Pressure Effect on Isotope Fractionation Factor
Asami Sano‐Furukawa, Shoichi Itoh, Akimasa Suzumura, Yuichiro Ueno, Hikaru YAGI, Toru Inoue, Takaaki Kawazoe
Abstract
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Asami Sano‐Furukawa, Shoichi Itoh, Akimasa Suzumura, Yuichiro Ueno, Hikaru YAGI, Toru Inoue, Takaaki Kawazoe
Abstract
Open-access reader
Minerals and rocks exhibit various isotope compositions depending on their origins and histories. In interpreting their isotopic variations, the equilibrium isotope fractionation factor is a key because it depends on the environment parameters such as temperature. Recent studies have shown that the effect of pressure on the isotope fractionation, which was considered negligible compared to temperature, is significant under the conditions of the Earth's interior. In this article we review recent advances in experimental studies to determine the isotope fractionation of iron and hydrogen at high pressure over several GPa, discussing their issues and future perspectives.
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Minerals and rocks exhibit various isotope compositions depending on their origins and histories. In interpreting their isotopic variations, the equilibrium isotope fractionation factor is a key because it depends on the environment parameters such as temperature. Recent studies have shown that the effect of pressure on the isotope fractionation, which was considered negligible compared to temperature, is significant under the conditions of the Earth's interior. In this article we review recent advances in experimental studies to determine the isotope fractionation of iron and hydrogen at high pressure over several GPa, discussing their issues and future perspectives.
Key concepts: Fractionation, Equilibrium fractionation, Mass-independent fractionation, Isotope fractionation, Isotope, Hydrogen isotope, Kinetic isotope effect, Stable isotope ratio