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Sabino, Mathia; Nogarotto, Alessio; Noormets, Riko; Chauhan, Teena; Mollenhauer, Gesine; Hefter, Jens; Tesi, Tommaso: CuO oxidation products (lignin phenols and cutin acids) of upper slope marine sediments deposited over the last 30 thousand years north of the Svalbard archipelago [dataset]. PANGAEA, https://doi.pangaea.de/10.1594/PANGAEA.983939 (dataset in review)

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Abstract:
The dataset presented was used to reconstruct the origin of terrestrial material deposited during the last 30 thousand years on the upper continental slope of the Svalbard archipelago, north of Nordaustlandet (81°16'N, 26°13'E). The material analyzed consisted in muddy sediments from the 4.66 m long gravity core HH11-09GC, retrieved at a water depth of 488 m in September 2011 during a scientific cruise of the R/V Helmer Hanssen. Data on lignin phenols and cutin acids were obtained oxidizing with cupric oxide (CuO) 250-300 mg of dry sediment of 77 samples. The analytical procedure followed Goñi & Montgomery (2000) using a Microwave Accelerated Reaction System (MARS) 6 from CEM. Chromatographic analyses to identify and quantify each compound of interest were performed on an Agilent 7820A Gas Chromatograph coupled with a 5977B Mass Selective Detector in single ion monitoring (SIM), equipped with a Trajan SGE 30 m× 320 μm (0.25 μm-thick film) PB-1 capillary column. The analytical procedures were carried in the organic geochemistry laboratories of Institute of Polar Sciences of the National Research Council in Bologna, Italy. Lignin phenols and cutin acids were used individually or to obtain ratios that provided insights on the degradation state and the origin of terrestrial material archived within the marine sediments.
Keyword(s):
Arctic; Bølling-Allerød; Cutin acids; Lignin phenols; permafrost-climate feedback; Yedoma deposits
Supplement to:
Sabino, Mathia; Nogarotto, Alessio; Noormets, Riko; Chauhan, Teena; Mollenhauer, Gesine; Hefter, Jens; Tesi, Tommaso (submitted): Geochemical Characterization of Permafrost Organic Carbon-Rich Unit Deposited During the Bølling-Allerød in Northern Svalbard Marine Sediments. Journal of Geophysical Research: Biogeosciences
Related to:
Goñi, Miguel A; Montgomery, Shelagh (2000): Alkaline CuO Oxidation with a Microwave Digestion System: Lignin Analyses of Geochemical Samples. Analytical Chemistry, 72(14), 3116-3121, https://doi.org/10.1021/ac991316w
Funding:
Helmholtz Association of German Research Centres (HGF), grant/award no. PIE-0018: German-Italian partnership project between AWI and CNR-ISP on Chronologies for Polar Paleoclimate Archives (PAIGE)
Coverage:
Latitude: 81.267000 * Longitude: 26.217000
Date/Time Start: 2011-09-01T00:00:00 * Date/Time End: 2011-09-01T00:00:00
Minimum DEPTH, sediment/rock: 0.02 m * Maximum DEPTH, sediment/rock: 3.16 m
Event(s):
HH11-09GC * Latitude: 81.270000 * Longitude: 26.220000 * Date/Time: 2011-09-01T00:00:00 * Elevation: -488.0 m * Location: Yermak Plateau * Campaign: HH2011 (HH11) * Basis: Helmer Hanssen * Method/Device: Gravity corer (GC)
Comment:
The research is part of the Programma di Ricerche in Artico, project PAST-HEAT (PermAfroSt Thawing: what Happened to the largest tErrestrial cArbon pool during lasT deglaciation?)
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
1Sample code/labelSample labelSabino, Mathia
2LATITUDELatitudeSabino, MathiaGeocode – Latitude N
3LONGITUDELongitudeSabino, MathiaGeocode – Longitude E
4DEPTH, sediment/rockDepth sedmSabino, MathiaGeocode
5Lignin, per unit mass organic carbonLig/OCmg/gSabino, MathiaMicrowave Accelerated Reaction System, CEM, MARS 6; followed by Gas chromatograph (GC), Agilent, 7820A [Trajan SGE PB-1 column, 30 m × 0.32 mm × 0.25 μm film thickness]; coupled with Mass Selective Detector (MSD) Agilent 5977B [single ion monitoring SIM]
6Cutin, per unit mass organic carbonCut/OCmg/gSabino, MathiaMicrowave Accelerated Reaction System, CEM, MARS 6; followed by Gas chromatograph (GC), Agilent, 7820A [Trajan SGE PB-1 column, 30 m × 0.32 mm × 0.25 μm film thickness]; coupled with Mass Selective Detector (MSD) Agilent 5977B [single ion monitoring SIM]
7Cutin/Lignin ratioCut/LigSabino, MathiaMicrowave Accelerated Reaction System, CEM, MARS 6; followed by Gas chromatograph (GC), Agilent, 7820A [Trajan SGE PB-1 column, 30 m × 0.32 mm × 0.25 μm film thickness]; coupled with Mass Selective Detector (MSD) Agilent 5977B [single ion monitoring SIM]
8Syringaldehyde per unit mass organic carbonSyr/OCmg/gSabino, MathiaMicrowave Accelerated Reaction System, CEM, MARS 6; followed by Gas chromatograph (GC), Agilent, 7820A [Trajan SGE PB-1 column, 30 m × 0.32 mm × 0.25 μm film thickness]; coupled with Mass Selective Detector (MSD) Agilent 5977B [single ion monitoring SIM]
9Acetosyringone per unit mass organic carbonAcetSy/OCmg/gSabino, MathiaMicrowave Accelerated Reaction System, CEM, MARS 6; followed by Gas chromatograph (GC), Agilent, 7820A [Trajan SGE PB-1 column, 30 m × 0.32 mm × 0.25 μm film thickness]; coupled with Mass Selective Detector (MSD) Agilent 5977B [single ion monitoring SIM]
10Syringic acid per unit mass organic carbonSAc/OCmg/gSabino, MathiaMicrowave Accelerated Reaction System, CEM, MARS 6; followed by Gas chromatograph (GC), Agilent, 7820A [Trajan SGE PB-1 column, 30 m × 0.32 mm × 0.25 μm film thickness]; coupled with Mass Selective Detector (MSD) Agilent 5977B [single ion monitoring SIM]
11Vanillin per unit mass organic carbonVA/OCmg/gSabino, MathiaMicrowave Accelerated Reaction System, CEM, MARS 6; followed by Gas chromatograph (GC), Agilent, 7820A [Trajan SGE PB-1 column, 30 m × 0.32 mm × 0.25 μm film thickness]; coupled with Mass Selective Detector (MSD) Agilent 5977B [single ion monitoring SIM]
12Acetovanillone per unit mass organic carbonAV/OCmg/gSabino, MathiaMicrowave Accelerated Reaction System, CEM, MARS 6; followed by Gas chromatograph (GC), Agilent, 7820A [Trajan SGE PB-1 column, 30 m × 0.32 mm × 0.25 μm film thickness]; coupled with Mass Selective Detector (MSD) Agilent 5977B [single ion monitoring SIM]
13Vanillic acid per unit mass organic carbonVAc/OCmg/gSabino, MathiaMicrowave Accelerated Reaction System, CEM, MARS 6; followed by Gas chromatograph (GC), Agilent, 7820A [Trajan SGE PB-1 column, 30 m × 0.32 mm × 0.25 μm film thickness]; coupled with Mass Selective Detector (MSD) Agilent 5977B [single ion monitoring SIM]
14p-Coumaric acid per unit mass organic carbonp-Coumaric acid/OCmg/gSabino, MathiaMicrowave Accelerated Reaction System, CEM, MARS 6; followed by Gas chromatograph (GC), Agilent, 7820A [Trajan SGE PB-1 column, 30 m × 0.32 mm × 0.25 μm film thickness]; coupled with Mass Selective Detector (MSD) Agilent 5977B [single ion monitoring SIM]
15Ferulic acid per unit mass organic carbonC10H10O4/OCmg/gSabino, MathiaMicrowave Accelerated Reaction System, CEM, MARS 6; followed by Gas chromatograph (GC), Agilent, 7820A [Trajan SGE PB-1 column, 30 m × 0.32 mm × 0.25 μm film thickness]; coupled with Mass Selective Detector (MSD) Agilent 5977B [single ion monitoring SIM]
16p-Hydroxybenzaldehyde per unit mass organic carbonPAL/OCmg/gSabino, MathiaMicrowave Accelerated Reaction System, CEM, MARS 6; followed by Gas chromatograph (GC), Agilent, 7820A [Trajan SGE PB-1 column, 30 m × 0.32 mm × 0.25 μm film thickness]; coupled with Mass Selective Detector (MSD) Agilent 5977B [single ion monitoring SIM]
17p-Hydroxyacetophenone per unit mass organic carbonPON/OCmg/gSabino, MathiaMicrowave Accelerated Reaction System, CEM, MARS 6; followed by Gas chromatograph (GC), Agilent, 7820A [Trajan SGE PB-1 column, 30 m × 0.32 mm × 0.25 μm film thickness]; coupled with Mass Selective Detector (MSD) Agilent 5977B [single ion monitoring SIM]
18p-Hydroxybenzoic acid per unit mass organic carbonPAD/OCmg/gSabino, MathiaMicrowave Accelerated Reaction System, CEM, MARS 6; followed by Gas chromatograph (GC), Agilent, 7820A [Trajan SGE PB-1 column, 30 m × 0.32 mm × 0.25 μm film thickness]; coupled with Mass Selective Detector (MSD) Agilent 5977B [single ion monitoring SIM]
193,5-dihydroxybenzoic acid per unit mass organic carbon3,5-Bd/OCmg/gSabino, MathiaMicrowave Accelerated Reaction System, CEM, MARS 6; followed by Gas chromatograph (GC), Agilent, 7820A [Trajan SGE PB-1 column, 30 m × 0.32 mm × 0.25 μm film thickness]; coupled with Mass Selective Detector (MSD) Agilent 5977B [single ion monitoring SIM]
20Syringyl phenols per unit mass organic carbonS/OCmg/gSabino, MathiaMicrowave Accelerated Reaction System, CEM, MARS 6; followed by Gas chromatograph (GC), Agilent, 7820A [Trajan SGE PB-1 column, 30 m × 0.32 mm × 0.25 μm film thickness]; coupled with Mass Selective Detector (MSD) Agilent 5977B [single ion monitoring SIM]
21Vanillyl phenols per unit mass organic carbonV/OCmg/gSabino, MathiaMicrowave Accelerated Reaction System, CEM, MARS 6; followed by Gas chromatograph (GC), Agilent, 7820A [Trajan SGE PB-1 column, 30 m × 0.32 mm × 0.25 μm film thickness]; coupled with Mass Selective Detector (MSD) Agilent 5977B [single ion monitoring SIM]
22Cinnamyl phenols per unit mass organic carbonC/OCmg/gSabino, MathiaMicrowave Accelerated Reaction System, CEM, MARS 6; followed by Gas chromatograph (GC), Agilent, 7820A [Trajan SGE PB-1 column, 30 m × 0.32 mm × 0.25 μm film thickness]; coupled with Mass Selective Detector (MSD) Agilent 5977B [single ion monitoring SIM]
23p-Hydroxyl phenols per unit mass organic carbonP/OCmg/gSabino, MathiaMicrowave Accelerated Reaction System, CEM, MARS 6; followed by Gas chromatograph (GC), Agilent, 7820A [Trajan SGE PB-1 column, 30 m × 0.32 mm × 0.25 μm film thickness]; coupled with Mass Selective Detector (MSD) Agilent 5977B [single ion monitoring SIM]
24Syringyl phenols/vanillyl phenols ratioS/VSabino, MathiaMicrowave Accelerated Reaction System, CEM, MARS 6; followed by Gas chromatograph (GC), Agilent, 7820A [Trajan SGE PB-1 column, 30 m × 0.32 mm × 0.25 μm film thickness]; coupled with Mass Selective Detector (MSD) Agilent 5977B [single ion monitoring SIM]
25Cinnamyl phenols/vanillyl phenols ratioC/VSabino, MathiaMicrowave Accelerated Reaction System, CEM, MARS 6; followed by Gas chromatograph (GC), Agilent, 7820A [Trajan SGE PB-1 column, 30 m × 0.32 mm × 0.25 μm film thickness]; coupled with Mass Selective Detector (MSD) Agilent 5977B [single ion monitoring SIM]
26p-Hydroxyl phenols/vanillyl phenols ratioP/VSabino, MathiaMicrowave Accelerated Reaction System, CEM, MARS 6; followed by Gas chromatograph (GC), Agilent, 7820A [Trajan SGE PB-1 column, 30 m × 0.32 mm × 0.25 μm film thickness]; coupled with Mass Selective Detector (MSD) Agilent 5977B [single ion monitoring SIM]
27Syringic acid/syringaldehyde ratio(Ad/Al)sSabino, MathiaMicrowave Accelerated Reaction System, CEM, MARS 6; followed by Gas chromatograph (GC), Agilent, 7820A [Trajan SGE PB-1 column, 30 m × 0.32 mm × 0.25 μm film thickness]; coupled with Mass Selective Detector (MSD) Agilent 5977B [single ion monitoring SIM]
28Vanillic acid/vanillin ratio(Ad/Al)vSabino, MathiaMicrowave Accelerated Reaction System, CEM, MARS 6; followed by Gas chromatograph (GC), Agilent, 7820A [Trajan SGE PB-1 column, 30 m × 0.32 mm × 0.25 μm film thickness]; coupled with Mass Selective Detector (MSD) Agilent 5977B [single ion monitoring SIM]
293,5-dihydroxybenzoic acid/vanillyl phenols ratio3,5-Bd/VSabino, MathiaMicrowave Accelerated Reaction System, CEM, MARS 6; followed by Gas chromatograph (GC), Agilent, 7820A [Trajan SGE PB-1 column, 30 m × 0.32 mm × 0.25 μm film thickness]; coupled with Mass Selective Detector (MSD) Agilent 5977B [single ion monitoring SIM]
30p-Hydroxyacetophenone/p-hydroxyl phenols ratioPON/PSabino, MathiaMicrowave Accelerated Reaction System, CEM, MARS 6; followed by Gas chromatograph (GC), Agilent, 7820A [Trajan SGE PB-1 column, 30 m × 0.32 mm × 0.25 μm film thickness]; coupled with Mass Selective Detector (MSD) Agilent 5977B [single ion monitoring SIM]
3116-Hydroxyhexadecanoic acid, per unit mass organic carbonC16:0 16-OH/OCmg/gSabino, MathiaMicrowave Accelerated Reaction System, CEM, MARS 6; followed by Gas chromatograph (GC), Agilent, 7820A [Trajan SGE PB-1 column, 30 m × 0.32 mm × 0.25 μm film thickness]; coupled with Mass Selective Detector (MSD) Agilent 5977B [single ion monitoring SIM]
321,16-Hexadecanedioic acid, per unit mass organic carbonC16:0-diacid/OCmg/gSabino, MathiaMicrowave Accelerated Reaction System, CEM, MARS 6; followed by Gas chromatograph (GC), Agilent, 7820A [Trajan SGE PB-1 column, 30 m × 0.32 mm × 0.25 μm film thickness]; coupled with Mass Selective Detector (MSD) Agilent 5977B [single ion monitoring SIM]
3318-Hydroxy-9-octadecenoic acid, per unit mass organic carbonC18:1 18-OH/OCmg/gSabino, MathiaMicrowave Accelerated Reaction System, CEM, MARS 6; followed by Gas chromatograph (GC), Agilent, 7820A [Trajan SGE PB-1 column, 30 m × 0.32 mm × 0.25 μm film thickness]; coupled with Mass Selective Detector (MSD) Agilent 5977B [single ion monitoring SIM]
3410,16-Dihydroxyhexadecanoic acid, per unit mass organic carbon10,16-DHHA/OCmg/gSabino, MathiaMicrowave Accelerated Reaction System, CEM, MARS 6; followed by Gas chromatograph (GC), Agilent, 7820A [Trajan SGE PB-1 column, 30 m × 0.32 mm × 0.25 μm film thickness]; coupled with Mass Selective Detector (MSD) Agilent 5977B [single ion monitoring SIM]
359,16-Dihydroxyhexadecanoic acid, per unit mass organic carbon9,16-DHHA/OCmg/gSabino, MathiaMicrowave Accelerated Reaction System, CEM, MARS 6; followed by Gas chromatograph (GC), Agilent, 7820A [Trajan SGE PB-1 column, 30 m × 0.32 mm × 0.25 μm film thickness]; coupled with Mass Selective Detector (MSD) Agilent 5977B [single ion monitoring SIM]
368,16-Dihydroxyhexadecanoic acid, per unit mass organic carbon8,16-DHHA/OCmg/gSabino, MathiaMicrowave Accelerated Reaction System, CEM, MARS 6; followed by Gas chromatograph (GC), Agilent, 7820A [Trajan SGE PB-1 column, 30 m × 0.32 mm × 0.25 μm film thickness]; coupled with Mass Selective Detector (MSD) Agilent 5977B [single ion monitoring SIM]
377-hydroxy-Hexadecane-1,16-dioic acid, per unit mass organic carbon7-HHDA/OCmg/gSabino, MathiaMicrowave Accelerated Reaction System, CEM, MARS 6; followed by Gas chromatograph (GC), Agilent, 7820A [Trajan SGE PB-1 column, 30 m × 0.32 mm × 0.25 μm film thickness]; coupled with Mass Selective Detector (MSD) Agilent 5977B [single ion monitoring SIM]
388-hydroxy-Hexadecane-1,16-dioic acid, per unit mass organic carbon7-HHDA/OCmg/gSabino, MathiaMicrowave Accelerated Reaction System, CEM, MARS 6; followed by Gas chromatograph (GC), Agilent, 7820A [Trajan SGE PB-1 column, 30 m × 0.32 mm × 0.25 μm film thickness]; coupled with Mass Selective Detector (MSD) Agilent 5977B [single ion monitoring SIM]
License:
Creative Commons Attribution 4.0 International (CC-BY-4.0) (License comes into effect after moratorium ends)
Status:
Curation Level: Enhanced curation (CurationLevelC)
Size:
2688 data points

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