| _version_ | 1867171047483113472 |
|---|---|
| author | Hellige, Inga Baiko, Dariya Geuer, Jana K Imai, Bruna |
| author_facet | Hellige, Inga Baiko, Dariya Geuer, Jana K Imai, Bruna |
| collection | Datos científicos de ciencias marinas y ambientales |
| contents | Porewater was taken from 30 to 50 cm depths in saltmarsh, seagrass and unvegetated areas around the German Bight in 2022 and 2023. Up to 9 points per ecosystem were sampled along a transect. Polysaccharides >5kDa were upconcentrated using AMICON-filtration devide and afterwards freeze dried. Dired samples were resuspended in MilliQ-water and acid hydrolysed (1 M HCl, 24 h, 100°C). Monosaccharides were analysed using anion exchange chromatography with pulsed amperometric detection (HPAEC-PAD, ThermoFisher Dionex ICS-5000+ system equipped with a CarboPac PA10 analytical column (2 x 250 mm) and a CarboPac PA10 guard column (2 x 50 mm)), according to Engel et al. (2011). |
| format | Dataset Open Access |
| id | pangaea_https___doi_org_10_1594_PANGAEA_975016 |
| institution | PANGAEA |
| language | en |
| publishDate | 2025 |
| publisher | PANGAEA |
| record_format | pangaea |
| spellingShingle | Monosaccharides quantified in porewater samples from coastal vegetated ecosystems Hellige, Inga Baiko, Dariya Geuer, Jana K Imai, Bruna Arabinose; carbon dioxide removal; CDRmare; coastal vegetated ecosystems; Comment; Country; DAM CDRmare - sea4soCiety: Searching for solutions for Carbon-sequestration in coastal ecosystems; DATE/TIME; DEPTH, sediment/rock; Ecosystem; Event label; Fucose; Galactosamine; Galactose; Galacturonic acid; GER_HEI_SG_P1_PW; GER_HEI_SG_P2_PW; GER_HEI_SG_P3_PW; GER_HEI_SG_P4_PW; GER_HEI_SG_P5_PW; GER_HEI_SG_P6_PW; GER_HEI_SG_P7_PW; GER_HEI_SG_P8_PW; GER_HEI_SG_P9_PW; GER_HEI_SM_P1_PW; GER_HEI_SM_P2_PW; GER_HEI_SM_P3_PW; GER_HEI_SM_P4_PW; GER_HEI_SM_P7_PW; GER_HEI_SM_P9_PW; GER_HEI_UV_P1_PW; GER_HEI_UV_P2_PW; GER_HEI_UV_P3_PW; GER_HEI_UV_P4_PW; GER_HEI_UV_P5_PW; GER_HEI_UV_P6_PW; GER_HEI_UV_P7_PW; GER_HEI_UV_P8_PW; GER_HEI_UV_P9_PW; GER_MET_SG_P1_PW; GER_MET_SG_P2_PW; GER_MET_SG_P3_PW; GER_MET_SG_P4_PW; GER_MET_SG_P5_PW; GER_MET_SG_P6_PW; GER_MET_SG_P7_PW; GER_MET_SG_P8_PW; GER_MET_SM_P1_PW; GER_MET_SM_P2_PW; GER_MET_SM_P3_PW; GER_MET_SM_P4_PW; GER_MET_SM_P5_PW; GER_MET_SM_P6_PW; GER_MET_SM_P7_PW; GER_MET_SM_P8_PW; GER_MET_SM_P9_PW; GER_MET_UV_P1_PW; GER_MET_UV_P2_PW; GER_MET_UV_P4_PW; GER_MET_UV_P5_PW; GER_MET_UV_P6_PW; GER_MET_UV_P7_PW; GER_MET_UV_P8_PW; GER_NES_SG_P1_PW; GER_NES_SG_P2_PW; GER_NES_SG_P3_PW; GER_NES_SG_P4_PW; GER_NES_SG_P5_PW; GER_NES_SG_P6_PW; GER_NES_SG_P7_PW; GER_NES_SG_P9_PW; GER_NES_SM_P5_PW; GER_NES_SM_P6_PW; GER_NES_UV_P1_PW; GER_NES_UV_P2_PW; GER_NES_UV_P3_PW; GER_NES_UV_P4_PW; GER_NES_UV_P5_PW; GER_NES_UV_P6_PW; GER_NES_UV_P7_PW; GER_NES_UV_P8_PW; GER_NES_UV_P9_PW; GER_SCH_SG_P1_PW; GER_SCH_SG_P5_PW; GER_SCH_SM_P1_PW; GER_SCH_SM_P2_PW; GER_SCH_SM_P4_PW; GER_SCH_SM_P7_PW; GER_SCH_UV_P2_PW; GER_SCH_UV_P3_PW; GER_SCH_UV_P4_PW; GER_WEN_SG_P1_PW; GER_WEN_SG_P2_PW; GER_WEN_SG_P3_PW; GER_WEN_SG_P4_PW; GER_WEN_SG_P6_PW; GER_WEN_SG_P7_PW; GER_WEN_SG_P8_PW; GER_WEN_SG_P9_PW; GER_WEN_SM_P3_PW; GER_WEN_SM_P4_PW; GER_WEN_SM_P5_PW; GER_WEN_SM_P6_PW; GER_WEN_SM_P7_PW; GER_WEN_SM_P8_PW; GER_WEN_SM_P9_PW; GER_WEN_UV_P1_PW; GER_WEN_UV_P2_PW; GER_WEN_UV_P3_PW; GER_WEN_UV_P4_PW; GER_WEN_UV_P5_PW; GER_WEN_UV_P6_PW; GER_WEN_UV_P7_PW; GER_WEN_UV_P8_PW; Gluconic acid; Glucosamine; Glucose; Glucuronic acid; Glycans; Identification; Iduronic acid; Ion chromatograph, Thermo Scientific, Dionex ICS-5000+; LATITUDE; Location; LONGITUDE; Mannose; Mannuronic acid; marine carbon sequestration; Muramic acid; Porewater lance; Research Mission of the German Marine Research Alliance (DAM): Marine carbon sinks in decarbonisation pathways; Rhamnose; s4s_GER-Land_2021_NorthSea; s4s_GER-Land_2022_BalticSea; s4s_GER-Land_2022_NorthSea; s4s_GER-Land_2023_BalticSea; Sampling on land; sea4soCiety; Shovel; SHOVEL; Xylose Porewater was taken from 30 to 50 cm depths in saltmarsh, seagrass and unvegetated areas around the German Bight in 2022 and 2023. Up to 9 points per ecosystem were sampled along a transect. Polysaccharides >5kDa were upconcentrated using AMICON-filtration devide and afterwards freeze dried. Dired samples were resuspended in MilliQ-water and acid hydrolysed (1 M HCl, 24 h, 100°C). Monosaccharides were analysed using anion exchange chromatography with pulsed amperometric detection (HPAEC-PAD, ThermoFisher Dionex ICS-5000+ system equipped with a CarboPac PA10 analytical column (2 x 250 mm) and a CarboPac PA10 guard column (2 x 50 mm)), according to Engel et al. (2011). |
| title | Monosaccharides quantified in porewater samples from coastal vegetated ecosystems |
| topic | Arabinose; carbon dioxide removal; CDRmare; coastal vegetated ecosystems; Comment; Country; DAM CDRmare - sea4soCiety: Searching for solutions for Carbon-sequestration in coastal ecosystems; DATE/TIME; DEPTH, sediment/rock; Ecosystem; Event label; Fucose; Galactosamine; Galactose; Galacturonic acid; GER_HEI_SG_P1_PW; GER_HEI_SG_P2_PW; GER_HEI_SG_P3_PW; GER_HEI_SG_P4_PW; GER_HEI_SG_P5_PW; GER_HEI_SG_P6_PW; GER_HEI_SG_P7_PW; GER_HEI_SG_P8_PW; GER_HEI_SG_P9_PW; GER_HEI_SM_P1_PW; GER_HEI_SM_P2_PW; GER_HEI_SM_P3_PW; GER_HEI_SM_P4_PW; GER_HEI_SM_P7_PW; GER_HEI_SM_P9_PW; GER_HEI_UV_P1_PW; GER_HEI_UV_P2_PW; GER_HEI_UV_P3_PW; GER_HEI_UV_P4_PW; GER_HEI_UV_P5_PW; GER_HEI_UV_P6_PW; GER_HEI_UV_P7_PW; GER_HEI_UV_P8_PW; GER_HEI_UV_P9_PW; GER_MET_SG_P1_PW; GER_MET_SG_P2_PW; GER_MET_SG_P3_PW; GER_MET_SG_P4_PW; GER_MET_SG_P5_PW; GER_MET_SG_P6_PW; GER_MET_SG_P7_PW; GER_MET_SG_P8_PW; GER_MET_SM_P1_PW; GER_MET_SM_P2_PW; GER_MET_SM_P3_PW; GER_MET_SM_P4_PW; GER_MET_SM_P5_PW; GER_MET_SM_P6_PW; GER_MET_SM_P7_PW; GER_MET_SM_P8_PW; GER_MET_SM_P9_PW; GER_MET_UV_P1_PW; GER_MET_UV_P2_PW; GER_MET_UV_P4_PW; GER_MET_UV_P5_PW; GER_MET_UV_P6_PW; GER_MET_UV_P7_PW; GER_MET_UV_P8_PW; GER_NES_SG_P1_PW; GER_NES_SG_P2_PW; GER_NES_SG_P3_PW; GER_NES_SG_P4_PW; GER_NES_SG_P5_PW; GER_NES_SG_P6_PW; GER_NES_SG_P7_PW; GER_NES_SG_P9_PW; GER_NES_SM_P5_PW; GER_NES_SM_P6_PW; GER_NES_UV_P1_PW; GER_NES_UV_P2_PW; GER_NES_UV_P3_PW; GER_NES_UV_P4_PW; GER_NES_UV_P5_PW; GER_NES_UV_P6_PW; GER_NES_UV_P7_PW; GER_NES_UV_P8_PW; GER_NES_UV_P9_PW; GER_SCH_SG_P1_PW; GER_SCH_SG_P5_PW; GER_SCH_SM_P1_PW; GER_SCH_SM_P2_PW; GER_SCH_SM_P4_PW; GER_SCH_SM_P7_PW; GER_SCH_UV_P2_PW; GER_SCH_UV_P3_PW; GER_SCH_UV_P4_PW; GER_WEN_SG_P1_PW; GER_WEN_SG_P2_PW; GER_WEN_SG_P3_PW; GER_WEN_SG_P4_PW; GER_WEN_SG_P6_PW; GER_WEN_SG_P7_PW; GER_WEN_SG_P8_PW; GER_WEN_SG_P9_PW; GER_WEN_SM_P3_PW; GER_WEN_SM_P4_PW; GER_WEN_SM_P5_PW; GER_WEN_SM_P6_PW; GER_WEN_SM_P7_PW; GER_WEN_SM_P8_PW; GER_WEN_SM_P9_PW; GER_WEN_UV_P1_PW; GER_WEN_UV_P2_PW; GER_WEN_UV_P3_PW; GER_WEN_UV_P4_PW; GER_WEN_UV_P5_PW; GER_WEN_UV_P6_PW; GER_WEN_UV_P7_PW; GER_WEN_UV_P8_PW; Gluconic acid; Glucosamine; Glucose; Glucuronic acid; Glycans; Identification; Iduronic acid; Ion chromatograph, Thermo Scientific, Dionex ICS-5000+; LATITUDE; Location; LONGITUDE; Mannose; Mannuronic acid; marine carbon sequestration; Muramic acid; Porewater lance; Research Mission of the German Marine Research Alliance (DAM): Marine carbon sinks in decarbonisation pathways; Rhamnose; s4s_GER-Land_2021_NorthSea; s4s_GER-Land_2022_BalticSea; s4s_GER-Land_2022_NorthSea; s4s_GER-Land_2023_BalticSea; Sampling on land; sea4soCiety; Shovel; SHOVEL; Xylose |
| url | https://doi.org/10.1594/PANGAEA.975016 |