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Metamorphic Fluids and Global Environmental Changes

Elements (2010) 6 (3): 179-182.
This article has been cited by the following articles in journals that are participating in CrossRef Cited-by Linking.
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Decarbonation in the Ca-Mg-Fe carbonate system at mid-crustal pressure as a function of temperature and assimilation with arc magmas – Implications for long-term climate
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Metamorphic CO2 Production in Collisional Orogens: Petrological Constraints from Phase Diagram Modeling of Himalayan, Scapolite-bearing, Calc-silicate Rocks in the NKC(F)MAS(T)-HC system
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Atmospheric carbon dioxide and climate change since the Late Jurassic (150Ma) derived from a global carbon cycle model
Palaeogeography, Palaeoclimatology, Palaeoecology (2016) 454: 82.
Thermogenic methane release as a cause for the long duration of the PETM
Proceedings of the National Academy of Sciences (2016) 113 (43): 12059.
An integrated carbon isotope record of an end-Permian crater lake above a phreatomagmatic pipe of the Siberian Traps
Palaeogeography, Palaeoclimatology, Palaeoecology (2015) 428: 39.
Skarn xenolith record crustal CO2 liberation during Pompeii and Pollena eruptions, Vesuvius volcanic system, central Italy
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Numerical constraints on degassing of metamorphic CO2during the Neoproterozoic Franklin large igneous event, Arctic Canada
Geological Society of America Bulletin (2014) 126 (5-6): 759.
Modeling fluid flow in sedimentary basins with sill intrusions: Implications for hydrothermal venting and climate change
Geochemistry, Geophysics, Geosystems (2013) 14 (12): 5244.
Metamorphic carbon fluxes: how much and how fast?
Geology (2011) 39 (1): 95.
The impact of host-rock composition on devolatilization of sedimentary rocks during contact metamorphism around mafic sheet intrusions
Geochemistry, Geophysics, Geosystems (2011) 12 (10): n/a.
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