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Anthropogenic disturbance keeps the coastal seafloor biogeochemistry in a transient state.


ABSTRACT: Coastal sediments and continental shelves play a crucial role in global biogeochemistry, as they form the prime site of organic carbon burial. Bottom trawling and dredging are known to increasingly impact the coastal seafloor through relocation and homogenisation of sediments, yet little is known about the effects of such anthropogenic sediment reworking on the overall cycling of carbon and other elements within the coastal seafloor. Here, we document the transient recovery of the seafloor biogeochemistry after an in situ disturbance. Evidence from pore-water data and model simulations reveal a short-term increase in the overall carbon mineralisation rate, as well as a longer-term shift in the redox pathways of organic matter mineralisation, favouring organoclastic sulphate reduction over methane formation. This data suggests that anthropogenic sediment reworking could have a sizeable impact on the carbon cycle in cohesive sediments on continental shelves. This imprint will increase in the near future, along with the growing economic exploitation of the coastal ocean.

SUBMITTER: van de Velde S 

PROVIDER: S-EPMC5883055 | biostudies-literature | 2018 Apr

REPOSITORIES: biostudies-literature

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Anthropogenic disturbance keeps the coastal seafloor biogeochemistry in a transient state.

van de Velde Sebastiaan S   Van Lancker Vera V   Hidalgo-Martinez Silvia S   Berelson William M WM   Meysman Filip J R FJR  

Scientific reports 20180403 1


Coastal sediments and continental shelves play a crucial role in global biogeochemistry, as they form the prime site of organic carbon burial. Bottom trawling and dredging are known to increasingly impact the coastal seafloor through relocation and homogenisation of sediments, yet little is known about the effects of such anthropogenic sediment reworking on the overall cycling of carbon and other elements within the coastal seafloor. Here, we document the transient recovery of the seafloor bioge  ...[more]

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