the absence of leucite in plutonic rocks. American Mineralogist 51, 726-735.

Schiffman, P. & Liou, J.G., 1980. Synthesis and stability relations of Mg-Al pumpellyite, Ca4Al5MgSi6O21(OH)7. Journal of Petrology 21, 441.

Schmidt, M. W., & Poli, S., 1994. The stability of lawsonite and zoisite at high pressures: Experiments in CASH to 92 kbar and implications for the presence of hydrous phases in subducted lithosphere, Earth and Planetary Science Letters, 124, 105-118.

Schramke, J.A., Kerrick, D.M., & Blencoe, J.G., 1982. The experimental determination of the brucite = periclase + H2O equilibrium with a new volumetric technique. American Mineralogist, 67, 269-276.

Schreyer, W., & Seifert, F., 1969. High pressure phases in the system MgO-Al2O3-SiO2-H2O. American Journal of Science 267A, 407-443.

Schreyer, W., 1968. A reconnaissance study of the system MgO-Al2O3-SiO2-H2O at pressures berween 10 and 25 kb. Carnegie Institute of Washington Yearbook, 66, 380-392.

Seidel, E. & Okrusch, M., 1977. Chloritoid-bearing metapelites associated with glaucophane rocks in western Crete, Greece. Contributions to Mineralogy and Petrology 60, 321-324.

Seifert, F. & Schreyer, W., 1970. Low temperature stability limit of Mg-cordierite in the range 1-7 kilobars water pressure. A redetermination. Contributions to Mineralogy and Petrology 27, 25-238.

Seifert, F., 1970. Low temperature compatibility relations of cordierite in haplopelites of the system K2O-MgO-Al2O3-SiO2-H2O. Journal of Petrology 11, 73-101.

Seifert, F., 1973. Stability of the assemblage cordierite-corumdum in the system MgO-Al2O3-SiO2-H2O. Contributions to Mineralogy and Petrology 41, 171-178.

Seifert, F., 1974. Stability of sapphirine: A study of the aluminous part of the system MgO-Al2O3-SiO2-H2O. Journal of Geology, 82, 173-204.

Seifert, F., 1976. Stability of the assemblage cordierite + K feldspar + quartz. Contributions to Mineralogy and Petrology 57, 179-185.

Shmulovich, K.J., 1974. Experimental study of phase equilibria in the system CaO-Al2O3-SiO2-CO2. (in Russian). Geokhimiya, 1272-1277.

Shulters, J.C. & Bohlen, S.R., 1989. The stability of hercynite-gahnite spinels in corundum- or quartz-bearing assemblages. Journal of Petrology, 30, 1017-1031.

Skippen, G.B., 1971. Experimental data for reactions in siliceous marbles. Journal of Geology, 79, 457-481.

Skrok, V., Grevel, K.D. & Schreyer, W., 1994. Die Stabilität von Lawsonit, CaAl2[Si2O7](OH)2.H2O, bei Drücken bis zu 50 kbar. European Journal of Mineralogy, 6, 270.

Slaughter, J., Kerrick, D.M., & Wall, V.J., 1975. Experimental and thermodynamic study of equilibria in the system CaO-MgO-SiO2-H2O-CO2. American Journal of Science 275, 143-162.

Smyth, F.H., & Adams, L.H., 1923. The system calcium oxide-carbon dioxide. Journal of the American Chemical Society, 45., 1167-1184.

Staudigel, H., & Schreyer, W., 1977. The upper thermal stability of clinochlore at 10-35 kbar P(H2O). Contributions to Mineralogy and Petrology 61, 187-198.

Storre, B. & Nitsch, K-H., 1974. Zur stabilität von Margarit im System CaO-Al2O3-SiO2-H2O. Contributions to Mineralogy and Petrology 43, 1-24.

Taylor, B.E. & Liou, J.G., 1978. The low-temperature stability of andradite in C-O-H fluids. American Mineralogist 63, 378-393.

Theye, T., Chopin, C., Grevel, K.-D. & Ockenga, E., 1997. The assemblage diaspore + quartz in metamorphic rocks: a petrological, experimental and thermodynamic study. Journal of Metamorphic Geology, 15, 17-28.

Theye, T., Seidel, E. & Vidal, O., 1992. Carpholite, sudoite, and chloritoid in low-grade high-pressure metapelites from Crete and the Peloponnese, Greece. European Journal of Mineralogy, 4, 487-507.

Thompson, A.B., 1970. Laumontite equilibria and the zeolite facies. American Journal of Science, 269, 267-275.

Thompson, A.B., 1971. Analcite-albite equilibria at low temperatures. American Journal of Science, 271, 79-92.

Velde, B., 1965. Phengite micas: synthesis, stability, and natural occurrence. American Journal of Science 263, 886-913.

Vidal, O. Theye, T. & Chopin, C., 1994. Experimental study of chloritoid stability at high pressure and various fO2 conditions. Contributions to Mineralogy and Petrology, 118, 256-270.

Vidal, O., Goffé, B. & Theye, T., 1992. Experimental study of the stability of sudoite and magnesiocarpholite and calculation of a new petrogenetic grid for the system MgO-Al2O3-SiO2-H2O. Journal of Metamorphic Geology, 10, 603-614.

Voigt, R. & Will, G., 1981. Das System Fe2O3-H2O unter hohen Drucken. Neues Jahrbuch fur Mineralogie Monatshefte, 89-96.

von Seckendorff, V. & O'Neill, H.St.C., 1993. An experimental study of Fe-Mg partitioning between olivine and orthopyroxene at 1173, 1273 and 1423 K and 1.6 GPa. Contributions to Mineralogy and Petrology, 113, 196-207.

Walter, L.S., 1963. Experimental studies on Bowen's decarbonation series: 1 : P-T univariant equilibria of the "monticellite" and "akermanite" reactions. American Journal of Science 261, 488-500.

Walter, L.S., 1965. Experimental studies on Bowen's decarbonation series III: P-T univariant equilibrium of the reaction: spurrite + monticellite = merwinite + calcite and analysis of assemblages found at Crestmore, California. American Journal of Science 263, 64-77.

Waters, D.J., 1986. Metamorphic history of dapphirine-bearing and related magnesian gneisses from Namaqualand, South Africa. Journal of Petrology, 27, 541-565.

Weill, D.F., 1966. Stability relations in the Al2O3-SiO2 system calculated from solubilities in the Al2O3-SiO2-Na3AlF6 system. Geochimica et Cosmochimica Acta, 30, 223-237.

Wendlandt, R.F. & Eggler, D.H., 1980. The origins of potassic magmas: 1: Melting relations in the systems KAlSiO4-Mg2SiO4-SiO2 and KAlSiO4-MgO-SiO2-CO2 to 30 kilobars. American Journal of Science 280, 385-420.

Windom, K.E. & Boettcher, A.L., 1976: The effect of reduced activity of anorthite on the reaction grossular + quartz = anorthite + wollastonite: a model for plagioclase in the earth's lower crust and upper mantle. American Mineralogist, 61, 889-896.

Wood, B.J., 1976. The reaction phlogopite + quartz = enstatite + sanidine + H2O. Progress in Experimental Petrology, 3rd NERC report, 6, 17-19.

Wood, B.J., Hackler, R.T. & Dobson, D.P., 1994. Experimental determination of Mn-Mg mixing properties in garnet, olovine and oxide. Contributions to Mineralogy and Petrology, 115, 438-448.

Wunder, B., Rubie, D.C., Ross II, C.R., Medenbach, O., Seifert, F. & Schreyer, W., 1993. Synthesis, stability and properties of Al2SiO4(OH)2: a fully hydrated analogue of topaz. American Mineralogist, 78, 285-297.

Yin, H.-A., and Greenwood, H.J., 1983. Displacement of equilibria of OH-tremolite and F-tremolite solid solution. I. Determination of the equilibrium P-T curve of OH-tremolite. EOS, 64, 347.

Yoder, H.S., 1968. Akermanite and related melilite-bearing assemblages.Carnegie Institute of Washington Yearbook, 66, 471-477.

Zharikov, V.A. and Shmulovich, K.I., 1969. High temperature mineral equilibria in the system CaO-SiO2-CO2. Geochemistry International, 6, 853-869.

Zheng, J., Li, B., Utsumi, W. & Liebermann, R.C., 1996. In situ X-ray observations of the coesite-stishovite transition: reversed phase boundary and kinetics. Physics and Chemistry of Minerals, 23, 1-10.

Zhu, H., Newton, R.C. & Kleppa, O.J., 1994. Enthalpy of formation of wollastonite (CaSiO3) and anorthite (CaAl2Si2O8) by experimental phase equilibrium measurements and high-temperaturesolution calorimetry. American Mineralogist, 79, 134-144.

Ziegenbein, D., & Johannes, W., 1974. Wollastonitbildung aus Quartz und calcit bei Pf = 2, 4, und 6 kb. Fortschritte der Mineralogie, 44, 77-79.


Back to top of refs

Back to contents page