The blue suns of 1831: was the eruption of Ferdinandea, near Sicily, one of the largest volcanic climate forcing events of the nineteenth century?

One of the largest climate forcing eruptions of the nineteenth century was, until recently, believed to have taken place at the Babuyan Claro volcano, in the Philippines, in 1831. However, a recent investigation found no reliable evidence of such an eruption, suggesting that the 1831 eruption must h...

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Published in:Climate of the Past
Main Authors: Garrison, Christopher, Kilburn, Christopher, Smart, David, Edwards, Stephen
Format: Text
Language:English
Published: 2021
Subjects:
geo
Online Access:https://doi.org/10.5194/cp-17-2607-2021
https://cp.copernicus.org/articles/17/2607/2021/
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spelling fttriple:oai:gotriple.eu:EJYLaz0cvhGIvKdQRYcut 2023-05-15T16:30:22+02:00 The blue suns of 1831: was the eruption of Ferdinandea, near Sicily, one of the largest volcanic climate forcing events of the nineteenth century? Garrison, Christopher Kilburn, Christopher Smart, David Edwards, Stephen 2021-12-20 https://doi.org/10.5194/cp-17-2607-2021 https://cp.copernicus.org/articles/17/2607/2021/ en eng doi:10.5194/cp-17-2607-2021 10670/1.8dwdn5 https://cp.copernicus.org/articles/17/2607/2021/ undefined Geographica Helvetica - geography eISSN: 1814-9332 geo hist Text https://vocabularies.coar-repositories.org/resource_types/c_18cf/ 2021 fttriple https://doi.org/10.5194/cp-17-2607-2021 2023-01-22T17:39:25Z One of the largest climate forcing eruptions of the nineteenth century was, until recently, believed to have taken place at the Babuyan Claro volcano, in the Philippines, in 1831. However, a recent investigation found no reliable evidence of such an eruption, suggesting that the 1831 eruption must have taken place elsewhere. We here present our newly compiled dataset of reported observations of a blue, purple and green sun in August 1831, which we use to reconstruct the transport of a stratospheric aerosol plume from that eruption. The source of the aerosol plume is identified as the eruption of Ferdinandea, which took place about 50 km off the south-west coast of Sicily (37.1∘ N, 12.7∘ E), in July and August 1831. The modest magnitude of this eruption, assigned a volcanic explosivity index (VEI) of 3, has commonly caused it to be discounted or overlooked when identifying the likely source of the stratospheric sulfate aerosol in 1831. It is proposed, however, that convective instability in the troposphere contributed to aerosol reaching the stratosphere and that the aerosol load was enhanced by addition of a sedimentary sulfur component to the volcanic plume. Thus, one of the largest climate forcing volcanic eruptions of the nineteenth century would effectively have been hiding in plain sight, arguably “lowering the bar” for the types of eruptions capable of having a substantial climate forcing impact. Prior estimates of the mass of stratospheric sulfate aerosol responsible for the 1831 Greenland ice core sulfate deposition peaks which have assumed a source eruption at a low-latitude site will, therefore, have been overstated. The example presented in this paper serves as a useful reminder that VEI values were not intended to be reliably correlated with eruption sulfur yields unless supplemented with compositional analyses. It also underlines that eye-witness accounts of historical geophysical events should not be neglected as a source of valuable scientific data. Text Greenland Greenland ice core ice core Unknown Greenland Claro ENVELOPE(-63.383,-63.383,-64.250,-64.250) Climate of the Past 17 6 2607 2632
institution Open Polar
collection Unknown
op_collection_id fttriple
language English
topic geo
hist
spellingShingle geo
hist
Garrison, Christopher
Kilburn, Christopher
Smart, David
Edwards, Stephen
The blue suns of 1831: was the eruption of Ferdinandea, near Sicily, one of the largest volcanic climate forcing events of the nineteenth century?
topic_facet geo
hist
description One of the largest climate forcing eruptions of the nineteenth century was, until recently, believed to have taken place at the Babuyan Claro volcano, in the Philippines, in 1831. However, a recent investigation found no reliable evidence of such an eruption, suggesting that the 1831 eruption must have taken place elsewhere. We here present our newly compiled dataset of reported observations of a blue, purple and green sun in August 1831, which we use to reconstruct the transport of a stratospheric aerosol plume from that eruption. The source of the aerosol plume is identified as the eruption of Ferdinandea, which took place about 50 km off the south-west coast of Sicily (37.1∘ N, 12.7∘ E), in July and August 1831. The modest magnitude of this eruption, assigned a volcanic explosivity index (VEI) of 3, has commonly caused it to be discounted or overlooked when identifying the likely source of the stratospheric sulfate aerosol in 1831. It is proposed, however, that convective instability in the troposphere contributed to aerosol reaching the stratosphere and that the aerosol load was enhanced by addition of a sedimentary sulfur component to the volcanic plume. Thus, one of the largest climate forcing volcanic eruptions of the nineteenth century would effectively have been hiding in plain sight, arguably “lowering the bar” for the types of eruptions capable of having a substantial climate forcing impact. Prior estimates of the mass of stratospheric sulfate aerosol responsible for the 1831 Greenland ice core sulfate deposition peaks which have assumed a source eruption at a low-latitude site will, therefore, have been overstated. The example presented in this paper serves as a useful reminder that VEI values were not intended to be reliably correlated with eruption sulfur yields unless supplemented with compositional analyses. It also underlines that eye-witness accounts of historical geophysical events should not be neglected as a source of valuable scientific data.
format Text
author Garrison, Christopher
Kilburn, Christopher
Smart, David
Edwards, Stephen
author_facet Garrison, Christopher
Kilburn, Christopher
Smart, David
Edwards, Stephen
author_sort Garrison, Christopher
title The blue suns of 1831: was the eruption of Ferdinandea, near Sicily, one of the largest volcanic climate forcing events of the nineteenth century?
title_short The blue suns of 1831: was the eruption of Ferdinandea, near Sicily, one of the largest volcanic climate forcing events of the nineteenth century?
title_full The blue suns of 1831: was the eruption of Ferdinandea, near Sicily, one of the largest volcanic climate forcing events of the nineteenth century?
title_fullStr The blue suns of 1831: was the eruption of Ferdinandea, near Sicily, one of the largest volcanic climate forcing events of the nineteenth century?
title_full_unstemmed The blue suns of 1831: was the eruption of Ferdinandea, near Sicily, one of the largest volcanic climate forcing events of the nineteenth century?
title_sort blue suns of 1831: was the eruption of ferdinandea, near sicily, one of the largest volcanic climate forcing events of the nineteenth century?
publishDate 2021
url https://doi.org/10.5194/cp-17-2607-2021
https://cp.copernicus.org/articles/17/2607/2021/
long_lat ENVELOPE(-63.383,-63.383,-64.250,-64.250)
geographic Greenland
Claro
geographic_facet Greenland
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genre Greenland
Greenland ice core
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genre_facet Greenland
Greenland ice core
ice core
op_source Geographica Helvetica - geography
eISSN: 1814-9332
op_relation doi:10.5194/cp-17-2607-2021
10670/1.8dwdn5
https://cp.copernicus.org/articles/17/2607/2021/
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op_doi https://doi.org/10.5194/cp-17-2607-2021
container_title Climate of the Past
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container_issue 6
container_start_page 2607
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