ShopSpell

Calcium Isotopes [Paperback]

$24.99       (Free Shipping)
96 available
  • Category: Books
  • Author:  Griffith, Elizabeth M., Fantle, Matthew S.
  • Author:  Griffith, Elizabeth M., Fantle, Matthew S.
  • ISBN-10:  1108810764
  • ISBN-10:  1108810764
  • ISBN-13:  9781108810760
  • ISBN-13:  9781108810760
  • Publisher:  Cambridge University Press
  • Publisher:  Cambridge University Press
  • Pages:  75
  • Pages:  75
  • Binding:  Paperback
  • Binding:  Paperback
  • Pub Date:  01-Nov-2021
  • Pub Date:  01-Nov-2021
  • SKU:  1108810764-11-MPOD
  • SKU:  1108810764-11-MPOD
  • Item ID: 104535504
  • Seller: ShopSpell
  • Ships in: 2 business days
  • Transit time: Up to 5 business days
  • Delivery by: Oct 01 to Oct 03
  • Notes: Brand new books. Buy now.
Calcium isotopes can be used as a geochemical tracer to quantify rates of carbonate diagenesis in marine sedimentary systems.Precise measurements of the calcium (Ca) isotopes have provided constraints on Ca cycling at global and local scales, and quantified rates of carbonate diagenesis in marine sedimentary systems. Key to applying Ca isotopes as a geochemical tracer is understanding the impact of multiple factors potentially impacting Ca isotopes in the rock record.Precise measurements of the calcium (Ca) isotopes have provided constraints on Ca cycling at global and local scales, and quantified rates of carbonate diagenesis in marine sedimentary systems. Key to applying Ca isotopes as a geochemical tracer is understanding the impact of multiple factors potentially impacting Ca isotopes in the rock record.Precise measurements of the calcium (Ca) isotopes have provided constraints on Ca cycling at global and local scales, and quantified rates of carbonate diagenesis in marine sedimentary systems. Key to applying Ca isotopes as a geochemical tracer of Ca cycling, carbonate (bio)mineralization, and diagenesis is an understanding of the impact of multiple factors potentially impacting Ca isotopes in the rock record. These factors include variations in stable isotopic fractionation factors, the influence of local-scale Ca cycling on Ca isotopic gradients in carbonate settings, carbonate dissolution and reprecipitation, and the relationship between the Ca isotopic composition of seawater and mineral phases that record the secular evolution of seawater chemistry.1. Calcium isotopes as a geochemical tracer of carbonate (bio)mineralization, deposition, and diagenesis; 2. Reconstructing the marine Ca cycle in the geologic past; 3. Materials and methods; 4. Case study  end-Permian mass extinction; 5. Future prospects; 6. Key papers.
Add Review