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Paul, Sophie Anna Luise; Zitoun, Rebecca; Noowong, Ann; Manirajah, Mythili; Schmidt, Katja; Wulf, Miriam; Koschinsky, Andrea (2021): Dissolved copper, copper-binding ligands and dissolved organic carbon (DOC) in deep-sea pore waters of the Pacific Ocean [dataset bundled publication]. PANGAEA, https://doi.org/10.1594/PANGAEA.932940

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Abstract:
The release of potentially toxic metals, such as copper (Cu), into the water column is of concern during polymetallic nodule mining. The bioavailability and thus toxicity of Cu is strongly influenced by its speciation which is dominated by organic ligand (L) complexation in seawater, with L-complexes being considered less bioavailable than free Cu2+. The presence of CuL-complexes in deep-sea sediments has, however, not been systematically studied in the context of deep-sea mining. We thus analyzed the dissolved Cu concentration ([dCu]), Cu-binding L concentration ([L]) and DOC concentration in deep-sea pore waters of two polymetallic nodule provinces in the Pacific Ocean, the Peru Basin and the Clarion-Clipperton-Zone. We compared undisturbed sites with 26-year-old disturbance track sites and one 5-week-old site where a small sediment plume resettled.
Keyword(s):
CCZ; copper; Deep sea; DOC; organic ligands; Pacific Ocean; pore water
Supplement to:
Paul, Sophie Anna Luise; Zitoun, Rebecca; Noowong, Ann; Manirajah, Mythili; Koschinsky, Andrea (2021): Copper-binding ligands in deep-sea pore waters of the Pacific Ocean and potential impacts of polymetallic nodule mining on the copper cycle. Scientific Reports, https://doi.org/10.1038/s41598-021-97813-3
Coverage:
Median Latitude: 12.175595 * Median Longitude: -120.130792 * South-bound Latitude: -7.125090 * West-bound Longitude: -125.924517 * North-bound Latitude: 14.135083 * East-bound Longitude: -88.450679
Date/Time Start: 2015-09-01T17:05:53 * Date/Time End: 2019-05-11T11:18:07
Size:
11 datasets

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Datasets listed in this bundled publication

  1. Paul, SAL; Zitoun, R; Noowong, A et al. (2021): Dissolved copper and copper-binding organic ligands in deep-sea pore waters of the central equatorial Pacific Ocean. https://doi.org/10.1594/PANGAEA.929937
  2. Paul, SAL; Schmidt, K; Wulf, M et al. (2021): Dissolved copper in deep-sea pore waters from multi corer SO262_26-1, central equatorial Pacific Ocean. https://doi.org/10.1594/PANGAEA.929450
  3. Paul, SAL; Schmidt, K; Wulf, M et al. (2021): Dissolved copper in deep-sea pore waters from multi corer SO262_63-1, central equatorial Pacific Ocean. https://doi.org/10.1594/PANGAEA.929453
  4. Paul, SAL; Schmidt, K; Wulf, M et al. (2021): Dissolved copper in deep-sea pore waters from multi corer SO262_149-1, central equatorial Pacific Ocean. https://doi.org/10.1594/PANGAEA.929454
  5. Paul, SAL; Koschinsky, A (2021): Dissolved organic carbon (DOC) in deep-sea pore waters from multi corer SO268/1_5-1, central equatorial Pacific Ocean. https://doi.org/10.1594/PANGAEA.929584
  6. Paul, SAL; Koschinsky, A (2021): Dissolved organic carbon (DOC) in deep-sea pore waters from multi corer SO268/1_65-1, central equatorial Pacific Ocean. https://doi.org/10.1594/PANGAEA.929585
  7. Paul, SAL; Koschinsky, A (2021): Dissolved copper in deep-sea pore waters from multi corer SO268/1_74-1, central equatorial Pacific Ocean. https://doi.org/10.1594/PANGAEA.929443
  8. Paul, SAL; Koschinsky, A (2021): Dissolved organic carbon (DOC) in deep-sea pore waters from multi corer SO268/1_74-1, central equatorial Pacific Ocean. https://doi.org/10.1594/PANGAEA.929586
  9. Paul, SAL; Koschinsky, A (2021): Dissolved copper in deep-sea pore waters from multi corer SO268/1_79-1, central equatorial Pacific Ocean. https://doi.org/10.1594/PANGAEA.929442
  10. Paul, SAL; Koschinsky, A (2021): Dissolved organic carbon (DOC) in deep-sea pore waters from multi corer SO268/1_79-1, central equatorial Pacific Ocean. https://doi.org/10.1594/PANGAEA.929587
  11. Paul, SAL; Koschinsky, A (2021): Dissolved organic carbon (DOC) in deep-sea pore waters from multi corer SO268/2_184-1, central equatorial Pacific Ocean. https://doi.org/10.1594/PANGAEA.929589