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Tree growth response to the 1913 eruption of Volcán de Fuego de Colima, Mexico

Bibliographic Data

ID24086510
AuthorsFranco Biondi (0000-0003-0651-104X, University of Nevada, Reno, corresponding author), Ignacio Galindo Estrada (Universidad de Colima), Juan Carlos Gavilanes Ruiz (Universidad de Colima), Alejandro Elizalde Torres (Universidad de Colima)
Year2003
Volume59
Issue3
Pages293-299
Publication date2003-05-01
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueQuaternary Research (JOURNAL)
Journal identifiersISSN: 0033-5894 • E-ISSN: 1096-0287
PublisherCambridge University Press (CUP) (PUBLISHER)
DOI10.1016/s0033-5894(03)00034-6
OpenAlexW2012945423
LanguageEN
Citations received3
References cited31

The impact of volcanic eruptions on forest ecosystems can be investigated using dendrochronological records. While long-range effects are usually mediated by decreased air temperatures, resulting in frost rings or reduced maximum latewood density, local effects include abrupt suppression of radial growth, occasionally followed by greater than normal growth rates. Annual rings in Mexican mountain pine ( Pinus hartwegii Lindl.) on Nevado de Colima, at the western end of the Mexican Neovolcanic Belt, indicate extremely low growth in 1913 and 1914, following the January 1913 Plinian eruption of Volcán de Fuego, 7.7 km to the south. That event, which is listed among the largest explosive eruptions since A.D. 1500, produced ashflow deposits up to 40 m thick and blanketed our study area on Nevado de Colima with a tephra fallout 15–30 cm deep. Radial growth reduction in 1913–14 was ≥30% in 73% of the sampled trees. We geostatistically investigated the ecological impact of the eruption by mapping the decrease in xylem increment and found no evidence of a spatial structure in growth reduction. Little information has been available to date on forest species as biological archives of past environments in the North American tropics, yet this historical case study suggests that treeline tropical sites hold valuable records of prehistoric phenomena, including volcanic eruptions.

Explosive eruption · Magma · Tephra · Volcano · Vulcanian eruption · Ecology and Vegetation Dynamics Studies · Geology · Paleontology · Plant Water Relations and Carbon Dynamics · Tree-ring climate responses

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    Open Access•Michelle Bollschweiler, Markus Stoffel et al.•The Holocene•2009

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    Open Access•Claudia Hartl, Scott St George et al.•Anthropocene•2019

  • New Tree-Ring Dates for Recent Eruptions of Mount St. Helens

    Open Access•David K Yamaguchi•Quaternary Research•1983

  • A 400-year Tree-ring Chronology from the Tropical Treeline of North America

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  • Radiocarbon Analysis of Pinus Lagunae Tree Rings

    Open Access•Franco Biondi, Julianna E Fessenden•Radiocarbon•1999

Unique citing works3
Citations per year0,17
Citation span2008 - 2019 (12)
Citation velocityhistorical
Highly citedNo
Citation typesNeutral: 2
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