170
Gibbs HK, Ruesch AS, Achard F, Clayton MK, Holmgren P, Ramankutty N, Foley JA (2010)
Tropical forests were the primary sources of new agricultural land in the 1980s and 1990s. Proc
Natl Acad Sci U S A 107:16732–16737
Gissi E, Gaglio M, Reho M (2016) Sustainable energy potential from biomass through ecosystem
services trade-off analysis: the case of the province of Rovigo (northern Italy). Ecosyst Serv
18:1–19
Guillaume T, Damris M, Kuzyakov Y (2015) Losses of soil carbon by converting tropical forest to
plantations: erosion and decomposition estimated by δ13C. Glob Chang Biol 21:3548–3560
Harahap F, Silveira S, Khatiwada D (2017) Land allocation to meet sectoral goals in Indonesia: an
analysis of policy coherence. Land Use Policy 61:451–465
Harsono SS, Grundmann P, Soebronto S (2014) Anaerobic treatment of palm oil mill effluents:
potential contribution to net energy yield and reduction of greenhouse gas emissions from
biodiesel production. J Clean Prod 64:619–627
Hess P et al (2009) Air quality issues associated with biofuel production and use. Biofuels: environmental consequences and interactions with changing land use. In: Howarth RW, Bringezu
S (eds) Biofuels: environmental consequences and interactions with changing land use,
proceedings of the scientific committee on problems of the environment (SCOPE) international
biofuels project rapid assessment. Cornell University, Ithaca
Hewitt CN et al (2009) Nitrogen management is essential to prevent tropical oil palm plantations
from causing ground-level ozone pollution. PNAS Proc Natl Acad Sci 106(44):18447–18451
IGES (2010) Is Indonesia in a good position to achieve sustainable low carbon development?
Opportunities, potentials and limitations. IGES, Hayama
IPCC (2007) Climate change 2007: mitigation of climate change, Contribution of Working
Group III to the fourth assessment report of the intergovernmental panel on climate change.
Cambridge, Cambridge University Press
Jelsma I, Schoneveld GC, Zoomers A, van Westen ACM (2017) Unpacking Indonesia’s independent oil palm smallholders: an actor-disaggregated approach to identifying environmental and
social performance challenges. Land Use Policy 69:281–297
Jinn MC et al (2015) Empty fruit bunches in the race for energy, biochemical, and material industry. In: Hakeem K, Jawaid MY, Alothman O (eds) Agricultural biomass based potential materials. Springer, Berlin, pp 375–389
Koh LP, Ghazoul J (2010) Spatially explicit scenario analysis for reconciling agricultural expansion, forest protection, and carbon conservation in Indonesia. PNAS: Proc Natl Acad Sci
107(24):11140–11144
Koh LP, Wilcove DS (2008) Is oil palm agriculture really destroying tropical biodiversity? Conserv
Lett 1(2):60–64
Koh LP, Miettinen J, Liew SC, Ghazoul J (2011) Remotely sensed evidence of tropical peat land
conversion to oil palm. Proc Natl Acad Sci U S A 108:5127–5132
Lee JSH, Garcia-Ulloa J, Koh LP (2012) Biofuel expansion in Southeast Asia: biodiversity impacts
and policy guidelines. In: Gasparatos A, Stromberg P (eds) Socioeconomic and environmental
impacts of biofuels. Cambridge University Press, Cambridge, pp 231–254
Lee JSH, Ghazoul J, Obidzinski K, Koh LP (2014) Oil palm smallholder yields and incomes
constrained by harvesting practices and type of smallholder management in Indonesia. Agron
Sustain Dev 34:501–513
Li TM (2015) Social impacts of oil palm in Indonesia: a gendered perspective from West
Kalimantan. Center for International Forestry Research (CIFOR), Bogor
MA (2005a) Millennium ecosystem assessment: current state and trends assessment. Island Press,
Washington, DC
MA (2005b) Millennium ecosystem assessment: responses assessment. Island Press, Washington,
DC
MA. (2005) Millennium ecosystem assessment: biodiversity synthesis. Island Press, Washington,
DC
McCarthy JF (2010) Processes of inclusion and adverse incorporation: oil palm and agrarian
change in Sumatra, Indonesia. J Peasant Stud 37:821–850
R. Moreno-Peñaranda et al.
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