Downward particle fluxes of biogenic matter and Saharan dust across the equatorial North Atlantic

Massive amounts of Saharan dust are blown from the coast of northern Africa across the Atlantic Ocean towards the Americas each year. This dust has, depending on its chemistry, direct and indirect effects on global climate which include reflection and absorption of solar radiation as well as transpo...

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Published in:Atmospheric Chemistry and Physics
Main Authors: Korte, Laura F., Brummer, Geert-Jan A., Does, Michèlle, Guerreiro, Catarina V., Hennekam, Rick, Hateren, Johannes A., Jong, Dirk, Munday, Chris I., Schouten, Stefan, Stuut, Jan-Berend W.
Format: Other/Unknown Material
Language:English
Published: 2018
Subjects:
Online Access:https://doi.org/10.5194/acp-17-6023-2017
https://www.atmos-chem-phys.net/17/6023/2017/
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spelling ftcopernicus:oai:publications.copernicus.org:acp56111 2023-05-15T17:32:57+02:00 Downward particle fluxes of biogenic matter and Saharan dust across the equatorial North Atlantic Korte, Laura F. Brummer, Geert-Jan A. Does, Michèlle Guerreiro, Catarina V. Hennekam, Rick Hateren, Johannes A. Jong, Dirk Munday, Chris I. Schouten, Stefan Stuut, Jan-Berend W. 2018-09-12 info:eu-repo/semantics/application/pdf https://doi.org/10.5194/acp-17-6023-2017 https://www.atmos-chem-phys.net/17/6023/2017/ eng eng info:eu-repo/grantAgreement/EC/FP7/311152 doi:10.5194/acp-17-6023-2017 https://www.atmos-chem-phys.net/17/6023/2017/ info:eu-repo/semantics/openAccess eISSN: 1680-7324 info:eu-repo/semantics/Text 2018 ftcopernicus https://doi.org/10.5194/acp-17-6023-2017 2019-12-24T09:51:27Z Massive amounts of Saharan dust are blown from the coast of northern Africa across the Atlantic Ocean towards the Americas each year. This dust has, depending on its chemistry, direct and indirect effects on global climate which include reflection and absorption of solar radiation as well as transport and deposition of nutrients and metals fertilizing both ocean and land. To determine the temporal and spatial variability of Saharan dust transport and deposition and their marine environmental effects across the equatorial North Atlantic Ocean, we have set up a monitoring experiment using deep-ocean sediment traps as well as land-based dust collectors. The sediment traps were deployed at five ocean sites along a transatlantic transect between north-west Africa and the Caribbean along 12° N, in a downwind extension of the land-based dust collectors placed at 19° N on the Mauritanian coast in Iouîk. In this paper, we lay out the setup of the monitoring experiment and present the particle fluxes from sediment trap sampling over 24 continuous and synchronized intervals from October 2012 through to November 2013. We establish the temporal distribution of the particle fluxes deposited in the Atlantic and compare chemical compositions with the land-based dust collectors propagating to the downwind sediment trap sites, and with satellite observations of Saharan dust outbreaks. First-year results show that the total mass fluxes in the ocean are highest at the sampling sites in the east and west, closest to the African continent and the Caribbean, respectively. Element ratios reveal that the lithogenic particles deposited nearest to Africa are most similar in composition to the Saharan dust collected in Iouîk. Downwind increasing Al, Fe and K contents suggest a downwind change in the mineralogical composition of Saharan dust and indicate an increasing contribution of clay minerals towards the west. In the westernmost Atlantic Ocean, admixture of re-suspended clay-sized sediments advected towards the deep sediment trap cannot be excluded. Seasonality is most prominent near both continents but generally weak, with mass fluxes dominated by calcium carbonate and clear seasonal maxima of biogenic silica towards the west. The monitoring experiment is now extended, with autonomous dust sampling buoys for better quantification of Saharan dust transport and deposition from source to sink and their impact on fertilization and carbon export to the deep ocean. Other/Unknown Material North Atlantic Copernicus Publications: E-Journals Atmospheric Chemistry and Physics 17 9 6023 6040
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language English
description Massive amounts of Saharan dust are blown from the coast of northern Africa across the Atlantic Ocean towards the Americas each year. This dust has, depending on its chemistry, direct and indirect effects on global climate which include reflection and absorption of solar radiation as well as transport and deposition of nutrients and metals fertilizing both ocean and land. To determine the temporal and spatial variability of Saharan dust transport and deposition and their marine environmental effects across the equatorial North Atlantic Ocean, we have set up a monitoring experiment using deep-ocean sediment traps as well as land-based dust collectors. The sediment traps were deployed at five ocean sites along a transatlantic transect between north-west Africa and the Caribbean along 12° N, in a downwind extension of the land-based dust collectors placed at 19° N on the Mauritanian coast in Iouîk. In this paper, we lay out the setup of the monitoring experiment and present the particle fluxes from sediment trap sampling over 24 continuous and synchronized intervals from October 2012 through to November 2013. We establish the temporal distribution of the particle fluxes deposited in the Atlantic and compare chemical compositions with the land-based dust collectors propagating to the downwind sediment trap sites, and with satellite observations of Saharan dust outbreaks. First-year results show that the total mass fluxes in the ocean are highest at the sampling sites in the east and west, closest to the African continent and the Caribbean, respectively. Element ratios reveal that the lithogenic particles deposited nearest to Africa are most similar in composition to the Saharan dust collected in Iouîk. Downwind increasing Al, Fe and K contents suggest a downwind change in the mineralogical composition of Saharan dust and indicate an increasing contribution of clay minerals towards the west. In the westernmost Atlantic Ocean, admixture of re-suspended clay-sized sediments advected towards the deep sediment trap cannot be excluded. Seasonality is most prominent near both continents but generally weak, with mass fluxes dominated by calcium carbonate and clear seasonal maxima of biogenic silica towards the west. The monitoring experiment is now extended, with autonomous dust sampling buoys for better quantification of Saharan dust transport and deposition from source to sink and their impact on fertilization and carbon export to the deep ocean.
format Other/Unknown Material
author Korte, Laura F.
Brummer, Geert-Jan A.
Does, Michèlle
Guerreiro, Catarina V.
Hennekam, Rick
Hateren, Johannes A.
Jong, Dirk
Munday, Chris I.
Schouten, Stefan
Stuut, Jan-Berend W.
spellingShingle Korte, Laura F.
Brummer, Geert-Jan A.
Does, Michèlle
Guerreiro, Catarina V.
Hennekam, Rick
Hateren, Johannes A.
Jong, Dirk
Munday, Chris I.
Schouten, Stefan
Stuut, Jan-Berend W.
Downward particle fluxes of biogenic matter and Saharan dust across the equatorial North Atlantic
author_facet Korte, Laura F.
Brummer, Geert-Jan A.
Does, Michèlle
Guerreiro, Catarina V.
Hennekam, Rick
Hateren, Johannes A.
Jong, Dirk
Munday, Chris I.
Schouten, Stefan
Stuut, Jan-Berend W.
author_sort Korte, Laura F.
title Downward particle fluxes of biogenic matter and Saharan dust across the equatorial North Atlantic
title_short Downward particle fluxes of biogenic matter and Saharan dust across the equatorial North Atlantic
title_full Downward particle fluxes of biogenic matter and Saharan dust across the equatorial North Atlantic
title_fullStr Downward particle fluxes of biogenic matter and Saharan dust across the equatorial North Atlantic
title_full_unstemmed Downward particle fluxes of biogenic matter and Saharan dust across the equatorial North Atlantic
title_sort downward particle fluxes of biogenic matter and saharan dust across the equatorial north atlantic
publishDate 2018
url https://doi.org/10.5194/acp-17-6023-2017
https://www.atmos-chem-phys.net/17/6023/2017/
genre North Atlantic
genre_facet North Atlantic
op_source eISSN: 1680-7324
op_relation info:eu-repo/grantAgreement/EC/FP7/311152
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https://www.atmos-chem-phys.net/17/6023/2017/
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op_doi https://doi.org/10.5194/acp-17-6023-2017
container_title Atmospheric Chemistry and Physics
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