Nerini FF, Tomei J, To LS, Bisaga I, Parikh P, Black M, Borrion A, Spataru C, Broto VC,
Anandarajah G, Milligan B (2018) Mapping synergies and trade-offs between energy and the
sustainable development goals. Nat Energy 3(1):10
Nguyen TT, Tenhunen J (2013) Review of integrated ecological-economic analyses for bioenergy
plants under climate change at local scale. Int J Clim Change Strategies Manage 5(3):324–343
Ochieng C, Juhola S, Johnson FX (2014) The societal role of charcoal production in climate change
adaptation of the arid and semi-arid lands (ASALs) of Kenya. In: Inderberg TH, Eriksen S,
O'Brien K, Sygna L (eds) Climate change adaptation and development: transforming paradigms
and practices. Routledge. Chapter 3
Olsson O, Johnson FX (2014) Bioenergy Trade in a Changing Climate. NORDSTAR Working
Paper 2014–01, Nordic Center of Excellence for Strategic Adaptation Research. www.nord-star.
info/workingpapers
Openshaw K (2010) Biomass energy: employment generation and its contribution to poverty
alleviation. Biomass Bioenergy 34(3):365–378
Pacini H, Assunção L, van Dam J, Toneto R Jr (2013) The price for biofuels sustainability. Energy
Policy 59:898–903
Palm CA, Vosti SA, Sanchez PA, Ericksen PJ (2013) Slash-and-burn agriculture: the search for
alternatives. Columbia University Press, New York
Popp A, Dietrich JP, Lotze-Campen H, Klein D, Bauer N, Krause M, Beringer T, Gerten D,
Edenhofer O (2011) The economic potential of bioenergy for climate change mitigation with
special attention given to implications for the land system. Environ Res Lett 6(3):034017
Pugesgaard S, Schelde K, Larsen SU, Lærke PE, Jørgensen U (2015) Comparing annual and
perennial crops for bioenergy production–influence on nitrate leaching and energy balance.
GCB Bioenergy 7(5):1136–1149
Rogers C, Sovacool BK, Clarke S (2013) Sweet nectar of the Gaia: lessons from Ethiopia's “project
Gaia”. Energy Sustain Dev 17(3):245–251
Rosenzweig C, Tubiello FN (2007) Adaptation and mitigation strategies in agriculture: an analysis
of potential synergies. Mitig Adapt Strateg Glob Chang 12(5):855–873
Rosillo-Calle F, Johnson FX (2010) Food versus fuel: an informed introduction to biofuels. ZED
Books, London
Santos MJ, Dekker SC, Daioglou V, Braakhekke MC, van Vuuren DP (2017) Modeling the effects
of future growing demand for charcoal in the tropics. Front Environ Sci 5:1–12
Shindell D, Kuylenstierna JC, Vignati E, van Dingenen R, Amann M, Klimont Z et al (2012)
Simultaneously mitigating near-term climate change and improving human health and food
security. Science 335(6065):183–189
Silveira S, Johnson FX (2016) Navigating the transition to sustainable bioenergy in Sweden and
Brazil: lessons learned in a European and international context. Energy Res Soc Sci 13:180–193
Smeets EM, Faaij AP, Lewandowski IM, Turkenburg WC (2007) A bottom-up assessment and
review of global bio-energy potentials to 2050. Prog Energy Combust Sci 33(1):56–106
Smeets EM, Johnson FX, Ballard-Tremeer G (2012) Traditional and improved use of biomass for
energy in Africa. In: Janssen R, Rutz D (eds) Bioenergy for sustainable development in Africa.
Springer, Netherlands, pp 3–12
Smith HE, Eigenbrod F, Kafumbata D, Hudson MD, Schreckenberg K (2015) Criminals by
necessity: the risky life of charcoal transporters in Malawi. For Trees Livelihoods 24
(4):259–274
Smith P, Bustamante M, Ahammad H, Clark H, Dong H, Elsiddig EA, Haberl H, Harper R,
House J, Jafari M, Masera O, Mbow C, Ravindranath NH, Rice CW, Robledo Abad C,
Romanovskaya A, Sperling F, Tubiello F (2014) Agriculture, forestry and other land use
(AFOLU). In: Edenhofer O, Pichs-Madruga R, Sokona Y, Farahani E, Kadner S, Seyboth K,
Adler A, Baum I, Brunner S, Eickemeier P, Kriemann B, Savolainen J, Schlömer S, von
Stechow C, Zwickel T, Minx JC (eds) Climate change 2014: mitigation of climate change.
Contribution of working group III to the fifth assessment report of the intergovernmental panel
on climate change. Cambridge University Press, Cambridge, United Kingdom and New York,
NY, USA, pp 811–922
78
F. X. Johnson et al.
Anandarajah G, Milligan B (2018) Mapping synergies and trade-offs between energy and the
sustainable development goals. Nat Energy 3(1):10
Nguyen TT, Tenhunen J (2013) Review of integrated ecological-economic analyses for bioenergy
plants under climate change at local scale. Int J Clim Change Strategies Manage 5(3):324–343
Ochieng C, Juhola S, Johnson FX (2014) The societal role of charcoal production in climate change
adaptation of the arid and semi-arid lands (ASALs) of Kenya. In: Inderberg TH, Eriksen S,
O'Brien K, Sygna L (eds) Climate change adaptation and development: transforming paradigms
and practices. Routledge. Chapter 3
Olsson O, Johnson FX (2014) Bioenergy Trade in a Changing Climate. NORDSTAR Working
Paper 2014–01, Nordic Center of Excellence for Strategic Adaptation Research. www.nord-star.
info/workingpapers
Openshaw K (2010) Biomass energy: employment generation and its contribution to poverty
alleviation. Biomass Bioenergy 34(3):365–378
Pacini H, Assunção L, van Dam J, Toneto R Jr (2013) The price for biofuels sustainability. Energy
Policy 59:898–903
Palm CA, Vosti SA, Sanchez PA, Ericksen PJ (2013) Slash-and-burn agriculture: the search for
alternatives. Columbia University Press, New York
Popp A, Dietrich JP, Lotze-Campen H, Klein D, Bauer N, Krause M, Beringer T, Gerten D,
Edenhofer O (2011) The economic potential of bioenergy for climate change mitigation with
special attention given to implications for the land system. Environ Res Lett 6(3):034017
Pugesgaard S, Schelde K, Larsen SU, Lærke PE, Jørgensen U (2015) Comparing annual and
perennial crops for bioenergy production–influence on nitrate leaching and energy balance.
GCB Bioenergy 7(5):1136–1149
Rogers C, Sovacool BK, Clarke S (2013) Sweet nectar of the Gaia: lessons from Ethiopia's “project
Gaia”. Energy Sustain Dev 17(3):245–251
Rosenzweig C, Tubiello FN (2007) Adaptation and mitigation strategies in agriculture: an analysis
of potential synergies. Mitig Adapt Strateg Glob Chang 12(5):855–873
Rosillo-Calle F, Johnson FX (2010) Food versus fuel: an informed introduction to biofuels. ZED
Books, London
Santos MJ, Dekker SC, Daioglou V, Braakhekke MC, van Vuuren DP (2017) Modeling the effects
of future growing demand for charcoal in the tropics. Front Environ Sci 5:1–12
Shindell D, Kuylenstierna JC, Vignati E, van Dingenen R, Amann M, Klimont Z et al (2012)
Simultaneously mitigating near-term climate change and improving human health and food
security. Science 335(6065):183–189
Silveira S, Johnson FX (2016) Navigating the transition to sustainable bioenergy in Sweden and
Brazil: lessons learned in a European and international context. Energy Res Soc Sci 13:180–193
Smeets EM, Faaij AP, Lewandowski IM, Turkenburg WC (2007) A bottom-up assessment and
review of global bio-energy potentials to 2050. Prog Energy Combust Sci 33(1):56–106
Smeets EM, Johnson FX, Ballard-Tremeer G (2012) Traditional and improved use of biomass for
energy in Africa. In: Janssen R, Rutz D (eds) Bioenergy for sustainable development in Africa.
Springer, Netherlands, pp 3–12
Smith HE, Eigenbrod F, Kafumbata D, Hudson MD, Schreckenberg K (2015) Criminals by
necessity: the risky life of charcoal transporters in Malawi. For Trees Livelihoods 24
(4):259–274
Smith P, Bustamante M, Ahammad H, Clark H, Dong H, Elsiddig EA, Haberl H, Harper R,
House J, Jafari M, Masera O, Mbow C, Ravindranath NH, Rice CW, Robledo Abad C,
Romanovskaya A, Sperling F, Tubiello F (2014) Agriculture, forestry and other land use
(AFOLU). In: Edenhofer O, Pichs-Madruga R, Sokona Y, Farahani E, Kadner S, Seyboth K,
Adler A, Baum I, Brunner S, Eickemeier P, Kriemann B, Savolainen J, Schlömer S, von
Stechow C, Zwickel T, Minx JC (eds) Climate change 2014: mitigation of climate change.
Contribution of working group III to the fifth assessment report of the intergovernmental panel
on climate change. Cambridge University Press, Cambridge, United Kingdom and New York,
NY, USA, pp 811–922
78
F. X. Johnson et al.
