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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Equilibrium isotopic fractionation in the kaolinite, quartz, water system: Prediction from first-principles density-functional theory
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Equilibrium isotopic fractionation in the kaolinite, quartz, water system: Prediction from first-principles density-functional theory

机译:高岭石,石英,水系统中的同位素同位素分馏:根据第一性原理密度泛函理论的预测

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摘要

Isotopic fractionation factors for oxygen, hydrogen and silicon have been calculated using first-principles methods for the kaolinite, quartz, water (ice and gas water) system. Good agreement between theory and experiment is obtained for mineral-water oxygen isotope fractionation. This approach gives reliable results on isotopic fractionation factors as a function of temperature, within a relative precision of typically 5%. These calculations provide independent quantitative constraints on the internal fractionation of oxygen in kaolinite, the fractionation of silicon isotopes at equilibrium, or hydrogen fractionation between kaolinite and water. Calculated fractionation factors at 300 K are 12.5 parts per thousand for the kaolinite internal-fractionation of oxygen, and 1.6 parts per thousand for silicon fractionation between quartz and kaolinite. (c) 2007 Elsevier Ltd. All rights reserved.
机译:氧,氢和硅的同位素分馏因子已使用高岭石,石英,水(冰和气水)系统的第一原理方法进行了计算。矿泉水-氧同位素分馏理论与实验结果吻合良好。这种方法可以得到可靠的同位素分馏因子随温度变化的结果,相对精度通常为5%。这些计算为高岭石中氧的内部分馏,平衡时的硅同位素分馏或高岭石与水之间的氢分馏提供了独立的定量约束。对于氧的高岭石内部分馏,在300 K时计算出的分馏因子为千分之12.5,对于石英与高岭石之间的硅分馏,计算出的千分之1.6。 (c)2007 Elsevier Ltd.保留所有权利。

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