Ocean acidification (OA) and nutrient enrichment threaten the persistence of near shore ecosystems, yet little is known about their combined effects on marine organisms. Here, we show that a threefold increase in nitrogen concentrations, simulating enrichment due to coastal eutrophication or consumer excretions, offset the direct negative effects of near-future OA on calcification and photophysiology of the reef-building crustose coralline alga, Porolithon onkodes. Projected near-future pCO2 levels (approx. 850 µatm) decreased calcification by 30% relative to ambient conditions. Conversely, nitrogen enrichment (nitrate + nitrite and ammonium) increased calcification by 90–130% in ambient and high pCO2 treatments, respectively. pCO2 and nitr...
<div><p>Ocean acidification (OA) has important implications for the persistence of coral reef ecosys...
The effect of decreasing aragonite saturation state (Omega Arag) of seawater (elevated pCO2) on calc...
Atmospheric carbon dioxide emissions cause a decrease in the pH and aragonite saturation state of su...
Ocean acidification and coastal nutrient enrichment threaten the persistence of nearshore ecosystems...
Ocean acidification (OA) is predicted to enhance photosynthesis in many marine taxa. However, photop...
Coral reef organisms are increasingly and simultaneously affected by global and local stressors such...
There is a long history of examining the impacts of nutrient pollution and pH on coral reefs. Howeve...
Marine pCO2 enrichment via ocean acidification (OA), upwelling and release from carbon capture and s...
Marine pCO2 enrichment via ocean acidification (OA), upwelling and release from carbon capture and s...
Marine pCO2 enrichment via ocean acidification (OA), upwelling and release from carbon capture and s...
Marine pCO2 enrichment via ocean acidification (OA), upwelling and release from carbon capture and s...
Marine pCO2 enrichment via ocean acidification (OA), upwelling and release from carbon capture and s...
Ocean acidification (OA) has important implications for the persistence of coral reef ecosystems, du...
Anthropogenic CO2 emissions have exacerbated two environmental stressors, global climate warming and...
Ocean acidification (OA) has important implications for the persistence of coral reef ecosystems, du...
<div><p>Ocean acidification (OA) has important implications for the persistence of coral reef ecosys...
The effect of decreasing aragonite saturation state (Omega Arag) of seawater (elevated pCO2) on calc...
Atmospheric carbon dioxide emissions cause a decrease in the pH and aragonite saturation state of su...
Ocean acidification and coastal nutrient enrichment threaten the persistence of nearshore ecosystems...
Ocean acidification (OA) is predicted to enhance photosynthesis in many marine taxa. However, photop...
Coral reef organisms are increasingly and simultaneously affected by global and local stressors such...
There is a long history of examining the impacts of nutrient pollution and pH on coral reefs. Howeve...
Marine pCO2 enrichment via ocean acidification (OA), upwelling and release from carbon capture and s...
Marine pCO2 enrichment via ocean acidification (OA), upwelling and release from carbon capture and s...
Marine pCO2 enrichment via ocean acidification (OA), upwelling and release from carbon capture and s...
Marine pCO2 enrichment via ocean acidification (OA), upwelling and release from carbon capture and s...
Marine pCO2 enrichment via ocean acidification (OA), upwelling and release from carbon capture and s...
Ocean acidification (OA) has important implications for the persistence of coral reef ecosystems, du...
Anthropogenic CO2 emissions have exacerbated two environmental stressors, global climate warming and...
Ocean acidification (OA) has important implications for the persistence of coral reef ecosystems, du...
<div><p>Ocean acidification (OA) has important implications for the persistence of coral reef ecosys...
The effect of decreasing aragonite saturation state (Omega Arag) of seawater (elevated pCO2) on calc...
Atmospheric carbon dioxide emissions cause a decrease in the pH and aragonite saturation state of su...