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Oxygen and carbon isotopes in marine carbonates; a biogenic climate archive built upon disequilibria
Chen Sang and James M. Watkins
Oxygen and carbon isotopes in marine carbonates; a biogenic climate archive built upon disequilibria
Elements (April 2025) 21 (2): 112-117
Oxygen and carbon isotopes in marine carbonates; a biogenic climate archive built upon disequilibria
Elements (April 2025) 21 (2): 112-117
Index Terms/Descriptors
- benthic taxa
- biogenic processes
- biomineralization
- C-13/C-12
- carbon
- carbon cycle
- carbonates
- climate effects
- crystal growth
- Foraminifera
- geochemical cycle
- isotope fractionation
- isotope ratios
- isotopes
- marine environment
- microfossils
- O-18/O-16
- oxygen
- paleoclimatology
- paleoenvironment
- reconstruction
- stable isotopes
- temperature
- time scales
- clumped isotopes
Abstract
The stable isotopic composition of marine biogenic carbonates is one of the main archives for paleoclimate reconstructions. Reading these archives accurately requires understanding of how different organisms make carbonate minerals, and how various biomineralization processes influence stable isotope fractionation. New developments in stable isotope measurements, laboratory experiments, and biomineralization modeling have progressively enabled us to disentangle the environmental and biological controls on the stable isotope proxies, and offer promise for a deeper understanding of how calcifying organisms record and respond to changes in Earth's climate and carbon cycle through geologic time.
ISSN: 1811-5209
EISSN: 1811-5217
Serial Title: Elements
Serial Volume: 21
Serial Issue: 2
Title: Oxygen and carbon isotopes in marine carbonates; a biogenic climate archive built upon disequilibria
Affiliation: Shanghai Jiao University, Laboratory of Submarine Geoscience,
Shanghai,
China
Pages: 112-117
Published: 202504
Text Language: English
Publisher: Mineralogical Society of America and Mineralogical Society of Great Britain and Ireland and Mineralogical Association of Canada and Geochemical Society and Clay Minerals Society,
International
References: 33
Accession Number: 2025-033874
Categories: Isotope geochemistry
Document Type: Serial
Bibliographic Level: Analytic
Illustration Description: illus.
Secondary Affiliation: University of Oregon,
USA,
United States
Country of Publication: International
Secondary Affiliation: GeoRef, Copyright 2025, American Geosciences Institute. Abstract, copyright, Mineralogical Society of America. Reference includes data from GeoScienceWorld, Alexandria, VA, United States
Update Code: 2025