Related Experiment Video
Updated: Dec 29, 2025

Quantitating Iron Transport Across the Mouse Placenta In Vivo Using Nonradioactive Iron Isotopes
Published on: May 10, 2022
Isotopic homogeneity of iron in the early solar nebula
1Department of Earth Sciences, University of Oxford, UK. xiangz@earth.ox.ac.uk
Abstract:
The chemical and isotopic homogeneity of the early solar nebula, and the processes producing fractionation during its evolution, are central issues of cosmochemistry. Studies of the relative abundance variations of three or more isotopes of an element can in principle determine if the initial reservoir of material was a homogeneous mixture or if it contained several distinct sources of precursor material. For example, widespread anomalies observed in the oxygen isotopes of meteorites have been interpreted as resulting from the mixing of a solid phase that was enriched in 16O with a gas phase in which 16O was depleted, or as an isotopic 'memory' of Galactic evolution. In either case, these anomalies are regarded as strong evidence that the early solar nebula was not initially homogeneous. Here we present measurements of the relative abundances of three iron isotopes in meteoritic and terrestrial samples. We show that significant variations of iron isotopes exist in both terrestrial and extraterrestrial materials. But when plotted in a three-isotope diagram, all of the data for these Solar System materials fall on a single mass-fractionation line, showing that homogenization of iron isotopes occurred in the solar nebula before both planetesimal accretion and chondrule formation.
More Related Videos
Related Concept Videos
Mass Spectrometry: Isotope Effect
Nuclear Stability
To hold positively charged protons together...
Isotopes
An element's atomic mass, or weight,...
Atomic Mass
Atomic Emission Spectroscopy: Overview
Atomic Nuclei: Nuclear Spin State Population Distribution

