Phase relations of nahcolite and trona at high P-T conditions

被引:22
|
作者
Liu, Xi [1 ]
Fleet, Michael E. [2 ]
机构
[1] Univ Western Ontario, Dept Earth Sci, London, ON N6A 5B7, Canada
[2] Peking Univ, Sch Earth & Space Sci, Beijing 100871, Peoples R China
基金
加拿大自然科学与工程研究理事会;
关键词
Nahcolite; Trona; Phase relations; Entropy; Fluid inclusions; WESTERN GNEISS REGION; EQUATION-OF-STATE; SODIUM-CARBONATE; FLUID-INCLUSION; HYDROGEN CARBONATE; BICARBONATE; SOLUBILITY; SYSTEM; LAKE; EQUILIBRIA;
D O I
10.2465/jmps.080402
中图分类号
P57 [矿物学];
学科分类号
070901 ;
摘要
Using cold-seal hydrothermal bomb and piston-cylinder apparatus, we have carried out both forward and reversal experiments to investigate the phase boundary between nahcolite (NaHCO3) and trona (NaHCO3 center dot Na2CO3 center dot 2H(2)O). We found that the temperature of this phase boundary remains low at least up to 10 kbar, so that this phase transformation maintains its univariant nature in our investigated P-T space. The locus of this phase boundary in a log(pCO(2)) T space is defined as log(pCO(2)) = 0.0240(+/- 0.0001)T - 9.80(+/- 0.06) (with pCO(2) in bar and T in K), in excellent agreement with earlier 1 atm experiments at different partial pressures of CO2 (pCO(2)) and theoretical calculation. Using this equation and literature thermodynamic data, the entropy of trona at 298.15 K is constrained to be 303.8 J mol(-1) K-1, essentially identical to earlier estimates from different methods. Our experimental results have also been used to constrain the genesis of nahcolite in some fluid inclusions of diverse origins, and it is suggested that nahcolite in these occurrences is most likely a daughter mineral which crystallized from the fluids as temperature decreased, rather than an accidentally trapped phase.
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页码:25 / 36
页数:12
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