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Ecological restoration as a strategy for mitigating and adapting to climate change: lessons and challenges from Brazil

Author

Listed:
  • Mercedes M. C. Bustamante

    (Universidade de Brasília)

  • José Salomão Silva

    (Universidade de Brasília)

  • Aldicir Scariot

    (EMBRAPA-Recursos Genéticos e Biotecnologia)

  • Alexandre Bonesso Sampaio

    (Instituto Chico Mendes de Conservação da Biodiversidade)

  • Daniel Luis Mascia

    (EMBRAPA-Recursos Genéticos e Biotecnologia)

  • Edenise Garcia

    (The Nature Conservancy—TNC)

  • Edson Sano

    (Brazilian Institute of the Environment and Renewable Natural Resources – IBAMA)

  • Geraldo Wilson Fernandes

    (Universidade Federal de Minas Gerais)

  • Giselda Durigan

    (Instituto Florestal
    Laboratory of Ecology and Forest Hydrology, Universidade Estadual de Campinas)

  • Iris Roitman

    (Universidade de Brasília)

  • Isabel Figueiredo

    (Instituto Sociedade, População e Natureza - ISPN)

  • Ricardo Ribeiro Rodrigues

    (Universidade de São Paulo, Luiz de Queiroz College of Agriculture)

  • Valério D. Pillar

    (Universidade Federal do Rio Grande do Sul)

  • Alba Orli Oliveira

    (Rede de sementes do cerrado)

  • Ana Claudia Malhado

    (Universidade Federal de Alagoas)

  • Ane Alencar

    (Amazon Environmental Research Institute—IPAM)

  • Annelise Vendramini

    (FGVces)

  • Aurélio Padovezi

    (World Resources Institute—WRI)

  • Helena Carrascosa

    (Secretary of Environment)

  • Joberto Freitas

    (Ministry of Environment)

  • José Alves Siqueira

    (Universidade Federal do Vale do São Francisco)

  • Julia Shimbo

    (Amazon Environmental Research Institute—IPAM)

  • Leonel Graça Generoso

    (Secretariat of the Environment)

  • Marcelo Tabarelli

    (Universidade Federal de Pernambuco)

  • Rachel Biderman

    (World Resources Institute—WRI)

  • Rafael Paiva Salomão

    (Universidade Federal Rural da Amazônia/CAPES)

  • Raul Valle

    (Secretariat of the Environment)

  • Brienza Junior

    (EMBRAPA Amazônia Oriental)

  • Carlos Nobre

    (Universidade de São Paulo)

Abstract

Climate change is a global phenomenon that affects biophysical systems and human well-being. The Paris Agreement of the United Nations Framework Convention on Climate Change entered into force in 2016 with the objective of strengthening the global response to climate change by keeping global temperature rise this century well below 2 °C above pre-industrial levels and to pursue efforts to limit the temperature increase even further to 1.5 °C. The agreement requires all Parties to submit their “nationally determined contributions” (NDCs) and to strengthen these efforts in the years ahead. Reducing carbon emissions from deforestation and forest degradation is an important strategy for mitigating climate change, particularly in developing countries with large forests. Extensive tropical forest loss and degradation have increased awareness at the international level of the need to undertake large-scale ecological restoration, highlighting the need to identify cases in which restoration strategies can contribute to mitigation and adaptation. Here we consider Brazil as a case study to evaluate the benefits and challenges of implementing large-scale restoration programs in developing countries. The Brazilian NDC included the target of restoring and reforesting 12 million hectares of forests for multiple uses by 2030. Restoration of native vegetation is one of the foundations of sustainable rural development in Brazil and should consider multiple purposes, from biodiversity and ecosystem services conservation to social and economic development. However, ecological restoration still presents substantial challenges for tropical and mega-diverse countries, including the need to develop plans that are technically and financially feasible, as well as public policies and monitoring instruments that can assess effectiveness. The planning, execution, and monitoring of restoration efforts strongly depend on the context and the diagnosis of the area with respect to reference ecosystems (e.g., forests, savannas, grasslands, wetlands). In addition, poor integration of climate change policies at the national and subnational levels and with other sectorial policies constrains the large-scale implementation of restoration programs. The case of Brazil shows that slowing deforestation is possible; however, this analysis highlights the need for increased national commitment and international support for actions that require large-scale transformations of the forest sector regarding ecosystem restoration efforts. Scaling up the ambitions and actions of the Paris Agreement implies the need for a global framework that recognizes landscape restoration as a cost-effective nature-based solution and that supports countries in addressing their remaining needs, challenges, and barriers.

Suggested Citation

  • Mercedes M. C. Bustamante & José Salomão Silva & Aldicir Scariot & Alexandre Bonesso Sampaio & Daniel Luis Mascia & Edenise Garcia & Edson Sano & Geraldo Wilson Fernandes & Giselda Durigan & Iris Roit, 2019. "Ecological restoration as a strategy for mitigating and adapting to climate change: lessons and challenges from Brazil," Mitigation and Adaptation Strategies for Global Change, Springer, vol. 24(7), pages 1249-1270, October.
  • Handle: RePEc:spr:masfgc:v:24:y:2019:i:7:d:10.1007_s11027-018-9837-5
    DOI: 10.1007/s11027-018-9837-5
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    References listed on IDEAS

    as
    1. Faggin, Joana Mattei & Behagel, Jelle Hendrik, 2017. "Translating Sustainable Forest Management from the global to the domestic sphere: The case of Brazil," Forest Policy and Economics, Elsevier, vol. 85(P1), pages 22-31.
    2. Jenkins, W. Aaron & Murray, Brian C. & Kramer, Randall A. & Faulkner, Stephen P., 2010. "Valuing ecosystem services from wetlands restoration in the Mississippi Alluvial Valley," Ecological Economics, Elsevier, vol. 69(5), pages 1051-1061, March.
    3. Pedro R. R. Rochedo & Britaldo Soares-Filho & Roberto Schaeffer & Eduardo Viola & Alexandre Szklo & André F. P. Lucena & Alexandre Koberle & Juliana Leroy Davis & Raoni Rajão & Regis Rathmann, 2018. "The threat of political bargaining to climate mitigation in Brazil," Nature Climate Change, Nature, vol. 8(8), pages 695-698, August.
    4. do Nascimento Nadruz, Veronica & Lucia Casteli Figueiredo Gallardo, Amarilis & Montaño, Marcelo & Ramos, Heidy Rodriguez & Ruiz, Mauro Silva, 2018. "Identifying the missing link between climate change policies and sectoral/regional planning supported by Strategic Environmental Assessment in emergent economies: Lessons from Brazil," Renewable and Sustainable Energy Reviews, Elsevier, vol. 88(C), pages 46-53.
    5. Park, Mi Sun & Youn, Yeo-Chang, 2017. "Reforestation policy integration by the multiple sectors toward forest transition in the Republic of Korea," Forest Policy and Economics, Elsevier, vol. 76(C), pages 45-55.
    6. Liu, Jinlong & Liang, Ming & Li, Lingchao & Long, Hexing & De Jong, Wil, 2017. "Comparative study of the forest transition pathways of nine Asia-Pacific countries," Forest Policy and Economics, Elsevier, vol. 76(C), pages 25-34.
    7. Andoh, Jewel & Lee, Yohan, 2018. "Forest transition through reforestation policy integration: A comparative study between Ghana and the Republic of Korea," Forest Policy and Economics, Elsevier, vol. 90(C), pages 12-21.
    8. Loomis, John & Kent, Paula & Strange, Liz & Fausch, Kurt & Covich, Alan, 2000. "Measuring the total economic value of restoring ecosystem services in an impaired river basin: results from a contingent valuation survey," Ecological Economics, Elsevier, vol. 33(1), pages 103-117, April.
    9. Will R. Turner & Michael Oppenheimer & David S. Wilcove, 2009. "A force to fight global warming," Nature, Nature, vol. 462(7271), pages 278-279, November.
    10. Bekele Shiferaw & Julius Okello & Ratna Reddy, 2009. "Adoption and adaptation of natural resource management innovations in smallholder agriculture: reflections on key lessons and best practices," Environment, Development and Sustainability: A Multidisciplinary Approach to the Theory and Practice of Sustainable Development, Springer, vol. 11(3), pages 601-619, June.
    11. Di Gregorio, Monica & Nurrochmat, Dodik Ridho & Paavola, Jouni & Sari, Intan Maya & Fatorelli, Leandra & Pramova, Emilia & Locatelli, Bruno & Brockhaus, Maria & Kusumadewi, Sonya Dyah, 2017. "Climate policy integration in the land use sector: Mitigation, adaptation and sustainable development linkages," Environmental Science & Policy, Elsevier, vol. 67(C), pages 35-43.
    12. Assunção, Juliano & Gandour, Clarissa & Rocha, Rudi, 2015. "Deforestation slowdown in the Brazilian Amazon: prices or policies?," Environment and Development Economics, Cambridge University Press, vol. 20(6), pages 697-722, December.
    13. Xu, Jintao & Yin, Runsheng & Li, Zhou & Liu, Can, 2006. "China's ecological rehabilitation: Unprecedented efforts, dramatic impacts, and requisite policies," Ecological Economics, Elsevier, vol. 57(4), pages 595-607, June.
    14. Edward B. Barbier, 2007. "Valuing ecosystem services as productive inputs [‘Valuing groundwater recharge through agricultural production in the Hadejia-Jama’are wetlands in northern Nigeria’]," Economic Policy, CEPR, CESifo, Sciences Po;CES;MSH, vol. 22(49), pages 178-229.
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    2. Murakami, Lia Yukari K. & Massi, Klécia Gili & Mendes, Tatiana Sussel G., 2023. "Socioeconomic aspects of riparian vegetation debt in the state of Sao Paulo, Brasil," Land Use Policy, Elsevier, vol. 130(C).
    3. Jean C. Bikomeye & Caitlin S. Rublee & Kirsten M. M. Beyer, 2021. "Positive Externalities of Climate Change Mitigation and Adaptation for Human Health: A Review and Conceptual Framework for Public Health Research," IJERPH, MDPI, vol. 18(5), pages 1-29, March.
    4. Fernandes, Stephannie & Fernandes, Geraldo W. & Fearnside, Philip M., 2023. "Viewpoint: Sovereignty and reversing Brazil’s history of Amazon destruction," Land Use Policy, Elsevier, vol. 133(C).
    5. Manes, Stella & Vale, Mariana M. & Malecha, Artur & Pires, Aliny P.F., 2022. "Nature-based solutions promote climate change adaptation safeguarding ecosystem services," Ecosystem Services, Elsevier, vol. 55(C).

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