Recent changes to the Gulf Stream causing widespread gas hydrate destabilization
Author:
Publisher
Springer Science and Business Media LLC
Subject
Multidisciplinary
Link
http://www.nature.com/articles/nature11528.pdf
Reference30 articles.
1. Lynch-Stieglitz, J., Curry, W. & Slowey, N. Weaker Gulf Stream in the Florida Straits during the Last Glacial Maximum. Nature 402, 644–648 (1999)
2. Lynch-Stieglitz, J., Schmidt, M. W. & Curry, W. Evidence from the Florida Straits for Younger Dryas ocean circulation changes. Paleoceanography 26, PA1205, https://doi.org/10.1029/2010PA002032 (2011)
3. Winguth, A., Shellito, C., Shields, C. & Winguth, C. Climate response at the Paleocene-Eocene Thermal Maximum to greenhouse gas forcing — a model study with CCSM3. J. Clim. 23, 2562–2584 (2010)
4. Dickens, G. R. The potential volume of oceanic methane hydrates with variable external conditions. Org. Geochem. 32, 1179–1193 (2001)
5. Hornbach, M. J., Saffer, D. M. & Holbrook, W. S. Critically pressured free-gas reservoirs below gas-hydrate provinces. Nature 427, 142–144 (2004)
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