
Non-Traditional Stable Isotopes
Description
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The development of multi-collector inductively coupled plasma mass spectrometry (MC-ICPMS) makes it possible to precisely measure non-traditional stable isotopes. This volume reviews the current status of non-traditional isotope geochemistry from analytical, theoretical, and experimental approaches to analysis of natural samples. In particular, important applications to cosmochemistry, high-temperature geochemistry, low-temperature geochemistry, and geobiology are discussed.
This volume provides the most comprehensive review on non-traditional isotope geochemistry for students and researchers who are interested in both the theory and applications of non-traditional stable isotope geochemistry.
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Persons
Fang-Zhen Teng, James Watkins, Nicolas Dauphas.
Content
- Intro
- Table of Contents
- 1. Non-Traditional Stable Isotopes: Retrospective and Prospective
- 2. Equilibrium Fractionation of Non-traditional Isotopes: a Molecular Modeling Perspective
- 3. Equilibrium Fractionation of Non-traditional Stable Isotopes: an Experimental Perspective
- 4. Kinetic Fractionation of Non-Traditional Stable Isotopes by Diffusion and Crystal Growth Reactions
- 5. In Situ Analysis of Non-Traditional Isotopes by SIMS and LA-MC-ICP-MS: Key Aspects and the Example of Mg Isotopes in Olivines and Silicate Glasses
- 6. Lithium Isotope Geochemistry
- 7. Magnesium Isotope Geochemistry
- 8. Silicon Isotope Geochemistry
- 9. Chlorine Isotope Geochemistry
- 10. Chromium Isotope Geochemistry
- 11. Iron Isotope Systematics
- 12. The Isotope Geochemistry of Ni
- 13. The Isotope Geochemistry of Zinc and Copper
- 14. Germanium Isotope Geochemistry
- 15. Selenium Isotopes as a Biogeochemical Proxy in Deep Time
- 16. Good Golly, Why Moly? The Stable Isotope Geochemistry of Molybdenum
- 17. Recent Developments in Mercury Stable Isotope Analysis
- 18. Investigation and Application of Thallium Isotope Fractionation
- 19. Uranium Isotope Fractionation
- 20. Medical Applications of Isotope Metallomics
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