Cerutti PO, Sola P, Chenevoy A, Iiyama M, Yila J, Zhou W et al (2015) The socioeconomic and
environmental impacts of wood energy value chains in sub-Saharan Africa: a systematic map
protocol. Environ Evidence 4(1):1
Chidumayo EN, Gumbo DJ (2013) The environmental impacts of charcoal production in tropical
ecosystems of the world: a synthesis. Energy Sustain Dev 17(2):86–94
Chum H, Faaij A, Moreira J, Berndes G, Dhamija P, Dong H, Gabrielle B, Goss Eng A, Lucht W,
Mapako M, Masera Cerutti O, McIntyre T, Minowa T, Pingoud K (2011) Bioenergy. In:
Edenhofer O, Pichs-Madruga R, Sokona Y, Seyboth K, Matschoss P, Kadner S, Zwickel T,
Eickemeier P, Hansen G, Schlömer S, von Stechow C (eds) IPCC special report on renewable
energy sources and climate change mitigation. Cambridge University Press, Cambridge, UK
and New York
Creutzig F, Ravindranath NH, Berndes G, Bolwig S, Bright R, Cherubini F, Chum H, Corbera E,
Delucchi M, Faaij A, Fargione J (2015) Bioenergy and climate change mitigation: an assessment. GCB Bioenergy 7(5):916–944
da Maia RC (2018) Methodology of assessment and mitigation of risks facing bioenergy investments in sub-Saharan Africa. In: Cortez LAB, Leal MRLV, Nogueira LAH (eds) Sugarcane
bioenergy for sustainable development: expanding production in Latin America and Africa.
Routledge, London, UK. Chapter 31
Dale VH, Kline KL, Kaffka SR, Langeveld JH (2013) A landscape perspective on sustainability of
agricultural systems. Landsc Ecol 28(6):1111–1123
Dauvergne P, Neville KJ (2009) The changing north–south and south–south political economy of
biofuels. Third World Q 30(6):1087–1102
Davis M (2012) Building a Low-carbon Future: Resource Constraints and Key Strategies to
overcome them. Project report, Stockholm Environment Institute. http://www.sei-interna
tional.org/publications?pid¼2120
Dresen E, DeVries B, Herold M, Verchot L, Müller R (2014) Fuelwood savings and carbon
emission reductions by the use of improved cooking stoves in an Afromontane forest, Ethiopia.
Land 3(3):1137–1157
Duguma LA, Minang PA, van Noordwijk M (2014) Climate change mitigation and adaptation in
the land use sector: from complementarity to synergy. Environ Manag 54(3):420–432
Emberson L, He K, Rockström J, Amann M, Barron J, Corell R, Feresu S, Haeuber R, Hicks K,
Johnson FX, Karlqvist A, Klimont Z, Mylvakanam I, Song WW, Vallack H, Qiang Z (2012)
Energy and environment. In: Global energy assessment—toward a sustainable future. Cambridge University Press, Cambridge, UK and New York, NY, USA. and the International
Institute for Applied Systems Analysis, Laxenburg, Austria (Chapter 3), pp 191–254
ESMAP (2018) SDG7 tracking: the energy progress report, World Bank, 2018
Faaij A (2006) Modern biomass conversion technologies. Mitig Adapt Strateg Glob Chang 11
(2):335–367
Faaij A, Junginger M, Goh CS (2014) A general introduction to international bioenergy trade. In:
Junginger M, Goh CS, Faaij A (eds) International bioenergy trade. Springer, Netherlands, pp
1–15
FAO (2004) Unified Bioenergy Terminology: UBET. Food and Agriculture Organization of the
United Nations. Forestry Department, Wood Energy Programme
FAO/UNEP (2011) Bioenergy decision support tool. Food and Agriculture Organization of the
United Nations (FAO), Rome. Online: http://www.bioenergydecisiontool.org/
Fazio S, Barbanti L (2014) Energy and economic assessments of bio-energy systems based on
annual and perennial crops for temperate and tropical areas. Renew Energy 69:233–241
Field CB, Barros VR, Mach K, Mastrandrea M (2014) Climate change 2014: impacts, adaptation,
and vulnerability. Contribution of Working Group II to the Fifth Assessment Report of the
Intergovernmental Panel on Climate Change
Finkbeiner M (2014) Indirect land use change–help beyond the hype? Biomass Bioenergy
62:218–221
74
F. X. Johnson et al.
environmental impacts of wood energy value chains in sub-Saharan Africa: a systematic map
protocol. Environ Evidence 4(1):1
Chidumayo EN, Gumbo DJ (2013) The environmental impacts of charcoal production in tropical
ecosystems of the world: a synthesis. Energy Sustain Dev 17(2):86–94
Chum H, Faaij A, Moreira J, Berndes G, Dhamija P, Dong H, Gabrielle B, Goss Eng A, Lucht W,
Mapako M, Masera Cerutti O, McIntyre T, Minowa T, Pingoud K (2011) Bioenergy. In:
Edenhofer O, Pichs-Madruga R, Sokona Y, Seyboth K, Matschoss P, Kadner S, Zwickel T,
Eickemeier P, Hansen G, Schlömer S, von Stechow C (eds) IPCC special report on renewable
energy sources and climate change mitigation. Cambridge University Press, Cambridge, UK
and New York
Creutzig F, Ravindranath NH, Berndes G, Bolwig S, Bright R, Cherubini F, Chum H, Corbera E,
Delucchi M, Faaij A, Fargione J (2015) Bioenergy and climate change mitigation: an assessment. GCB Bioenergy 7(5):916–944
da Maia RC (2018) Methodology of assessment and mitigation of risks facing bioenergy investments in sub-Saharan Africa. In: Cortez LAB, Leal MRLV, Nogueira LAH (eds) Sugarcane
bioenergy for sustainable development: expanding production in Latin America and Africa.
Routledge, London, UK. Chapter 31
Dale VH, Kline KL, Kaffka SR, Langeveld JH (2013) A landscape perspective on sustainability of
agricultural systems. Landsc Ecol 28(6):1111–1123
Dauvergne P, Neville KJ (2009) The changing north–south and south–south political economy of
biofuels. Third World Q 30(6):1087–1102
Davis M (2012) Building a Low-carbon Future: Resource Constraints and Key Strategies to
overcome them. Project report, Stockholm Environment Institute. http://www.sei-interna
tional.org/publications?pid¼2120
Dresen E, DeVries B, Herold M, Verchot L, Müller R (2014) Fuelwood savings and carbon
emission reductions by the use of improved cooking stoves in an Afromontane forest, Ethiopia.
Land 3(3):1137–1157
Duguma LA, Minang PA, van Noordwijk M (2014) Climate change mitigation and adaptation in
the land use sector: from complementarity to synergy. Environ Manag 54(3):420–432
Emberson L, He K, Rockström J, Amann M, Barron J, Corell R, Feresu S, Haeuber R, Hicks K,
Johnson FX, Karlqvist A, Klimont Z, Mylvakanam I, Song WW, Vallack H, Qiang Z (2012)
Energy and environment. In: Global energy assessment—toward a sustainable future. Cambridge University Press, Cambridge, UK and New York, NY, USA. and the International
Institute for Applied Systems Analysis, Laxenburg, Austria (Chapter 3), pp 191–254
ESMAP (2018) SDG7 tracking: the energy progress report, World Bank, 2018
Faaij A (2006) Modern biomass conversion technologies. Mitig Adapt Strateg Glob Chang 11
(2):335–367
Faaij A, Junginger M, Goh CS (2014) A general introduction to international bioenergy trade. In:
Junginger M, Goh CS, Faaij A (eds) International bioenergy trade. Springer, Netherlands, pp
1–15
FAO (2004) Unified Bioenergy Terminology: UBET. Food and Agriculture Organization of the
United Nations. Forestry Department, Wood Energy Programme
FAO/UNEP (2011) Bioenergy decision support tool. Food and Agriculture Organization of the
United Nations (FAO), Rome. Online: http://www.bioenergydecisiontool.org/
Fazio S, Barbanti L (2014) Energy and economic assessments of bio-energy systems based on
annual and perennial crops for temperate and tropical areas. Renew Energy 69:233–241
Field CB, Barros VR, Mach K, Mastrandrea M (2014) Climate change 2014: impacts, adaptation,
and vulnerability. Contribution of Working Group II to the Fifth Assessment Report of the
Intergovernmental Panel on Climate Change
Finkbeiner M (2014) Indirect land use change–help beyond the hype? Biomass Bioenergy
62:218–221
74
F. X. Johnson et al.
