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Nöthen, Kerstin; Kasten, Sabine (2011): Pore water (SO4, CH4, alkalinity, HS-, Ca, Sr, Mg, Ba) and solid phase (Ca, Sr, Mg, Ba) data measured in pockmark sediments of the Northern Congo Fan [dataset publication series]. PANGAEA, https://doi.org/10.1594/PANGAEA.763522, Supplement to: Nöthen, K; Kasten, S (2011): Reconstructing changes in seep activity by means of pore water and solid phase Sr/Ca and Mg/Ca ratios in pockmark sediments of the Northern Congo Fan. Marine Geology, 287(1-4), 1-13, https://doi.org/10.1016/j.margeo.2011.06.008

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Abstract:
This study focuses on the vertical distribution of authigenic carbonates (aragonite and high Mg-calcite) in the form of finely disseminated precipitates as well as massive carbonate concretions present in and above gas hydrate bearing sediments of the Northern Congo Fan. Analyses of Ca, Mg, Sr and Ba in pore water, bulk sediments and authigenic carbonates were carried out on gravity cores taken from three pockmark structures (Hydrate Hole, Black Hole and Worm Hole). In addition, a background core was retrieved from an area not influenced by fluid seepage. Pore water Sr/Ca and Mg/Ca ratios are used to reveal the current depths of carbonate formation as well as the mineralogy of the authigenic precipitates. The Sr/Ca and Mg/Ca ratios of bulk sediments and massive carbonate concretions were applied to infer the presence and depth distribution of authigenic aragonite and high Mg-calcite, based on the approach presented by Bayon et al. [Bayon et al. (2007). Sr/Ca and Mg/Ca ratios in Niger Delta sediments: Implications for authigenic carbonate genesis in cold seep environments. Marine Geology 241(1–4), 93–109, doi:10.1016/j.margeo.2007.03.007]. We show that the approach developed by Bayon et al. (2007) for sediments of cold seeps of the Niger Delta is also suitable to identify the mineralogy of authigenic carbonates in pockmark sediments of the Congo Deep-Sea Fan. We expand this approach by combining interstitial with solid phase Sr/Ca and Mg/Ca ratios, which demonstrate that high Mg-calcite is the predominant authigenic carbonate that currently forms at the sulfate/methane reaction zone (SMRZ). This is the first study which investigates both solid phase and pore water signatures typical for either aragonite or high Mg-calcite precipitation for the same sediment cores and thus is able to identify active and fossil carbonate precipitation events. At all investigated pockmark sites fossil horizons of the SMRZ were deduced from high Mg-calcite located above and below the current depths of the SMRZ. Additionally, aragonite enrichments typical for high seepage rates were detected close to the sediment surface at these sites. However, active precipitation of aragonite as indicated by pore water characteristics only occurs at the Black Hole site. Dissolved and solid phase Ba concentrations were used to estimate the time the SMRZ was fixed at the current depths of the diagenetic barite fronts. The combined pore water and solid phase elemental ratios (Mg/Ca, Sr/Ca) and Ba concentrations allow the reconstruction of past changes in methane seepage at the investigated pockmark sites. At the Hydrate Hole and Worm Hole sites the time of high methane seepage was estimated to have ceased at least 600 yr BP. In contrast, a more recent change from a high flux to a more dormant stage must have occurred at the Black Hole site as evidenced by active aragonite precipitation at the sediment surface and a lack of diagenetic Ba enrichments.
Project(s):
Coverage:
Median Latitude: -4.794282 * Median Longitude: 9.927465 * South-bound Latitude: -4.813333 * West-bound Longitude: 9.908500 * North-bound Latitude: -4.760167 * East-bound Longitude: 9.942500
Date/Time Start: 2002-12-10T20:24:00 * Date/Time End: 2002-12-18T16:23:00
Event(s):
GeoB8203-3 * Latitude: -4.809333 * Longitude: 9.908500 * Date/Time: 2002-12-10T20:24:00 * Elevation: -3116.0 m * Recovery: 6.56 m * Location: Congo Fan * Campaign: M56/2 * Basis: Meteor (1986) * Method/Device: Gravity corer (GC) * Comment: Olive mud, gas hydrates > 5 m core depth, strong gas release from liners, H2S odour, carbonates, heat flow
GeoB8205-2 * Latitude: -4.813333 * Longitude: 9.924167 * Date/Time: 2002-12-12T14:26:00 * Elevation: -3118.0 m * Recovery: 6.86 m * Location: Congo Fan * Campaign: M56/2 * Basis: Meteor (1986) * Method/Device: Gravity corer (GC) * Comment: Olive mud, gas hydrates > 1 m core depth, strong gas release from liners, H2S carbonates, heat flow
GeoB8208-4 * Latitude: -4.760167 * Longitude: 9.940333 * Date/Time: 2002-12-14T15:05:00 * Elevation: -3121.0 m * Recovery: 7.98 m * Location: Congo Fan * Campaign: M56/2 * Basis: Meteor (1986) * Method/Device: Gravity corer (GC) * Comment: Olive mud, surface 0-20cm lost, gas hydrates > 6m core depth, strong gas release, H2S odour, carbonates, gas voids
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13 datasets

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Datasets listed in this publication series

  1. Nöthen, K; Kasten, S (2011): Table 3: Average Ca, Sr, Mg and Ba concentrations as well as the Ba/Al ratio in the solid phase of the four gravity cores. https://doi.org/10.1594/PANGAEA.763521
  2. Nöthen, K; Kasten, S (2011): Geochemistry measured in pore water of sediment core GeoB8203-3. https://doi.org/10.1594/PANGAEA.763508
  3. Nöthen, K; Kasten, S (2011): Geochemistry measured in solid phase of sediment core GeoB8203-3. https://doi.org/10.1594/PANGAEA.763516
  4. Nöthen, K; Kasten, S (2011): Methane measured in pore water of sediment core GeoB8203-3. https://doi.org/10.1594/PANGAEA.763512
  5. Nöthen, K; Kasten, S (2011): Geochemistry measured in pore water of sediment core GeoB8205-2. https://doi.org/10.1594/PANGAEA.763509
  6. Nöthen, K; Kasten, S (2011): Geochemistry measured in solid phase of sediment core GeoB8205-2. https://doi.org/10.1594/PANGAEA.763517
  7. Nöthen, K; Kasten, S (2011): Geochemistry measured in solid phase of sediment core GeoB8205-2, concretions only. https://doi.org/10.1594/PANGAEA.763520
  8. Nöthen, K; Kasten, S (2011): Methane measured in pore water of sediment core GeoB8205-2. https://doi.org/10.1594/PANGAEA.763513
  9. Nöthen, K; Kasten, S (2011): Geochemistry measured in pore water of sediment core GeoB8208-4. https://doi.org/10.1594/PANGAEA.763510
  10. Nöthen, K; Kasten, S (2011): Geochemistry measured in solid phase of sediment core GeoB8208-4. https://doi.org/10.1594/PANGAEA.763518
  11. Nöthen, K; Kasten, S (2011): Methane measured in pore water of sediment core GeoB8208-4. https://doi.org/10.1594/PANGAEA.763514
  12. Nöthen, K; Kasten, S (2011): Geochemistry measured in pore water of sediment core GeoB8213-2. https://doi.org/10.1594/PANGAEA.763511
  13. Nöthen, K; Kasten, S (2011): Geochemistry measured in solid phase of sediment core GeoB8213-2. https://doi.org/10.1594/PANGAEA.763519