The dehydration kinetics of gypsum at high pressure and high temperature

被引:6
|
作者
Liu, Chuanjiang [1 ,2 ]
Zheng, Haifei [2 ]
Wang, Duojun [1 ]
机构
[1] Univ Chinese Acad Sci, Key Lab Computat Geodynam, Beijing 100049, Peoples R China
[2] Peking Univ, Sch Earth & Space Sci, Minist Educ, Key Lab Orogen Belts & Crystal Evolut, Beijing 100871, Peoples R China
关键词
kinetics; dehydration; high pressure; diamond anvil cell; gypsum; DIAMOND-ANVIL CELL; NATURAL GYPSUM; THERMAL DEHYDRATION; PHASE-TRANSITIONS; MICRO-RAMAN; MICROSTRUCTURE; DIFFRACTION; BASSANITE; MANTLE;
D O I
10.1080/08957959.2015.1035716
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
An in situ dehydration kinetics study of gypsum under water-saturated condition was performed in the temperature and pressure ranges of 383-423K and 343-1085MPa by using a hydrothermal diamond anvil cell and Raman spectroscopy. Kinetic analysis shows that the dehydration rate k increases with pressure, suggesting a negative pressure dependence on dehydration rate. The elevation of temperature can contribute to the dehydration. The n values increase with pressure, indicating that the nucleation process becomes slower relative to the growth process. According to the n values of approximate to 1.0, the dehydration of gypsum is dominated by an instantaneous nucleation and diffusion-controlled growth mechanism. The obtained average activation volume V is equal to 5.69cm(3)/mol and the calculated activation energy E-a and the pre-exponential factor A are 66.9kJ/mol and 4.66x10(5)s(-1). The activation energy may be dependent upon grain size, shape, temperature and pressure, and surrounding water.
引用
收藏
页码:273 / 281
页数:9
相关论文
共 50 条
  • [21] Dehydration kinetics of antigorite using in situ high-temperature infrared microspectroscopy
    Sawai, Michiyo
    Katayama, Ikuo
    Hamada, Arisa
    Maeda, Makoto
    Nakashima, Satoru
    PHYSICS AND CHEMISTRY OF MINERALS, 2013, 40 (04) : 319 - 330
  • [22] Kinetics and thermodynamic behavior of carbon clusters under high pressure and high temperature
    Ree, FH
    Winter, NW
    Glosli, JN
    Viecelli, JA
    PHYSICA B, 1999, 265 (1-4): : 223 - 229
  • [23] Kinetics and thermodynamic behavior of carbon clusters under high pressure and high temperature
    Ree, Francis H.
    Winter, Nicholas W.
    Glosli, James N.
    Viecelli, James A.
    Physica B: Condensed Matter, 1999, 265 (1-4): : 223 - 229
  • [24] Kinetics of the Cupric Catalyzed Oxidation of FeII by Oxygen at High Temperature and High Pressure
    Ruiz, M. C.
    Jerez, O.
    Padilla, R.
    MINERAL PROCESSING AND EXTRACTIVE METALLURGY REVIEW, 2016, 37 (03): : 160 - 167
  • [25] THE PRESSURE-DEPENDENCE OF THE DEHYDRATION OF GYPSUM TO BASSANITE
    MCCONNELL, JDC
    ASTILL, DM
    HALL, PL
    MINERALOGICAL MAGAZINE, 1987, 51 (361) : 453 - 457
  • [26] Kinetics of gypsum dehydration at reduced pressure: an energy dispersive X-ray diffraction study
    Carbone, Marilena
    Ballirano, Paolo
    Caminiti, Ruggero
    EUROPEAN JOURNAL OF MINERALOGY, 2008, 20 (04) : 621 - 627
  • [27] ON THE BEHAVIOR OF GYPSUM UNDER HIGH-PRESSURE
    KRUGER, RR
    ABRIEL, W
    ZEITSCHRIFT FUR NATURFORSCHUNG SECTION B-A JOURNAL OF CHEMICAL SCIENCES, 1990, 45 (09): : 1221 - 1226
  • [28] Abrupt solubility of gypsum in water at high pressure and ambient temperature and its implication.
    Zheng HaiFei
    Duan TiYu
    Liu Yuan
    Sun Qiang
    ACTA PETROLOGICA SINICA, 2009, 25 (05) : 1288 - 1290
  • [29] DEHYDRATION OF ALMONDS AT HIGH-TEMPERATURE
    MOREIRA, RG
    CASTELLPEREZ, ME
    BAKKERARKEMA, FW
    REVISTA DE AGROQUIMICA Y TECNOLOGIA DE ALIMENTOS, 1988, 28 (04): : 509 - 518
  • [30] INFLUENCE OF PRESSURE ON THE KINETICS OF HIGH-TEMPERATURE NITRIDING OF TANTALUM
    VADCHENKO, SG
    GRIGORYEV, YM
    MERZHANOV, AG
    RUSSIAN METALLURGY, 1980, (01): : 173 - 175