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Catastrophic impact of extreme 2019 Indonesian peatland fires on urban air quality and health

Environmental Studies and Forestry

Catastrophic impact of extreme 2019 Indonesian peatland fires on urban air quality and health

M. J. Grosvenor, V. Ardiyani, et al.

Tropical peatland fires in Indonesia during the El Niño-related droughts severely degrade air quality, leading to over 87,000 estimated excess deaths nationwide in 2019 due to fire-induced PM2.5 exposure. This impactful research conducted by Mark J. Grosvenor, Vissia Ardiyani, Martin J. Wooster, Stefan Gillott, David C. Green, Puji Lestari, and Wiranda Suri highlights the urgent need for fire prevention and landscape remediation.

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~3 min • Beginner • English
Abstract
Tropical peatland fires generate substantial quantities of airborne fine particulate matter (PM<sub>2.5</sub>) and in Indonesia are intensified during El Niño-related drought leading to severe air quality impacts affecting local and distant populations. Limited in-situ data often necessitates reliance on air quality models, like that of the Copernicus Atmosphere Monitoring Service, whose accuracy in extreme conditions is not fully understood. Here we demonstrate how a network of low-cost sensors around Palangka Raya, Central Kalimantan during the 2019 fire season, quantified extreme air quality and city-scale variability. The data indicates relatively strong model performance. Health impacts are substantial with estimates of over 1200 excess deaths in the Palangka Raya region, over 3200 across Central Kalimantan and more than 87,000 nationwide in 2019 due to fire-induced PM<sub>2.5</sub> exposure. These findings highlight the need for urgent action to mitigate extreme fire events, including reducing fire use and landscape remediation to prevent peat fire ignition.
Publisher
Communications Earth & Environment
Published On
Nov 02, 2024
Authors
Mark J. Grosvenor, Vissia Ardiyani, Martin J. Wooster, Stefan Gillott, David C. Green, Puji Lestari, Wiranda Suri
Tags
tropical peatland
fire
air quality
PM2.5 exposure
health impacts
Indonesia
El Niño
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