Sediment entrainment into sea ice and transport in the Transpolar Drift: A case study from the Laptev Sea in winter 2011/2012

Sea ice is an important vehicle for sediment transport in the Arctic Ocean. On the Laptev Sea shelf (Siberian Arctic) large volumes of sediment-laden sea ice are formed during freeze-up in autumn, then exported and transported across the Arctic Ocean into Fram Strait where it partly melts. The incor...

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Published inContinental shelf research Vol. 141; pp. 1 - 10
Main Authors Wegner, C., Wittbrodt, K., Hölemann, J.A., Janout, M.A., Krumpen, T., Selyuzhenok, V., Novikhin, A., Polyakova, Ye, Krykova, I., Kassens, H., Timokhov, L.
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Published Elsevier Ltd 01.06.2017
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Abstract Sea ice is an important vehicle for sediment transport in the Arctic Ocean. On the Laptev Sea shelf (Siberian Arctic) large volumes of sediment-laden sea ice are formed during freeze-up in autumn, then exported and transported across the Arctic Ocean into Fram Strait where it partly melts. The incorporated sediments are released, settle on the sea floor, and serve as a proxy for ice-transport in the Arctic Ocean on geological time scales. However, the formation process of sediment-laden ice in the source area has been scarcely observed. Sediment-laden ice was sampled during a helicopter-based expedition to the Laptev Sea in March/April 2012. Sedimentological, biogeochemical and biological studies on the ice core as well as in the water column give insights into the formation process and, in combination with oceanographic process studies, on matter fluxes beneath the sea ice. Based on satellite images and ice drift back-trajectories the sediments were likely incorporated into the sea ice during a mid-winter coastal polynya near one of the main outlets of the Lena River, which is supported by the presence of abundant freshwater diatoms typical for the Lena River phytoplankton, and subsequently transported about 80km northwards onto the shelf. Assuming ice growth of 12–19cm during this period and mean suspended matter content in the newly formed ice of 91.9mgl−1 suggests that a minimum sediment load of 8.4×104t might have been incorporated into sea ice. Extrapolating these sediment loads for the entire Lena Delta region suggests that at least 65% of the estimated sediment loads which are incorporated during freeze-up, and up to 10% of the annually exported sediment load may be incorporated during an event such as described in this paper. •Observations show that formation of sediment-laden sea ice occurs in coastal polynyas in winter.•Sea ice rafted sediments are a significant component of the Laptev Sea’s sediment budget.•No observational evidence for sediment entrainment into sea ice in mid-shelf polynyas at water depth greater than 20m.
AbstractList Sea ice is an important vehicle for sediment transport in the Arctic Ocean. On the Laptev Sea shelf (Siberian Arctic) large volumes of sediment-laden sea ice are formed during freeze-up in autumn, then exported and transported across the Arctic Ocean into Fram Strait where it partly melts. The incorporated sediments are released, settle on the sea floor, and serve as a proxy for ice-transport in the Arctic Ocean on geological time scales. However, the formation process of sediment-laden ice in the source area has been scarcely observed. Sediment-laden ice was sampled during a helicopter-based expedition to the Laptev Sea in March/April 2012. Sedimentological, biogeochemical and biological studies on the ice core as well as in the water column give insights into the formation process and, in combination with oceanographic process studies, on matter fluxes beneath the sea ice. Based on satellite images and ice drift back-trajectories the sediments were likely incorporated into the sea ice during a mid-winter coastal polynya near one of the main outlets of the Lena River, which is supported by the presence of abundant freshwater diatoms typical for the Lena River phytoplankton, and subsequently transported about 80km northwards onto the shelf. Assuming ice growth of 12–19cm during this period and mean suspended matter content in the newly formed ice of 91.9mgl−1 suggests that a minimum sediment load of 8.4×104t might have been incorporated into sea ice. Extrapolating these sediment loads for the entire Lena Delta region suggests that at least 65% of the estimated sediment loads which are incorporated during freeze-up, and up to 10% of the annually exported sediment load may be incorporated during an event such as described in this paper. •Observations show that formation of sediment-laden sea ice occurs in coastal polynyas in winter.•Sea ice rafted sediments are a significant component of the Laptev Sea’s sediment budget.•No observational evidence for sediment entrainment into sea ice in mid-shelf polynyas at water depth greater than 20m.
Author Wittbrodt, K.
Wegner, C.
Hölemann, J.A.
Kassens, H.
Polyakova, Ye
Krumpen, T.
Timokhov, L.
Janout, M.A.
Novikhin, A.
Selyuzhenok, V.
Krykova, I.
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Keywords Laptev Sea
Continental shelf
Siberia
Sea-ice algae
Arctic
Sediment transport
Sea ice
Language English
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Snippet Sea ice is an important vehicle for sediment transport in the Arctic Ocean. On the Laptev Sea shelf (Siberian Arctic) large volumes of sediment-laden sea ice...
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SubjectTerms Arctic
Continental shelf
Laptev Sea
Sea ice
Sea-ice algae
Sediment transport
Siberia
Title Sediment entrainment into sea ice and transport in the Transpolar Drift: A case study from the Laptev Sea in winter 2011/2012
URI https://dx.doi.org/10.1016/j.csr.2017.04.010
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