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Can Productivity Growth Contribute to Biodiversity Preservation? The Role of International Trade

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  • Cisneros-Pineda, Alfredo
  • Hertel, Thomas W.
  • Baldos, Uris Lantz C.
  • Chaudhary, Abhishek

Abstract

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Suggested Citation

  • Cisneros-Pineda, Alfredo & Hertel, Thomas W. & Baldos, Uris Lantz C. & Chaudhary, Abhishek, 2023. "Can Productivity Growth Contribute to Biodiversity Preservation? The Role of International Trade," 2023 Annual Meeting, July 23-25, Washington D.C. 335902, Agricultural and Applied Economics Association.
  • Handle: RePEc:ags:aaea23:335902
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    File URL: https://ageconsearch.umn.edu/record/335902/files/26989.pdf
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    References listed on IDEAS

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    1. M. Lenzen & D. Moran & K. Kanemoto & B. Foran & L. Lobefaro & A. Geschke, 2012. "International trade drives biodiversity threats in developing nations," Nature, Nature, vol. 486(7401), pages 109-112, June.
    2. Ruslana Palatnik & Roberto Roson, 2012. "Climate change and agriculture in computable general equilibrium models: alternative modeling strategies and data needs," Climatic Change, Springer, vol. 112(3), pages 1085-1100, June.
    3. David Leclère & Michael Obersteiner & Mike Barrett & Stuart H. M. Butchart & Abhishek Chaudhary & Adriana Palma & Fabrice A. J. DeClerck & Moreno Marco & Jonathan C. Doelman & Martina Dürauer & Robin , 2020. "Bending the curve of terrestrial biodiversity needs an integrated strategy," Nature, Nature, vol. 585(7826), pages 551-556, September.
    4. Nelson B Villoria, 2019. "Technology Spillovers and Land Use Change: Empirical Evidence from Global Agriculture," American Journal of Agricultural Economics, Agricultural and Applied Economics Association, vol. 101(3), pages 870-893.
    5. Wiedmann, Thomas, 2009. "A first empirical comparison of energy Footprints embodied in trade -- MRIO versus PLUM," Ecological Economics, Elsevier, vol. 68(7), pages 1975-1990, May.
    6. Ghaith, Ziad & Kulshreshtha, Suren & Natcher, David & Cameron, Bobby Thomas, 2021. "Regional Computable General Equilibrium models: A review," Journal of Policy Modeling, Elsevier, vol. 43(3), pages 710-724.
    7. Thomas Wiedmann & Richard Wood & Jan Minx & Manfred Lenzen & Dabo Guan & Rocky Harris, 2010. "A Carbon Footprint Time Series Of The Uk - Results From A Multi-Region Input-Output Model," Economic Systems Research, Taylor & Francis Journals, vol. 22(1), pages 19-42.
    8. Petr Havlík & Hugo Valin & Aline Mosnier & Michael Obersteiner & Justin S. Baker & Mario Herrero & Mariana C. Rufino & Erwin Schmid, 2013. "Crop Productivity and the Global Livestock Sector: Implications for Land Use Change and Greenhouse Gas Emissions," American Journal of Agricultural Economics, Agricultural and Applied Economics Association, vol. 95(2), pages 442-448.
    9. Dieter Gerten & Vera Heck & Jonas Jägermeyr & Benjamin Leon Bodirsky & Ingo Fetzer & Mika Jalava & Matti Kummu & Wolfgang Lucht & Johan Rockström & Sibyll Schaphoff & Hans Joachim Schellnhuber, 2020. "Feeding ten billion people is possible within four terrestrial planetary boundaries," Nature Sustainability, Nature, vol. 3(3), pages 200-208, March.
    10. Bohringer, Christoph & Loschel, Andreas, 2006. "Computable general equilibrium models for sustainability impact assessment: Status quo and prospects," Ecological Economics, Elsevier, vol. 60(1), pages 49-64, November.
    11. Ackerman, Frank & Ishikawa, Masanobu & Suga, Mikio, 2007. "The carbon content of Japan-US trade," Energy Policy, Elsevier, vol. 35(9), pages 4455-4462, September.
    12. Koichi Yamaura & Shin Sakaue & Toyoaki Washida, 2017. "An assessment of global warming and biodiversity: CGE EMEDA analyses," Environmental Economics and Policy Studies, Springer;Society for Environmental Economics and Policy Studies - SEEPS, vol. 19(2), pages 405-426, April.
    13. Kathy Baylis & Thomas Heckelei & Thomas W. Hertel, 2021. "Agricultural Trade and Environmental Sustainability," Annual Review of Resource Economics, Annual Reviews, vol. 13(1), pages 379-401, October.
    14. David Tilman & Michael Clark & David R. Williams & Kaitlin Kimmel & Stephen Polasky & Craig Packer, 2017. "Future threats to biodiversity and pathways to their prevention," Nature, Nature, vol. 546(7656), pages 73-81, June.
    15. Kirsten Svenja Wiebe & Eivind Lekve Bjelle & Johannes Többen & Richard Wood, 2018. "Implementing exogenous scenarios in a global MRIO model for the estimation of future environmental footprints," Journal of Economic Structures, Springer;Pan-Pacific Association of Input-Output Studies (PAPAIOS), vol. 7(1), pages 1-18, December.
    16. Marie Pratzer & Álvaro Fernández-Llamazares & Patrick Meyfroidt & Tobias Krueger & Matthias Baumann & Stephen T. Garnett & Tobias Kuemmerle, 2023. "Agricultural intensification, Indigenous stewardship and land sparing in tropical dry forests," Nature Sustainability, Nature, vol. 6(6), pages 671-682, June.
    17. Laura Vang Rasmussen & Brendan Coolsaet & Adrian Martin & Ole Mertz & Unai Pascual & Esteve Corbera & Neil Dawson & Janet A. Fisher & Phil Franks & Casey M. Ryan, 2018. "Social-ecological outcomes of agricultural intensification," Nature Sustainability, Nature, vol. 1(6), pages 275-282, June.
    18. Kretschmer, Bettina & Peterson, Sonja, 2010. "Integrating bioenergy into computable general equilibrium models -- A survey," Energy Economics, Elsevier, vol. 32(3), pages 673-686, May.
    19. Laura Vang Rasmussen & Brendan Coolsaet & Adrian Martin & Ole Mertz & Unai Pascual & Esteve Corbera & Neil Dawson & Janet A. Fisher & Phil Franks & Casey M. Ryan, 2018. "Publisher Correction: Social-ecological outcomes of agricultural intensification," Nature Sustainability, Nature, vol. 1(7), pages 376-376, July.
    20. Jeffrey J. Reimer, 2007. "Assessing Global Computable General Equilibrium Model Validity Using Agricultural Price Volatility," American Journal of Agricultural Economics, Agricultural and Applied Economics Association, vol. 89(2), pages 383-397.
    21. Johnson, Justin Andrew & Baldos, Uris Lantz & Hertel, Thomas & Nootenboom, Chris & Polasky, Stephen & Roxburgh, Toby, 2020. "Global Futures: Modelling the global economic impacts of environmental change to support policy-making," Technical Papers 323944, Purdue University, Center for Global Trade Analysis, Global Trade Analysis Project.
    22. Y. Anny Huang & Manfred Lenzen & Christopher Weber & Joy Murray & H. Scott Matthews, 2009. "The Role Of Input-Output Analysis For The Screening Of Corporate Carbon Footprints," Economic Systems Research, Taylor & Francis Journals, vol. 21(3), pages 217-242.
    23. Christian Folberth & Nikolay Khabarov & Juraj Balkovič & Rastislav Skalský & Piero Visconti & Philippe Ciais & Ivan A. Janssens & Josep Peñuelas & Michael Obersteiner, 2020. "The global cropland-sparing potential of high-yield farming," Nature Sustainability, Nature, vol. 3(4), pages 281-289, April.
    24. Kenneth G. Cassman & Patricio Grassini, 2020. "A global perspective on sustainable intensification research," Nature Sustainability, Nature, vol. 3(4), pages 262-268, April.
    25. Nelson B. Villoria & Alla Golub & Derek Byerlee & James Stevenson, 2013. "Will Yield Improvements on the Forest Frontier Reduce Greenhouse Gas Emissions? A Global Analysis of Oil Palm," American Journal of Agricultural Economics, Agricultural and Applied Economics Association, vol. 95(5), pages 1301-1308.
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