References
41
References
Achten WMJ, Verchot L, Franken YJ, Mathijs E, Singh VP, Aerts R, Muys B (2008) Jatropha
bio-diesel production and use. Biomass Bioenerg 32(12):1063–1084
Agarwal AK (2007) Biofuels (alcohols and biodiesel) applications as fuels for internal combustion
engines. Prog Energy Combust Sci 33(3):233–271
Agoramoorthy G, Hsu MJ (2008) Biogas plants ease ecological stress in India’s remote villages.
Hum Ecol 36:435–441
Ajanovic A (2011) Biofuels versus food production: does biofuels production increase food prices?
Energy 36:2070–2076
Altenburg T, Dietz H, Hahl M, Nikolidakis N, Rosendahl C, Seelige K (2009) Biodiesel in India:
value chain organisation and policy options for rural development. German Development Institute,
Bonn
Altieri MA (2000) Ecological impacts of industrial agriculture and the possibilities for truly sustainable farming. In: Magdoff F, Foster JB, Buttel F (eds) Hungry for profit: the agribusiness threat
to farmers, food, and the environment. Monthly Review Press, New York, pp 77–92
Altieri MA, Toledo VM (2011) The agroecological revolution in Latin America: rescuing nature,
ensuring food sovereignty and empowering peasants. J Peasant Stud 38(3):587–612
Altieri MA, Funes-Monzote FR, Petersen P (2012) Agroecologically efficient agricultural systems
for smallholder farmers: contributions to food sovereignty. Agron Sustain Dev 32:1–13
Ariza-Montobbio P, Lele S (2010) Jatropha plantations for biodiesel in Tamil Nadu, India: viability,
livelihood trade-offs and latent conflict. Ecol Econ 70(2):189–195
Arrighi, G., Drangel, J. (1986) The stratification of the world-economy: an exploration of the
semiperipheral zone. Review 10(1): 9–74
Azar C, Lindgren K, Obersteiner M, Riahi K, van Vuuren DP, den Elzen MGJ, Mollersten K, Larson
ED (2010) The feasibility of low CO 2 concentration targets and the role of bio-energy with carbon
capture and storage (BECCS). Clim Change 100:195–202
Baicha Z, Salar-García MJ, Ortiz-Martínez VM, Hernández-Fernández FJ, de los Ríos AP, Labjar
N, Lofti E, Elmahi M (2016) A critical review on microalgae as an alternative source for bioenergy
production: a promising low cost substrate for microbial fuel cells. Fuel Process Technol 154:104–
116
Bailis RE, Baka JE (2010) Greenhouse gas emissions and land use change from Jatropha curcasbased jet fuel in Brazil. Environ Sci Technol 44:8684–8691
Baffes J, Haniotis T (2010) Placing the 2006/08 commodity price boom into perspective. Policy
research working paper 5371. World Bank, Washington DC
Banse M, Nowicki P, van Meijl H (2008) Why are current world food prices so high?. Wageningen
University, Wageningen
Bastos Lima MG (2012) An institutional analysis of biofuel policies and their social implications:
lessons from Brazil, India and Indonesia. Occasional Paper No. 9, series Social Dimensions
of Green Economy and Sustainable Development. United Nations Research Institute for Social
Development (UNRISD), Geneva
Bastos Lima MG (2018) Toward multipurpose agriculture: food, fuels, flex crops, and prospects for
a bioeconomy. Glob Environ Polit 18(2):143–150
Berkhout F, Wieczorek AJ, Raven R (2011) Avoiding environmental convergence: a possible role
for sustainability experiments in latecomer countries? Int J InstS Econ 3(2):367–385
Beychok MR (1975) Process and environmental technology for producing SNG and liquid fuels.
US Environmental Protection Agency, Washington DC
Biran A, Cameron M, Ensink J, Lines J, Smith L (2008) Smoke and malaria: are interventions to
reduce exposure to indoor air pollution likely to increase exposure to mosquitoes and malaria?.
World Health Organization, Geneva
Boeing, Embraer, FAPESP, Unicamp (2013) Flightpath to aviation biofuels in Brazil: Action plan.
http://www.fapesp.br/7831. Accessed 7 Oct 2020
41
References
Achten WMJ, Verchot L, Franken YJ, Mathijs E, Singh VP, Aerts R, Muys B (2008) Jatropha
bio-diesel production and use. Biomass Bioenerg 32(12):1063–1084
Agarwal AK (2007) Biofuels (alcohols and biodiesel) applications as fuels for internal combustion
engines. Prog Energy Combust Sci 33(3):233–271
Agoramoorthy G, Hsu MJ (2008) Biogas plants ease ecological stress in India’s remote villages.
Hum Ecol 36:435–441
Ajanovic A (2011) Biofuels versus food production: does biofuels production increase food prices?
Energy 36:2070–2076
Altenburg T, Dietz H, Hahl M, Nikolidakis N, Rosendahl C, Seelige K (2009) Biodiesel in India:
value chain organisation and policy options for rural development. German Development Institute,
Bonn
Altieri MA (2000) Ecological impacts of industrial agriculture and the possibilities for truly sustainable farming. In: Magdoff F, Foster JB, Buttel F (eds) Hungry for profit: the agribusiness threat
to farmers, food, and the environment. Monthly Review Press, New York, pp 77–92
Altieri MA, Toledo VM (2011) The agroecological revolution in Latin America: rescuing nature,
ensuring food sovereignty and empowering peasants. J Peasant Stud 38(3):587–612
Altieri MA, Funes-Monzote FR, Petersen P (2012) Agroecologically efficient agricultural systems
for smallholder farmers: contributions to food sovereignty. Agron Sustain Dev 32:1–13
Ariza-Montobbio P, Lele S (2010) Jatropha plantations for biodiesel in Tamil Nadu, India: viability,
livelihood trade-offs and latent conflict. Ecol Econ 70(2):189–195
Arrighi, G., Drangel, J. (1986) The stratification of the world-economy: an exploration of the
semiperipheral zone. Review 10(1): 9–74
Azar C, Lindgren K, Obersteiner M, Riahi K, van Vuuren DP, den Elzen MGJ, Mollersten K, Larson
ED (2010) The feasibility of low CO 2 concentration targets and the role of bio-energy with carbon
capture and storage (BECCS). Clim Change 100:195–202
Baicha Z, Salar-García MJ, Ortiz-Martínez VM, Hernández-Fernández FJ, de los Ríos AP, Labjar
N, Lofti E, Elmahi M (2016) A critical review on microalgae as an alternative source for bioenergy
production: a promising low cost substrate for microbial fuel cells. Fuel Process Technol 154:104–
116
Bailis RE, Baka JE (2010) Greenhouse gas emissions and land use change from Jatropha curcasbased jet fuel in Brazil. Environ Sci Technol 44:8684–8691
Baffes J, Haniotis T (2010) Placing the 2006/08 commodity price boom into perspective. Policy
research working paper 5371. World Bank, Washington DC
Banse M, Nowicki P, van Meijl H (2008) Why are current world food prices so high?. Wageningen
University, Wageningen
Bastos Lima MG (2012) An institutional analysis of biofuel policies and their social implications:
lessons from Brazil, India and Indonesia. Occasional Paper No. 9, series Social Dimensions
of Green Economy and Sustainable Development. United Nations Research Institute for Social
Development (UNRISD), Geneva
Bastos Lima MG (2018) Toward multipurpose agriculture: food, fuels, flex crops, and prospects for
a bioeconomy. Glob Environ Polit 18(2):143–150
Berkhout F, Wieczorek AJ, Raven R (2011) Avoiding environmental convergence: a possible role
for sustainability experiments in latecomer countries? Int J InstS Econ 3(2):367–385
Beychok MR (1975) Process and environmental technology for producing SNG and liquid fuels.
US Environmental Protection Agency, Washington DC
Biran A, Cameron M, Ensink J, Lines J, Smith L (2008) Smoke and malaria: are interventions to
reduce exposure to indoor air pollution likely to increase exposure to mosquitoes and malaria?.
World Health Organization, Geneva
Boeing, Embraer, FAPESP, Unicamp (2013) Flightpath to aviation biofuels in Brazil: Action plan.
http://www.fapesp.br/7831. Accessed 7 Oct 2020
