Arctic Ocean deep-sea record of northern Eurasian ice sheet history
RF Spielhagen, KH Baumann, H Erlenkeuser… - Quaternary Science …, 2004 - Elsevier
The sediment composition of deep-sea cores from the central Arctic Ocean, the Fram Strait,
and the Yermak Plateau was analyzed for several parameters to reconstruct the history of …
and the Yermak Plateau was analyzed for several parameters to reconstruct the history of …
The Plio-Pleistocene glaciation of the Barents Sea–Svalbard region: a new model based on revised chronostratigraphy
Based on a revised chronostratigraphy, and compilation of borehole data from the Barents
Sea continental margin, a coherent glaciation model is proposed for the Barents Sea ice …
Sea continental margin, a coherent glaciation model is proposed for the Barents Sea ice …
The organic carbon cycle in the Arctic Ocean
R Stein, RW Macdonald, R Stein, RW MacDonald - 2004 - Springer
Preface the basins of the Arctic Ocean and to present these data in common or parallel
formats. A coherent picture of sediment and organic carbon inputs from the ocean's margins …
formats. A coherent picture of sediment and organic carbon inputs from the ocean's margins …
Late Quaternary stratigraphy and sedimentation patterns in the western Arctic Ocean
Sediment cores from the western Arctic Ocean obtained on the 2005 HOTRAX and some
earlier expeditions have been analyzed to develop a stratigraphic correlation from the …
earlier expeditions have been analyzed to develop a stratigraphic correlation from the …
Towards a better (litho-) stratigraphy and reconstruction of Quaternary paleoenvironment in the Amerasian Basin (Arctic Ocean)
New sediment cores were recovered along two transects from the Canada Basin across the
central Mendeleev Ridge towards the Makarov Basin and the Lomonosov Ridge in the …
central Mendeleev Ridge towards the Makarov Basin and the Lomonosov Ridge in the …
Cenozoic ice‐rafting history of the central Arctic Ocean: Terrigenous sands on the Lomonosov Ridge
K St. John - Paleoceanography, 2008 - Wiley Online Library
The Cenozoic ice‐rafted debris (IRD) history of the central Arctic is reconstructed utilizing the
terrigenous coarse sand fraction in IODP 302 cores from 0 to 273 meters composite depth …
terrigenous coarse sand fraction in IODP 302 cores from 0 to 273 meters composite depth …
A shift in heavy and clay mineral provenance indicates a middle Miocene onset of a perennial sea ice cover in the Arctic Ocean
During the Arctic Coring Expedition (ACEX), a 428‐m‐thick sequence of Upper Cretaceous
to Quaternary sediments was penetrated. The mineralogical composition of the upper 300 m …
to Quaternary sediments was penetrated. The mineralogical composition of the upper 300 m …
Investigation of the Clay Fraction (< 2 m) of the Clay Minerals Society Reference Clays
We studied a set of 15 reference clays from The Clay Minerals Society (CMS) Source Clays
repository. Our aim was to use them as reference materials in our version of the QUAX …
repository. Our aim was to use them as reference materials in our version of the QUAX …
Quaternary Sea-ice history in the Arctic Ocean based on a new Ostracode sea-ice proxy
TM Cronin, L Gemery, WM Briggs Jr… - Quaternary Science …, 2010 - Elsevier
Paleo-sea-ice history in the Arctic Ocean was reconstructed using the sea-ice dwelling
ostracode Acetabulastoma arcticum from late Quaternary sediments from the Mendeleyev …
ostracode Acetabulastoma arcticum from late Quaternary sediments from the Mendeleyev …
[PDF][PDF] Proxy reconstruction of Cenozoic Arctic Ocean sea ice history–from IRD to IP25
This review paper focusses on reconstructions of the long-and short-term history of past
Arctic Ocean sea-ice cover. Based on commonly used sedimentological, geochemical and …
Arctic Ocean sea-ice cover. Based on commonly used sedimentological, geochemical and …