Dust record in an ice core from tropical Andes (Nevado Illimani – Bolivia), potential for climate variability analyses in the Amazon basin

Understanding the mechanisms controlling glacial retreat in the tropical Andes can strengthen future predictions of ice cover in the region. As glaciers are a dominant freshwater source in these regions, accurate ice cover predictions are necessary for developing effective strategies to protect futu...

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Main Authors: Lindau, Filipe Gaudie Ley, Simões, Jefferson Cardia, Ribeiro, Rafael da Rocha, Ginot, Patrick, Delmonte, Barbara, Baccolo, Giovanni, Kutuzov, Stanislav, Maggi, Valter, Ramirez, Edson
Format: Text
Language:English
Published: 2020
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Online Access:https://doi.org/10.5194/cp-2020-129
https://cp.copernicus.org/preprints/cp-2020-129/
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spelling ftcopernicus:oai:publications.copernicus.org:cpd89941 2023-05-15T16:38:59+02:00 Dust record in an ice core from tropical Andes (Nevado Illimani – Bolivia), potential for climate variability analyses in the Amazon basin Lindau, Filipe Gaudie Ley Simões, Jefferson Cardia Ribeiro, Rafael da Rocha Ginot, Patrick Delmonte, Barbara Baccolo, Giovanni Kutuzov, Stanislav Maggi, Valter Ramirez, Edson 2020-10-15 application/pdf https://doi.org/10.5194/cp-2020-129 https://cp.copernicus.org/preprints/cp-2020-129/ eng eng doi:10.5194/cp-2020-129 https://cp.copernicus.org/preprints/cp-2020-129/ eISSN: 1814-9332 Text 2020 ftcopernicus https://doi.org/10.5194/cp-2020-129 2020-10-19T16:22:13Z Understanding the mechanisms controlling glacial retreat in the tropical Andes can strengthen future predictions of ice cover in the region. As glaciers are a dominant freshwater source in these regions, accurate ice cover predictions are necessary for developing effective strategies to protect future water resources. In this study, we investigated a 97-year dust record from two Nevado Illimani ice cores to determine the dominant factors controlling particle concentration and size distribution. In addition, we measured the area of a Nevado Illimani glacier (glacier n°8) using aerial photographs from 1956 and 2009. We identified two dustier periods during the 20th century (1930s–1940s and 1980s–2016), which were linked to reduced moisture transport from the Amazon basin. This promoted an unprecedented increase in the percentage of coarse dust particles (CPPn, ∅ > 10 μm) during the 1990s, as drier local conditions favored the emission and deposition of coarse particles on the glacier. Moisture advection from the Amazon basin to Nevado Illimani was influenced by tropical North Atlantic sea surface temperatures (TNA), which was supported by the correlation between TNA and CPPn (r = 0.52). Furthermore, glacial retreat has been accelerating since the 1980s, and a notable relationship between CPPn and the freezing level height (FLH, r = 0.41) was observed. This suggests that higher FLHs promote glacial retreat, which exposes fresh glacial sediments and facilitates the transport of coarse dust particles to the Nevado Illimani summit. Therefore, both the area of glacier n°8 and the ice core record of coarse dust particles were found to respond to climate variability—particularly to the warmer conditions across the southern tropical Andes and drier conditions over the Amazon basin. Text ice core North Atlantic Copernicus Publications: E-Journals
institution Open Polar
collection Copernicus Publications: E-Journals
op_collection_id ftcopernicus
language English
description Understanding the mechanisms controlling glacial retreat in the tropical Andes can strengthen future predictions of ice cover in the region. As glaciers are a dominant freshwater source in these regions, accurate ice cover predictions are necessary for developing effective strategies to protect future water resources. In this study, we investigated a 97-year dust record from two Nevado Illimani ice cores to determine the dominant factors controlling particle concentration and size distribution. In addition, we measured the area of a Nevado Illimani glacier (glacier n°8) using aerial photographs from 1956 and 2009. We identified two dustier periods during the 20th century (1930s–1940s and 1980s–2016), which were linked to reduced moisture transport from the Amazon basin. This promoted an unprecedented increase in the percentage of coarse dust particles (CPPn, ∅ > 10 μm) during the 1990s, as drier local conditions favored the emission and deposition of coarse particles on the glacier. Moisture advection from the Amazon basin to Nevado Illimani was influenced by tropical North Atlantic sea surface temperatures (TNA), which was supported by the correlation between TNA and CPPn (r = 0.52). Furthermore, glacial retreat has been accelerating since the 1980s, and a notable relationship between CPPn and the freezing level height (FLH, r = 0.41) was observed. This suggests that higher FLHs promote glacial retreat, which exposes fresh glacial sediments and facilitates the transport of coarse dust particles to the Nevado Illimani summit. Therefore, both the area of glacier n°8 and the ice core record of coarse dust particles were found to respond to climate variability—particularly to the warmer conditions across the southern tropical Andes and drier conditions over the Amazon basin.
format Text
author Lindau, Filipe Gaudie Ley
Simões, Jefferson Cardia
Ribeiro, Rafael da Rocha
Ginot, Patrick
Delmonte, Barbara
Baccolo, Giovanni
Kutuzov, Stanislav
Maggi, Valter
Ramirez, Edson
spellingShingle Lindau, Filipe Gaudie Ley
Simões, Jefferson Cardia
Ribeiro, Rafael da Rocha
Ginot, Patrick
Delmonte, Barbara
Baccolo, Giovanni
Kutuzov, Stanislav
Maggi, Valter
Ramirez, Edson
Dust record in an ice core from tropical Andes (Nevado Illimani – Bolivia), potential for climate variability analyses in the Amazon basin
author_facet Lindau, Filipe Gaudie Ley
Simões, Jefferson Cardia
Ribeiro, Rafael da Rocha
Ginot, Patrick
Delmonte, Barbara
Baccolo, Giovanni
Kutuzov, Stanislav
Maggi, Valter
Ramirez, Edson
author_sort Lindau, Filipe Gaudie Ley
title Dust record in an ice core from tropical Andes (Nevado Illimani – Bolivia), potential for climate variability analyses in the Amazon basin
title_short Dust record in an ice core from tropical Andes (Nevado Illimani – Bolivia), potential for climate variability analyses in the Amazon basin
title_full Dust record in an ice core from tropical Andes (Nevado Illimani – Bolivia), potential for climate variability analyses in the Amazon basin
title_fullStr Dust record in an ice core from tropical Andes (Nevado Illimani – Bolivia), potential for climate variability analyses in the Amazon basin
title_full_unstemmed Dust record in an ice core from tropical Andes (Nevado Illimani – Bolivia), potential for climate variability analyses in the Amazon basin
title_sort dust record in an ice core from tropical andes (nevado illimani – bolivia), potential for climate variability analyses in the amazon basin
publishDate 2020
url https://doi.org/10.5194/cp-2020-129
https://cp.copernicus.org/preprints/cp-2020-129/
genre ice core
North Atlantic
genre_facet ice core
North Atlantic
op_source eISSN: 1814-9332
op_relation doi:10.5194/cp-2020-129
https://cp.copernicus.org/preprints/cp-2020-129/
op_doi https://doi.org/10.5194/cp-2020-129
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