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Record #179371:

The sea ice in Young Sound: implications for carbon cycling / Ronnie N. Glud, Søren Rysgaard, Michael Kühl, Jens W. Hansen.

Title: The sea ice in Young Sound: implications for carbon cycling / Ronnie N. Glud, Søren Rysgaard, Michael Kühl, Jens W. Hansen.
Author(s): Glud, Ronnie N.
Rysgaard, Søren.
Kühl, Michael.
Hansen, Jens W.
Date: 2007.
In: Meddelelser om Grønland. Bioscience. (2007.), Vol. 58 (2007)
Abstract: Reports details of in situ and laboratory-based microsensor investigations demonstrating that O₂ concentrations at underside of Young Sound ice and within ice-sea matrix are extremely dynamic and strongly regulated by physical processes related to freezing and thawing of sea water rather than biological activity. Also discusses enclosure experiments on sea-ice samples performed in June 2002, revealing high heterotrophic potential causing sea-ice environment to become anoxic within eight days despite concurrent photosynthetic activity.
Notes:

Meddelelser om Grønland. Bioscience. Vol. 58 :62-85 (2007).

Keywords: 54 -- Chemistry.
546.21 -- Oxygen.
546.26 -- Carbon.
551.326.2 -- Floating ice, formation and decay.
551.326.7 -- Sea ice.
551.46 -- Oceanography, physical.
574 -- Ecology.
574.524 -- Trophic levels, aquatic.
582.26 -- Algae.
E6 -- Glaciology: floating ice.
(*3) -- Arctic regions.
(*38) -- Greenland.
(*381.2) -- Kong Frederik den VIIIs Land.
SPRI record no.: 179371

MARCXML

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245 04 ‡aThe sea ice in Young Sound :‡bimplications for carbon cycling /‡cRonnie N. Glud, Søren Rysgaard, Michael Kühl, Jens W. Hansen.
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500 ## ‡aMeddelelser om Grønland. Bioscience. Vol. 58 :62-85 (2007).
520 3# ‡aReports details of in situ and laboratory-based microsensor investigations demonstrating that O₂ concentrations at underside of Young Sound ice and within ice-sea matrix are extremely dynamic and strongly regulated by physical processes related to freezing and thawing of sea water rather than biological activity. Also discusses enclosure experiments on sea-ice samples performed in June 2002, revealing high heterotrophic potential causing sea-ice environment to become anoxic within eight days despite concurrent photosynthetic activity.
650 07 ‡a54 -- Chemistry.‡2udc
650 07 ‡a546.21 -- Oxygen.‡2udc
650 07 ‡a546.26 -- Carbon.‡2udc
650 07 ‡a551.326.2 -- Floating ice, formation and decay.‡2udc
650 07 ‡a551.326.7 -- Sea ice.‡2udc
650 07 ‡a551.46 -- Oceanography, physical.‡2udc
650 07 ‡a574 -- Ecology.‡2udc
650 07 ‡a574.524 -- Trophic levels, aquatic.‡2udc
650 07 ‡a582.26 -- Algae.‡2udc
650 07 ‡aE6 -- Glaciology: floating ice.‡2local
651 #7 ‡a(*3) -- Arctic regions.‡2udc
651 #7 ‡a(*38) -- Greenland.‡2udc
651 #7 ‡a(*381.2) -- Kong Frederik den VIIIs Land.‡2udc
700 1# ‡aGlud, Ronnie N.
700 1# ‡aRysgaard, Søren.
700 1# ‡aKühl, Michael.
700 1# ‡aHansen, Jens W.
773 0# ‡7nnas ‡tMeddelelser om Grønland. Bioscience. ‡gVol. 58 (2007) ‡wSPRI-59085
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