A Field Study of Tropical Peat Fire Behaviour and Associated Carbon Emissions

Tropical peatlands store vast volumes of carbon belowground. Human land uses have led to their degradation, reducing their carbon storage services. Clearing and drainage make peatlands susceptible to surface and belowground fires. Satellites do not readily detect smouldering peat fires, which releas...

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Published in:Fire
Main Authors: Laura L. B. Graham, Grahame B. Applegate, Andri Thomas, Kevin C. Ryan, Bambang H. Saharjo, Mark A. Cochrane
Format: Article
Language:English
Published: MDPI AG 2022-04-01
Subjects:
Online Access:https://www.mdpi.com/2571-6255/5/3/62
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author Laura L. B. Graham
Grahame B. Applegate
Andri Thomas
Kevin C. Ryan
Bambang H. Saharjo
Mark A. Cochrane
author_facet Laura L. B. Graham
Grahame B. Applegate
Andri Thomas
Kevin C. Ryan
Bambang H. Saharjo
Mark A. Cochrane
author_sort Laura L. B. Graham
collection DOAJ
container_title Fire
description Tropical peatlands store vast volumes of carbon belowground. Human land uses have led to their degradation, reducing their carbon storage services. Clearing and drainage make peatlands susceptible to surface and belowground fires. Satellites do not readily detect smouldering peat fires, which release globally significant quantities of aerosols and climate-influencing gases. Despite national and international desire to improve management of these fires, few published results exist for in situ tropical peat fire behaviour and associated carbon emissions. We present new field methodology for calculating rates of fire spread within degraded peat (average spread rates, vertical 0.8 cm h<sup>−1</sup>, horizontal 2.7 cm h<sup>−1</sup>) and associated peat volume losses (102 m<sup>3</sup> ha<sup>−1</sup> in August, 754 m<sup>3</sup> ha<sup>−1</sup> in September) measured at six peat fire sites in Kalimantan, Indonesia, in 2015. Utilizing locally collected bulk density and emission factors, total August and September gas emissions of 27.2 t ha<sup>−1</sup> (8.1 tC ha<sup>−1</sup>) and 200.7 t ha<sup>−1</sup> (60.2 tC ha<sup>−1</sup>) were estimated. We provide much needed, but currently lacking, IPCC Tier 3-level data to improve GHG estimates from tropical peat fires. We demonstrate how calculations of total emission estimates can vary greatly in magnitude (+798% to −26%) depending on environmental conditions, season, peat burn depth methodology, bulk density and emission factors data sources, and assumed versus observed combustion factors. This illustrates the importance of in situ measurements and the need for more refined methods to improve accuracies of GHG estimates from tropical peat fires.
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spelling doaj-art-e07647695fca481db03217396007aaa22025-08-19T22:33:56ZengMDPI AGFire2571-62552022-04-01536210.3390/fire5030062A Field Study of Tropical Peat Fire Behaviour and Associated Carbon EmissionsLaura L. B. Graham0Grahame B. Applegate1Andri Thomas2Kevin C. Ryan3Bambang H. Saharjo4Mark A. Cochrane5Borneo Orangutan Survival Foundation, Bogor 16128, IndonesiaTropical Forests and People Research Centre, University of the Sunshine Coast, Sippy Downs, QLD 4556, AustraliaBorneo Orangutan Survival Foundation, Bogor 16128, IndonesiaUS Forest Service, Missoula, MT 59808, USAFaculty of Forestry and Environment, IPB University, Kampus IPB Darmaga, Bogor 16680, IndonesiaAppalachian Laboratory, University of Maryland Center for Environmental Science, Frostburg, MD 21613, USATropical peatlands store vast volumes of carbon belowground. Human land uses have led to their degradation, reducing their carbon storage services. Clearing and drainage make peatlands susceptible to surface and belowground fires. Satellites do not readily detect smouldering peat fires, which release globally significant quantities of aerosols and climate-influencing gases. Despite national and international desire to improve management of these fires, few published results exist for in situ tropical peat fire behaviour and associated carbon emissions. We present new field methodology for calculating rates of fire spread within degraded peat (average spread rates, vertical 0.8 cm h<sup>−1</sup>, horizontal 2.7 cm h<sup>−1</sup>) and associated peat volume losses (102 m<sup>3</sup> ha<sup>−1</sup> in August, 754 m<sup>3</sup> ha<sup>−1</sup> in September) measured at six peat fire sites in Kalimantan, Indonesia, in 2015. Utilizing locally collected bulk density and emission factors, total August and September gas emissions of 27.2 t ha<sup>−1</sup> (8.1 tC ha<sup>−1</sup>) and 200.7 t ha<sup>−1</sup> (60.2 tC ha<sup>−1</sup>) were estimated. We provide much needed, but currently lacking, IPCC Tier 3-level data to improve GHG estimates from tropical peat fires. We demonstrate how calculations of total emission estimates can vary greatly in magnitude (+798% to −26%) depending on environmental conditions, season, peat burn depth methodology, bulk density and emission factors data sources, and assumed versus observed combustion factors. This illustrates the importance of in situ measurements and the need for more refined methods to improve accuracies of GHG estimates from tropical peat fires.https://www.mdpi.com/2571-6255/5/3/62climate changegreenhouse gaseshazeIndonesiaIPCC Tier 3smouldering combustion
spellingShingle Laura L. B. Graham
Grahame B. Applegate
Andri Thomas
Kevin C. Ryan
Bambang H. Saharjo
Mark A. Cochrane
A Field Study of Tropical Peat Fire Behaviour and Associated Carbon Emissions
climate change
greenhouse gases
haze
Indonesia
IPCC Tier 3
smouldering combustion
title A Field Study of Tropical Peat Fire Behaviour and Associated Carbon Emissions
title_full A Field Study of Tropical Peat Fire Behaviour and Associated Carbon Emissions
title_fullStr A Field Study of Tropical Peat Fire Behaviour and Associated Carbon Emissions
title_full_unstemmed A Field Study of Tropical Peat Fire Behaviour and Associated Carbon Emissions
title_short A Field Study of Tropical Peat Fire Behaviour and Associated Carbon Emissions
title_sort field study of tropical peat fire behaviour and associated carbon emissions
topic climate change
greenhouse gases
haze
Indonesia
IPCC Tier 3
smouldering combustion
url https://www.mdpi.com/2571-6255/5/3/62
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