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  • AGE; alkanes; Average chain length, n-Alkanes, C21-C33; Biodiversity; Carbon Preference Index, n-Alkanes; Chironomidae; DEPTH, sediment/rock; deuterium; diatoms; ecosystem dynamics; Gas chromatography-mass spectrometry, following the analytical setup and protocol of Rach et al. (2020); GDGTs; Germany; Haemelsee; Haemelsee_Haem13; Lake Haemelsee, Germany; LOI; n-Alkane; n-Alkane C17; n-Alkane C21; n-Alkane C22; n-Alkane C23; n-Alkane C24; n-Alkane C25; n-Alkane C26; n-Alkane C27; n-Alkane C28; n-Alkane C29; n-Alkane C30; n-Alkane C31; n-Alkane C32; n-Alkane C33; n-Alkane C34; n-Alkane C35; Niederreiter Piston corer; NPC; ORDINAL NUMBER; Pediastrum; XRF  (1)
  • PANGAEA  (1)
  • Wiley
  • 2020-2024  (1)
  • 1990-1994
  • 1940-1944
Collection
Keywords
Publisher
  • PANGAEA  (1)
  • Wiley
Years
  • 2020-2024  (1)
  • 1990-1994
  • 1940-1944
Year
  • 1
    Publication Date: 2024-06-12
    Description: This dataset provides concentrations of n-alkanes for the Lateglacial sediment sequence retrieved from Lake Hämelsee (Germany) in 2013. Concentrations of n-alkanes (ug/g), the Carbon Preference Index (CPI) and the Average Chain Length C21-C33 (ACL) are all presented against both depth (m) and age (cal yr. BP). The n-alkane concentration data provides information on the Lateglacial dynamics of local plant productivity, whereas the ACL and CPI of the sediment samples were determined to estimate origin and preservation condition. A total of 167 samples from the Lateglacial section of the core were processed using a Dionex 350 accelerated solvent extraction (ASE) system. Solid phase extraction (SPE) was used to separate the extracts into an aliphatic, aromatic and alcohol/fatty acid fraction. Separation was achieved by loading the extracts on activated silica columns and eluting each fraction with hexane, hexane/DCM (1:1 v/v) and DCM/MeOH (9:1 v/v) successively. The aliphatic fraction, containing the n-alkanes, was analyzed by gas chromatography-mass spectrometry (GC/MS). The peak areas for each n-alkane homologue were compared to the peak areas from an internal standard (5α-androstane) and an external n-alkane standard mixture for absolute quantification. We refer to Rach et al. (2020) for further details on the exact analytical setup. All measurements were performed in the laboratories of GeoForschungsZentrum Potsdam.
    Keywords: AGE; alkanes; Average chain length, n-Alkanes, C21-C33; Biodiversity; Carbon Preference Index, n-Alkanes; Chironomidae; DEPTH, sediment/rock; deuterium; diatoms; ecosystem dynamics; Gas chromatography-mass spectrometry, following the analytical setup and protocol of Rach et al. (2020); GDGTs; Germany; Haemelsee; Haemelsee_Haem13; Lake Haemelsee, Germany; LOI; n-Alkane; n-Alkane C17; n-Alkane C21; n-Alkane C22; n-Alkane C23; n-Alkane C24; n-Alkane C25; n-Alkane C26; n-Alkane C27; n-Alkane C28; n-Alkane C29; n-Alkane C30; n-Alkane C31; n-Alkane C32; n-Alkane C33; n-Alkane C34; n-Alkane C35; Niederreiter Piston corer; NPC; ORDINAL NUMBER; Pediastrum; XRF
    Type: Dataset
    Format: text/tab-separated-values, 3173 data points
    Location Call Number Expected Availability
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