Publication | Closed Access
Isotopic Fractionation during Diffusion of Transition Metal Ions in Solution
107
Citations
20
References
2004
Year
EngineeringTrace Element GeochemistryChemistryZn IonsIon ProcessPure DiffusionChemical EngineeringEnvironmental ChemistryEnvironmental GeochemistryTransport PhenomenaIsotope RatiosAnomalous DiffusionTrace ElementIsotope AnalysisBiogeochemistryIon ExchangeTrace MetalDiffusion ResistanceTransition Metal IonsIsotope GeochemistryDiffusion ProcessStable Isotope ProbingGeochemistryChemical Kinetics
Isotope ratios and elemental concentrations were measured in aqueous solutions sampled at varying distances from sources of Fe or Zn ions. The measurements reveal fractionation of isotopes resulting from pure diffusion in solution. Our data demonstrate that diffusion alone can cause changes in (56)Fe/(54)Fe and (66)Zn/(64)Zn isotope ratios in excess of -0.3 per thousand. These findings thus confirm previous suspicions that transport processes contribute to observed variations in isotopic compositions. Diffusion must therefore be considered when attempting to make inferences from isotope measurements on samples originating from aqueous systems where concentration gradients may develop.
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