References
45
McElroy MB (2006) The ethanol illusion: can we move beyond and energy policy running on
hype and hot air? Harvard Magazine Nov–Dec 2006. http://harvardmagazine.com/2006/11/theethanol-illusion.html. Accessed 7 Oct 2020
Melillo JM, Reilly JM, Kicklighter DW, Gurgel AC, Cronin TW, Peltsev S, Felzer BS, Wang X,
Sokolov AP, Schlosser CA (2009) Indirect emissions from biofuels: how important? Science
326(5958):1397–1399
Mitchell D (2008) A note on rising food prices. Policy research working paper 4682. World Bank,
Washington, DC
Mozaffarian M, Zwart RWR, Boerrigter H, Deuwaarder DP, Kersten SRA (2004) “Green gas” as
SNG (Synthetic Natural Gas): a renewable fuel with conventional quality. Paper presented at
the “Science in Thermal and Chemical Biomass Conversion” conference, 30 Aug–2 Sept 2004,
Victoria, Canada
Mulder K, Hagens N, Fisher B (2010) A comparative analysis of the energy returns on water
invested. Ambio 39(1):30–39
Muller A (2009) Sustainable agriculture and the production of biomass for energy use. Clim Change
94:319–331
Muratori M, Calvin K, Wise M, Kyle P, Edmonds J (2016) Global economic consequences of
deploying bioenergy with carbon capture and storage (BECCS). Environ Res Lett 11:095004
Murphy R, Woods J, Black M, McManus M (2011) Global developments in the competition for
land from biofuels. Food Policy 36:S52–S61
Naughton-Treves L, Kammen DM, Chapman C (2007) Burning biodiversity: Woody biomass use
by commercial and subsistence groups in western Uganda’s forests. Biol Cons 134(2):232–241
Nepstad DC, Stickler CM, Filho BS, Merry F (2008) Interactions among Amazon land use, forests
and climate: prospects for a near-term forest tipping point. Philos Trans R Soc B: Biol Sci
363(1498):1737–1746
OECD/FAO (2013) Agricultural Outlook 2013–2022. OECD, Paris
OECD/FAO (2019) Agricultural Outlook 2019–2028. OECD, Paris
Park S, Croteau P, Boering KA, Etheridge DM, Ferretti D, Fraser PJ, Kim K-R, Krummel PB,
Landenfelds RL, van Ommen TD, Steele LP, Trudinger CM (2012) Trends and seasonal cycles
in the isotopic composition of nitrous oxide since 1940. Nat Geosci 5:261–265
Pearlson M, Wollersheim C, Hileman J (2013) A techno-economic review of hydroprocessed
renewable esters and fatty acids for jet fuel production. Biofuels, Bioprod Biorefin 7:89–96
Peet R, Watts M (2004) Liberation ecologies: environment, development, social movements.
Routledge, London
Pereira LG, Cavalett O, Bonomi A, Zhang Y, Warner E, Chum HL (2019) Comparison of biofuel
life-cycle GHG emissions assessment tools: the case studies of ethanol produced from sugarcane,
corn, and wheat. Renew Sustain Energy Rev 110:1–12
Persson UM (2015) The impact of biofuel demand on agricultural commodity prices: a systematic
review. Wiley Interdiscip Rev: Energy Environ 4(5):410–428
Piloto-Rodríguez R, Sánchez-Barroto Y, Melo-Espinosa EA, Verhelst S (2017) Assessment of diesel
engine performance when fueled with biodiesel from algae and microalgae: an overview. Renew
Sustain Energy Rev 69:833–842
Prussi M, O’Connell A, Lonza L (2019) Analysis of current aviation biofuel technical production
potential in EU28. Biomass Bioenerg 130:105371
Purohit P, Michaelowa A (2007) CDM potential of bagasse cogeneration in India. Energy Policy
35(10):4779–4798
Qin Z, Canter CE, Dunn JB, Mueller S, Kwon H, Jeongwoo H, Wander MM, Wang M (2018) Land
management change greatly impacts biofuels’ greenhouse gas emissions. Glob Chang Biology—
Bioenergy: Bioprod Sustain Bioeconomy 10(6):370–381
Raghu S, Anderson RC, Daehler CC, Davis AS, Wiedenmann RN et al (2006) Adding biofuels to
the invasive species fire? Science 313(5794):1742
Reay DS, Davidson EA, Smith KA, Smith P, Melillo JM, Dentener F, Crutzen PJ (2012) Global
agriculture and nitrous oxide emissions. Nat Clim Chang 2:410–416
45
McElroy MB (2006) The ethanol illusion: can we move beyond and energy policy running on
hype and hot air? Harvard Magazine Nov–Dec 2006. http://harvardmagazine.com/2006/11/theethanol-illusion.html. Accessed 7 Oct 2020
Melillo JM, Reilly JM, Kicklighter DW, Gurgel AC, Cronin TW, Peltsev S, Felzer BS, Wang X,
Sokolov AP, Schlosser CA (2009) Indirect emissions from biofuels: how important? Science
326(5958):1397–1399
Mitchell D (2008) A note on rising food prices. Policy research working paper 4682. World Bank,
Washington, DC
Mozaffarian M, Zwart RWR, Boerrigter H, Deuwaarder DP, Kersten SRA (2004) “Green gas” as
SNG (Synthetic Natural Gas): a renewable fuel with conventional quality. Paper presented at
the “Science in Thermal and Chemical Biomass Conversion” conference, 30 Aug–2 Sept 2004,
Victoria, Canada
Mulder K, Hagens N, Fisher B (2010) A comparative analysis of the energy returns on water
invested. Ambio 39(1):30–39
Muller A (2009) Sustainable agriculture and the production of biomass for energy use. Clim Change
94:319–331
Muratori M, Calvin K, Wise M, Kyle P, Edmonds J (2016) Global economic consequences of
deploying bioenergy with carbon capture and storage (BECCS). Environ Res Lett 11:095004
Murphy R, Woods J, Black M, McManus M (2011) Global developments in the competition for
land from biofuels. Food Policy 36:S52–S61
Naughton-Treves L, Kammen DM, Chapman C (2007) Burning biodiversity: Woody biomass use
by commercial and subsistence groups in western Uganda’s forests. Biol Cons 134(2):232–241
Nepstad DC, Stickler CM, Filho BS, Merry F (2008) Interactions among Amazon land use, forests
and climate: prospects for a near-term forest tipping point. Philos Trans R Soc B: Biol Sci
363(1498):1737–1746
OECD/FAO (2013) Agricultural Outlook 2013–2022. OECD, Paris
OECD/FAO (2019) Agricultural Outlook 2019–2028. OECD, Paris
Park S, Croteau P, Boering KA, Etheridge DM, Ferretti D, Fraser PJ, Kim K-R, Krummel PB,
Landenfelds RL, van Ommen TD, Steele LP, Trudinger CM (2012) Trends and seasonal cycles
in the isotopic composition of nitrous oxide since 1940. Nat Geosci 5:261–265
Pearlson M, Wollersheim C, Hileman J (2013) A techno-economic review of hydroprocessed
renewable esters and fatty acids for jet fuel production. Biofuels, Bioprod Biorefin 7:89–96
Peet R, Watts M (2004) Liberation ecologies: environment, development, social movements.
Routledge, London
Pereira LG, Cavalett O, Bonomi A, Zhang Y, Warner E, Chum HL (2019) Comparison of biofuel
life-cycle GHG emissions assessment tools: the case studies of ethanol produced from sugarcane,
corn, and wheat. Renew Sustain Energy Rev 110:1–12
Persson UM (2015) The impact of biofuel demand on agricultural commodity prices: a systematic
review. Wiley Interdiscip Rev: Energy Environ 4(5):410–428
Piloto-Rodríguez R, Sánchez-Barroto Y, Melo-Espinosa EA, Verhelst S (2017) Assessment of diesel
engine performance when fueled with biodiesel from algae and microalgae: an overview. Renew
Sustain Energy Rev 69:833–842
Prussi M, O’Connell A, Lonza L (2019) Analysis of current aviation biofuel technical production
potential in EU28. Biomass Bioenerg 130:105371
Purohit P, Michaelowa A (2007) CDM potential of bagasse cogeneration in India. Energy Policy
35(10):4779–4798
Qin Z, Canter CE, Dunn JB, Mueller S, Kwon H, Jeongwoo H, Wander MM, Wang M (2018) Land
management change greatly impacts biofuels’ greenhouse gas emissions. Glob Chang Biology—
Bioenergy: Bioprod Sustain Bioeconomy 10(6):370–381
Raghu S, Anderson RC, Daehler CC, Davis AS, Wiedenmann RN et al (2006) Adding biofuels to
the invasive species fire? Science 313(5794):1742
Reay DS, Davidson EA, Smith KA, Smith P, Melillo JM, Dentener F, Crutzen PJ (2012) Global
agriculture and nitrous oxide emissions. Nat Clim Chang 2:410–416
