The increase in atmospheric carbon dioxide (CO2) observed since the industrial revolution has reduced surface ocean pH by ∼0.1 pH units, with further change in the oceanic system predicted in the coming decades. Calcareous organisms can be negatively affected by extreme changes in seawater pH (pHsw) such as this due to the associated changes in the oceanic carbonate system. The boron isotopic composition (δ11B) of biogenic carbonates has been previously used to monitor pH at the calcification site (pHcf) in scleractinian corals, providing mechanistic insights into coral biomineralisation and the impact of variable pHsw on this process. Motivated by these investigations, this study examines the δ11B of the high-Mg calcite skeleton of the cor...
International audienceOcean acidification threatens the persistence of biogenic calcium carbonate (C...
Corals exert a strong biological control over their calcification processes, but there is a lack of ...
The boron isotopic composition (δ11B) of coral skeleton is a proxy for seawater pH. However, δ11B-ba...
The increase in atmospheric carbon dioxide (CO2) observed since the industrial revolution has reduce...
Coral skeletal growth is sensitive to environmental change and may be adversely impacted by an acidi...
The boron isotope systematics has been determined for azooxanthellate scleractinian corals from a wi...
The boron isotope composition (δ11B) of marine biogenic carbonates has been predominantly studied as...
Boron isotopic and elemental systematics are used to define the vital effects for the temperate shal...
The mechanisms by which tropical hermatypic corals biomineralize to build aragonite skeletal materia...
Coral resilience to ocean acidification is largely determined by the degree of physiological control...
Coccolithophorid algae are microscopic but prolific calcifiers in modern and ancient oceans. When th...
Boron isotopic and elemental systematics are used to define the vital effects for the temperate shal...
Coral skeletal boron isotopes have been established as a proxy for seawater pH, yet it remains uncle...
Coral skeletal boron isotopes have been established as a proxy for seawater pH, yet it remains uncle...
Ocean acidification typically reduces calcification in tropical marine corals but the mechanism for ...
International audienceOcean acidification threatens the persistence of biogenic calcium carbonate (C...
Corals exert a strong biological control over their calcification processes, but there is a lack of ...
The boron isotopic composition (δ11B) of coral skeleton is a proxy for seawater pH. However, δ11B-ba...
The increase in atmospheric carbon dioxide (CO2) observed since the industrial revolution has reduce...
Coral skeletal growth is sensitive to environmental change and may be adversely impacted by an acidi...
The boron isotope systematics has been determined for azooxanthellate scleractinian corals from a wi...
The boron isotope composition (δ11B) of marine biogenic carbonates has been predominantly studied as...
Boron isotopic and elemental systematics are used to define the vital effects for the temperate shal...
The mechanisms by which tropical hermatypic corals biomineralize to build aragonite skeletal materia...
Coral resilience to ocean acidification is largely determined by the degree of physiological control...
Coccolithophorid algae are microscopic but prolific calcifiers in modern and ancient oceans. When th...
Boron isotopic and elemental systematics are used to define the vital effects for the temperate shal...
Coral skeletal boron isotopes have been established as a proxy for seawater pH, yet it remains uncle...
Coral skeletal boron isotopes have been established as a proxy for seawater pH, yet it remains uncle...
Ocean acidification typically reduces calcification in tropical marine corals but the mechanism for ...
International audienceOcean acidification threatens the persistence of biogenic calcium carbonate (C...
Corals exert a strong biological control over their calcification processes, but there is a lack of ...
The boron isotopic composition (δ11B) of coral skeleton is a proxy for seawater pH. However, δ11B-ba...