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  5. Insights for restoration: Reconstructing the drivers of long-term local fire events and vegetation turnover of a tropical peatland in Central Kalimantan

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Article
English
2023

Insights for restoration: Reconstructing the drivers of long-term local fire events and vegetation turnover of a tropical peatland in Central Kalimantan

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English
2023
Palaeogeography Palaeoclimatology Palaeoecology
Vol 628
DOI: 10.1016/j.palaeo.2023.111772

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David A. Wardle
David A. Wardle

Umeå University

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Khairun Nisha Mohamed Ramdzan
Patrick Moss
Geraldine Jacobsen
+10 more

Abstract

Fire events in tropical peatlands often relate to dry peat conditions associated with climate variability (drought) and anthropogenic-driven ecosystem degradation. However, drought is not the only driver of long-term fire events and peatland ecosystem changes. This study used palaeoecological and geochemical proxies to investigate the long-term drivers of charcoal influx to identify local fires and examine the associated responses to the tropical peatland ecosystem in Central Kalimantan, Indonesia. The results showed local fire events increased after 756 cal. yr BP, and possible drivers of charcoal influx include changes in sea level, increased frequency of El Niño events, increased biomass, and anthropogenically-driven ecosystem degradation. However, the vegetation composition showed changes since ~2300 cal. yr BP from a mix of peat swamp forest (PSF) and open vegetation (OV) during the late Holocene (~2300 to 1129 cal. yr BP), to predominantly PSF from 1128 to 375 cal. yr BP, dry lowland mixed with swamp forest (LMS) and open vegetation (OV) from 374 to 135 cal. yr BP, and predominantly OV and freshwater swamp forest (FSF) from 134 to −62 cal. yr BP. The possible drivers of the vegetation turnover were hydrological conditions and the availability of peat nutrients, while the vegetation turnover affected the accumulation and decomposition of recalcitrant organic matter in peat. The thresholds of the peatland ecosystems over longer-term timeframes provided the following restoration insights: 1) PSF species (i.e. Eurya and Ilex) had high charcoal influx threshold of up to ~23 grains mm−2 cm−3 yr−1 while LMS and OV species increased at a lower threshold of ~13 grains mm−2 cm−3 yr−1 during localised fire; 2) PSF species expanded during periods of wet conditions and high peat nutrients (i.e. TN- enriched); and 3) Future revegetation in the region can focus on tree taxa such as Euphorbiaceae, Arenga, Ficus, and Trema as they were historically able to thrive in fire events and dry hydrological conditions.

How to cite this publication

Khairun Nisha Mohamed Ramdzan, Patrick Moss, Geraldine Jacobsen, Angela Gallego‐Sala, Dan J. Charman, Mark E. Harrison, Susan Page, Shailendra Mishra, David A. Wardle, Adi Jaya, Aswandi Aswandi, Darmae Nasir, Nina Yulianti (2023). Insights for restoration: Reconstructing the drivers of long-term local fire events and vegetation turnover of a tropical peatland in Central Kalimantan. Palaeogeography Palaeoclimatology Palaeoecology, 628, pp. 111772-111772, DOI: 10.1016/j.palaeo.2023.111772.

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Publication Details

Type

Article

Year

2023

Authors

13

Datasets

0

Total Files

0

Language

English

Journal

Palaeogeography Palaeoclimatology Palaeoecology

DOI

10.1016/j.palaeo.2023.111772

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