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Zinc isotope fractionation under vaporization processes and in aqueous solutions
Jixi Zhang;Yun Liu
2018
Source PublicationActa Geochim
Volume37Issue:5Pages:663–675
Abstract

Equilibrium Zn isotope fractionation was investigated using first-principles quantum chemistry methods at the B3LYP/6-311G* level. The volume variable cluster model method was used to calculate isotope fractionation factors of sphalerite, smithsonite, calcite, anorthite, forsterite, and enstatite. The water-droplet method was used to calculate Zn isotope fractionation factors of Zn2?-bearing aqueous species; their reduced partition function ratio factors decreased in the order Zn Hð Þ 2O 6 2þ [ ZnCl Hð Þ 2O 5 þ [ ZnCl2ð Þ H2O 4 [ ZnCl3ð Þ H2O 2 [ZnCl4 2. Gaseous ZnCl2 was also calculated for vaporization processes. Kinetic isotope fractionation of diffusional processes in a vacuum was directly calculated using formulas provided by Richter and co-workers. Our calculations show that in addition to the kinetic isotope effect of diffusional processes, equilibrium isotope fractionation also contributed nontrivially to observed Zn isotope fractionation of vaporization processes. The calculated net Zn isotope fractionation of vaporization processes was 7–7.5%, with ZnCl2 as the gaseous species. This matches experimental observations of the range of Zn isotope distribution of lunar samples. Therefore, vaporization processes may be the cause of the large distribution of Zn isotope signals found on the Moon. However, we cannot further distinguish the origin of such vaporization processes; it might be due either to igneous rock melting in meteorite bombardments or to a giant impact event. Furthermore, isotope fractionation between Zn-bearing aqueous species and minerals that we have provided helps explain Zn isotope data in the fields of ore deposits and petrology.

KeywordEvaporation Process zInc Isotope kInetic Isotope Fractionation equilibrium Fractionation zInc Species In Solution
Indexed ByEI
Language英语
Document Type期刊论文
Identifierhttp://ir.gyig.ac.cn/handle/42920512-1/10627
Collection矿床地球化学国家重点实验室
Affiliation1.School of Karst Science, Guizhou Normal University/State Engineering Technology Institute for Karst Desertification Control, Guiyang 550001, China
2.State Key Laboratory of Ore Deposit Geochemistry, Institute of Geochemistry, Chinese Academy of Sciences, Guiyang 550081, China
Recommended Citation
GB/T 7714
Jixi Zhang;Yun Liu. Zinc isotope fractionation under vaporization processes and in aqueous solutions[J]. Acta Geochim,2018,37(5):663–675.
APA Jixi Zhang;Yun Liu.(2018).Zinc isotope fractionation under vaporization processes and in aqueous solutions.Acta Geochim,37(5),663–675.
MLA Jixi Zhang;Yun Liu."Zinc isotope fractionation under vaporization processes and in aqueous solutions".Acta Geochim 37.5(2018):663–675.
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