Dissolved copper in deep-sea pore waters from multi corer SO262_26-1, central equatorial Pacific Ocean

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Hauptverfasser: Paul, Sophie Anna Luise, Schmidt, Katja, Wulf, Miriam, Koschinsky, Andrea
Format: Dataset Open Access
Sprache:en
Veröffentlicht: PANGAEA 2021
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author Paul, Sophie Anna Luise
Schmidt, Katja
Wulf, Miriam
Koschinsky, Andrea
author_facet Paul, Sophie Anna Luise
Schmidt, Katja
Wulf, Miriam
Koschinsky, Andrea
collection Datos científicos de ciencias marinas y ambientales
contents Samples for dissolved (<0.2 µm) copper (Cu) in deep-sea pore waters from the Clarion Clipperton Zone, eastern German license area for polymetallic nodule mining in the Pacific Ocean, were collected with a multicorer in 2018 during cruise SO262. Samples were obtained at 2 cm intervals for the upper 20 cm of sediment through centrifugation and filtration through 0.2 µm polycarbonate syringe filters for trace metal analyses. The goal of this was to assess trace metal concentrations in pore waters and spatial heterogeneity. Samples were analyzed in 2019 by quadrupole ICP-MS in kinetic energy discrimination (KED) mode.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_929450
institution PANGAEA
language en
publishDate 2021
publisher PANGAEA
record_format pangaea
spellingShingle Dissolved copper in deep-sea pore waters from multi corer SO262_26-1, central equatorial Pacific Ocean
Paul, Sophie Anna Luise
Schmidt, Katja
Wulf, Miriam
Koschinsky, Andrea
copper; Copper; Deep sea; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; ICP-MS, Perkin-Elmer, Nexion 350x, KED mode; MUC; MultiCorer; North Pacific Ocean; Pacific Ocean; pore water; Sample code/label; SO262; SO262_26-1; Sonne_2
Samples for dissolved (<0.2 µm) copper (Cu) in deep-sea pore waters from the Clarion Clipperton Zone, eastern German license area for polymetallic nodule mining in the Pacific Ocean, were collected with a multicorer in 2018 during cruise SO262. Samples were obtained at 2 cm intervals for the upper 20 cm of sediment through centrifugation and filtration through 0.2 µm polycarbonate syringe filters for trace metal analyses. The goal of this was to assess trace metal concentrations in pore waters and spatial heterogeneity. Samples were analyzed in 2019 by quadrupole ICP-MS in kinetic energy discrimination (KED) mode.
title Dissolved copper in deep-sea pore waters from multi corer SO262_26-1, central equatorial Pacific Ocean
topic copper; Copper; Deep sea; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; ICP-MS, Perkin-Elmer, Nexion 350x, KED mode; MUC; MultiCorer; North Pacific Ocean; Pacific Ocean; pore water; Sample code/label; SO262; SO262_26-1; Sonne_2
url https://doi.org/10.1594/PANGAEA.929450