首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >GIBBS FREE ENERGY OF FORMATION OF KAOLINITE FROM SOLUBILITY MEASUREMENT IN BASIC SOLUTION BETWEEN 60 AND 170-DEGREES-C
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GIBBS FREE ENERGY OF FORMATION OF KAOLINITE FROM SOLUBILITY MEASUREMENT IN BASIC SOLUTION BETWEEN 60 AND 170-DEGREES-C

机译:在60和170度C之间的碱性溶液中溶解度测量产生的高岭石的吉布斯自由能

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摘要

The solubility of a natural hydrothermal kaolinite was measured in buffered alkaline solutions at temperatures ranging from 60 to 170 degrees C. At temperatures below 110 degrees C equilibrium was obtained from undersaturation, while above 110 degrees C two different steady states were obtained, one from undersaturation and another from supersaturation. Raman spectroscopy studies of the solid phases recovered at the end of each run, demonstrated that the ''undersaturated'' experiments attained equilibrium with respect to kaolinite, while the ''supersaturated'' experiments attained equilibrium with an illite-like mineral. Regression of kaolinite solubility products yields a Gibbs free energy of formation of kaolinite (Al2Si2O5(OH)(4)) at 25 degrees C of -907.68 +/- 0.2 kcal/mol. This value is more negative than most literature values, but similar to that generated from calorimetric data by Barany and Kelley (1961). Furthermore, calculated thermodynamic parameters generated from kaolinite solubility obtained in this study are in close agreement with those deduced from boehmite-kaolinite equilibrium data at temperatures higher than 200 degrees C. [References: 75]
机译:在60至170摄氏度的温度范围内,在缓冲的碱性溶液中测量了天然热液高岭石的溶解度。在低于110摄氏度的温度下,由于不饱和而获得了平衡,而在110摄氏度以上时,获得了两种不同的稳态,一种是由于不饱和而产生的。另一个来自过饱和。在每次运行结束时回收的固相的拉曼光谱研究表明,“过饱和”实验与高岭石达到平衡,而“过饱和”实验与伊利石样矿物达到平衡。高岭石溶解度产物的回归产生在25摄氏度下-907.68 +/- 0.2 kcal / mol的高岭石形成的吉布斯自由能(Al2Si2O5(OH)(4))。该值比大多数文献值更负,但类似于Barany和Kelley(1961)从量热数据中得出的值。此外,本研究中获得的由高岭石溶解度产生的计算出的热力学参数与在高于200摄氏度的温度下由勃姆石-高岭石平衡数据推导出的参数紧密一致。[参考文献:75]

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