Geoscience Reference
In-Depth Information
Cohen, A.L. and Holcomb, M. (2009). Why corals care
about ocean acidii cation: uncovering the mechanism.
Oceanography , 2009 , 118-27.
Comeau, S., Gorsky, G., Jeffree, R., Teyssié, J.-L., and Gattuso,
J.-P. (2009). Impact of ocean acidii cation on a key Arctic
pelagic mollusc ( Limacina helicina ). Biogeosciences , 6 , 1877-82.
Doney, S.C., Fabry, V.J., Feely, R.A., and Kleypas, J.A.
(2009). Ocean acidii cation: the other CO 2
on Climate Change (eds B. Metz, O.R. Davidson, P.R.
Bosch, R. Dave, L.A. Meyer). Cambridge University
Press, Cambridge.
Joos, F. and Spahni, R. (2008). Rates of change in natural
and anthropogenic radiative forcing over the past 20,000
years. Proceedings of the National Academy of Sciences
USA , 105 , 1425-30.
Joos, F., Prentice, I.C., Sitch, S. et al. (2001). Global warm-
ing feedbacks on terrestrial carbon uptake under the
Intergovernmental Panel on Climate Change (IPCC)
emission scenarios. Global Biogeochemical Cycles , 15 ,
891-908.
Key, R.M., Kozyr, A., Sabine, C.L. et al. (2004). A global
ocean carbon climatology: results from Global Data
Analysis Project (GLODAP). Global Biogeochemical
Cycles , 18 , GB4031, doi:10.1029/2004GB002247.
Kleypas, J.A., Buddemeier, R.W., Archer, D., Gattuso, J.P.,
Langdon, C., and Opdyke, B.N. (1999). Geochemical
consequences of increased atmospheric carbon dioxide
on coral reefs. Science , 284 , 118-20.
Langdon, C. and Atkinson, M.J. (2005). Effect of elevated
pCO 2 on photosynthesis and calcii cation of corals and
interactions with seasonal change in temperature/irradi-
ance and nutrient enrichment. Journal of Geophysical
Research - Oceans , 110 , C09S07, doi:10.1029/2004JC002576.
Langer, G., Geisen, M., Baumann, K. et al. (2006). Species-
specii c responses of calcifying algae to changing sea-
water carbonate chemistry. Geochemistry, Geophysics,
Geosystems , 7 , Q09006, doi:09010.01029/02005GC001227.
Lüthi, D., Floch, M.L., Bereiter, B. et al. (2008). High-
resolution carbon dioxide concentration record 650,000-
800,000 years before present. Science , 453 , 379-82.
Marland, G., Boden, T.A., and Andres, R.J. (2008). Global,
regional, and national CO 2 emissions . Carbon Dioxide
Information Analysis Center, Oak Ridge National
Laboratory, US Department of Energy, Oak Ridge, TN.
Moss, R.H., Babiker, M., Brinkman, S. et al. (2008). Towards
new scenarios for analysis of emissions, climate change,
impacts, and response strategies , 132 pp. Intergovernmental
Panel on Climate Change, Geneva.
Moss, R.H., Edmonds, J.A., Hibbard, K.A. et al. (2010). The
next generation of scenarios for climate change research
and assessment. Nature , 463 , 747-56.
Müller, M.N., Schulz, K.G., and Riebesell, U. (2010). Effects
of long-term high CO 2 exposure on two species of coc-
colithophores. Biogeosciences , 7 , 1109-16.
Nakic´enovic´, N. Alcamo, J., Davis, G. et al. (2000). Special
report on emissions scenarios . Intergovernmental Panel on
Climate Change, Cambridge University Press, New York.
Orr, J.C., Fabry, V.J., Aumont, O. et al. (2005). Anthropogenic
ocean acidii cation over the twenty-i rst century and its
impact on calcifying organisms. Nature , 437 , 681-6.
problem.
Annual Review of Marine Science , 1 , 169-92.
Edmonds, J., Joos, F., Nakic´enovi ´, N., Richels, R.G., and
Sarmiento, J.L. (2004). Scenarios, targets, gaps and costs.
In: C.B. Field and M.R. Raupach (eds), The global carbon
cycle: integrating humans, climate and the natural world ,
pp. 77-102. Island Press, Washington, DC.
Frank, D.C., Esper, J., Raible, C.C. et al. (2010). Ensemble
reconstruction constraints of the global carbon cycle
sensitivity to climate. Nature , 463 , 527-30.
Frölicher, T.L. and Joos, F. (2010). Reversible and irrevers-
ible impacts of greenhouse gas emissions in multi-cen-
tury projections with the NCAR global coupled carbon
cycle-climate model. Climate Dynamics , 35 , 1439-59.
Gangstø, R., Gehlen, M., Schneider, B., Bopp, L., Aumont, O.,
and Joos, F. (2008). Modeling the marine aragonite cycle:
changes under rising carbon dioxide and its role in shal-
low water CaCO 3 dissolution. Biogeosciences , 5 , 1057-72.
Gehlen, M., Gangstø, R., Schneider, B., Bopp, L., Aumont, O.,
and Ethe, C. (2007). The fate of pelagic CaCO 3 production in
a high CO 2 ocean: a model study. Biogesciences , 4 , 505-19.
Heinze, C. (2004). Simulating oceanic CaCO 3 export pro-
duction in the greenhouse. Geophysical Research Letters ,
31 , L16308, doi:10.1029/2004GL020613.
Hester, K.C., Peltzer, E.T., Kirkwood, W.J., and Brewer,
P.G. (2008). Unanticipated consequences of ocean acidi-
i cation: a noisier ocean at lower pH. Geophysical Research
Letters , 35 , L19601, doi:19610.11029/12008GL034913.
Hoegh-Guldberg, O., Mumby, P.J., Hooten, A.J. et al. (2007).
Coral reefs under rapid climate change and ocean acidi-
i cation. Science , 318 , 1737-42.
Hutchins, D.A., Mulholland, M.R., and Fu, F. (2009).
Nutrient cycles and marine microbes in a CO 2 -enriched
ocean. Oceanography , 22 , 128-45.
Iglesias-Rodriguez, M.D., Halloran, P.R., Rickaby, R.E.M.
et al. (2008). Phytoplankton calcii cation in a high-CO 2
world. Science , 320 , 336-40.
IPCC (2005). IPCC Special Report on Carbon Dioxide
Capture and Storage. Prepared by Working Group III of
the Intergovernmental Panel on Climate Change (eds
Metz, B., O. Davidson, H. C. de Coninck, M. Loos, and
L. A. Meyer). Cambridge University Press, Cambridge.
IPCC (2007). Climate Change 2007: Mitigation.
Contribution of Working Group III to the Fourth
Assessment Report of the Intergovernmental Panel
Search WWH ::




Custom Search