HIGH-TEMPERATURE OXYGEN-ISOTOPE FRACTIONATION IN THE ENSTATITE-OLIVINE-BACO3 SYSTEM

被引:38
作者
ROSENBAUM, JM
KYSER, TK
WALKER, D
机构
[1] COLUMBIA UNIV,LAMONT DOHERTY EARTH OBSERV,PALISADES,NY 10964
[2] COLUMBIA UNIV,DEPT GEOL SCI,PALISADES,NY 10964
[3] UNIV SASKATCHEWAN,DEPT GEOSCI,SASKATOON S7N 0W0,SASKATCHEWAN,CANADA
关键词
D O I
10.1016/0016-7037(94)90135-X
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
Equilibrium oxygen isotopic fractionation factors between coexisting olivine and enstatite at mantle temperatures and pressures, 1000-1400-degrees-C and greater-than-or-equal-to 13 kbar, were determined from a series of silicate-witherite oxygen isotope exchange experiments. Silicate-witherite fractionations ranged from -2 parts per thousand at 1000-degrees-C to -1 parts per thousand at 1400-degrees-C, and showed a systematic jump in magnitude at 1200-degrees-C of approximately 0.5 parts per thousand which remains to be explained. Enstatite-witherite fractionations varied nonlinearly with respect to inverse temperature squared. The high-temperature pyroxene-witherite data suggest enstatite undergoes a reversible structural change as it approaches an incongruent breakdown reaction to olivine, quartz, and sanbornite, which may account for the observed nonlinearity. A least-squares fit to the low-temperature equilibrium enstatite-olivine fractionation data forced through the origin has the functional form 1000 ln alpha(en-ol)T(K) (1.41 +/- 0.43) X (6)/T2 (0.0 +/- 0.24), for temperatures greater than 1000-degrees-C (+/- 2sigma errors). At equilibrium under mantle conditions, the oxygen isotopic composition of enstatite is always heavier than, or equal to, that of coexisting olivine.
引用
收藏
页码:2653 / 2660
页数:8
相关论文
共 34 条
[1]  
ADLER HH, 1963, AM MINERAL, V48, P124
[2]  
ADLER HH, 1963, AM MINERAL, V48, P839
[3]   CALCULATION OF EQUILIBRIUM CONSTANTS FOR ISOTOPIC EXCHANGE REACTIONS [J].
BIGELEISEN, J ;
MAYER, MG .
JOURNAL OF CHEMICAL PHYSICS, 1947, 15 (05) :261-267
[4]   OXYGEN ISOTOPE PARTITIONING AMONG MINERALS IN IGNEOUS AND METAMORPHIC ROCKS [J].
BOTTINGA, Y ;
JAVOY, M .
REVIEWS OF GEOPHYSICS, 1975, 13 (02) :401-418
[5]   COMMENTS ON OXYGEN ISOTOPE GEOTHERMOMETRY [J].
BOTTINGA, Y ;
JAVOY, M .
EARTH AND PLANETARY SCIENCE LETTERS, 1973, 20 (02) :250-265
[6]   APPARATUS FOR PHASE-EQUILIBRIUM MEASUREMENTS AT PRESSURES UP TO 50-KILOBARS AND TEMPERATURES UP TO 1750-DEGREES-C [J].
BOYD, FR ;
ENGLAND, JL .
JOURNAL OF GEOPHYSICAL RESEARCH, 1960, 65 (02) :741-748
[7]   OXYGEN ISOTOPE FRACTIONATIONS INVOLVING DIOPSIDE, FORSTERITE, MAGNETITE, AND CALCITE - APPLICATION TO GEOTHERMOMETRY [J].
CHIBA, H ;
CHACKO, T ;
CLAYTON, RN ;
GOLDSMITH, JR .
GEOCHIMICA ET COSMOCHIMICA ACTA, 1989, 53 (11) :2985-2995
[8]   THE USE OF BROMINE PENTAFLUORIDE IN THE EXTRACTION OF OXYGEN FROM OXIDES AND SILICATES FOR ISOTOPIC ANALYSIS [J].
CLAYTON, RN ;
MAYEDA, TK .
GEOCHIMICA ET COSMOCHIMICA ACTA, 1963, 27 (JAN) :43-52
[9]   LIMITS ON EFFECT OF PRESSURE ON ISOTOPIC FRACTIONATION [J].
CLAYTON, RN ;
GOLDSMITH, JR ;
KAREL, KJ ;
MAYEDA, TK ;
NEWTON, RC .
GEOCHIMICA ET COSMOCHIMICA ACTA, 1975, 39 (08) :1197-1201
[10]   COMPARISON OF STABLE ISOTOPE REFERENCE SAMPLES [J].
COPLEN, TB ;
KENDALL, C ;
HOPPLE, J .
NATURE, 1983, 302 (5905) :236-238