STATIC COMPRESSION OF MG(OH)2 TO 78-GPA AT HIGH-TEMPERATURE AND CONSTRAINTS ON THE EQUATION OF STATE OF FLUID H2O

被引:102
|
作者
FEI, YW [1 ]
MAO, HK [1 ]
机构
[1] CARNEGIE INST WASHINGTON, CTR HIGH PRESSURE RES, WASHINGTON, DC 20015 USA
关键词
D O I
10.1029/93JB00701
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
Static compression data on brucite, Mg(OH)2, to 35 GPa at 300 K and to 80 GPa at 600 K were measured by synchrotron X ray diffraction with a diamond-anvil cell. A least squares fit yielded bulk modulus K(T0) = 54.3(+/- 1.5) GPa and its pressure derivative K(T0) = 4.7(+/- 0.2) at 300 K, and KT = 48.8(+/- 1.0) GPa and K(T') = 4.74(+/- 0.12) at 600 K. The temperature derivative of the bulk modulus, (partial derivative K(T)/partial derivative T)p, is -0.018(+/- 0.008) GPa/K, assuming that K(T) linearly depends on temperature. The average thermal expansivity a decreases from 80(+/- 4) x 10(-6) K-1 at ambient pressure to 10(+/- 6) x 10(-6) K-1 at 80 GPa. The coefficient as a function of pressure P (in gigapascals), can be expressed by a (K(-1)) = 80 x 10(-6)(1 + 0.087P)-0.97. The thermal expansion and elastic properties of Mg(OH)2 are highly anisotropic such that the c axis with the linear thermal expansion coefficient alpha(c0) = 59(+/- 4) x 10(-6) K-1 and the linear incompressibility K(c0) = 75(+/- 5) GPa, is about 5 times more expansable as well as compressible than the a axis with alpha(ao) = 11(+/- 3) x 10(-6) K-1 and K(a0) = 388(+/- 10) GPa. The present equation of state for Mg(OH)2 and previously determined equations of state for MgO and H2O ice VII were used to calculate the breakdown pressures of Mg(OH)2 into MgO plus H2O ice VII in the stability field of H2O ice VII. This equilibrium boundary is used to constrain the dehydration curve of Mg(OH)2 at very high pressure because the intersection point between this boundary and the melting curve of ice VII must be the triple point of Mg(OH)2, MgO plus ice VII, and MgO plus fluid H2O. The calculation shows that the equilibrium boundary between Mg(OH)2 and MgO plus ice VII intersects the melting curve of ice VII at 55(+/- 15) GPa and 850(+/- 20) K. The calculation of the melting curve of ice VII indicates that the existing equation of state of fluid H2O, derived from shock compression and molecular dynamics calculations, may overestimate the volume of fluid H2O at pressures above 50 GPa.
引用
收藏
页码:11875 / 11884
页数:10
相关论文
共 50 条
  • [41] Studies on synthesis, characterization and thermochemistry of Mg2[B2O4(OH)2]·H2O
    L. Zhihong
    H. Mancheng
    G. Shiyang
    Journal of Thermal Analysis and Calorimetry, 2004, 75 : 73 - 78
  • [42] Production of ground state OH following electron impact on H2O
    Harb, T
    Kedzierski, W
    McConkey, JW
    JOURNAL OF CHEMICAL PHYSICS, 2001, 115 (12): : 5507 - 5512
  • [43] In situ electrical conductivity measurements of H2O under static pressure up to 28 GPa
    Liu, Bao
    Gao, Yang
    Han, Yonghao
    Ma, Yanzhang
    Gao, Chunxiao
    PHYSICS LETTERS A, 2016, 380 (37) : 2979 - 2983
  • [44] Low-temperature infrared spectroscopy of quartz and amethyst with high concentrations of OH and H2O
    Guzzo, Pedro Luiz
    de Miranda, Milena Ribas
    da Luz, Adao Benvindo
    REM-REVISTA ESCOLA DE MINAS, 2009, 62 (03) : 349 - 356
  • [45] REACTION WITH NITROGEN-OXIDE PARTICIPATION AT HIGH-TEMPERATURE - MONOMOLECULAR DECOMPOSITION OF H2O
    ZUEV, AP
    STARIKOVSKII, AY
    KHIMICHESKAYA FIZIKA, 1991, 10 (01): : 52 - 63
  • [46] 2Mg(OH)2•MgCl2•2H2O and 2Mg(OH)2•MgCl2•4H2O, Two High Temperature Phases of the Magnesia Cement System
    Dinnebier, Robert E.
    Oestreich, Melanie
    Bette, Sebastian
    Freyer, Daniela
    ZEITSCHRIFT FUR ANORGANISCHE UND ALLGEMEINE CHEMIE, 2012, 638 (3-4): : 628 - 633
  • [47] Exposing Multiple Roles of H2O in High-Temperature Enhanced Carbon Nanotube Synthesis
    Bystrzejewski, M.
    Schoenfelder, R.
    Cuniberti, G.
    Lange, H.
    Huczko, A.
    Gemming, T.
    Pichler, T.
    Buechner, B.
    Ruemmeli, M.
    CHEMISTRY OF MATERIALS, 2008, 20 (21) : 6586 - 6588
  • [48] High-temperature corrosion of iron at 900°C in atmospheres containing HCl and H2O
    Sato, Y
    Young, DJ
    OXIDATION OF METALS, 2001, 55 (3-4): : 243 - 260
  • [49] Nickel and platinum in high-temperature H2O + HCl fluids: Implications for hydrothermal mobilization
    Scholten, Lea
    Watenphul, Anke
    Beermann, Oliver
    Testemale, Denis
    Ames, Doreen
    Schmidt, Christian
    GEOCHIMICA ET COSMOCHIMICA ACTA, 2018, 224 : 187 - 199
  • [50] Measurement of the high-pressure-high-temperature fluid phase behavior of the systems CF4 + H2O, CF4 + H2O + NaCl, CHF3 + H2O, and CHF3 + H2O + NaCl
    Delft University of Technology, Faculty of Applied Sciences, Lab. of Applied Thermodynamics, Julianalaan 136, 2628 BL Delft, Netherlands
    Fluid Phase Equilib., 151 (745-751):