Species composition and fire: non-additive mixture effects on ground fuel flammability.

Diversity effects on many aspects of ecosystem function have been well documented. However, fire is an exception: fire experiments have mainly included single species, bulk litter, or vegetation, and, as such, the role of diversity as a determinant of flammability, a crucial aspect of ecosystem func...

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Published in:Frontiers in Plant Science
Main Authors: van Altena, C., van Logtestijn, R.S.P, Cornwell, W.K., Cornelissen, J.H.C.
Format: Article in Journal/Newspaper
Language:English
Published: 2012
Subjects:
Online Access:https://research.vu.nl/en/publications/107469bd-ae66-48d7-a20a-57ac7e2861e6
https://doi.org/10.3389/fpls.2012.00063
https://hdl.handle.net/1871.1/107469bd-ae66-48d7-a20a-57ac7e2861e6
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spelling ftvuamstcris:oai:research.vu.nl:publications/107469bd-ae66-48d7-a20a-57ac7e2861e6 2024-06-23T07:57:03+00:00 Species composition and fire: non-additive mixture effects on ground fuel flammability. van Altena, C. van Logtestijn, R.S.P Cornwell, W.K. Cornelissen, J.H.C. 2012 https://research.vu.nl/en/publications/107469bd-ae66-48d7-a20a-57ac7e2861e6 https://doi.org/10.3389/fpls.2012.00063 https://hdl.handle.net/1871.1/107469bd-ae66-48d7-a20a-57ac7e2861e6 eng eng https://research.vu.nl/en/publications/107469bd-ae66-48d7-a20a-57ac7e2861e6 info:eu-repo/semantics/openAccess van Altena , C , van Logtestijn , R S P , Cornwell , W K & Cornelissen , J H C 2012 , ' Species composition and fire: non-additive mixture effects on ground fuel flammability. ' , Frontiers in Plant Science , vol. 3 , 63 , pp. 1-10 . https://doi.org/10.3389/fpls.2012.00063 article 2012 ftvuamstcris https://doi.org/10.3389/fpls.2012.00063 2024-05-29T23:53:25Z Diversity effects on many aspects of ecosystem function have been well documented. However, fire is an exception: fire experiments have mainly included single species, bulk litter, or vegetation, and, as such, the role of diversity as a determinant of flammability, a crucial aspect of ecosystem function, is poorly understood. This study is the first to experimentally test whether flammability characteristics of two-species mixtures are non-additive, i.e., differ from expected flammability based on the component species in monospecific fuel. In standardized fire experiments on ground fuels, including monospecific fuels and mixtures of five contrasting subarctic plant fuel types in a controlled laboratory environment, we measured flame speed, flame duration, and maximum temperature. Broadly half of the mixture combinations showed non-additive effects for these flammability indicators; these were mainly enhanced dominance effects for temporal dynamics - fire speed and duration. Fuel types with the more flammable value for a characteristic determined the rate of fire speed and duration of the whole mixture; in contrast, maximum temperature of the fire was determined by the biomass-weighted mean of the mixture. These results suggest that ecological invasions by highly flammable species may have effects on ground-fire dynamics well out of proportion to their biomass. © 2012 van Altena, van Logtestijn, Cornwell and Cornelissen. Article in Journal/Newspaper Subarctic Vrije Universiteit Amsterdam (VU): Research Portal Cornwell ENVELOPE(-86.150,-86.150,-77.667,-77.667) Frontiers in Plant Science 3
institution Open Polar
collection Vrije Universiteit Amsterdam (VU): Research Portal
op_collection_id ftvuamstcris
language English
description Diversity effects on many aspects of ecosystem function have been well documented. However, fire is an exception: fire experiments have mainly included single species, bulk litter, or vegetation, and, as such, the role of diversity as a determinant of flammability, a crucial aspect of ecosystem function, is poorly understood. This study is the first to experimentally test whether flammability characteristics of two-species mixtures are non-additive, i.e., differ from expected flammability based on the component species in monospecific fuel. In standardized fire experiments on ground fuels, including monospecific fuels and mixtures of five contrasting subarctic plant fuel types in a controlled laboratory environment, we measured flame speed, flame duration, and maximum temperature. Broadly half of the mixture combinations showed non-additive effects for these flammability indicators; these were mainly enhanced dominance effects for temporal dynamics - fire speed and duration. Fuel types with the more flammable value for a characteristic determined the rate of fire speed and duration of the whole mixture; in contrast, maximum temperature of the fire was determined by the biomass-weighted mean of the mixture. These results suggest that ecological invasions by highly flammable species may have effects on ground-fire dynamics well out of proportion to their biomass. © 2012 van Altena, van Logtestijn, Cornwell and Cornelissen.
format Article in Journal/Newspaper
author van Altena, C.
van Logtestijn, R.S.P
Cornwell, W.K.
Cornelissen, J.H.C.
spellingShingle van Altena, C.
van Logtestijn, R.S.P
Cornwell, W.K.
Cornelissen, J.H.C.
Species composition and fire: non-additive mixture effects on ground fuel flammability.
author_facet van Altena, C.
van Logtestijn, R.S.P
Cornwell, W.K.
Cornelissen, J.H.C.
author_sort van Altena, C.
title Species composition and fire: non-additive mixture effects on ground fuel flammability.
title_short Species composition and fire: non-additive mixture effects on ground fuel flammability.
title_full Species composition and fire: non-additive mixture effects on ground fuel flammability.
title_fullStr Species composition and fire: non-additive mixture effects on ground fuel flammability.
title_full_unstemmed Species composition and fire: non-additive mixture effects on ground fuel flammability.
title_sort species composition and fire: non-additive mixture effects on ground fuel flammability.
publishDate 2012
url https://research.vu.nl/en/publications/107469bd-ae66-48d7-a20a-57ac7e2861e6
https://doi.org/10.3389/fpls.2012.00063
https://hdl.handle.net/1871.1/107469bd-ae66-48d7-a20a-57ac7e2861e6
long_lat ENVELOPE(-86.150,-86.150,-77.667,-77.667)
geographic Cornwell
geographic_facet Cornwell
genre Subarctic
genre_facet Subarctic
op_source van Altena , C , van Logtestijn , R S P , Cornwell , W K & Cornelissen , J H C 2012 , ' Species composition and fire: non-additive mixture effects on ground fuel flammability. ' , Frontiers in Plant Science , vol. 3 , 63 , pp. 1-10 . https://doi.org/10.3389/fpls.2012.00063
op_relation https://research.vu.nl/en/publications/107469bd-ae66-48d7-a20a-57ac7e2861e6
op_rights info:eu-repo/semantics/openAccess
op_doi https://doi.org/10.3389/fpls.2012.00063
container_title Frontiers in Plant Science
container_volume 3
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