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Jussi Lintunen

Personal Details

First Name:Jussi
Middle Name:
Last Name:Lintunen
Suffix:
RePEc Short-ID:pli1079
[This author has chosen not to make the email address public]

Affiliation

Luonnonvarakeskus (LUKE)

Helsinki, Finland
http://www.luke.fi/
RePEc:edi:metlafi (more details at EDIRC)

Research output

as
Jump to: Working papers Articles

Working papers

  1. Lintunen, Jussi & Kuusela, Olli-Pekka, 2015. "Optimal Management of Markets for Bankable Emission Permits," Climate Change and Sustainable Development 205290, Fondazione Eni Enrico Mattei (FEEM).
  2. Jussi Lintunen & Olli-Pekka Kuusela, 2015. "Optimal Management of Markets for Bankable Emission PermitsOptimal Management of Markets for Bankable Emission Permits," Working Papers 2015.48, Fondazione Eni Enrico Mattei.
  3. Lintunen, Jussi & Uusivuori, Jussi, 2014. "On The Economics of Forest Carbon: Renewable and Carbon Neutral But Not Emission Free," Climate Change and Sustainable Development 165755, Fondazione Eni Enrico Mattei (FEEM).
  4. Lintunen, Jussi & Vilmi, Lauri, 2013. "On optimal emission control: Taxes, substitution and business cycles," Bank of Finland Research Discussion Papers 24/2013, Bank of Finland.

Articles

  1. Rautiainen, Aapo & Lintunen, Jussi & Uusivuori, Jussi, 2019. "Market-Level Implications of Regulating Forest Carbon Storage and Albedo for Climate Change Mitigation – CORRIGENDUM," Agricultural and Resource Economics Review, Cambridge University Press, vol. 48(2), pages 359-360, August.
  2. Lintunen, Jussi & Kuusela, Olli-Pekka, 2018. "Business cycles and emission trading with banking," European Economic Review, Elsevier, vol. 101(C), pages 397-417.
  3. Pohjola, Johanna & Laturi, Jani & Lintunen, Jussi & Uusivuori, Jussi, 2018. "Immediate and long-run impacts of a forest carbon policy—A market-level assessment with heterogeneous forest owners," Journal of Forest Economics, Elsevier, vol. 32(C), pages 94-105.
  4. Rautiainen, Aapo & Lintunen, Jussi & Uusivuori, Jussi, 2018. "Market-Level Implications of Regulating Forest Carbon Storage and Albedo for Climate Change Mitigation," Agricultural and Resource Economics Review, Cambridge University Press, vol. 47(2), pages 239-271, August.
  5. Rautiainen, Aapo & Lintunen, Jussi, 2017. "Social Cost of Forcing: A Basis for Pricing All Forcing Agents," Ecological Economics, Elsevier, vol. 133(C), pages 42-51.
  6. Lintunen, Jussi & Laturi, Jani & Uusivuori, Jussi, 2016. "How should a forest carbon rent policy be implemented?," Forest Policy and Economics, Elsevier, vol. 69(C), pages 31-39.
  7. Lintunen, Jussi & Uusivuori, Jussi, 2016. "On the economics of forests and climate change: Deriving optimal policies," Journal of Forest Economics, Elsevier, vol. 24(C), pages 130-156.
  8. Jani Laturi & Jussi Lintunen & Jussi Uusivuori, 2016. "Modeling The Economics Of The Reference Levels For Forest Management Emissions In The Eu," Climate Change Economics (CCE), World Scientific Publishing Co. Pte. Ltd., vol. 7(03), pages 1-22, August.
  9. Barua, Sepul K. & Lintunen, Jussi & Uusivuori, Jussi & Kuuluvainen, Jari, 2014. "On the economics of tropical deforestation: Carbon credit markets and national policies," Forest Policy and Economics, Elsevier, vol. 47(C), pages 36-45.
  10. Mäkelä, Matti & Lintunen, Jussi & Kangas, Hanna-Liisa & Uusivuori, Jussi, 2011. "Pellet promotion in the Finnish sawmilling industry: The cost-effectiveness of different policy instruments," Journal of Forest Economics, Elsevier, vol. 17(2), pages 185-196, April.
  11. Kangas, Hanna-Liisa & Lintunen, Jussi & Pohjola, Johanna & Hetemäki, Lauri & Uusivuori, Jussi, 2011. "Investments into forest biorefineries under different price and policy structures," Energy Economics, Elsevier, vol. 33(6), pages 1165-1176.
  12. Lintunen, Jussi & Kangas, Hanna-Liisa, 2010. "The case of co-firing: The market level effects of subsidizing biomass co-combustion," Energy Economics, Elsevier, vol. 32(3), pages 694-701, May.
  13. Kangas, Hanna-Liisa & Lintunen, Jussi & Uusivuori, Jussi, 2009. "The cofiring problem of a power plant under policy regulations," Energy Policy, Elsevier, vol. 37(5), pages 1898-1904, May.

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.

Working papers

  1. Lintunen, Jussi & Kuusela, Olli-Pekka, 2015. "Optimal Management of Markets for Bankable Emission Permits," Climate Change and Sustainable Development 205290, Fondazione Eni Enrico Mattei (FEEM).

    Cited by:

    1. Lintunen, Jussi & Kuusela, Olli-Pekka, 2018. "Business cycles and emission trading with banking," European Economic Review, Elsevier, vol. 101(C), pages 397-417.
    2. Tang, Bao-Jun & Wang, Xiang-Yu & Wei, Yi-Ming, 2019. "Quantities versus prices for best social welfare in carbon reduction: A literature review," Applied Energy, Elsevier, vol. 233, pages 554-564.

  2. Jussi Lintunen & Olli-Pekka Kuusela, 2015. "Optimal Management of Markets for Bankable Emission PermitsOptimal Management of Markets for Bankable Emission Permits," Working Papers 2015.48, Fondazione Eni Enrico Mattei.

    Cited by:

    1. Tang, Bao-Jun & Wang, Xiang-Yu & Wei, Yi-Ming, 2019. "Quantities versus prices for best social welfare in carbon reduction: A literature review," Applied Energy, Elsevier, vol. 233, pages 554-564.

  3. Lintunen, Jussi & Uusivuori, Jussi, 2014. "On The Economics of Forest Carbon: Renewable and Carbon Neutral But Not Emission Free," Climate Change and Sustainable Development 165755, Fondazione Eni Enrico Mattei (FEEM).

    Cited by:

    1. Repo, Anna & Ahtikoski, Anssi & Liski, Jari, 2015. "Cost of turning forest residue bioenergy to carbon neutral," Forest Policy and Economics, Elsevier, vol. 57(C), pages 12-21.
    2. Lintunen, Jussi & Laturi, Jani & Uusivuori, Jussi, 2016. "How should a forest carbon rent policy be implemented?," Forest Policy and Economics, Elsevier, vol. 69(C), pages 31-39.

Articles

  1. Lintunen, Jussi & Kuusela, Olli-Pekka, 2018. "Business cycles and emission trading with banking," European Economic Review, Elsevier, vol. 101(C), pages 397-417.

    Cited by:

    1. Geng, Wenxin & Fan, Ying, 2024. "The effect of market power on the inter-temporal allocation of abatement under a rate-based emissions trading scheme," Energy Economics, Elsevier, vol. 136(C).
    2. Quemin, Simon & Trotignon, Raphaël, 2021. "Emissions trading with rolling horizons," Journal of Economic Dynamics and Control, Elsevier, vol. 125(C).
    3. Arbex, Marcelo & Batu, Michael, 2020. "What if people value nature? Climate change and welfare costs," Resource and Energy Economics, Elsevier, vol. 61(C).
    4. Kollenberg, Sascha & Taschini, Luca, 2019. "Dynamic supply adjustment and banking under uncertainty in an Emission Trading Scheme: the Market Stability Reserve," LSE Research Online Documents on Economics 100857, London School of Economics and Political Science, LSE Library.
    5. Simon Quemin & Raphael Trotignon, 2018. "Competitive Permit Storage and Market Design: An Application to the EU-ETS," Working Papers 2018.19, FAERE - French Association of Environmental and Resource Economists.
    6. Stefano Clo' & Gianluca Iannucci & Alessandro Tampieri, 2024. "Emission permits and firms' environmental responsibility," Working Papers - Economics wp2024_06.rdf, Universita' degli Studi di Firenze, Dipartimento di Scienze per l'Economia e l'Impresa.
    7. Heijmans, Roweno J.R.K., 2023. "Adjustable emissions caps and the price of pollution," Journal of Environmental Economics and Management, Elsevier, vol. 118(C).
    8. Jussi Lintunen & Lauri Vilmi, 2021. "Optimal Emission Prices Over the Business Cycles," Environmental & Resource Economics, Springer;European Association of Environmental and Resource Economists, vol. 80(1), pages 135-167, September.
    9. Barbara Annicchiarico & Stefano Carattini & Carolyn Fischer & Garth Heutel, 2022. "Business Cycles and Environmental Policy: A Primer," Environmental and Energy Policy and the Economy, University of Chicago Press, vol. 3(1), pages 221-253.
    10. René Aïd & Sara Biagini, 2023. "Optimal dynamic regulation of carbon emissions market," Mathematical Finance, Wiley Blackwell, vol. 33(1), pages 80-115, January.
    11. Ren'e Aid & Sara Biagini, 2021. "Optimal dynamic regulation of carbon emissions market: A variational approach," Papers 2102.12423, arXiv.org.
    12. Olli-Pekka Kuusela & Jussi Lintunen, 2020. "A Cap-and-Trade Commitment Policy with Allowance Banking," Environmental & Resource Economics, Springer;European Association of Environmental and Resource Economists, vol. 75(3), pages 421-455, March.
    13. Taschini, Luca, 2021. "Flexibility premium of emissions permits," Journal of Economic Dynamics and Control, Elsevier, vol. 126(C).
    14. Reyer Gerlagh & Roweno J.R.K. Heijmans, 2018. "Regulating Stock Externalities," CESifo Working Paper Series 7383, CESifo.
    15. Reyer Gerlagh & Roweno J.R.K. Wan, 2018. "Optimal Stabilization in an Emission Permits Market," CESifo Working Paper Series 6950, CESifo.
    16. : Dubois, Loick & Sahuc, Jean-Guillaume & Vermandel, Gauthier, 2024. "A General Equilibrium Approach to Carbon Permit Banking," Single Market Economics Papers WP2024/20, Directorate-General for Internal Market, Industry, Entrepreneurship and SMEs (European Commission), Chief Economist Team.

  2. Pohjola, Johanna & Laturi, Jani & Lintunen, Jussi & Uusivuori, Jussi, 2018. "Immediate and long-run impacts of a forest carbon policy—A market-level assessment with heterogeneous forest owners," Journal of Forest Economics, Elsevier, vol. 32(C), pages 94-105.

    Cited by:

    1. Bryngemark, Elina, 2019. "Second generation biofuels and the competition for forest raw materials: A partial equilibrium analysis of Sweden," Forest Policy and Economics, Elsevier, vol. 109(C).
    2. Daigneault, Adam & Strong, Aaron L. & Meyer, Spencer R., 2021. "Benefits, costs, and feasibility of scaling up land conservation for maintaining ecosystem services in the Sebago Lake watershed, Maine, USA," Ecosystem Services, Elsevier, vol. 48(C).
    3. Rørstad, Per Kristian, 2022. "Payment for CO2 sequestration affects the Faustmann rotation period in Norway more than albedo payment does," Ecological Economics, Elsevier, vol. 199(C).
    4. Miguel Riviere & Sylvain Caurla & Philippe Delacote, 2020. "Evolving Integrated Models From Narrower Economic Tools : the Example of Forest Sector Models," Post-Print hal-02512330, HAL.
    5. Miguel Riviere & Sylvain Caurla, 2020. "Representations of the Forest Sector in Economic Models [Les représentations du secteur forestier dans les modèles économiques]," Post-Print hal-03088084, HAL.
    6. Tianchu Feng & Meijuan Liu & Chaozhu Li, 2022. "How Does Vertical Fiscal Imbalance Affect CO 2 Emissions? The Role of Capital Mismatch," Sustainability, MDPI, vol. 14(17), pages 1-15, August.

  3. Rautiainen, Aapo & Lintunen, Jussi & Uusivuori, Jussi, 2018. "Market-Level Implications of Regulating Forest Carbon Storage and Albedo for Climate Change Mitigation," Agricultural and Resource Economics Review, Cambridge University Press, vol. 47(2), pages 239-271, August.

    Cited by:

    1. Jussi Lintunen & Aapo Rautiainen & Jussi Uusivuori, 2022. "Which Is more Important, Carbon or Albedo? Optimizing Harvest Rotations for Timber and Climate Benefits in a Changing Climate," American Journal of Agricultural Economics, John Wiley & Sons, vol. 104(1), pages 134-160, January.
    2. Lintunen, Jussi & Rautiainen, Aapo, 2021. "On physical and social-cost-based CO2 equivalents for transient albedo-induced forcing," Ecological Economics, Elsevier, vol. 190(C).

  4. Rautiainen, Aapo & Lintunen, Jussi, 2017. "Social Cost of Forcing: A Basis for Pricing All Forcing Agents," Ecological Economics, Elsevier, vol. 133(C), pages 42-51.

    Cited by:

    1. Jussi Lintunen & Aapo Rautiainen & Jussi Uusivuori, 2022. "Which Is more Important, Carbon or Albedo? Optimizing Harvest Rotations for Timber and Climate Benefits in a Changing Climate," American Journal of Agricultural Economics, John Wiley & Sons, vol. 104(1), pages 134-160, January.
    2. Lintunen, Jussi & Rautiainen, Aapo, 2021. "On physical and social-cost-based CO2 equivalents for transient albedo-induced forcing," Ecological Economics, Elsevier, vol. 190(C).
    3. Rørstad, Per Kristian, 2022. "Payment for CO2 sequestration affects the Faustmann rotation period in Norway more than albedo payment does," Ecological Economics, Elsevier, vol. 199(C).
    4. Christian Azar & Jorge García Martín & Daniel JA. Johansson & Thomas Sterner, 2023. "The social cost of methane," Climatic Change, Springer, vol. 176(6), pages 1-22, June.

  5. Lintunen, Jussi & Laturi, Jani & Uusivuori, Jussi, 2016. "How should a forest carbon rent policy be implemented?," Forest Policy and Economics, Elsevier, vol. 69(C), pages 31-39.

    Cited by:

    1. Roy Chowdhury, Pranab K. & Brown, Daniel G., 2023. "Modeling the effects of carbon payments and forest owner cooperatives on carbon storage and revenue in Pacific Northwest forestlands," Land Use Policy, Elsevier, vol. 131(C).
    2. Renata Martins Pacheco, 2022. "Carbon taxation as a means to incentivize forest and fire management," Environment, Development and Sustainability: A Multidisciplinary Approach to the Theory and Practice of Sustainable Development, Springer, vol. 24(10), pages 12387-12403, October.
    3. Lintunen, Jussi & Rautiainen, Aapo, 2021. "On physical and social-cost-based CO2 equivalents for transient albedo-induced forcing," Ecological Economics, Elsevier, vol. 190(C).
    4. Pohjola, Johanna & Laturi, Jani & Lintunen, Jussi & Uusivuori, Jussi, 2018. "Immediate and long-run impacts of a forest carbon policy—A market-level assessment with heterogeneous forest owners," Journal of Forest Economics, Elsevier, vol. 32(C), pages 94-105.
    5. Petri P. Kärenlampi, 2021. "Capital Return Rate and Carbon Storage on Forest Estates of Three Boreal Tree Species," Sustainability, MDPI, vol. 13(12), pages 1-19, June.
    6. Daigneault, Adam & Strong, Aaron L. & Meyer, Spencer R., 2021. "Benefits, costs, and feasibility of scaling up land conservation for maintaining ecosystem services in the Sebago Lake watershed, Maine, USA," Ecosystem Services, Elsevier, vol. 48(C).
    7. Petri P. Kärenlampi, 2022. "Two Manifestations of Market Premium in the Capitalization of Carbon Forest Estates," Energies, MDPI, vol. 15(9), pages 1-26, April.
    8. Juutinen, Artti & Ahtikoski, Anssi & Lehtonen, Mika & Mäkipää, Raisa & Ollikainen, Markku, 2018. "The impact of a short-term carbon payment scheme on forest management," Forest Policy and Economics, Elsevier, vol. 90(C), pages 115-127.
    9. Petri P. Kärenlampi, 2021. "Diversity of Carbon Storage Economics in Fertile Boreal Spruce ( Picea Abies ) Estates," Sustainability, MDPI, vol. 13(2), pages 1-18, January.
    10. Petri P. Karenlampi, 2022. "Two strategies for boreal forestry with goodwill in capitalization," Papers 2205.06744, arXiv.org.
    11. Parkatti, Vesa-Pekka & Suominen, Antti & Tahvonen, Olli & Malo, Pekka, 2024. "Assessing economic benefits and costs of carbon sinks in boreal rotation forestry," Forest Policy and Economics, Elsevier, vol. 166(C).

  6. Lintunen, Jussi & Uusivuori, Jussi, 2016. "On the economics of forests and climate change: Deriving optimal policies," Journal of Forest Economics, Elsevier, vol. 24(C), pages 130-156.

    Cited by:

    1. Jussi Lintunen & Aapo Rautiainen & Jussi Uusivuori, 2022. "Which Is more Important, Carbon or Albedo? Optimizing Harvest Rotations for Timber and Climate Benefits in a Changing Climate," American Journal of Agricultural Economics, John Wiley & Sons, vol. 104(1), pages 134-160, January.
    2. Rong Li & Brent Sohngen & Xiaohui Tian, 2022. "Efficiency of forest carbon policies at intensive and extensive margins," American Journal of Agricultural Economics, John Wiley & Sons, vol. 104(4), pages 1243-1267, August.
    3. Pohjola, Johanna & Laturi, Jani & Lintunen, Jussi & Uusivuori, Jussi, 2018. "Immediate and long-run impacts of a forest carbon policy—A market-level assessment with heterogeneous forest owners," Journal of Forest Economics, Elsevier, vol. 32(C), pages 94-105.
    4. Bryngemark, Elina, 2019. "Second generation biofuels and the competition for forest raw materials: A partial equilibrium analysis of Sweden," Forest Policy and Economics, Elsevier, vol. 109(C).
    5. Zhai, Jun & Kuusela, Olli-Pekka, 2022. "Incidence of domestic subsidies vs. export taxes: An equilibrium displacement model of log and lumber markets in Oregon," Forest Policy and Economics, Elsevier, vol. 135(C).
    6. Kuusela, Olli-Pekka & Lintunen, Jussi, 2020. "Modeling market-level effects of disturbance risks in age structured forests," Forest Policy and Economics, Elsevier, vol. 118(C).

  7. Jani Laturi & Jussi Lintunen & Jussi Uusivuori, 2016. "Modeling The Economics Of The Reference Levels For Forest Management Emissions In The Eu," Climate Change Economics (CCE), World Scientific Publishing Co. Pte. Ltd., vol. 7(03), pages 1-22, August.

    Cited by:

    1. Pohjola, Johanna & Laturi, Jani & Lintunen, Jussi & Uusivuori, Jussi, 2018. "Immediate and long-run impacts of a forest carbon policy—A market-level assessment with heterogeneous forest owners," Journal of Forest Economics, Elsevier, vol. 32(C), pages 94-105.
    2. Päivinen, Risto & Kallio, A. Maarit I. & Solberg, Birger & Käär, Liisa, 2022. "EU Forest reference levels: The compatible harvest volumes compiled and assessed in terms of forest sector market development," Forest Policy and Economics, Elsevier, vol. 140(C).
    3. Kallio, A. Maarit I. & Solberg, Birger & Käär, Liisa & Päivinen, Risto, 2018. "Economic impacts of setting reference levels for the forest carbon sinks in the EU on the European forest sector," Forest Policy and Economics, Elsevier, vol. 92(C), pages 193-201.

  8. Barua, Sepul K. & Lintunen, Jussi & Uusivuori, Jussi & Kuuluvainen, Jari, 2014. "On the economics of tropical deforestation: Carbon credit markets and national policies," Forest Policy and Economics, Elsevier, vol. 47(C), pages 36-45.

    Cited by:

    1. Kalkuhl, Matthias & Fernandez Milan, Blanca & Schwerhoff, Gregor & Jakob, Michael & Hahnen, Maren & Creutzig, Felix, 2017. "Fiscal Instruments for Sustainable Development: The Case of Land Taxes," MPRA Paper 78652, University Library of Munich, Germany.
    2. Nguyen, Trung Thanh & Nghiem, Nhung, 2016. "Optimal forest rotation for carbon sequestration and biodiversity conservation by farm income levels," Forest Policy and Economics, Elsevier, vol. 73(C), pages 185-194.
    3. Huangling Gu & Yan Liu & Hao Xia & Zilong Li & Liyuan Huang & Yanjia Zeng, 2023. "Temporal and Spatial Differences in CO 2 Equivalent Emissions and Carbon Compensation Caused by Land Use Changes and Industrial Development in Hunan Province," Sustainability, MDPI, vol. 15(10), pages 1-20, May.
    4. Matthias Kalkuhl & Ottmar Edenhofer, 2017. "Ramsey meets Thünen: the impact of land taxes on economic development and land conservation," International Tax and Public Finance, Springer;International Institute of Public Finance, vol. 24(2), pages 350-380, April.
    5. Kalkuhl, Matthias & Fernandez Milan, Blanca & Schwerhoff, Gregor & Jakob, Michael & Hahnen, Maren & Creutzig, Felix, 2018. "Can land taxes foster sustainable development? An assessment of fiscal, distributional and implementation issues," Land Use Policy, Elsevier, vol. 78(C), pages 338-352.
    6. Guadalupe, Vicente & Sotta, Eleneide Doff & Santos, Valdenira Ferreira & Gonçalves Aguiar, Leonardo José & Vieira, Marta & de Oliveira, Cinthia Pereira & Nascimento Siqueira, João Vitor, 2018. "REDD+ implementation in a high forest low deforestation area: Constraints on monitoring forest carbon emissions," Land Use Policy, Elsevier, vol. 76(C), pages 414-421.

  9. Mäkelä, Matti & Lintunen, Jussi & Kangas, Hanna-Liisa & Uusivuori, Jussi, 2011. "Pellet promotion in the Finnish sawmilling industry: The cost-effectiveness of different policy instruments," Journal of Forest Economics, Elsevier, vol. 17(2), pages 185-196, April.

    Cited by:

    1. Pohjola, Johanna & Laturi, Jani & Lintunen, Jussi & Uusivuori, Jussi, 2018. "Immediate and long-run impacts of a forest carbon policy—A market-level assessment with heterogeneous forest owners," Journal of Forest Economics, Elsevier, vol. 32(C), pages 94-105.
    2. Bryngemark, Elina, 2019. "Second generation biofuels and the competition for forest raw materials: A partial equilibrium analysis of Sweden," Forest Policy and Economics, Elsevier, vol. 109(C).
    3. Mobtaker, A. & Ouhimmou, M. & Audy, J.-F. & Rönnqvist, M., 2021. "A review on decision support systems for tactical logistics planning in the context of forest bioeconomy," Renewable and Sustainable Energy Reviews, Elsevier, vol. 148(C).
    4. Paulo Henrique de Mello Santana, 2015. "Cost-effectiveness as Energy Policy Mechanisms: The Paradox of Technology-neutral and Technology-specific Policies in the Short and Long Term," Working Papers Working Paper 2015-02, Regional Research Institute, West Virginia University.
    5. Kangas, Hanna-Liisa & Lintunen, Jussi & Pohjola, Johanna & Hetemäki, Lauri & Uusivuori, Jussi, 2011. "Investments into forest biorefineries under different price and policy structures," Energy Economics, Elsevier, vol. 33(6), pages 1165-1176.
    6. de Mello Santana, Paulo Henrique, 2016. "Cost-effectiveness as energy policy mechanisms: The paradox of technology-neutral and technology-specific policies in the short and long term," Renewable and Sustainable Energy Reviews, Elsevier, vol. 58(C), pages 1216-1222.

  10. Kangas, Hanna-Liisa & Lintunen, Jussi & Pohjola, Johanna & Hetemäki, Lauri & Uusivuori, Jussi, 2011. "Investments into forest biorefineries under different price and policy structures," Energy Economics, Elsevier, vol. 33(6), pages 1165-1176.

    Cited by:

    1. Bergek, Anna & Mignon, Ingrid & Sundberg, Gunnel, 2013. "Who invests in renewable electricity production? Empirical evidence and suggestions for further research," Energy Policy, Elsevier, vol. 56(C), pages 568-581.
    2. Antje Klitkou & Suyash Jolly & Nina Suvinen, 2023. "Systemic intermediaries and the transition toward forest-based bioeconomy in the North," Review of Evolutionary Political Economy, Springer, vol. 4(2), pages 321-348, July.
    3. Hurmekoski, Elias & Hetemäki, Lauri, 2013. "Studying the future of the forest sector: Review and implications for long-term outlook studies," Forest Policy and Economics, Elsevier, vol. 34(C), pages 17-29.
    4. Pohjola, Johanna & Laturi, Jani & Lintunen, Jussi & Uusivuori, Jussi, 2018. "Immediate and long-run impacts of a forest carbon policy—A market-level assessment with heterogeneous forest owners," Journal of Forest Economics, Elsevier, vol. 32(C), pages 94-105.
    5. Lochhead, Kyle & Ghafghazi, Saeed & Havlik, Petr & Forsell, Nicklas & Obersteiner, Michael & Bull, Gary & Mabee, Warren, 2016. "Price trends and volatility scenarios for designing forest sector transformation," Energy Economics, Elsevier, vol. 57(C), pages 184-191.
    6. Vincent Bertrand & Sylvain Caurla & Elodie Le Cadre & Philippe Delacote, 2017. "Heat or power: how to increase the use of energy wood at the lowest costs?," Working Papers - Cahiers du LEF 2017-03, Laboratoire d'Economie Forestiere, AgroParisTech-INRA, revised Mar 2017.
    7. Mustapha, Walid Fayez & Trømborg, Erik & Bolkesjø, Torjus Folsland, 2019. "Forest-based biofuel production in the Nordic countries: Modelling of optimal allocation," Forest Policy and Economics, Elsevier, vol. 103(C), pages 45-54.
    8. Shihong Zeng & Runtong Liu & Ya Zhou & Xiaobo He, 2021. "Research on Provincial Forestry Investment Efficiency in China," Advances in Management and Applied Economics, SCIENPRESS Ltd, vol. 11(5), pages 1-1.
    9. Bryngemark, Elina, 2019. "Second generation biofuels and the competition for forest raw materials: A partial equilibrium analysis of Sweden," Forest Policy and Economics, Elsevier, vol. 109(C).
    10. Qiu, Cheng & Colson, Gregory & Zhang, Zibin & Wetzstein, Michael E., 2011. "An Ethanol Blend Wall Shift is Prone to Increase Petroleum Gasoline Demand," 2011 Annual Meeting, February 5-8, 2011, Corpus Christi, Texas 98795, Southern Agricultural Economics Association.
    11. Latta, Gregory S. & Sjølie, Hanne K. & Solberg, Birger, 2013. "A review of recent developments and applications of partial equilibrium models of the forest sector," Journal of Forest Economics, Elsevier, vol. 19(4), pages 350-360.
    12. Miguel Riviere & Sylvain Caurla & Philippe Delacote, 2020. "Evolving Integrated Models From Narrower Economic Tools : the Example of Forest Sector Models," Post-Print hal-02512330, HAL.
    13. Sandra Notaro & Elisabetta Lovera & Alessandro Paletto, 2022. "Behaviours and attitudes of consumers towards bioplastics: An exploratory study in Italy," Journal of Forest Science, Czech Academy of Agricultural Sciences, vol. 68(4), pages 121-135.
    14. Compernolle, Tine & Welkenhuysen, Kris & Petitclerc, Estelle & Maes, Dries & Piessens, Kris, 2019. "The impact of policy measures on profitability and risk in geothermal energy investments," Energy Economics, Elsevier, vol. 84(C).
    15. Stefan Walter, 2018. "The Regional Impact of Biofuel Economics," Margin: The Journal of Applied Economic Research, National Council of Applied Economic Research, vol. 12(3), pages 369-386, August.
    16. Jonas Zetterholm & Elina Bryngemark & Johan Ahlström & Patrik Söderholm & Simon Harvey & Elisabeth Wetterlund, 2020. "Economic Evaluation of Large-Scale Biorefinery Deployment: A Framework Integrating Dynamic Biomass Market and Techno-Economic Models," Sustainability, MDPI, vol. 12(17), pages 1-28, September.

  11. Lintunen, Jussi & Kangas, Hanna-Liisa, 2010. "The case of co-firing: The market level effects of subsidizing biomass co-combustion," Energy Economics, Elsevier, vol. 32(3), pages 694-701, May.

    Cited by:

    1. Pohjola, Johanna & Laturi, Jani & Lintunen, Jussi & Uusivuori, Jussi, 2018. "Immediate and long-run impacts of a forest carbon policy—A market-level assessment with heterogeneous forest owners," Journal of Forest Economics, Elsevier, vol. 32(C), pages 94-105.
    2. Vincent Bertrand & Sylvain Caurla & Elodie Le Cadre & Philippe Delacote, 2017. "Heat or power: how to increase the use of energy wood at the lowest costs?," Working Papers - Cahiers du LEF 2017-03, Laboratoire d'Economie Forestiere, AgroParisTech-INRA, revised Mar 2017.
    3. Akhil Kunche & Bozena Mielczarek, 2022. "Using Simulation Modelling for Designing Optimal Strategies of Fuel Mix to Comply for SOx and NOx Emission Standards in Industrial Boilers," Energies, MDPI, vol. 16(1), pages 1-41, December.
    4. Zhang, Yun-Long & Liu, Lan-Cui & Kang, Jia-Ning & Peng, Song & Mi, Zhifu & Liao, Hua & Wei, Yi-Ming, 2024. "Economic feasibility assessment of coal-biomass co-firing power generation technology," Energy, Elsevier, vol. 296(C).
    5. Moiseyev, Alexander & Solberg, Birger & Kallio, A. Maarit I., 2014. "The impact of subsidies and carbon pricing on the wood biomass use for energy in the EU," Energy, Elsevier, vol. 76(C), pages 161-167.
    6. P. Mathiou & Stelios Rozakis & Rafal Pudelko & A. Faber & A. Petsakos, 2014. "Utility maximising supply response: the case of perennial biomass plantations in Poland," Working Papers 2014-3, Agricultural University of Athens, Department Of Agricultural Economics.
    7. Kangas, Hanna-Liisa & Lintunen, Jussi & Pohjola, Johanna & Hetemäki, Lauri & Uusivuori, Jussi, 2011. "Investments into forest biorefineries under different price and policy structures," Energy Economics, Elsevier, vol. 33(6), pages 1165-1176.
    8. Aatola, Piia & Ollikainen, Markku & Toppinen, Anne, 2013. "Impact of the carbon price on the integrating European electricity market," Energy Policy, Elsevier, vol. 61(C), pages 1236-1251.
    9. Lüschen, Andreas & Madlener, Reinhard, 2010. "Economics of Biomass Co-Firing in New Hard Coal Power Plants in Germany," FCN Working Papers 23/2010, E.ON Energy Research Center, Future Energy Consumer Needs and Behavior (FCN).
    10. P. Mathiou & Stelios Rozakis & Rafal Pudelko & A. Faber, 2012. "Economic and spatial modelling for estimating supply of perennial crops’ biomass in Poland," Working Papers 2012-2, Agricultural University of Athens, Department Of Agricultural Economics.
    11. Devlin, Ger & Talbot, Bruce, 2014. "Deriving cooperative biomass resource transport supply strategies in meeting co-firing energy regulations: A case for peat and wood fibre in Ireland," Applied Energy, Elsevier, vol. 113(C), pages 1700-1709.
    12. Mäkelä, Matti & Lintunen, Jussi & Kangas, Hanna-Liisa & Uusivuori, Jussi, 2011. "Pellet promotion in the Finnish sawmilling industry: The cost-effectiveness of different policy instruments," Journal of Forest Economics, Elsevier, vol. 17(2), pages 185-196, April.
    13. Dan Yu & Caihong Zhang & Siyi Wang & Lan Zhang, 2023. "Evolutionary Game and Simulation Analysis of Power Plant and Government Behavior Strategies in the Coupled Power Generation Industry of Agricultural and Forestry Biomass and Coal," Energies, MDPI, vol. 16(3), pages 1-19, February.
    14. Aravena, Claudia & Hutchinson, W. George & Longo, Alberto, 2012. "Environmental pricing of externalities from different sources of electricity generation in Chile," Energy Economics, Elsevier, vol. 34(4), pages 1214-1225.

  12. Kangas, Hanna-Liisa & Lintunen, Jussi & Uusivuori, Jussi, 2009. "The cofiring problem of a power plant under policy regulations," Energy Policy, Elsevier, vol. 37(5), pages 1898-1904, May.

    Cited by:

    1. Pohjola, Johanna & Laturi, Jani & Lintunen, Jussi & Uusivuori, Jussi, 2018. "Immediate and long-run impacts of a forest carbon policy—A market-level assessment with heterogeneous forest owners," Journal of Forest Economics, Elsevier, vol. 32(C), pages 94-105.
    2. Vincent Bertrand & Sylvain Caurla & Elodie Le Cadre & Philippe Delacote, 2017. "Heat or power: how to increase the use of energy wood at the lowest costs?," Working Papers - Cahiers du LEF 2017-03, Laboratoire d'Economie Forestiere, AgroParisTech-INRA, revised Mar 2017.
    3. P. Mathiou & Stelios Rozakis & Rafal Pudelko & A. Faber & A. Petsakos, 2014. "Utility maximising supply response: the case of perennial biomass plantations in Poland," Working Papers 2014-3, Agricultural University of Athens, Department Of Agricultural Economics.
    4. Mikael Linden, Matti Makela, and Jussi Uusivuori, 2013. "Fuel Input Substitution under Tradable Carbon Permits System: Evidence from Finnish Energy Plants 2005-2008," The Energy Journal, International Association for Energy Economics, vol. 0(Number 2).
    5. Kangas, Hanna-Liisa & Lintunen, Jussi & Pohjola, Johanna & Hetemäki, Lauri & Uusivuori, Jussi, 2011. "Investments into forest biorefineries under different price and policy structures," Energy Economics, Elsevier, vol. 33(6), pages 1165-1176.
    6. Mäkelä, Matti & Lintunen, Jussi & Kangas, Hanna-Liisa & Uusivuori, Jussi, 2011. "Pellet promotion in the Finnish sawmilling industry: The cost-effectiveness of different policy instruments," Journal of Forest Economics, Elsevier, vol. 17(2), pages 185-196, April.
    7. Pannicke, Nadine & Gawe, Erik & Hagemann, Nina & Purkus, Alexandra & Strunz, Sebastian, 2015. "The Political Economy of Fostering a Wood-based Bioeconomy in Germany," German Journal of Agricultural Economics, Humboldt-Universitaet zu Berlin, Department for Agricultural Economics, vol. 64(04), December.
    8. Lintunen, Jussi & Kangas, Hanna-Liisa, 2010. "The case of co-firing: The market level effects of subsidizing biomass co-combustion," Energy Economics, Elsevier, vol. 32(3), pages 694-701, May.

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NEP Fields

NEP is an announcement service for new working papers, with a weekly report in each of many fields. This author has had 2 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-ENE: Energy Economics (2) 2014-03-08 2015-12-12
  2. NEP-ENV: Environmental Economics (2) 2014-03-08 2015-12-12
  3. NEP-AGR: Agricultural Economics (1) 2014-03-08
  4. NEP-MAC: Macroeconomics (1) 2015-12-12
  5. NEP-REG: Regulation (1) 2015-12-12

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