Mineral dust and elemental black carbon records from an Alpine ice core (Colle Gnifetti glacier) over the last millennium

Black carbon (BC) and mineral dust aerosols were analyzed in an ice core from the Colle Gnifetti glacier (Monte Rosa, Swiss-Italian Alps, 45°55′N, 7°52′E, 4455 m above sea level) using chemical and optical methods. The resulting time series obtained from this summer ice record indicate that BC trans...

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Published in:Journal of Geophysical Research
Main Authors: Thevenon, Florian, Anselmetti, Flavio S., Bernasconi, Stefano M., Schwikowski, Margit
Format: Article in Journal/Newspaper
Language:English
Published: Wiley 2009
Subjects:
Online Access:https://doi.org/10.1029/2008JD011490
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spelling fteawag:oai:dora:eawag_6118 2024-09-09T19:44:51+00:00 Mineral dust and elemental black carbon records from an Alpine ice core (Colle Gnifetti glacier) over the last millennium Thevenon, Florian Anselmetti, Flavio S. Bernasconi, Stefano M. Schwikowski, Margit 2009 https://doi.org/10.1029/2008JD011490 eng eng Wiley Journal of Geophysical Research D: Atmospheres--J. Geophys. Res. D--journals:1630--2169-897X--2169-8996 eawag:6118 journal id: journals:1630 issn: 2169-897X e-issn: 2169-8996 ut: 000269635800002 local: 13946 scopus: 2-s2.0-72049103677 doi:10.1029/2008JD011490 Text Journal Article 2009 fteawag https://doi.org/10.1029/2008JD011490 2024-08-05T03:04:28Z Black carbon (BC) and mineral dust aerosols were analyzed in an ice core from the Colle Gnifetti glacier (Monte Rosa, Swiss-Italian Alps, 45°55′N, 7°52′E, 4455 m above sea level) using chemical and optical methods. The resulting time series obtained from this summer ice record indicate that BC transport was primarily constrained by regional anthropogenic activities, i.e., biomass and fossil fuel combustion. More precisely, the δ 13 C composition of BC suggests that wood combustion was the main source of preindustrial atmospheric BC emissions (C3:C4 ratio of burnt biomass of 75:25). Despite relatively high BC emissions prior to 1570, biomass burning activity and especially C 4 grassland burning abruptly dropped between 1570 and 1750 (C3:C4 ratio of burnt biomass of 90:10), suggesting that agricultural practices strongly decreased in Europe during this cold period of the “Little Ice Age” (LIA). On the other hand, optical analysis revealed that the main source for atmospheric dust transport to the southern parts of the Alps during summer months was driven by large-scale atmospheric circulation control on the dust export from the northern Saharan desert. This southern aerosol source was probably associated with global-scale hydrologic changes, at least partially forced by variability in solar irradiance. In fact, periods of enhanced Saharan dust deposition in the ice core (around 1200–1300, 1430–1520, 1570–1690, 1780–1800, and after 1870) likely reflect drier winters in North Africa, stronger North Atlantic southwesterlies, and increased spring/summer precipitation in west-central Europe. These results, therefore, suggest that the climatic pejorations and the resulting socioeconomic crises, which occurred in Europe during periods of the LIA, could have been indirectly triggered by large-scale meridional advection of air masses and wetter summer climatic conditions. Article in Journal/Newspaper ice core North Atlantic DORA Eawag Monte Rosa ENVELOPE(162.850,162.850,-70.917,-70.917) Journal of Geophysical Research 114 D17
institution Open Polar
collection DORA Eawag
op_collection_id fteawag
language English
description Black carbon (BC) and mineral dust aerosols were analyzed in an ice core from the Colle Gnifetti glacier (Monte Rosa, Swiss-Italian Alps, 45°55′N, 7°52′E, 4455 m above sea level) using chemical and optical methods. The resulting time series obtained from this summer ice record indicate that BC transport was primarily constrained by regional anthropogenic activities, i.e., biomass and fossil fuel combustion. More precisely, the δ 13 C composition of BC suggests that wood combustion was the main source of preindustrial atmospheric BC emissions (C3:C4 ratio of burnt biomass of 75:25). Despite relatively high BC emissions prior to 1570, biomass burning activity and especially C 4 grassland burning abruptly dropped between 1570 and 1750 (C3:C4 ratio of burnt biomass of 90:10), suggesting that agricultural practices strongly decreased in Europe during this cold period of the “Little Ice Age” (LIA). On the other hand, optical analysis revealed that the main source for atmospheric dust transport to the southern parts of the Alps during summer months was driven by large-scale atmospheric circulation control on the dust export from the northern Saharan desert. This southern aerosol source was probably associated with global-scale hydrologic changes, at least partially forced by variability in solar irradiance. In fact, periods of enhanced Saharan dust deposition in the ice core (around 1200–1300, 1430–1520, 1570–1690, 1780–1800, and after 1870) likely reflect drier winters in North Africa, stronger North Atlantic southwesterlies, and increased spring/summer precipitation in west-central Europe. These results, therefore, suggest that the climatic pejorations and the resulting socioeconomic crises, which occurred in Europe during periods of the LIA, could have been indirectly triggered by large-scale meridional advection of air masses and wetter summer climatic conditions.
format Article in Journal/Newspaper
author Thevenon, Florian
Anselmetti, Flavio S.
Bernasconi, Stefano M.
Schwikowski, Margit
spellingShingle Thevenon, Florian
Anselmetti, Flavio S.
Bernasconi, Stefano M.
Schwikowski, Margit
Mineral dust and elemental black carbon records from an Alpine ice core (Colle Gnifetti glacier) over the last millennium
author_facet Thevenon, Florian
Anselmetti, Flavio S.
Bernasconi, Stefano M.
Schwikowski, Margit
author_sort Thevenon, Florian
title Mineral dust and elemental black carbon records from an Alpine ice core (Colle Gnifetti glacier) over the last millennium
title_short Mineral dust and elemental black carbon records from an Alpine ice core (Colle Gnifetti glacier) over the last millennium
title_full Mineral dust and elemental black carbon records from an Alpine ice core (Colle Gnifetti glacier) over the last millennium
title_fullStr Mineral dust and elemental black carbon records from an Alpine ice core (Colle Gnifetti glacier) over the last millennium
title_full_unstemmed Mineral dust and elemental black carbon records from an Alpine ice core (Colle Gnifetti glacier) over the last millennium
title_sort mineral dust and elemental black carbon records from an alpine ice core (colle gnifetti glacier) over the last millennium
publisher Wiley
publishDate 2009
url https://doi.org/10.1029/2008JD011490
long_lat ENVELOPE(162.850,162.850,-70.917,-70.917)
geographic Monte Rosa
geographic_facet Monte Rosa
genre ice core
North Atlantic
genre_facet ice core
North Atlantic
op_relation Journal of Geophysical Research D: Atmospheres--J. Geophys. Res. D--journals:1630--2169-897X--2169-8996
eawag:6118
journal id: journals:1630
issn: 2169-897X
e-issn: 2169-8996
ut: 000269635800002
local: 13946
scopus: 2-s2.0-72049103677
doi:10.1029/2008JD011490
op_doi https://doi.org/10.1029/2008JD011490
container_title Journal of Geophysical Research
container_volume 114
container_issue D17
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