Changes
On December 17, 2024, 2:04:34 PM UTC,
-
Updated description of Dataset belonging to "Contrasts in the marine inorganic carbon chemistry of the Benguela Upwelling System since the Last Glacial Maximum" from
Upwelling regions are dynamic systems where relatively cold, nutrient- and CO2-rich waters reach to the surface from the deep. CO2 sink or source properties of these regions are dependent not only on the dissolved inorganic carbon content of the upwelled waters, but also on the efficiency of the biological carbon pump that provides constraint on the drawdown of pCO2 in the surface waters. The Benguela Upwelling System (BUS) is a major upwelling region with one of the most productive marine ecosystems today. However, contrasting signals reported on the variation in upwelling intensities based on, for instance, foraminiferal and radiolarian indices from this region over the last glacial cycle indicate that a complete understanding of (local) changes is currently lacking. To reconstruct changes in the CO2 history of the Northern Benguela upwelling region over the last 27 ka BP, we used a box core (64PE450-BC6) and piston core (64PE450-PC8) from the Walvis Ridge. Here, we apply various temperature and pCO2-proxies, representing both surface (UKʹ 37, δ13C of alkenones) and intermediate depth (Mg/Ca, B/Ca, S/Mg, δ11B in planktonic foraminiferal shells) processes. Reconstructed pCO2 records suggest enhanced storage of carbon at depth during the last glacial maximum. The offset between δ13C of planktonic (high δ13C) and benthic foraminifera (low δ13C) suggests an evidence of a more efficient biological carbon pump, potentially fuelled by remote and local iron supply through aeolian transport and dissolution in the shelf regions, effectively preventing release of the stored glacial CO2.
toUpwelling regions are dynamic systems where relatively cold, nutrient- and CO2-rich waters reach to the surface from the deep. CO2 sink or source properties of these regions are dependent not only on the dissolved inorganic carbon content of the upwelled waters, but also on the efficiency of the biological carbon pump which constrains the drawdown of atmospheric CO2 in the surface waters. The Benguela Upwelling System (BUS) is a major upwelling region with one of the most productive marine ecosystems today. However, contrasting signals reported on the variation in upwelling intensities based on, for instance, foraminiferal and radiolarian indices from this region over the last glacial cycle indicate that a complete understanding of (local) changes is currently lacking. To reconstruct changes in the CO2 history of the Northern Benguela upwelling region over the last 27 kyr, we used a box core (64PE450-BC6) and piston core (64PE450-PC8) from the Walvis Ridge. Here, we apply various temperature and pCO2-proxies, representing both surface (UKʹ 37, δ13C of alkenones) and intermediate depth (Mg/Ca, B/Ca, S/Mg, δ11B in planktonic foraminiferal shells) processes. Reconstructed pCO2 records suggest enhanced storage of carbon at depth during the last glacial maximum. The offset between δ13C of planktonic (high δ13C) and benthic foraminifera (low δ13C) suggests an evidence of a more efficient biological carbon pump, potentially fuelled by remote and local iron supply through aeolian transport and dissolution in the shelf regions, effectively preventing release of the stored glacial CO2.
| f | 1 | { | f | 1 | { |
| 2 | "author": "Szabina Karancz (Royal Netherlands Institute for Sea | 2 | "author": "Szabina Karancz (Royal Netherlands Institute for Sea | ||
| 3 | Research)", | 3 | Research)", | ||
| 4 | "author_email": "szabina.karancz@nioz.nl", | 4 | "author_email": "szabina.karancz@nioz.nl", | ||
| 5 | "code": "7b.b.lh", | 5 | "code": "7b.b.lh", | ||
| 6 | "contributor": "Royal Netherlands Institute for Sea Research | 6 | "contributor": "Royal Netherlands Institute for Sea Research | ||
| 7 | (NIOZ)", | 7 | (NIOZ)", | ||
| 8 | "creator_user_id": "6f15d500-326a-48c2-a6f9-c7a3c5452234", | 8 | "creator_user_id": "6f15d500-326a-48c2-a6f9-c7a3c5452234", | ||
| 9 | "creators": | 9 | "creators": | ||
| 10 | id\":\"https://orcid.org/0000-0003-3433-3041\",\"affiliation\":\"Royal | 10 | id\":\"https://orcid.org/0000-0003-3433-3041\",\"affiliation\":\"Royal | ||
| 11 | Netherlands Institute for Sea | 11 | Netherlands Institute for Sea | ||
| 12 | tactemailaddress\":\"szabina.karancz@nioz.nl\",\"formatted\":\"Szabina | 12 | tactemailaddress\":\"szabina.karancz@nioz.nl\",\"formatted\":\"Szabina | ||
| 13 | Karancz - Royal Netherlands Institute for Sea Research - ORCID: | 13 | Karancz - Royal Netherlands Institute for Sea Research - ORCID: | ||
| 14 | https://orcid.org/0000-0003-3433-3041 - Corresponding Author - | 14 | https://orcid.org/0000-0003-3433-3041 - Corresponding Author - | ||
| 15 | szabina.karancz@nioz.nl\"},{\"firstname\":\"Lennart J. | 15 | szabina.karancz@nioz.nl\"},{\"firstname\":\"Lennart J. | ||
| 16 | \",\"lastname\":\"de Nooijer\",\"orcid\":null,\"affiliation\":\"Royal | 16 | \",\"lastname\":\"de Nooijer\",\"orcid\":null,\"affiliation\":\"Royal | ||
| 17 | Netherlands Institute for Sea | 17 | Netherlands Institute for Sea | ||
| 18 | dingauthor\":null,\"contactemailaddress\":null,\"formatted\":\"Lennart | 18 | dingauthor\":null,\"contactemailaddress\":null,\"formatted\":\"Lennart | ||
| 19 | J. de Nooijer - Royal Netherlands Institute for Sea Research - ORCID: | 19 | J. de Nooijer - Royal Netherlands Institute for Sea Research - ORCID: | ||
| 20 | \"},{\"firstname\":\"Bas\",\"lastname\":\"van der | 20 | \"},{\"firstname\":\"Bas\",\"lastname\":\"van der | ||
| 21 | Wagt\",\"orcid\":null,\"affiliation\":\"Royal Netherlands Institute | 21 | Wagt\",\"orcid\":null,\"affiliation\":\"Royal Netherlands Institute | ||
| 22 | for Sea | 22 | for Sea | ||
| 23 | spondingauthor\":null,\"contactemailaddress\":null,\"formatted\":\"Bas | 23 | spondingauthor\":null,\"contactemailaddress\":null,\"formatted\":\"Bas | ||
| 24 | van der Wagt - Royal Netherlands Institute for Sea Research - ORCID: | 24 | van der Wagt - Royal Netherlands Institute for Sea Research - ORCID: | ||
| 25 | \"},{\"firstname\":\"Marcel T. J.\",\"lastname\":\"van der | 25 | \"},{\"firstname\":\"Marcel T. J.\",\"lastname\":\"van der | ||
| 26 | Meer\",\"orcid\":null,\"affiliation\":\"Royal Netherlands Institute | 26 | Meer\",\"orcid\":null,\"affiliation\":\"Royal Netherlands Institute | ||
| 27 | for Sea | 27 | for Sea | ||
| 28 | ndingauthor\":null,\"contactemailaddress\":null,\"formatted\":\"Marcel | 28 | ndingauthor\":null,\"contactemailaddress\":null,\"formatted\":\"Marcel | ||
| 29 | T. J. van der Meer - Royal Netherlands Institute for Sea Research - | 29 | T. J. van der Meer - Royal Netherlands Institute for Sea Research - | ||
| 30 | ORCID: | 30 | ORCID: | ||
| 31 | uddha\",\"lastname\":\"Misra\",\"orcid\":null,\"affiliation\":\"Indian | 31 | uddha\",\"lastname\":\"Misra\",\"orcid\":null,\"affiliation\":\"Indian | ||
| 32 | Institute of | 32 | Institute of | ||
| 33 | ngauthor\":null,\"contactemailaddress\":null,\"formatted\":\"Sambuddha | 33 | ngauthor\":null,\"contactemailaddress\":null,\"formatted\":\"Sambuddha | ||
| 34 | Misra - Indian Institute of Science - ORCID: | 34 | Misra - Indian Institute of Science - ORCID: | ||
| 35 | ick\",\"lastname\":\"Hennekam\",\"orcid\":null,\"affiliation\":\"Royal | 35 | ick\",\"lastname\":\"Hennekam\",\"orcid\":null,\"affiliation\":\"Royal | ||
| 36 | Netherlands Institute for Sea | 36 | Netherlands Institute for Sea | ||
| 37 | pondingauthor\":null,\"contactemailaddress\":null,\"formatted\":\"Rick | 37 | pondingauthor\":null,\"contactemailaddress\":null,\"formatted\":\"Rick | ||
| 38 | Hennekam - Royal Netherlands Institute for Sea Research - ORCID: | 38 | Hennekam - Royal Netherlands Institute for Sea Research - ORCID: | ||
| 39 | Zeynep\",\"lastname\":\"Erdem\",\"orcid\":null,\"affiliation\":\"Royal | 39 | Zeynep\",\"lastname\":\"Erdem\",\"orcid\":null,\"affiliation\":\"Royal | ||
| 40 | Netherlands Institute for Sea | 40 | Netherlands Institute for Sea | ||
| 41 | ndingauthor\":null,\"contactemailaddress\":null,\"formatted\":\"Zeynep | 41 | ndingauthor\":null,\"contactemailaddress\":null,\"formatted\":\"Zeynep | ||
| 42 | Erdem - Royal Netherlands Institute for Sea Research - ORCID: | 42 | Erdem - Royal Netherlands Institute for Sea Research - ORCID: | ||
| 43 | ",\"lastname\":\"Lattaud\",\"orcid\":null,\"affiliation\":\"University | 43 | ",\"lastname\":\"Lattaud\",\"orcid\":null,\"affiliation\":\"University | ||
| 44 | of | 44 | of | ||
| 45 | ondingauthor\":null,\"contactemailaddress\":null,\"formatted\":\"Julie | 45 | ondingauthor\":null,\"contactemailaddress\":null,\"formatted\":\"Julie | ||
| 46 | Lattaud - University of Basel - ORCID: | 46 | Lattaud - University of Basel - ORCID: | ||
| 47 | egar\",\"lastname\":\"Haghipour\",\"orcid\":null,\"affiliation\":\"ETH | 47 | egar\",\"lastname\":\"Haghipour\",\"orcid\":null,\"affiliation\":\"ETH | ||
| 48 | ondingauthor\":null,\"contactemailaddress\":null,\"formatted\":\"Negar | 48 | ondingauthor\":null,\"contactemailaddress\":null,\"formatted\":\"Negar | ||
| 49 | Haghipour - ETH Zurich - ORCID: | 49 | Haghipour - ETH Zurich - ORCID: | ||
| 50 | fan\",\"lastname\":\"Schouten\",\"orcid\":null,\"affiliation\":\"Royal | 50 | fan\",\"lastname\":\"Schouten\",\"orcid\":null,\"affiliation\":\"Royal | ||
| 51 | Netherlands Institute for Sea | 51 | Netherlands Institute for Sea | ||
| 52 | ndingauthor\":null,\"contactemailaddress\":null,\"formatted\":\"Stefan | 52 | ndingauthor\":null,\"contactemailaddress\":null,\"formatted\":\"Stefan | ||
| 53 | Schouten - Royal Netherlands Institute for Sea Research - ORCID: | 53 | Schouten - Royal Netherlands Institute for Sea Research - ORCID: | ||
| 54 | Jan\",\"lastname\":\"Reichart\",\"orcid\":null,\"affiliation\":\"Royal | 54 | Jan\",\"lastname\":\"Reichart\",\"orcid\":null,\"affiliation\":\"Royal | ||
| 55 | Netherlands Institute for Sea | 55 | Netherlands Institute for Sea | ||
| 56 | ingauthor\":null,\"contactemailaddress\":null,\"formatted\":\"Gert-Jan | 56 | ingauthor\":null,\"contactemailaddress\":null,\"formatted\":\"Gert-Jan | ||
| 57 | Reichart - Royal Netherlands Institute for Sea Research - ORCID: | 57 | Reichart - Royal Netherlands Institute for Sea Research - ORCID: | ||
| 58 | \"}]", | 58 | \"}]", | ||
| 59 | "dataset_persistent_id": "DOI:10.25850/nioz/7b.b.lh", | 59 | "dataset_persistent_id": "DOI:10.25850/nioz/7b.b.lh", | ||
| 60 | "deposit_date": "2024-06-21", | 60 | "deposit_date": "2024-06-21", | ||
| 61 | "depositor": "Szabina Karancz (szabina.karancz@nioz.nl)", | 61 | "depositor": "Szabina Karancz (szabina.karancz@nioz.nl)", | ||
| 62 | "distribution_date": "2024-06-21", | 62 | "distribution_date": "2024-06-21", | ||
| 63 | "distributor": "Research Data Management(NIOZ Royal Netherlands | 63 | "distributor": "Research Data Management(NIOZ Royal Netherlands | ||
| 64 | Institute for Sea Research)", | 64 | Institute for Sea Research)", | ||
| 65 | "doi_date_published": "2024-06-21T10:58:31.8851524", | 65 | "doi_date_published": "2024-06-21T10:58:31.8851524", | ||
| 66 | "groups": [], | 66 | "groups": [], | ||
| 67 | "id": "8e9ffdb0-2cf6-488d-bab9-57dae70f6666", | 67 | "id": "8e9ffdb0-2cf6-488d-bab9-57dae70f6666", | ||
| 68 | "isopen": true, | 68 | "isopen": true, | ||
| 69 | "license_id": "CC0-1.0", | 69 | "license_id": "CC0-1.0", | ||
| 70 | "license_title": "CC0 1.0", | 70 | "license_title": "CC0 1.0", | ||
| 71 | "license_url": "https://creativecommons.org/publicdomain/zero/1.0/", | 71 | "license_url": "https://creativecommons.org/publicdomain/zero/1.0/", | ||
| 72 | "maintainer": "Szabina", | 72 | "maintainer": "Szabina", | ||
| 73 | "maintainer_email": "szabina.karancz@nioz.nl", | 73 | "maintainer_email": "szabina.karancz@nioz.nl", | ||
| 74 | "metadata_created": "2024-10-22T18:03:23.690031", | 74 | "metadata_created": "2024-10-22T18:03:23.690031", | ||
| n | 75 | "metadata_modified": "2024-10-29T12:15:38.679471", | n | 75 | "metadata_modified": "2024-12-17T14:04:32.969326", |
| 76 | "name": "dataset-belonging-to-", | 76 | "name": "dataset-belonging-to-", | ||
| 77 | "notes": "Upwelling regions are dynamic systems where relatively | 77 | "notes": "Upwelling regions are dynamic systems where relatively | ||
| 78 | cold, nutrient- and CO2-rich waters reach to the surface from the | 78 | cold, nutrient- and CO2-rich waters reach to the surface from the | ||
| 79 | deep. CO2 sink or source properties of these regions are dependent not | 79 | deep. CO2 sink or source properties of these regions are dependent not | ||
| 80 | only on the dissolved inorganic carbon content of the upwelled waters, | 80 | only on the dissolved inorganic carbon content of the upwelled waters, | ||
| n | 81 | but also on the efficiency of the biological carbon pump that provides | n | 81 | but also on the efficiency of the biological carbon pump which |
| 82 | constraint on the drawdown of pCO2 in the surface waters. The Benguela | 82 | constrains the drawdown of atmospheric CO2 in the surface waters. The | ||
| 83 | Upwelling System (BUS) is a major upwelling region with one of the | 83 | Benguela Upwelling System (BUS) is a major upwelling region with one | ||
| 84 | most productive marine ecosystems today. However, contrasting signals | 84 | of the most productive marine ecosystems today. However, contrasting | ||
| 85 | reported on the variation in upwelling intensities based on, for | 85 | signals reported on the variation in upwelling intensities based on, | ||
| 86 | instance, foraminiferal and radiolarian indices from this region over | 86 | for instance, foraminiferal and radiolarian indices from this region | ||
| 87 | the last glacial cycle indicate that a complete understanding of | 87 | over the last glacial cycle indicate that a complete understanding of | ||
| 88 | (local) changes is currently lacking. To reconstruct changes in the | 88 | (local) changes is currently lacking. To reconstruct changes in the | ||
| 89 | CO2 history of the Northern Benguela upwelling region over the last 27 | 89 | CO2 history of the Northern Benguela upwelling region over the last 27 | ||
| t | 90 | ka BP, we used a box core (64PE450-BC6) and piston core (64PE450-PC8) | t | 90 | kyr, we used a box core (64PE450-BC6) and piston core (64PE450-PC8) |
| 91 | from the Walvis Ridge. Here, we apply various temperature and | 91 | from the Walvis Ridge. Here, we apply various temperature and | ||
| 92 | pCO2-proxies, representing both surface (UK\u02b9 37, \u03b413C of | 92 | pCO2-proxies, representing both surface (UK\u02b9 37, \u03b413C of | ||
| 93 | alkenones) and intermediate depth (Mg/Ca, B/Ca, S/Mg, \u03b411B in | 93 | alkenones) and intermediate depth (Mg/Ca, B/Ca, S/Mg, \u03b411B in | ||
| 94 | planktonic foraminiferal shells) processes. Reconstructed pCO2 records | 94 | planktonic foraminiferal shells) processes. Reconstructed pCO2 records | ||
| 95 | suggest enhanced storage of carbon at depth during the last glacial | 95 | suggest enhanced storage of carbon at depth during the last glacial | ||
| 96 | maximum. The offset between \u03b413C of planktonic (high \u03b413C) | 96 | maximum. The offset between \u03b413C of planktonic (high \u03b413C) | ||
| 97 | and benthic foraminifera (low \u03b413C) suggests an evidence of a | 97 | and benthic foraminifera (low \u03b413C) suggests an evidence of a | ||
| 98 | more efficient biological carbon pump, potentially fuelled by remote | 98 | more efficient biological carbon pump, potentially fuelled by remote | ||
| 99 | and local iron supply through aeolian transport and dissolution in the | 99 | and local iron supply through aeolian transport and dissolution in the | ||
| 100 | shelf regions, effectively preventing release of the stored glacial | 100 | shelf regions, effectively preventing release of the stored glacial | ||
| 101 | CO2.", | 101 | CO2.", | ||
| 102 | "num_resources": 4, | 102 | "num_resources": 4, | ||
| 103 | "num_tags": 10, | 103 | "num_tags": 10, | ||
| 104 | "organization": { | 104 | "organization": { | ||
| 105 | "approval_status": "approved", | 105 | "approval_status": "approved", | ||
| 106 | "created": "2024-10-22T06:06:56.074257", | 106 | "created": "2024-10-22T06:06:56.074257", | ||
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| 112 | "name": "nioz", | 112 | "name": "nioz", | ||
| 113 | "state": "active", | 113 | "state": "active", | ||
| 114 | "title": "Royal Netherlands Institute for Sea Research", | 114 | "title": "Royal Netherlands Institute for Sea Research", | ||
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| 291 | carbon chemistry of the Benguela Upwelling System since the Last | 291 | carbon chemistry of the Benguela Upwelling System since the Last | ||
| 292 | Glacial Maximum\"", | 292 | Glacial Maximum\"", | ||
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| 295 | "version": "1" | 295 | "version": "1" | ||
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