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Ruben Jonathan Bibas

Personal Details

First Name:Ruben
Middle Name:Jonathan
Last Name:Bibas
Suffix:
RePEc Short-ID:pbi182
[This author has chosen not to make the email address public]
http://www.imaclim.centre-cired.fr/spip.php?article229&lang=en

Affiliation

Centre International de Recherche sur l'Environnement et le Développement (CIRED)

Paris, France
http://www.centre-cired.fr/
RePEc:edi:ciredfr (more details at EDIRC)

Research output

as
Jump to: Working papers Articles

Working papers

  1. Ruben Bibas & Aurélie Méjean & Meriem Hamdi-Cherif, 2015. "Energy efficiency policies and the timing of action: An assessment of climate mitigation costs," Post-Print hal-01086071, HAL.
  2. Sandrine Mathy & Meike Fink & Ruben Bibas, 2014. "Repenser le rôle des scénarios : construction participative de scénarios bas carbone pour la France," Post-Print hal-01137263, HAL.
  3. Ruben Bibas & Julien Lefevre, 2013. "Innovative approach of technical change in CGE models: reconciling BU and TD through dual accounting," EcoMod2013 5617, EcoMod.
  4. Julien Lefevre & Frédéric Ghersi & Ruben Bibas, 2013. "Hybrid Input-Output tables in physical units and money value for E3 CGE model calibration: methodologies of construction and implications thereof for climate and energy policy analysis," EcoMod2013 5566, EcoMod.
  5. Ruben Bibas & Jean Charles Hourcade, 2013. "Transitions énergétiques en France: Enseignements d'exercices de prospective," CIRED Working Papers halshs-00849948, HAL.
  6. Adrien Vogt-Schilb & Ruben Bibas & Christophe Cassen & Céline Guivarch & Jean Charles Hourcade, 2013. "Fiches argumentaires issues de l'étude "Conditions de l'émergence et impacts macroéconomiques du véhicule électrique en Europe et en Chine" - Working Paper Chaire modélisation prospective au," Post-Print hal-00802401, HAL.
  7. Ruben Bibas & Aurélie Méjean, 2012. "Negative emissions and ambitious climate policies in a second best world: A general equilibrium assessment of technology options in the electricity sector," EcoMod2012 4569, EcoMod.
  8. Ruben Bibas & Sandrine Mathy & Meike Fink, 2012. "An "acceptable" low carbon scenario for France: Participatory scenario design and economic assessment," CIRED Working Papers halshs-00797976, HAL.
  9. Ruben Bibas & Aurélie Méjean, 2012. "Bioenergy and CO2 Sequestration: Climate Policies Beyond Technological Constraints," Working Papers 2012.88, Fondazione Eni Enrico Mattei.
  10. Ruben Bibas & Sandrine Mathy & Meike Fink, 2012. "Building a Low Carbon Scenario for France: How a Participatory Approach Can Enhance Social and Economic Acceptability," CIRED Working Papers hal-00797412, HAL.
  11. Olesen Gunnar Boye & Meike Fink & Ruben Bibas & Sandrine Mathy & Eva Schmid & Brigitte Knopf, 2012. "Engaging Civil Society and Stakeholders in Low-carbon Scenarios - Synthesis Report of the ENCI-LowCarb Project," CIRED Working Papers hal-00797415, HAL.
  12. Meike Fink & Ruben Bibas & Sandrine Mathy, 2012. "Building Socially and Economically Acceptable Energy Scenario - A Participatory Approach Applied to France - Scientific report," CIRED Working Papers hal-00797414, HAL.
  13. Ruben Bibas & Sandrine Mathy & Meike Fink, 2012. "Pathways to a Low Carbon Future in France - 2050: A Participatory Approach. Presentation of several long-term mitigation scenarios for France," Post-Print hal-00797235, HAL.
  14. Ruben Bibas & Aurélie Méjean, 2012. "Potential and limitations of bioenergy options for low carbon transitions," CIRED Working Papers hal-00866407, HAL.
  15. Ruben Bibas & Sandrine Mathy & Meike Fink, 2012. "Expert & Stakeholder Meetings in France within a Collaborative Scenario Creation Process," CIRED Working Papers hal-00797413, HAL.
  16. Ruben Bibas & Sandrine Mathy & Meike Fink, 2012. "Un scénario bas carbone "acceptable" pour la France: Élaboration participative et analyse macroéconomique," CIRED Working Papers halshs-00797980, HAL.
  17. Ruben Bibas & Sandrine Mathy & Jean Charles Hourcade, 2012. "Impact macroéconomique du rythme de déclassement des centrales nucléaires sur la période 2010-2050," CIRED Working Papers halshs-00800393, HAL.
  18. Ruben Bibas & Sandrine Mathy & Meike Fink, 2012. "Élaboration d'un scénario bas carbone pour la France Une approche participative pour intégrer l'acceptabilité sociale et économique," CIRED Working Papers hal-00797410, HAL.
  19. Oskar Lecuyer & Ruben Bibas, 2011. "Combining climate and energy policies: synergies or antagonisms?," Post-Print hal-00801917, HAL.
  20. Mathy, Sandrine & Fink, Meike & Bibas, Ruben, 2011. "Quel rôle pour les scénarios Facteur 4 dans la construction de la décision publique ? [What role for Factor 4 scenarios in public policy-making ?]," MPRA Paper 32112, University Library of Munich, Germany.
  21. Oskar Lecuyer & Ruben Bibas, 2011. "Combining Climate and Energy Policies: Synergies or Antagonism? Modeling Interactions With Energy Efficiency Instruments," Working Papers 2011.98, Fondazione Eni Enrico Mattei.
  22. Lemoyne de Forges, Sabine & Bibas, Ruben & Hallegatte, Stephane, 2011. "A dynamic model of extreme risk coverage : resilience and efficiency in the global reinsurance market," Policy Research Working Paper Series 5807, The World Bank.

Articles

  1. Mathy, Sandrine & Fink, Meike & Bibas, Ruben, 2015. "Rethinking the role of scenarios: Participatory scripting of low-carbon scenarios for France," Energy Policy, Elsevier, vol. 77(C), pages 176-190.
  2. Steven Rose & Elmar Kriegler & Ruben Bibas & Katherine Calvin & Alexander Popp & Detlef Vuuren & John Weyant, 2014. "Bioenergy in energy transformation and climate management," Climatic Change, Springer, vol. 123(3), pages 477-493, April.
  3. Ruben Bibas & Aurélie Méjean, 2014. "Potential and limitations of bioenergy for low carbon transitions," Climatic Change, Springer, vol. 123(3), pages 731-761, April.
  4. Sandrine Mathy & Meike Fink & Ruben Bibas, 2014. "Repenser le rôle des scénarios : construction participative de scénarios bas carbone pour la France," Revue d'économie industrielle, De Boeck Université, vol. 0(4), pages 69-103.

Citations

Many of the citations below have been collected in an experimental project, CitEc, where a more detailed citation analysis can be found. These are citations from works listed in RePEc that could be analyzed mechanically. So far, only a minority of all works could be analyzed. See under "Corrections" how you can help improve the citation analysis.

Blog mentions

As found by EconAcademics.org, the blog aggregator for Economics research:
  1. Lemoyne de Forges, Sabine & Bibas, Ruben & Hallegatte, Stephane, 2011. "A dynamic model of extreme risk coverage : resilience and efficiency in the global reinsurance market," Policy Research Working Paper Series 5807, The World Bank.

    Mentioned in:

    1. The imperfect market for re-insurance
      by Economic Logician in Economic Logic on 2011-10-18 19:31:00

Working papers

  1. Ruben Bibas & Aurélie Méjean & Meriem Hamdi-Cherif, 2015. "Energy efficiency policies and the timing of action: An assessment of climate mitigation costs," Post-Print hal-01086071, HAL.

    Cited by:

    1. Florian Leblanc & C. Cassen & Thierry Brunelle & Patrice Dumas & Aurélie Méjean, 2014. "Globis final report on Integrated Scenarios D30," Working Papers hal-01300545, HAL.
    2. Guivarch, Céline & Monjon, Stéphanie, 2017. "Identifying the main uncertainty drivers of energy security in a low-carbon world: The case of Europe," Energy Economics, Elsevier, vol. 64(C), pages 530-541.
    3. Elias Asproudis & Nadeem Khan & Nada Korac-Kakabadse, 2019. "Game of Regional Environmental Policy: Europe and US," Journal of Industry, Competition and Trade, Springer, vol. 19(1), pages 1-20, March.
    4. Asproudis, Elias & Filippiadis, Eleftherios & Tian, Mo, 2022. "Timing of environmental technological choice and trade unions' climate solidarity," Technological Forecasting and Social Change, Elsevier, vol. 182(C).
    5. Riahi, Keywan & Kriegler, Elmar & Johnson, Nils & Bertram, Christoph & den Elzen, Michel & Eom, Jiyong & Schaeffer, Michiel & Edmonds, Jae & Isaac, Morna & Krey, Volker & Longden, Thomas & Luderer, Gu, 2015. "Locked into Copenhagen pledges — Implications of short-term emission targets for the cost and feasibility of long-term climate goals," Technological Forecasting and Social Change, Elsevier, vol. 90(PA), pages 8-23.
    6. Charlotte Senkpiel & Audrey Dobbins & Christina Kockel & Jan Steinbach & Ulrich Fahl & Farina Wille & Joachim Globisch & Sandra Wassermann & Bert Droste-Franke & Wolfgang Hauser & Claudia Hofer & Lars, 2020. "Integrating Methods and Empirical Findings from Social and Behavioural Sciences into Energy System Models—Motivation and Possible Approaches," Energies, MDPI, vol. 13(18), pages 1-30, September.
    7. Colmenares, Gloria & Löschel, Andreas & Madlener, Reinhard, 2019. "The rebound effect and its representation in energy and climate models," CAWM Discussion Papers 106, University of Münster, Münster Center for Economic Policy (MEP).

  2. Ruben Bibas & Aurélie Méjean, 2012. "Negative emissions and ambitious climate policies in a second best world: A general equilibrium assessment of technology options in the electricity sector," EcoMod2012 4569, EcoMod.

    Cited by:

    1. Willenbockel, Dirk, 2017. "Macroeconomic Effects of a Low-Carbon Electricity Transition in Kenya and Ghana: An Exploratory Dynamic General Equilibrium Analysis," MPRA Paper 78070, University Library of Munich, Germany.

  3. Ruben Bibas & Aurélie Méjean, 2012. "Potential and limitations of bioenergy options for low carbon transitions," CIRED Working Papers hal-00866407, HAL.

    Cited by:

    1. Ruben Bibas & Aurélie Méjean & Meriem Hamdi-Cherif, 2015. "Energy efficiency policies and the timing of action: An assessment of climate mitigation costs," Post-Print hal-01086071, HAL.
    2. John Weyant & Elmar Kriegler, 2014. "Preface and introduction to EMF 27," Climatic Change, Springer, vol. 123(3), pages 345-352, April.
    3. Enrica De Cian & Johannes Buhl & Samuel Carrara & Michela Bevione & Silvia Monetti & Holger Berg, 2016. "Knowledge Creation between Integrated Assessment Models and Initiative-Based Learning - An Interdisciplinary Approach," Working Papers 2016.66, Fondazione Eni Enrico Mattei.
    4. Elmar Kriegler & John Weyant & Geoffrey Blanford & Volker Krey & Leon Clarke & Jae Edmonds & Allen Fawcett & Gunnar Luderer & Keywan Riahi & Richard Richels & Steven Rose & Massimo Tavoni & Detlef Vuu, 2014. "The role of technology for achieving climate policy objectives: overview of the EMF 27 study on global technology and climate policy strategies," Climatic Change, Springer, vol. 123(3), pages 353-367, April.
    5. Geoffrey Blanford & Elmar Kriegler & Massimo Tavoni, 2014. "Harmonization vs. fragmentation: overview of climate policy scenarios in EMF27," Climatic Change, Springer, vol. 123(3), pages 383-396, April.

  4. Oskar Lecuyer & Ruben Bibas, 2011. "Combining climate and energy policies: synergies or antagonisms?," Post-Print hal-00801917, HAL.

    Cited by:

    1. Oskar Lecuyer & Philippe Quirion, 2012. "Can Uncertainty Justify Overlapping Policy Instruments to Mitigate Emissions ?," CIRED Working Papers hal-00866440, HAL.
    2. Shahriar Shah Heydari & Niels Vestergaard, 2015. "Alternate solutions in mixing energy tax/subsidy and emission control policies," Working Papers 119/15, University of Southern Denmark, Department of Sociology, Environmental and Business Economics.
    3. del Río, Pablo, 2017. "Why does the combination of the European Union Emissions Trading Scheme and a renewable energy target makes economic sense?," Renewable and Sustainable Energy Reviews, Elsevier, vol. 74(C), pages 824-834.
    4. Spyridaki, N.-A. & Flamos, A., 2014. "A paper trail of evaluation approaches to energy and climate policy interactions," Renewable and Sustainable Energy Reviews, Elsevier, vol. 40(C), pages 1090-1107.
    5. Pablo Río, 2014. "On evaluating success in complex policy mixes: the case of renewable energy support schemes," Policy Sciences, Springer;Society of Policy Sciences, vol. 47(3), pages 267-287, September.

  5. Mathy, Sandrine & Fink, Meike & Bibas, Ruben, 2011. "Quel rôle pour les scénarios Facteur 4 dans la construction de la décision publique ? [What role for Factor 4 scenarios in public policy-making ?]," MPRA Paper 32112, University Library of Munich, Germany.

    Cited by:

    1. Sandrine Mathy & Meike Fink & Ruben Bibas, 2015. "Rethinking the role of scenarios: Participatory scripting of low-carbon scenarios for France," Post-Print hal-01086501, HAL.

  6. Oskar Lecuyer & Ruben Bibas, 2011. "Combining Climate and Energy Policies: Synergies or Antagonism? Modeling Interactions With Energy Efficiency Instruments," Working Papers 2011.98, Fondazione Eni Enrico Mattei.

    Cited by:

    1. Giliberto Capano & Michael Howlett, 2020. "The Knowns and Unknowns of Policy Instrument Analysis: Policy Tools and the Current Research Agenda on Policy Mixes," SAGE Open, , vol. 10(1), pages 21582440199, January.
    2. Michael Howlett & Pablo del Rio, 2015. "The parameters of policy portfolios: verticality and horizontality in design spaces and their consequences for policy mix formulation," Environment and Planning C, , vol. 33(5), pages 1233-1245, October.

  7. Lemoyne de Forges, Sabine & Bibas, Ruben & Hallegatte, Stephane, 2011. "A dynamic model of extreme risk coverage : resilience and efficiency in the global reinsurance market," Policy Research Working Paper Series 5807, The World Bank.

    Cited by:

    1. Burns,Andrew & Jooste,Charl & Schwerhoff,Gregor, 2021. "Macroeconomic Modeling of Managing Hurricane Damage in the Caribbean : The Case of Jamaica," Policy Research Working Paper Series 9505, The World Bank.
    2. Matt Davison & Darrell Leadbetter & Bin Lu & Jane Voll, 2016. "Are Counterparty Arrangements in Reinsurance a Threat to Financial Stability?," Staff Working Papers 16-39, Bank of Canada.

Articles

  1. Mathy, Sandrine & Fink, Meike & Bibas, Ruben, 2015. "Rethinking the role of scenarios: Participatory scripting of low-carbon scenarios for France," Energy Policy, Elsevier, vol. 77(C), pages 176-190.

    Cited by:

    1. McGookin, Connor & Ó Gallachóir, Brian & Byrne, Edmond, 2021. "Participatory methods in energy system modelling and planning – A review," Renewable and Sustainable Energy Reviews, Elsevier, vol. 151(C).
    2. Chris Bataille & Henri Waisman & Michel Colombier & Laura Segafredo & Jim Williams & Frank Jotzo, 2016. "The need for national deep decarbonization pathways for effective climate policy," Climate Policy, Taylor & Francis Journals, vol. 16(sup1), pages 7-26, June.
    3. Louis-Gaëtan Giraudet & Cyril Bourgeois & Philippe Quirion, 2021. "Policies for low-carbon and affordable home heating: A French outlook," Post-Print hal-01890642, HAL.
    4. David Glotin & Cyril Bourgeois & Louis-Gaëtan Giraudet & Philippe Quirion, 2019. "Prediction is difficult, even when it's about the past: a hindcast experiment using Res-IRF, an integrated energy-economy model," Working Papers 2019.03, FAERE - French Association of Environmental and Resource Economists.
    5. Steve Pye & Chris Bataille, 2016. "Improving deep decarbonization modelling capacity for developed and developing country contexts," Climate Policy, Taylor & Francis Journals, vol. 16(sup1), pages 27-46, June.
    6. Helena Sustar & Miloš N. Mladenović & Moshe Givoni, 2020. "The Landscape of Envisioning and Speculative Design Methods for Sustainable Mobility Futures," Sustainability, MDPI, vol. 12(6), pages 1-24, March.
    7. Stefan Lechtenböhmer & Clemens Schneider & María Yetano Roche & Samuel Höller, 2015. "Re-Industrialisation and Low-Carbon Economy—Can They Go Together? Results from Stakeholder-Based Scenarios for Energy-Intensive Industries in the German State of North Rhine Westphalia," Energies, MDPI, vol. 8(10), pages 1-26, October.
    8. Steve Pye & Christophe McGlade & Chris Bataille & Gabrial Anandarajah & Amandine Denis-Ryan & Vladimir Potashnikov, 2016. "Exploring national decarbonization pathways and global energy trade flows: a multi-scale analysis," Climate Policy, Taylor & Francis Journals, vol. 16(sup1), pages 92-109, June.
    9. Franck Lecocq & Alain Nadaï & C. Cassen, 2021. "Getting models and modellers to inform deep decarbonisation strategies," Post-Print halshs-03504158, HAL.
    10. Venturini, Giada & Karlsson, Kenneth & Münster, Marie, 2019. "Impact and effectiveness of transport policy measures for a renewable-based energy system," Energy Policy, Elsevier, vol. 133(C).

  2. Steven Rose & Elmar Kriegler & Ruben Bibas & Katherine Calvin & Alexander Popp & Detlef Vuuren & John Weyant, 2014. "Bioenergy in energy transformation and climate management," Climatic Change, Springer, vol. 123(3), pages 477-493, April.

    Cited by:

    1. Calvin, Katherine V. & Beach, Robert & Gurgel, Angelo & Labriet, Maryse & Loboguerrero Rodriguez, Ana Maria, 2016. "Agriculture, forestry, and other land-use emissions in Latin America," Energy Economics, Elsevier, vol. 56(C), pages 615-624.
    2. Holmatov, B. & Schyns, J.F. & Krol, M.S. & Gerbens-Leenes, P.W. & Hoekstra, A.Y., 2021. "Can crop residues provide fuel for future transport? Limited global residue bioethanol potentials and large associated land, water and carbon footprints," Renewable and Sustainable Energy Reviews, Elsevier, vol. 149(C).
    3. Alexander Popp & Steven Rose & Katherine Calvin & Detlef Vuuren & Jan Dietrich & Marshall Wise & Elke Stehfest & Florian Humpenöder & Page Kyle & Jasper Vliet & Nico Bauer & Hermann Lotze-Campen & Dav, 2014. "Land-use transition for bioenergy and climate stabilization: model comparison of drivers, impacts and interactions with other land use based mitigation options," Climatic Change, Springer, vol. 123(3), pages 495-509, April.
    4. Florian Leblanc & C. Cassen & Thierry Brunelle & Patrice Dumas & Aurélie Méjean, 2014. "Globis final report on Integrated Scenarios D30," Working Papers hal-01300545, HAL.
    5. P. A. Turner & C. B. Field & D. B. Lobell & D. L. Sanchez & K. J. Mach, 2018. "Unprecedented rates of land-use transformation in modelled climate change mitigation pathways," Nature Sustainability, Nature, vol. 1(5), pages 240-245, May.
    6. Guivarch, Céline & Monjon, Stéphanie, 2017. "Identifying the main uncertainty drivers of energy security in a low-carbon world: The case of Europe," Energy Economics, Elsevier, vol. 64(C), pages 530-541.
    7. Paim, Maria-Augusta & Dalmarco, Arthur R. & Yang, Chung-Han & Salas, Pablo & Lindner, Sören & Mercure, Jean-Francois & de Andrade Guerra, José Baltazar Salgueirinho Osório & Derani, Cristiane & Bruce , 2019. "Evaluating regulatory strategies for mitigating hydrological risk in Brazil through diversification of its electricity mix," Energy Policy, Elsevier, vol. 128(C), pages 393-401.
    8. Searchinger, Timothy D. & Beringer, Tim & Strong, Asa, 2017. "Does the world have low-carbon bioenergy potential from the dedicated use of land?," Energy Policy, Elsevier, vol. 110(C), pages 434-446.
    9. Alexandre C. Köberle & Vassilis Daioglou & Pedro Rochedo & André F. P. Lucena & Alexandre Szklo & Shinichiro Fujimori & Thierry Brunelle & Etsushi Kato & Alban Kitous & Detlef P. Vuuren & Roberto Scha, 2022. "Can global models provide insights into regional mitigation strategies? A diagnostic model comparison study of bioenergy in Brazil," Climatic Change, Springer, vol. 170(1), pages 1-31, January.
    10. Haruka Ohashi & Tomoko Hasegawa & Akiko Hirata & Shinichiro Fujimori & Kiyoshi Takahashi & Ikutaro Tsuyama & Katsuhiro Nakao & Yuji Kominami & Nobuyuki Tanaka & Yasuaki Hijioka & Tetsuya Matsui, 2019. "Biodiversity can benefit from climate stabilization despite adverse side effects of land-based mitigation," Nature Communications, Nature, vol. 10(1), pages 1-11, December.
    11. Yeh, Sonia & Witcover, Julie & Lade, Gabriel E. & Sperling, Daniel, 2016. "A review of low carbon fuel policies: Principles, program status and future directions," Energy Policy, Elsevier, vol. 97(C), pages 220-234.
    12. Lauri, Pekka & Forsell, Nicklas & Korosuo, Anu & Havlík, Petr & Obersteiner, Michael & Nordin, Annika, 2017. "Impact of the 2°C target on global woody biomass use," Forest Policy and Economics, Elsevier, vol. 83(C), pages 121-130.
    13. Sampedro, Jon & Kyle, Page & Ramig, Christopher W. & Tanner, Daniel & Huster, Jonathan E. & Wise, Marshall A., 2021. "Dynamic linking of upstream energy and freight demands for bio and fossil energy pathways in the Global Change Analysis Model," Applied Energy, Elsevier, vol. 302(C).
    14. Camilla C. N. Oliveira & Gerd Angelkorte & Pedro R. R. Rochedo & Alexandre Szklo, 2021. "The role of biomaterials for the energy transition from the lens of a national integrated assessment model," Climatic Change, Springer, vol. 167(3), pages 1-22, August.
    15. Matteo Muratori & Nico Bauer & Steven K. Rose & Marshall Wise & Vassilis Daioglou & Yiyun Cui & Etsushi Kato & Matthew Gidden & Jessica Strefler & Shinichiro Fujimori & Ronald D. Sands & Detlef P. Vuu, 2020. "EMF-33 insights on bioenergy with carbon capture and storage (BECCS)," Climatic Change, Springer, vol. 163(3), pages 1621-1637, December.
    16. Audoly, Richard & Vogt-Schilb, Adrien & Guivarch, Celine, 2014. "Pathways toward zero-carbon electricity required for climate stabilization," Policy Research Working Paper Series 7075, The World Bank.
    17. Robert Fischer & Erik Elfgren & Andrea Toffolo, 2018. "Energy Supply Potentials in the Northern Counties of Finland, Norway and Sweden towards Sustainable Nordic Electricity and Heating Sectors: A Review," Energies, MDPI, vol. 11(4), pages 1-31, March.
    18. Vassilis Daioglou & Steven K. Rose & Nico Bauer & Alban Kitous & Matteo Muratori & Fuminori Sano & Shinichiro Fujimori & Matthew J. Gidden & Etsushi Kato & Kimon Keramidas & David Klein & Florian Lebl, 2020. "Bioenergy technologies in long-run climate change mitigation: results from the EMF-33 study," Climatic Change, Springer, vol. 163(3), pages 1603-1620, December.
    19. Tomoko Hasegawa & Ronald D. Sands & Thierry Brunelle & Yiyun Cui & Stefan Frank & Shinichiro Fujimori & Alexander Popp, 2020. "Food security under high bioenergy demand toward long-term climate goals," Climatic Change, Springer, vol. 163(3), pages 1587-1601, December.
    20. Jing-Li Fan & Qian Wang & Xian Zhang, 2021. "A bibliometric analysis of the water-energy-food nexus based on the SCIE and SSCI database of the Web of Science," Mitigation and Adaptation Strategies for Global Change, Springer, vol. 26(2), pages 1-26, February.
    21. Ajay Gambhir & Laurent Drouet & David McCollum & Tamaryn Napp & Dan Bernie & Adam Hawkes & Oliver Fricko & Petr Havlik & Keywan Riahi & Valentina Bosetti & Jason Lowe, 2017. "Assessing the Feasibility of Global Long-Term Mitigation Scenarios," Energies, MDPI, vol. 10(1), pages 1-31, January.
    22. Vassilis Daioglou & Matteo Muratori & Patrick Lamers & Shinichiro Fujimori & Alban Kitous & Alexandre C. Köberle & Nico Bauer & Martin Junginger & Etsushi Kato & Florian Leblanc & Silvana Mima & Marsh, 2020. "Implications of climate change mitigation strategies on international bioenergy trade," Climatic Change, Springer, vol. 163(3), pages 1639-1658, December.
    23. Steef V. Hanssen & Vassilis Daioglou & Zoran J. N. Steinmann & Stefan Frank & Alexander Popp & Thierry Brunelle & Pekka Lauri & Tomoko Hasegawa & Mark A. J. Huijbregts & Detlef P. Vuuren, 2020. "Biomass residues as twenty-first century bioenergy feedstock—a comparison of eight integrated assessment models," Climatic Change, Springer, vol. 163(3), pages 1569-1586, December.
    24. Shinichiro Fujimori & Tomoko Hasegawa & Volker Krey & Keywan Riahi & Christoph Bertram & Benjamin Leon Bodirsky & Valentina Bosetti & Jessica Callen & Jacques Després & Jonathan Doelman & Laurent Drou, 2019. "A multi-model assessment of food security implications of climate change mitigation," Nature Sustainability, Nature, vol. 2(5), pages 386-396, May.
    25. de Jong, Sierk & Hoefnagels, Ric & Wetterlund, Elisabeth & Pettersson, Karin & Faaij, André & Junginger, Martin, 2017. "Cost optimization of biofuel production – The impact of scale, integration, transport and supply chain configurations," Applied Energy, Elsevier, vol. 195(C), pages 1055-1070.
    26. Sabine Andert, 2021. "The Method and Timing of Weed Control Affect the Productivity of Intercropped Maize ( Zea mays L.) and Bean ( Phaseolus vulgaris L.)," Agriculture, MDPI, vol. 11(5), pages 1-13, April.
    27. Sanchez, Daniel L. & Callaway, Duncan S., 2016. "Optimal scale of carbon-negative energy facilities," Applied Energy, Elsevier, vol. 170(C), pages 437-444.
    28. Nicolas, Claire & Chen, Y.-H. Henry & Morris, Jennifer & Winchester, Niven & Paltsev, Sergey, 2017. "Bioenergy with carbon capture and storage: key issues and major challenges," Conference papers 332858, Purdue University, Center for Global Trade Analysis, Global Trade Analysis Project.
    29. Jurandir Zullo & Vânia Rosa Pereira & Andrea Koga-Vicente, 2018. "Sugar-energy sector vulnerability under CMIP5 projections in the Brazilian central-southern macro-region," Climatic Change, Springer, vol. 149(3), pages 489-502, August.
    30. Steven K Rose & Nico Bauer & Alexander Popp & John Weyant & Shinichiro Fujimori & Petr Havlik & Marshall Wise & Detlef P Vuuren, 2020. "An overview of the Energy Modeling Forum 33rd study: assessing large-scale global bioenergy deployment for managing climate change," Climatic Change, Springer, vol. 163(3), pages 1539-1551, December.
    31. Mercure, J.-F. & Paim, M.A. & Bocquillon, P. & Lindner, S. & Salas, P. & Martinelli, P. & Berchin, I.I. & de Andrade Guerra, J.B.S.O & Derani, C. & de Albuquerque Junior, C.L. & Ribeiro, J.M.P. & Knob, 2019. "System complexity and policy integration challenges: The Brazilian Energy- Water-Food Nexus," Renewable and Sustainable Energy Reviews, Elsevier, vol. 105(C), pages 230-243.
    32. Gunnar Luderer & Volker Krey & Katherine Calvin & James Merrick & Silvana Mima & Robert Pietzcker & Jasper Vliet & Kenichi Wada, 2014. "The role of renewable energy in climate stabilization: results from the EMF27 scenarios," Climatic Change, Springer, vol. 123(3), pages 427-441, April.
    33. Vassilis Stavrakas & Niki-Artemis Spyridaki & Alexandros Flamos, 2018. "Striving towards the Deployment of Bio-Energy with Carbon Capture and Storage (BECCS): A Review of Research Priorities and Assessment Needs," Sustainability, MDPI, vol. 10(7), pages 1-27, June.
    34. Zhu, Yuli & Liang, Ji & Yang, Qing & Zhou, Hewen & Peng, Kun, 2019. "Water use of a biomass direct-combustion power generation system in China: A combination of life cycle assessment and water footprint analysis," Renewable and Sustainable Energy Reviews, Elsevier, vol. 115(C).
    35. Guivarch, Celine & Monjon, Stéphanie, 2016. "Energy security in a low-carbon world: Identifying the main uncertain drivers of energy security in Europe," Conference papers 332807, Purdue University, Center for Global Trade Analysis, Global Trade Analysis Project.
    36. Wu, Wenchao & Hasegawa, Tomoko & Fujimori, Shinichiro & Takahashi, Kiyoshi & Oshiro, Ken, 2020. "Assessment of bioenergy potential and associated costs in Japan for the 21st century," Renewable Energy, Elsevier, vol. 162(C), pages 308-321.
    37. Nico Bauer & Steven K. Rose & Shinichiro Fujimori & Detlef P. Vuuren & John Weyant & Marshall Wise & Yiyun Cui & Vassilis Daioglou & Matthew J. Gidden & Etsushi Kato & Alban Kitous & Florian Leblanc &, 2020. "Global energy sector emission reductions and bioenergy use: overview of the bioenergy demand phase of the EMF-33 model comparison," Climatic Change, Springer, vol. 163(3), pages 1553-1568, December.
    38. Geoffrey Morrison & Sonia Yeh & Anthony Eggert & Christopher Yang & James Nelson & Jeffery Greenblatt & Raphael Isaac & Mark Jacobson & Josiah Johnston & Daniel Kammen & Ana Mileva & Jack Moore & Davi, 2015. "Comparison of low-carbon pathways for California," Climatic Change, Springer, vol. 131(4), pages 545-557, August.

  3. Ruben Bibas & Aurélie Méjean, 2014. "Potential and limitations of bioenergy for low carbon transitions," Climatic Change, Springer, vol. 123(3), pages 731-761, April.

    Cited by:

    1. Florian Leblanc & C. Cassen & Thierry Brunelle & Patrice Dumas & Aurélie Méjean, 2014. "Globis final report on Integrated Scenarios D30," Working Papers hal-01300545, HAL.
    2. Guivarch, Céline & Monjon, Stéphanie, 2017. "Identifying the main uncertainty drivers of energy security in a low-carbon world: The case of Europe," Energy Economics, Elsevier, vol. 64(C), pages 530-541.
    3. Audoly, Richard & Vogt-Schilb, Adrien & Guivarch, Celine, 2014. "Pathways toward zero-carbon electricity required for climate stabilization," Policy Research Working Paper Series 7075, The World Bank.
    4. Noémie Neverre & Patrice Dumas, 2016. "Projecting Basin-Scale Distributed Irrigation and Domestic Water Demands and Values: A Generic Method for Large-Scale Modeling," Water Economics and Policy (WEP), World Scientific Publishing Co. Pte. Ltd., vol. 2(04), pages 1-28, December.
    5. Guivarch, Celine & Monjon, Stéphanie, 2016. "Energy security in a low-carbon world: Identifying the main uncertain drivers of energy security in Europe," Conference papers 332807, Purdue University, Center for Global Trade Analysis, Global Trade Analysis Project.

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Co-authorship network on CollEc

NEP Fields

NEP is an announcement service for new working papers, with a weekly report in each of many fields. This author has had 5 papers announced in NEP. These are the fields, ordered by number of announcements, along with their dates. If the author is listed in the directory of specialists for this field, a link is also provided.
  1. NEP-ENV: Environmental Economics (5) 2011-10-01 2011-10-01 2012-02-01 2013-04-06 2013-10-25. Author is listed
  2. NEP-ENE: Energy Economics (4) 2011-10-01 2011-10-01 2012-02-01 2013-10-25
  3. NEP-AGR: Agricultural Economics (1) 2012-02-01
  4. NEP-IAS: Insurance Economics (1) 2011-10-01

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