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The origin of Zn isotope fractionation in sulfides

机译:硫化物中锌同位素分馏的起源

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摘要

Isotope fractionation of Zn between aqueous sulfide, chloride, and carbonate species (Zn~(2+), Zn(HS)_2, Zn(HS)3-, Zn(HS)42-, ZnS(HS)~-, ZnCl~+, ZnCl_2, ZnHCO3+, and ZnCO_3) was investigated using ab initio methods. Only little fractionation is found between the sulfide species, whereas carbonates are up to 1‰ heavier than the parent solution. At pH>3 and under atmospheric-like CO_2 pressures, isotope fractionation of Zn sulfides precipitated from sulfidic solutions is affected by aqueous sulfide species and the δ~(66)Zn of sulfides reflect these in the parent solutions. Under high PCO2 conditions, carbonate species become abundant. In high PCO2 conditions of hydrothermal solutions, Zn precipitated as sulfides is isotopically nearly unfractionated with respect to a low-pH parent fluid. In contrast, negative δ~(66)Zn down to at least -0.6‰ can be expected in sulfides precipitated from solutions with pH>9. Zinc isotopes in sulfides and rocks therefore represent a potential indicator of mid to high pH in ancient hydrothermal fluids.
机译:硫化氢,氯化物和碳酸盐水溶液(Zn〜(2 +),Zn(HS)_2,Zn(HS)3-,Zn(HS)42-,ZnS(HS)〜-,ZnCl〜之间的Zn同位素分馏使用从头算方法研究了ZnCl_2,ZnHCO3 +和ZnCO_3)。硫化物之间几乎没有分馏,而碳酸盐比母液重达1‰。在pH> 3和类似大气的CO_2压力下,从硫化物溶液中沉淀出来的硫化锌的同位素分馏受硫化物水溶液的影响,硫化物的δ〜(66)Zn反映在母体溶液中。在高PCO2条件下,碳酸盐种类变得丰富。在热溶液的高PCO2条件下,相对于低pH的母液,作为硫化物沉淀的Zn在同位素上几乎未分离。相反,从pH> 9的溶液中析出的硫化物中可预期到至少-0.6‰的负δ〜(66)Zn。因此,硫化物和岩石中的锌同位素代表了古代热液中pH值从中到高的潜在指标。

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