Effect of compaction on soil CO2 and CH4 fluxes from tropical peatland in Sarawak, Malaysia

Tropical peatland stores a large amount of carbon (C) and is an important C sink. In Malaysia, about 25% of the peatland area has been converted to oil palm plantation where drainage, compaction and groundwater table control are prerequisite. To date, relationship between land compaction and C emiss...

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Veröffentlicht in:Environment, development and sustainability development and sustainability, 2021-08, Vol.23 (8), p.11646-11659
Hauptverfasser: Busman, Nur Azima, Maie, Nagamitsu, Ishak, Che Fauziah, Sulaiman, Muhammad Firdaus, Melling, Lulie
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Sprache:eng
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Zusammenfassung:Tropical peatland stores a large amount of carbon (C) and is an important C sink. In Malaysia, about 25% of the peatland area has been converted to oil palm plantation where drainage, compaction and groundwater table control are prerequisite. To date, relationship between land compaction and C emission from tropical peatland is scarcely studied. To understand the effect of compaction on soil carbon dioxide (CO 2 ) and methane (CH 4 ) flux from tropical peatland, a laboratory soil column incubation was conducted. Peat soil collected from a Mixed Peat Swamp forest were packed in polyvinyl chloride pipes to three different soil bulk densities (BD); 0.14 g cm –3 , 0.18 g cm –3 and 0.22 g cm –3 . Soil CO 2 and CH 4 flux from the soil columns were measured on weekly basis for twelve weeks. Total soil porosity and moisture retention of each soil BD were also determined using another set of peat sample packed into 100 cm 3 soil core ring. Soil porosity decreased while soil moisture retention increased proportionally with increasing soil BD. Soil CH 4 flux were reduced approximately by 22% with compaction. On contrary, soil CO 2 fluxes were greater ( P  ≤ 0.05) at compacted soil when infiltration and percolation of rainwater become slower with time, until soil moisture becomes limiting factor. This study suggested that compaction affects water movement and gaseous transport in the peat profile, thus influences C emission from peat soil.
ISSN:1387-585X
1573-2975
DOI:10.1007/s10668-020-01132-y