226
N. Novita et al.
Krisnawati HWC, Adinugroho R, Imanuddin (2012) The dynamic of aboveground carbon stock in
peat swamp forest. Proceedings of international symposium on wild-fire and carbon management
in peat forest in Indonesia, 13–14 Sept. Bogor, Indonesia
Langner A, Siegert F (2009) Spatiotemporal fire occurrence in Borneo over a period of 10 years.
Glob Change Biol 15:48–62
Manuri SC, Brack NP, Nugroho K, Hergoualc’h N, Novita H, Dotzauer L, Verchot C, Agung S,
Putra E, Widyasari (2014) Tree biomass equations for tropical peat swamp forest ecosystems in
Indonesia. Forest Ecol Manag 334:241–253
Miettinen J, Shi C, Liew SC (2015) Land cover distribution in the peatldns of Peninsular Malaysia,
Sumatra and Borneo in 2015 with changes since 1990. Glob Ecol Conserv 6:67:68
Ministry of Environment and Forestry (2015) Tanjung Puting national park. https://tanjungputing.
dephut.go.id/index.php/tentang-kawasan/letak-dan-luas. Retrieved 6 Jan 2015
Murdiyarso D, Donato D, Kauffman JB, Kurnianto S, Stidham M, Kanninen M (2009) Carbon
storage in mangrove and peatland ecosystems: a preliminary account from plots in Indonesia.
Working Paper 48. Center for International Forestry Research (CIFOR), Bogor, Indonesia
Málaga N, Hergoualc’h K, Kapp G, Martius C (2020) Variation in vegetation and ecosystem carbon
stock due to the conversion of disturbed forest to oil palm plantation in Peruvian Amazonia.
Ecosystems 1–19
Ng SK, Thamboo S, de Souza P (1968) Nutrient contents of oil palms in Malaysia. II. Nutrients in
vegetative tissues. Malaysia Agric J 46:332–391
Novita N (2010) Above ground biomass of logged-over forests in Merang, South Sumatra. Thesis.
Graduate School. Bogor Agricultural University. Bogor, Indonesia
events/news2/indonesia-reports-reduced-deforestation-triggering-first-carbon-payment-fromnorway/
Page SE, Rieley JO, Banks CJ (2011) Global and regional importance of the tropical peatland carbon
pool. Glob Change Biol 17:798–818
Persch S, Hergoualc’h K, Hölscher D, Verchot L (In prep) Large above- and below-ground biomass
carbon losses from a tropical peat swamp forest transition into an oil palm plantation: a case study
in Sumatra, Indonesia
Page SE, Rieley JO, Wüst R (2006) Lowland tropical peatlands of Southeast Asia. Peatlands:
evolution and records of environmental and climate changes. Elsevier
Posa MRC, Wijedasa LS, Corlett RT (2011) Biodiversity and conservation of tropical peat swamp
forests. Bioscience 61:49–57
Saharjo BH (2007) Shifting cultivation in peatlands. Mitig Adapt Strat Glob Change 12:135–146
Sheehan PJ (1984) Effects on community and ecosystem structure and dynamics. Effects of
pollutants at the ecosystem level. Wiley
Simbolon H (2015) Above ground biomass changes in the peat swamp forests of
Central Kalimantan https://www.forestday.org/fileadmin/tropical-workshop/Plenary-3/17A_Sim
bolonH_Above%20ground%20biomass.pdf. Accessed 13 July 2015
Syahrinudin (2005) The potential of oil palm and forest plantations for carbon sequestration on
degraded land in Indonesia. Dissertation. University of Goettingen, Germany
Warren MW, Kauffman JB, Murdiyarso M, Anshari G, Hergoualc’h K, Kurnianto S, Purbopuspito
J, Gusmayanti E, Afifudin M, Rahajoe J, Alhamd L, Limin S, Iswandi A (2012) A cost-efficient
method to assess carbon stocks in tropical peat soil. Biogeosciences 9:4477–4485
Warren M, Hergoualc’h K, Kauffman B, Murdiyarso D, Kolka R (2017) An appraisal of Indonesia’s
immense peat carbon stock using national peatland maps: uncertainties and potential losses from
conversion. Carbon Balance Manage 12:12
Weiss D, Shotyk W, Rieley J, Page S, Gloor M, Reese S, Martinez-Cortizas A (2002) The geochemistry of major and selected trace elements in a forested peat bog, Kalimantan, SE Asia, and its
implications for past atmospheric dust deposition. Geochim Cosmochim Acta 66:2307–2323
Précédent

- 228/333

Suivant