Ocean acidification (OA) may alter the behaviour of sediment-bound metals, modifying their bioavailability and thus toxicity. We provide the first experimental test of this hypothesis with the amphipod Corophium volutator. Amphipods were exposed to two test sediments, one with relatively high metals concentrations (sigma metals 239 mg/kg) and a reference sediment with lower contamination (sigma metals 82 mg/kg) under conditions that mimic current and projected conditions of OA (390 to 1140 μatm pCO2). Survival and DNA damage was measured in the amphipods, while the flux of labile metals was measured in the sediment and water column using Diffusive Gradients in Thin-films. The contaminated sediments became more acutely toxic to C. volutator ...
Copper is essential for healthy cellular functioning, but this heavy metal quickly becomes toxic whe...
The oceans are changing, globally and locally. Two stressors already impacting marine life on both s...
<div><p>Copper is essential for healthy cellular functioning, but this heavy metal quickly becomes t...
Ocean acidification (OA) may alter the behaviour of sediment-bound metals, modifying their bioavaila...
Carbon capture and storage is increasingly being considered one of the most efficient approaches to ...
The speciation and therefore bioavailability of the common pollutant copper is predicted to increase...
This is the author accepted manuscript.The final version is available from the American Chemical Soc...
In undisturbed, metal-contaminated marine sediments, porewater metal concentrations are generally lo...
This is the author accepted manuscript. The final version is available from Elsevier via the DOI in ...
Increased atmospheric CO2 concentrations are causing greater dissolution of CO2 into seawater, and a...
Global ocean pCO2 is increasing as a result of anthropogenic CO2 emissions, driving a decline in sea...
Many benthic communities within estuarine ecosystems are highly degraded due to the close proximity ...
Increased atmospheric CO(2) concentrations are causing greater dissolution of CO(2) into seawater, a...
Published onlineJournal ArticleOcean acidification (OA) is expected to indirectly impact biota livin...
Ocean acidification (OA) may affect sensitivity of marine organisms to metal pollution modulating ch...
Copper is essential for healthy cellular functioning, but this heavy metal quickly becomes toxic whe...
The oceans are changing, globally and locally. Two stressors already impacting marine life on both s...
<div><p>Copper is essential for healthy cellular functioning, but this heavy metal quickly becomes t...
Ocean acidification (OA) may alter the behaviour of sediment-bound metals, modifying their bioavaila...
Carbon capture and storage is increasingly being considered one of the most efficient approaches to ...
The speciation and therefore bioavailability of the common pollutant copper is predicted to increase...
This is the author accepted manuscript.The final version is available from the American Chemical Soc...
In undisturbed, metal-contaminated marine sediments, porewater metal concentrations are generally lo...
This is the author accepted manuscript. The final version is available from Elsevier via the DOI in ...
Increased atmospheric CO2 concentrations are causing greater dissolution of CO2 into seawater, and a...
Global ocean pCO2 is increasing as a result of anthropogenic CO2 emissions, driving a decline in sea...
Many benthic communities within estuarine ecosystems are highly degraded due to the close proximity ...
Increased atmospheric CO(2) concentrations are causing greater dissolution of CO(2) into seawater, a...
Published onlineJournal ArticleOcean acidification (OA) is expected to indirectly impact biota livin...
Ocean acidification (OA) may affect sensitivity of marine organisms to metal pollution modulating ch...
Copper is essential for healthy cellular functioning, but this heavy metal quickly becomes toxic whe...
The oceans are changing, globally and locally. Two stressors already impacting marine life on both s...
<div><p>Copper is essential for healthy cellular functioning, but this heavy metal quickly becomes t...