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Journal of Phycology|September 26, 2019
Photosynthetic Responses of Turf-forming Red Macroalgae to High CO2 ConditionsSophie J McCoy, Alex Santillán-Sarmiento, Murray T Brown, et al.
Ecology|November 10, 2010
Can ocean acidification affect population dynamics of the barnacle Semibalanus balanoides at its southern range edge?Helen S Findlay, Michael T Burrows, Michael A Kendall, et al.
Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences|August 28, 2013
Ocean acidification and rising temperatures may increase biofilm primary productivity but decrease grazer consumptionBayden D Russell, Sean D Connell, Helen S Findlay, et al.
Marine Environmental Research|May 17, 2017
Long-term dynamics in a soft-bottom amphipod community and the influence of the pelagic environmentCarlos Navarro-Barranco, Caroline L McNeill, Claire E Widdicombe, et al.
Frontiers in Microbiology|October 7, 2015
Impact of CO2 leakage from sub-seabed carbon dioxide capture and storage (CCS) reservoirs on benthic virus-prokaryote interactions and functionsEugenio Rastelli, Cinzia Corinaldesi, Antonio Dell'Anno, et al.
Global Change Biology|September 20, 2019
Ocean acidification and hypoxia alter organic carbon fluxes in marine soft sedimentsChiara Ravaglioli, Fabio Bulleri, Saskia Rühl, et al.
The Journal of Experimental Biology|April 18, 2020
The effects of elevated temperature and PCO on the energetics and haemolymph pH homeostasis of juveniles of the European lobster, Homarus gammarusDaniel P Small, Piero Calosi, Samuel P S Rastrick, et al.
Biology Letters|September 9, 2011
Predicting ecosystem shifts requires new approaches that integrate the effects of climate change across entire systemsBayden D Russell, Christopher D G Harley, Thomas Wernberg, et al.
The Science of the Total Environment|March 28, 2021
Artificial light at night alters the activity and feeding behaviour of sandy beach amphipods and pose a threat to their ecological role in Atlantic CanadaK Devon Lynn, Diego Quintanilla-Ahumada, Cristobal Anguita, et al.
Global Change Biology|August 15, 2013
Coralline algal structure is more sensitive to rate, rather than the magnitude, of ocean acidificationNicholas A Kamenos, Heidi L Burdett, Elena Aloisio, et al.
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