Global Energy Assessment (GEA): Land and Water: Linkages to Bioenergy
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Rattan Lal | Monique Hoogwijk | Suani Teixeira Coelho | Siwa Msangi | Omar Masera | Helmut Haberl | Gunilla Björklund | Fridolin Krausmann | Rik Leemans | Oswaldo Lucon | Olivia Agbenyega | Astrid Agostini | Karl-Heinz Erb | Christoph Plutzar | H. Haberl | O. Lucon | O. Masera | G. Björklund | R. Lal | R. Leemans | F. Krausmann | C. Plutzar | J. Moreira | M. Hoogwijk | K. Erb | S. Coelho | S. Msangi | O. Agbenyega | A. Agostini | Jos É Roberto Moreira
[1] Ronald Trostle,et al. Global Agricultural Supply and Demand: Factors Contributing to the Recent Increase in Food Commodity Prices , 2012 .
[2] Helmut Haberl,et al. Global bioenergy potentials from agricultural land in 2050: Sensitivity to climate change, diets and yields , 2011, Biomass & bioenergy.
[3] Manfred Lenzen,et al. Renewable Energy in the Context of Sustainable Development , 2011 .
[4] T. Beringer,et al. Bioenergy production potential of global biomass plantations under environmental and agricultural constraints , 2011 .
[5] Andre M Nassar,et al. Biofuels and land-use changes: searching for the top model , 2011, Interface Focus.
[6] T. Beringer,et al. The global technical potential of bio-energy in 2050 considering sustainability constraints , 2010, Current opinion in environmental sustainability.
[7] John Beghin,et al. The Impacts of Biofuel Targets on Land-Use Change and Food Supply: A Global CGE Assessment , 2010 .
[8] Ralph E.H. Sims,et al. Direct and indirect land‐use competition issues for energy crops and their sustainable production – an overview , 2010 .
[9] Udaya C. Kalluri,et al. Phytosequestration: Carbon Biosequestration by Plants and the Prospects of Genetic Engineering , 2010 .
[10] Rattan Lal,et al. Managing Soils and Ecosystems for Mitigating Anthropogenic Carbon Emissions and Advancing Global Food Security , 2010 .
[11] José Goldemberg,et al. São Paulo—The “Other” Brazil: Different Pathways on Climate Change for State and Federal Governments , 2010 .
[12] Vasilis Fthenakis,et al. Life-cycle uses of water in U.S. electricity generation , 2010 .
[13] Chris Somerville,et al. Feedstocks for Lignocellulosic Biofuels , 2010, Science.
[14] C. Gilbert. How to Understand High Food Prices , 2010 .
[15] Timothy D. Searchinger,et al. Biofuels and the need for additional carbon , 2010 .
[16] A. Cowie,et al. Bioenergy: counting on incentives. , 2010, Science.
[17] A. Faaij,et al. Bioenergy revisited: Key factors in global potentials of bioenergy , 2010 .
[18] Detlef P. van Vuuren,et al. Future bio-energy potential under various natural constraints , 2009 .
[19] Michael Obersteiner,et al. Fixing a Critical Climate Accounting Error , 2009, Science.
[20] M. Ittersum,et al. Will the world have enough to eat , 2009 .
[21] A. Hoekstra,et al. The water footprint of bioenergy , 2009, Proceedings of the National Academy of Sciences.
[22] Francesco Cherubini,et al. Energy- and greenhouse gas-based LCA of biofuel and bioenergy systems: Key issues, ranges and recommendations , 2009 .
[23] Shahbaz Khan,et al. Pathways to reduce the environmental footprints of water and energy inputs in food production , 2009 .
[24] Göran Berndes,et al. Environmental, land-use and economic implications of Brazilian sugarcane expansion 1996–2006 , 2009 .
[25] Günter Leithold,et al. Effects of biogas digestion of clover/grass-leys, cover crops and crop residues on nitrogen cycle and crop yield in organic stockless farming systems , 2008 .
[26] P. Rogers. Facing the freshwater crisis. , 2008, Scientific American.
[27] Tracey Holloway,et al. Carbon payback times for crop-based biofuel expansion in the tropics: the effects of changing yield and technology , 2008 .
[28] J. Seabra,et al. Green house gases emissions in the production and use of ethanol from sugarcane in Brazil: the 2005/2006 averages and a prediction for 2020. , 2008 .
[29] B. Bates,et al. Climate change and water. , 2008 .
[30] J. Goldemberg,et al. The Sustainability of Ethanol Production from Sugarcane , 2008, Renewable Energy.
[31] J. Goldemberg. The Brazilian biofuels industry , 2008, Biotechnology for biofuels.
[32] Jack A. Heinemann,et al. Agriculture at a Crossroads , 2008, Science.
[33] Helmut Haberl,et al. Global patterns of socioeconomic biomass flows in the year 2000: A comprehensive assessment of supply, consumption and constraints , 2008 .
[34] Rakesh Belwal,et al. Catalysts and barriers to cut flower export , 2008 .
[35] W. Martin,et al. Implications of Higher Global Food Prices for Poverty in Low-Income Countries , 2008 .
[36] Alexander Müller,et al. Some insights in the effect of growing bio-energy demand on global food security and natural resources , 2008 .
[37] Jacinto F. Fabiosa,et al. Use of U.S. Croplands for Biofuels Increases Greenhouse Gases Through Emissions from Land-Use Change , 2008, Science.
[38] Veronika Dornburg,et al. Scenario projections for future market potentials of biobased bulk chemicals. , 2008, Environmental science & technology.
[39] Les G. Firbank,et al. Assessing the Ecological Impacts of Bioenergy Projects , 2008, BioEnergy Research.
[40] Stina Gustafsson,et al. Sugarcane ethanol production in Brazil: an expansion model sensitive to socioeconomic and environmental concerns , 2007 .
[41] Arjen Ysbert Hoekstra,et al. The water footprint of energy consumption: an assessment of water requirements of primary energy carriers , 2007 .
[42] Ambuj D. Sagar,et al. Bioenergy and sustainable development , 2007 .
[43] Jane M. F. Johnson,et al. Corn Stover to Sustain Soil Organic Carbon Further Constrains Biomass Supply , 2007 .
[44] Helmut Haberl,et al. A comprehensive global 5 min resolution land-use data set for the year 2000 consistent with national census data , 2007 .
[45] H. Haberl,et al. Quantifying and mapping the human appropriation of net primary production in earth's terrestrial ecosystems , 2007, Proceedings of the National Academy of Sciences.
[46] C. Müller,et al. Modelling the role of agriculture for the 20th century global terrestrial carbon balance , 2007 .
[47] J. Melillo,et al. Tropical agriculture and global warming: impacts and mitigation options , 2007 .
[48] A. Faaij,et al. A bottom-up assessment and review of global bio-energy potentials to 2050 , 2007 .
[49] R. Lal,et al. Potential Soil Carbon Sequestration and CO2 Offset by Dedicated Energy Crops in the USA , 2006 .
[50] Michael A. Larson,et al. Simulated effects of forest management alternatives on landscape structure and habitat suitability in the Midwestern United States , 2006 .
[51] Jo Dewulf,et al. Renewables-based technology : sustainability assessment , 2006 .
[52] Chris Somerville,et al. The Billion-Ton Biofuels Vision , 2006, Science.
[53] K. Showers. A history of African soil: perceptions, use and abuse , 2006 .
[54] Manfred Trimborn,et al. Mitigation of greenhouse gas emissions by anaerobic digestion of cattle slurry , 2006 .
[55] A. Faaij,et al. Steps towards the development of a certification system for sustainable bio-energy trade , 2006 .
[56] A. Faaij,et al. Potential of biomass energy out to 2100, for four IPCC SRES land-use scenarios , 2005 .
[57] R. Lal. World crop residues production and implications of its use as a biofuel. , 2005, Environment international.
[58] Fridolin Krausmann,et al. Milk, Manure, and Muscle Power. Livestock and the Transformation of Preindustrial Agriculture in Central Europe , 2004 .
[59] Wim Turkenburg,et al. Assessment of the global and regional geographical, technical and economic potential of onshore wind energy , 2004 .
[60] Wim Turkenburg,et al. Policies for renewable energy in the European Union and its member states: an overview , 2004 .
[61] Norbert Sauberer,et al. Human appropriation of net primary production and species diversity in agricultural landscapes , 2003 .
[62] Wim Turkenburg,et al. Exploration of the ranges of the global potential of biomass for energy , 2003 .
[63] Göran Berndes,et al. The contribution of biomass in the future global energy supply: a review of 17 studies , 2003 .
[64] S. Wirsenius,et al. The Biomass Metabolism of the Food System: A Model‐Based Survey of the Global and Regional Turnover of Food Biomass , 2003 .
[65] J. Norman,et al. The global distribution of cultivable lands: current patterns and sensitivity to possible climate change , 2002 .
[66] S. Polasky,et al. Agricultural sustainability and intensive production practices , 2002, Nature.
[67] Gordon McKay,et al. Dioxin characterisation, formation and minimisation during municipal solid waste (MSW) incineration: review , 2002 .
[68] J. Martínez-Alier. Ecological Debt and Property Rights on Carbon Sinks and Reservoirs , 2002 .
[69] R. Dunlap,et al. Which Function(s) of the Environment Do We Study? A Comparison of Environmental and Natural Resource Sociology , 2002 .
[70] J. Canadell,et al. Recent patterns and mechanisms of carbon exchange by terrestrial ecosystems , 2001, Nature.
[71] Kenneth G. Cassman,et al. Grain yield of rice cultivars and lines developed in the Philippines since 1966 , 2000 .
[72] K. Cassman. Ecological intensification of cereal production systems: yield potential, soil quality, and precision agriculture. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[73] Richard A. Houghton,et al. Land‐use change and the carbon cycle , 1995 .
[74] N. Arnell. Book reviewThe social and environmental effects of large dams, volume III: A review of the literature: edited by D Trussell Wadebridge Ecological Centre, UK, 1992, 244 pp , 1994 .
[75] P. Rajabapaiah,et al. Biogas electricity -- The Pura village case study , 1993 .
[76] André Faaij,et al. Exploring land use changes and the role of palm oil production in Indonesia and Malaysia , 2011 .
[77] Eric F. Lambin,et al. Land-use and land-cover change : local processes and global impacts , 2010 .
[78] E. Robert,et al. Indirect Land Use Change From Increased Biofuels Demand - Comparison of Models and Results for Marginal Biofuels Production from Different Feedstocks , 2010 .
[79] Stefan Bringezu,et al. Assessing biofuels : towards sustainable production and use of resources , 2009 .
[80] J. Goldemberg,et al. Are biofuels a feasible option , 2009 .
[81] Tracey Holloway,et al. Resetting global expectations from agricultural biofuels , 2009 .
[82] David Molden,et al. Saving Water : From Field to Fork Curbing Losses and Wastage in the Food Chain , 2008 .
[83] Lorenzo Cotula,et al. Fuelling exclusion ? The biofuels boom and poor people ’ s access to land , 2008 .
[84] V. L. McGuire,et al. Water-Level Changes in the High Plains Aquifer, Predevelopment to 2005 and 2003 to 2005 , 2007 .
[85] S. Engel,et al. The Impacts of Tropical Biofuel Production on Land-use: The case of Indonesia , 2007 .
[86] V. L. McGuire. Changes in Water Levels and Storage in the High Plains Aquifer, Predevelopment to 2005 , 2007 .
[87] R. Lal,et al. Soil and environmental implications of using crop residues as biofuel feedstock , 2006 .
[88] H. Mooney,et al. 23 – Estimations of Global Terrestrial Productivity: Converging toward a Single Number? , 2001 .
[89] L. T. Evans,et al. Feeding the Ten Billion: Plants and Population Growth , 1999 .