Bioenergy, food security and poverty reduction: trade-offs and synergies along the water–energy–food security nexus
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Manfred Denich | Jan Börner | Varun Gaur | Dawit Guta | Detlef Virchow | Alisher Mirzabaev | J. von Braun | D. Guta | M. Denich | J. Börner | V. Gaur | A. Mirzabaev | D. Virchow | Joachim von Braun | Jann Goedecke | J. Goedecke | Joachim von Braun
[1] Biljana Kulišić,et al. The role of governments in renewable energy: The importance of policy consistency , 2013 .
[2] Hisham Zerriffi,et al. Three dimensional energy profile , 2011 .
[3] Felix Creutzig,et al. Carbon Lock-Out: Advancing Renewable Energy Policy in Europe , 2012 .
[4] R. Hahn,et al. Government Failure and Market Failure: On the Inefficiency of Environmental and Energy Policy , 2009 .
[5] Joachim von Braun,et al. The world food situation: New driving forces and required actions [In Chinese] , 2007 .
[6] Omar Masera,et al. Fuel switching or multiple cooking fuels? Understanding inter-fuel substitution patterns in rural Mexican households , 1997 .
[7] Joachim von Braun,et al. Rising Food Prices: What Should Be Done? Steigende Nahrungsmittelpreise: Was sollte getan werden? La hausse des prix alimentaires : Que doit‐on faire? , 2008 .
[8] Sivan Kartha,et al. Using modern bioenergy to reduce rural poverty , 2001 .
[9] Matti Parikka,et al. Global biomass fuel resources , 2004 .
[10] Alexandra Purkus,et al. Bioenergy governance between market and government failures: A new institutional economics perspective , 2012 .
[11] A. Faaij,et al. The current bioenergy production potential of semi-arid and arid regions in sub-Saharan Africa , 2011 .
[12] Ayhan Demirbas,et al. Use of algae as biofuel sources. , 2010 .
[13] Göran Berndes,et al. Bioenergy and water - the implications of large-scale bioenergy production for water use and supply. , 2002 .
[14] R. Schaeffer,et al. Land use competition for production of food and liquid biofuels: An analysis of the arguments in the current debate , 2010 .
[15] Debajit Palit,et al. Sustainable model for financial viability of decentralized biomass gasifier based power projects , 2011 .
[16] Rintu Banerjee,et al. Enzymatic transesterification of Jatropha oil , 2009, Biotechnology for biofuels.
[17] Geoffrey P. Hammond,et al. Barriers to and drivers for UK bioenergy development , 2011 .
[18] N. Shah,et al. The commercial performance of cellulosic ethanol supply-chains in Europe , 2009, Biotechnology for biofuels.
[19] William J. Baumol,et al. The theory of environmental policy: Contents , 1988 .
[20] D. Guta. Effect of fuelwood scarcity and socio-economic factors on household bio-based energy use and energy substitution in rural Ethiopia , 2014 .
[21] Ralph E.H. Sims,et al. Direct and indirect land‐use competition issues for energy crops and their sustainable production – an overview , 2010 .
[22] Mark Harvey,et al. The new competition for land: Food, energy, and climate change , 2011 .
[23] P. Mohanty,et al. Electricity access for geographically disadvantaged rural communities—technology and policy insights , 2004 .
[24] Gaihe Yang,et al. Household Biogas Use in Rural China: A Study of Opportunities and Constraints , 2018, Renewable Energy.
[25] Alexandra C Morel,et al. How will oil palm expansion affect biodiversity? , 2008, Trends in ecology & evolution.
[26] P. Kokkonen,et al. [Resources in the future]. , 2001, Duodecim; laaketieteellinen aikakauskirja.
[27] Lian Pin Koh,et al. Potential habitat and biodiversity losses from intensified biodiesel feedstock production. , 2007, Conservation biology : the journal of the Society for Conservation Biology.
[28] M. Adrianzen. Improved cooking stoves and firewood consumption: Quasi-experimental evidence from the Northern Peruvian Andes , 2013 .
[29] W. Baumol,et al. The theory of environmental policy: On the theory of externalities , 1988 .
[30] R. Srinivasan,et al. Assessing the Economic Benefits of Sustainable Land Management Practices in Bhutan , 2014 .
[31] Wallace E. Tyner,et al. Future biofuels policy alternatives , 2007 .
[32] W. Lim,et al. Biomass fuels and lung cancer , 2012, Respirology.
[33] Robert Mangoyana,et al. Decentralised bioenergy systems: A review of opportunities and threats , 2011 .
[34] Frederick Maurice Slater,et al. Ground flora, small mammal and bird species diversity in miscanthus (Miscanthus×giganteus) and reed canary-grass (Phalaris arundinacea) fields , 2007 .
[35] Patrick Lamers,et al. International bioenergy trade—A review of past developments in the liquid biofuel market , 2011 .
[36] K. Kaygusuz,et al. Climate Change and Biomass Energy for Sustainability , 2010 .
[37] Chris I. Goodier,et al. Concern or compliance? Drivers of urban decentralised energy initiatives , 2014 .
[38] Sumi Mehta,et al. Indoor air pollution from household use of solid fuels , 2004 .
[39] Marcos Aurélio Vasconcelos de Freitas,et al. The challenge of energy poverty: Brazilian case study , 2011 .
[40] L. P. Koh,et al. Biofuels, biodiversity, and people: Understanding the conflicts and finding opportunities , 2008 .
[41] C. Arndt,et al. Biofuels and Economic Development: A Computable General Equilibrium Analysis for Tanzania , 2012 .
[42] C. Ringler,et al. The nexus across water, energy, land and food (WELF): potential for improved resource use efficiency? , 2013 .
[43] S. Polasky,et al. Land Clearing and the Biofuel Carbon Debt , 2008, Science.
[44] 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 .
[45] D. Mitchell. A Note on Rising Food Prices , 2008 .
[46] D. Sawyer. Climate change, biofuels and eco-social impacts in the Brazilian Amazon and Cerrado , 2008, Philosophical Transactions of the Royal Society B: Biological Sciences.
[47] Michael Obersteiner,et al. Woody biomass energy potential in 2050 , 2014 .
[48] J. Lawson. Comparative Quantification of Health Risks. Global and Regional Burden of Disease Attributable to Selected Major Risk Factors , 2006 .
[49] L. Lutzenhiser. Social and Behavioral Aspects of Energy use , 1993 .
[50] Channing Arndt,et al. Gender Implications of Biofuels Expansion in Africa : The Case of Mozambique , 2011 .
[51] Jörg Peters,et al. Promoting Biofuels: Implications for Developing Countries , 2008 .
[52] Michael Greenstone,et al. Indoor air pollution, health and economic well-being , 2008 .
[53] P. Alvarez,et al. The water footprint of biofuels: a drink or drive issue? , 2009, Environmental science & technology.
[54] Wallace E. Tyner,et al. Biofuels for all? Understanding the Global Impacts of Multinational Mandates , 2008, GTAP Working Paper.
[55] A. Hastings,et al. Land‐use change to bioenergy production in Europe: implications for the greenhouse gas balance and soil carbon , 2012 .
[56] D. Moran,et al. Farm-level constraints on the domestic supply of perennial energy crops in the UK , 2008 .
[57] J. Goldemberg. Leapfrog energy technologies , 1998 .
[58] B. Bhatt,et al. Firewood consumption pattern of different tribal communities in Northeast India , 2004 .
[59] Sayan Chakrabarty,et al. Economic viability of biogas and green self-employment opportunities , 2013 .
[60] P. Ciaian,et al. Bioenergy and global land-use change , 2014 .
[61] William K. Jaeger,et al. Biofuel Economics in a Setting of Multiple Objectives & Unintended Consequences , 2011 .
[62] S Pacala,et al. Stabilization Wedges: Solving the Climate Problem for the Next 50 Years with Current Technologies , 2004, Science.
[63] R. Heltberg,et al. Fuel switching: evidence from eight developing countries , 2004 .
[64] Claudia Pahl-Wostl,et al. Water security for a planet under pressure: interconnected challenges of a changing world call for sustainable solutions , 2012 .
[65] Ashok Gulati,et al. High food prices: the what, who, and how of proposed policy actions. , 2008 .
[66] Jingyi Han,et al. Small-scale bioenergy projects in rural China: Lessons to be learnt , 2008 .
[67] Karin Westerberg,et al. How to transform local energy systems towards bioenergy? Three strategy models for transformation , 2007 .
[68] Dolf Gielen,et al. Considering the energy, water and food nexus: Towards an integrated modelling approach , 2011 .
[69] B. Armstrong,et al. Public health benefits of strategies to reduce greenhouse-gas emissions: household energy , 2009, The Lancet.
[70] T. Hertel,et al. Impacts of EU biofuels directives on global markets and EU environmental quality: An integrated PE, global CGE analysis , 2011 .
[71] Nicolas Gerber. Bioenergy and Rural Development in Developing Countries: A Review of Existing Studies , 2008 .
[72] Brian Bush,et al. Modeling biofuel expansion effects on land use change dynamics , 2013 .
[73] A. Hira,et al. No substitute for oil? How Brazil developed its ethanol industry , 2009 .
[74] D. Guta. Assessment of Biomass Fuel Resource Potential And Utilization in Ethiopia: Sourcing Strategies for Renewable Energies , 2012 .
[75] J. Wesseler,et al. The Future of Governance in the Global Bioeconomy: Policy, Regulation, and Investment Challenges for the Biotechnology and Bioenergy Sectors , 2010 .
[76] P. Portney. The theory of environmental policy , 1976 .
[77] David Zilberman,et al. Challenge of biofuel: filling the tank without emptying the stomach? , 2007 .
[78] J. Guilbert. The world health report 2002 - reducing risks, promoting healthy life. , 2003, Education for health.
[79] James T. Murphy. Making the energy transition in rural east Africa: Is leapfrogging an alternative? , 2001 .
[80] Dirk Pilat,et al. Why New Business Models Matter for Green Growth , 2013 .
[81] R. Hosier,et al. Household fuel choice in Zimbabwe: An empirical test of the energy ladder hypothesis , 1987 .
[82] Keith Openshaw,et al. Biomass energy: employment generation and its contribution to poverty alleviation. , 2010 .
[83] Niels B. Schulz,et al. Comparison of Energy Transitions in the United States and Developing and Industrializing Economies , 2007 .
[84] Jacinto F. Fabiosa,et al. Use of U.S. Croplands for Biofuels Increases Greenhouse Gases Through Emissions from Land-Use Change , 2008, Science.
[85] Sumi Mehta,et al. Assessing Household Solid Fuel Use: Multiple Implications for the Millennium Development Goals , 2006, Environmental health perspectives.
[86] Siwa Msangi,et al. Biofuels production in developing countries: assessing tradeoffs in welfare and food security , 2009 .
[87] Tatsuji Koizumi,et al. The status of bioenergy development in developing countries , 2013 .
[88] A. Bondeau,et al. Indirect land-use changes can overcome carbon savings from biofuels in Brazil , 2010, Proceedings of the National Academy of Sciences.
[89] H. Zerriffi,et al. Three dimensional energy profile : A conceptual framework for assessing household energy use , 2011 .
[90] Siwa Msangi,et al. Global Scenarios for Biofuels: Impacts and Implications , 2008 .
[91] Kristian Lindgren,et al. Why large-scale bioenergy production on marginal land is unfeasible: A conceptual partial equilibrium analysis , 2013 .
[92] Leif Gustavsson,et al. Time-dependent climate benefits of using forest residues to substitute fossil fuels , 2011 .
[93] D. Guta. Application of an almost ideal demand system (AIDS) to Ethiopian rural residential energy use: panel data evidence. , 2012 .
[94] Toshihiko Nakata,et al. Analysis of the energy access improvement and its socio-economic impacts in rural areas of developing countries , 2007 .
[95] Karen Smith Stegen,et al. The winds of change: How wind firms assess Germany's energy transition , 2013 .