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Methane seep carbonates yield clumped isotope signatures out of equilibrium with formation temperatures
S. J. Loyd
, J. Sample
, R. E. Tripati
, W. F. Defliese
, K. Brooks
, M. Hovland
, M. Torres
, J. Marlow
, L. G. Hancock
, R. Martin
, T. Lyons
, A. E. Tripati
Earth and Sustainability
Research output
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Article
›
peer-review
80
Scopus citations
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Keyphrases
Isotopic Signature
100%
Formation Temperature
100%
Disequilibrium
100%
Out-of-equilibrium
100%
Seep Carbonate
100%
Clumped Isotopes
100%
Methane Seep
100%
Seeps
50%
Authigenic Carbonates
50%
Methane Oxidation
50%
Cold Seep
50%
Environmental Conditions
25%
Ambient Temperature
25%
Methane
25%
Carbon Pools
25%
Carbonate Minerals
25%
Alkalinity
25%
PH Effect
25%
Cold-seep Carbonate
25%
Apparent Temperature
25%
Kinetic Isotope Effect
25%
Rapid Precipitation
25%
Inorganic Carbon
25%
Earth and Planetary Sciences
Methane
100%
Cold Seep
75%
Alkalinity
25%
Carbonate Mineral
25%
Inorganic Carbon
25%