LIQUID-VAPOR FRACTIONATION OF OXYGEN AND HYDROGEN ISOTOPES OF WATER FROM THE FREEZING TO THE CRITICAL-TEMPERATURE

被引:685
作者
HORITA, J
WESOLOWSKI, DJ
机构
[1] Chemical and Analytical Sciences Division, Oak Ridge National Laboratory, Oak Ridge
关键词
D O I
10.1016/0016-7037(94)90096-5
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
The equilibrium fractionation factors of oxygen and hydrogen isotopes between liquid water and water vapor have been precisely determined from 25 to 350-degrees-C on the VSMOW-SLAP scale, using three different types of apparatus with static or dynamic techniques for the sampling of water vapor. Our results for both oxygen and hydrogen isotope fractionation factors between 2 5 and 100-degrees-C are in excellent agreement with the literature (e.g., MAJOUBE, 1971 ). Our results for the hydrogen isotope fractionation factor above 100-degrees-C also agree quantitatively with the literature values of MERLIVAT et al. ( 1963) and BOTTINGA ( 1968). The results for the hydrogen isotope fractionation factor obtained in this study and from most of the literature were regressed to the equation, 10(3) ln alpha1-v(D) = 1158.8(T3/10(9)) - 1620.1(T2/10(6)) + 794.84(T/10(3)) - 161.04 + 2.9992(10(9)/T3), from 0-degrees-C to the critical temperature of water (374.1-degrees-C) within +/-1.2(1sigma) (n = 157); T(K). The crossover temperature is 229 +/- 13-degrees-C (1sigma). Our values for the oxygen isotope fractionation factor between liquid water and water vapor are, however, at notable variance with the only dataset available above 100-degrees-C in the literature (BOTTINGA, 1968), which is systematically higher (av. + 0.15 in 103 ln alpha1-v(O-18)) with large errors (+/- 0.23 in 1sigma). Our results and most of the literature data below 100-degrees-C were regressed to the equation, 10(3) ln alpha1-v(O-18) = -7.685 + 6.7123(10(3)/T) - 1.6664(10(6)/T2) + 0.35041(10(9)/T3), from 0 to 374. 1-degrees-C within +/- 0.11 (1sigma) (n = 112); T(K). A third water-steam isotope geothermometer, using the ratio of DELTAdeltaD/DELTAdeltaO-18 given by water and steam samples, is readily obtained from the above equations. This geothermometer is less affected by incomplete separation of water and steam, and partial condensation of steam than those employing the oxygen and hydrogen isotopic compositions alone.
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页码:3425 / 3437
页数:13
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