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Introducing Liquid Biofuels into the GTAP Data Base

Author

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  • Taheripour, Farzad
  • Dileep Birur
  • Thomas Hertel
  • Wally Tyner

Abstract

Production of liquid biofuels has rapidly increased around the world in recent years. Biofuel production, by its nature, can affect the economy and environment of many countries in different ways. Global Computable General Equilibrium (CGE) analysis is an appropriate approach to study the widespread socio-economic and environmental impacts of bioenergy production. An appropriate benchmark data base including an independent biofuel sector is essential to develop a CGE model for this purpose. This paper represents the first effort aimed at formally introducing liquid biofuels sectors into the version 6 of the GTAP Data Base (Dimaranan, 2007). It builds on the International Energy Agency (IEA) data base, plant-level, biofuel processing models, and the SplitCom program developed by Horridge (2005) to introduce three biofuel sectors into the GTAP Data Base.

Suggested Citation

  • Taheripour, Farzad & Dileep Birur & Thomas Hertel & Wally Tyner, 2007. "Introducing Liquid Biofuels into the GTAP Data Base," GTAP Research Memoranda 2534, Center for Global Trade Analysis, Department of Agricultural Economics, Purdue University.
  • Handle: RePEc:gta:resmem:2534
    Note: GTAP Research Memorandum No. 11
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    File URL: https://www.gtap.agecon.purdue.edu/resources/res_display.asp?RecordID=2534
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    Cited by:

    1. Taheripour, Farzad & Hertel, Thomas W. & Gopalakrishnan, Badri N. & Sahin, Sebnem & Escurra, Jorge J., 2015. "Agricultural production, irrigation, climate change, and water scarcity in India," 2015 AAEA & WAEA Joint Annual Meeting, July 26-28, San Francisco, California 205591, Agricultural and Applied Economics Association.
    2. Kolasa, Marcin, 2014. "Real convergence and its illusions," Economic Modelling, Elsevier, vol. 37(C), pages 79-88.
    3. Hertel, Thomas, 2013. "Global Applied General Equilibrium Analysis Using the Global Trade Analysis Project Framework," Handbook of Computable General Equilibrium Modeling, in: Peter B. Dixon & Dale Jorgenson (ed.), Handbook of Computable General Equilibrium Modeling, edition 1, volume 1, chapter 0, pages 815-876, Elsevier.
    4. Kretschmer, Bettina & Peterson, Sonja, 2010. "Integrating bioenergy into computable general equilibrium models -- A survey," Energy Economics, Elsevier, vol. 32(3), pages 673-686, May.
    5. Thierry Brunelle & Patrice Dumas, 2012. "Can Numerical Models Estimate Indirect Land-use Change?," Working Papers 2012.65, Fondazione Eni Enrico Mattei.
    6. Bardazzi, Elisa & Standardi, Gabriele & Key Hernandez, Ramon E. & Bosello, Francesco, 2021. "Introducing the Water-Energy link in a General Equilibrium Model: ICES-WN," Conference papers 333255, Purdue University, Center for Global Trade Analysis, Global Trade Analysis Project.
    7. Jun Yang & Huanguang Qiu & Jikun Huang & Scott Rozelle, 2008. "Fighting global food price rises in the developing world: the response of China and its effect on domestic and world markets," Agricultural Economics, International Association of Agricultural Economists, vol. 39(s1), pages 453-464, November.
    8. Mwaura, Francis, 2014. "Understanding dynamism of land ownership, use and patterns of allocation for the locals before inviting foreign investors: the Ugandan case," Conference papers 332543, Purdue University, Center for Global Trade Analysis, Global Trade Analysis Project.
    9. Hertel, Thomas W. & Tyner, Wallace E. & Birur, Dileep K., 2008. "Biofuels for all? Understanding the Global Impacts of Multinational Mandates," Conference papers 331729, Purdue University, Center for Global Trade Analysis, Global Trade Analysis Project.
    10. Bouët, Antoine & Dimaranan, Betina V. & Valin, Hugo, 2010. "Modeling the global trade and environmental impacts of biofuel policies," IFPRI discussion papers 1018, International Food Policy Research Institute (IFPRI).
    11. Julien Lefevre, 2018. "Modeling the Socioeconomic Impacts of the Adoption of a Carbon Pricing Instrument – Literature review," CIRED Working Papers hal-03128619, HAL.
    12. Pena-Levano, Luis M & Rasetti, Michele & Melo, Grace, 2016. "Interaction of biofuel, food security, indirect land use change and greenhouse mitigation policies in the European Union," 2016 Annual Meeting, July 31-August 2, Boston, Massachusetts 236075, Agricultural and Applied Economics Association.
    13. Aguiar, Angel & Walmsley, Terrie & Carrico, Caitlyn, 2013. "Improving the Representation of the U.S. in the MyGTAP Model with the Disaggregation of Labor and Households," Conference papers 332429, Purdue University, Center for Global Trade Analysis, Global Trade Analysis Project.
    14. Ren, Xiaolin & Fullerton, Don & Braden, John B., 2011. "Optimal taxation of externalities interacting through markets: A theoretical general equilibrium analysis," Resource and Energy Economics, Elsevier, vol. 33(3), pages 496-514, September.
    15. Golub, Alla A. & Hertel, Thomas W. & Rose, Steven K. & Sohngen, Brent, 2008. "Biofuel Growth: Global Greenhouse Gas Emissions Impacts from Changes in Forest Carbon Stocks," 2008 Annual Meeting, July 27-29, 2008, Orlando, Florida 47450, American Agricultural Economics Association (New Name 2008: Agricultural and Applied Economics Association).
    16. Monica Padella & Adele Finco & Wallace E. Tyner, 2012. "Impacts of Biofuels Policies in the EU," Economics of Energy & Environmental Policy, International Association for Energy Economics, vol. 0(Number 3).
    17. Carmen Aina & Lorenzo Cappellari & Marco Francesconi, 2010. "Student Performance may not Improve when Universities are Choosier," CESifo Working Paper Series 3264, CESifo.
    18. Gurgel, Angelo Costa, 2011. "Impactos da Política Americana de Estímulo aos Biocombustíveis sobre a Produção Agropecuária e o Uso da Terra," Brazilian Journal of Rural Economy and Sociology (Revista de Economia e Sociologia Rural-RESR), Sociedade Brasileira de Economia e Sociologia Rural, vol. 49(1), pages 1-34, March.
    19. Cororaton, Caesar B. & Timilsina, Govinda R. & Mevel, Simon, 2010. "Impacts Of Large Scale Expansion Of Biofuels On Global Poverty And Income Distribution," 2010: Climate Change in World Agriculture: Mitigation, Adaptation, Trade and Food Security, June 2010, Stuttgart-Hohenheim, Germany 91279, International Agricultural Trade Research Consortium.
    20. Mahaffey, Harry & Taheripour, Farzad & Tyner, Wallace E., 2016. "Evaluating the Economic and Environmental Impacts of a Global GMO Ban," 2016 Annual Meeting, July 31-August 2, Boston, Massachusetts 235591, Agricultural and Applied Economics Association.
    21. Alla A. Golub & Thomas W. Hertel, 2012. "Modeling Land-Use Change Impacts Of Biofuels In The Gtap-Bio Framework," Climate Change Economics (CCE), World Scientific Publishing Co. Pte. Ltd., vol. 3(03), pages 1-30.
    22. Britz, Wolfgang & Li, Jingwen & Shang, Linmei, 2021. "Combining large-scale sensitivity analysis in Computable General Equilibrium models with Machine Learning: An Example Application to policy supporting the bio-economy," Conference papers 333285, Purdue University, Center for Global Trade Analysis, Global Trade Analysis Project.
    23. Lopez Barrera, Emiliano & Hertel, Thomas, 2021. "Global food waste across the income spectrum: Implications for food prices, production and resource use," Food Policy, Elsevier, vol. 98(C).
    24. Ngeleza, Guyslain K. & Muhammad, Andrew, 2008. "Preferential Trade Agreements between the Monetary Community of Central Africa and the European Union," Conference papers 331732, Purdue University, Center for Global Trade Analysis, Global Trade Analysis Project.
    25. Tetsuji Tanaka & Nobuhiro Hosoe, 2011. "What Drove the Crop Price Hikes in the Food Crisis?," GRIPS Discussion Papers 11-16, National Graduate Institute for Policy Studies.

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