Peat-water interrelationships in a tropical peatland ecosystem in Southeast Asia

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Interrelationships between peat and water were studied using a hydropedological modelling approach for adjacent relatively intact and degraded peatland in Central Kalimantan, Indonesia. The easy to observe degree of peat humification provided good guidance for the assignment of more difficult to measure saturated hydraulic conductivities to the acrotelm-catotelm hydrological system. Ideally, to prevent subsidence and fire, groundwater levels should be maintained between 40 cm below and 100 cm above the peat surface. Calculated groundwater levels for different years and for different months within a single year showed that these levels can drop deeper than the critical threshold of 40 cm below the peat surface whilst flooding of more than 100 cm above the surface was also observed. In July 1997, a dry El Niño year, areas for which deep groundwater levels were calculated coincided with areas that were on fire as detected from radar images. The relatively intact peatland showed resilience towards disturbance of its hydrological integrity whereas the degraded peatland was susceptible to fire. Hydropedological modelling identified areas with good restoration potential based on predicted flooding depth and duration. Groundwater level prediction maps can be used in fire hazard warning systems as well as in land utilization and restoration planning. These maps are also attractive tools to move from the dominant uni-sectoral approach in peatland resource management toward a much more promising multi-sectoral approach involving various forestry, agriculture and environment agencies. It is demonstrated that the combination of hydrology and pedology is essential for wise use of valuable but threatened tropical peatland ecosystems. © 2007 Elsevier B.V. All rights reserved. View source
Year

2008

Secondary Title

Catena

Volume

73

Number

2

Pages

212-224

DOI

http://dx.doi.org/10.1016/j.catena.2007.07.010

Language

Keyword(s)

Fire susceptibility, Histosols, Hydropedological modelling, Peat humification, Peat subsidence, Peatland restoration, acrotelm, catotelm, environmental restoration, fire, Histosol, humification, hydraulic conductivity, hydrological modeling, peatland, pedology, resource management, restoration ecology, subsidence, Asia, Central Kalimantan, Eurasia, Indonesia, Southeast Asia

Classification
Form: Journal Article
Geographical Area: Indonesia

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