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Author Gabrielli Paolo, Planchon Frederic, Barbante Carlo, Boutron Claude F, Petit Jean Robert, Bulat Sergey, Hong Sungmin, Cozzi Giulio, Cescon Paolo, doi  openurl
  Title Ultra-low rare earth element content in accreted ice from sub-glacial Lake Vostok, Antarctica Type Journal Article
  Year (down) 2009 Publication Geochimica et Cosmochimica Acta Abbreviated Journal  
  Volume 73 Issue 20 Pages 5959-5974  
  Keywords  
  Abstract This paper reports the first rare earth element (REE) concentrations in accreted ice refrozen from sub-glacial Lake Vostok (East Antarctica). REE were determined in various sections of the Vostok ice core in order to geochemically characterize its impurities. Samples were obtained from accreted ice and, for comparison, from the upper glacier ice of atmospheric origin (undisturbed, disturbed and glacial flour ice). REE concentrations ranged between 0.856 pg g1 for Ce and 0.00350.24 pg g1 for Lu in glacier ice, and between <0.124 pg g1 for Ce and <0.00040.02 pg g1 for Lu in accreted ice. Interestingly, the REE concentrations in the upper accreted ice (AC1; characterized by visible aggregates containing a mixture of very fine terrigenous particles) and in the deeper accreted ice (AC2; characterized by transparent ice) are lower than those in fresh water and seawater, respectively. We suggest that such ultra-low concentrations are unlikely to be representative of the real REE content in Lake Vostok, but instead may reflect phase exclusion processes occurring at the ice/water interface during refreezing. In particular, the uneven spatial distribution (on the order of a few cm) and the large range of REE concentrations observed in AC1 are consistent with the occurrence/absence of the aggregates in adjacent ice, and point to the presence of solid-phase concentration/exclusion processes occurring within separate pockets of frazil ice during AC1 formation. Interestingly, if the LREE enrichment found in AC1 was not produced by chemical fractionation occurring in Lake Vostok water, this may reflect a contribution of bedrock material, possibly in combination with aeolian dust released into the lake by melting of the glacier ice. Collectively, this valuable information provides new insight into the accreted ice formation processes, the bedrock geology of East Antarctica as well as the water chemistry and circulation of Lake Vostok.  
  Programme 355  
  Campaign  
  Address  
  Corporate Author Thesis  
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  Language Summary Language Original Title  
  Series Editor Series Title Abbreviated Series Title  
  Series Volume Series Issue Edition  
  ISSN 0016-7037 ISBN Medium  
  Area Expedition Conference  
  Notes Approved yes  
  Call Number Serial 2838  
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