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Natural climate solutions
Better stewardship of land is needed to achieve the Paris Climate Agreement goal of holding warming to below 2 °C; however, confusion persists about the specific set of land stewardship options available and their mitigation potential. To address this, we identify and quantify “natural climate solut...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
National Academy of Sciences
2017
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5676916/ https://www.ncbi.nlm.nih.gov/pubmed/29078344 http://dx.doi.org/10.1073/pnas.1710465114 |
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author | Griscom, Bronson W. Adams, Justin Ellis, Peter W. Houghton, Richard A. Lomax, Guy Miteva, Daniela A. Schlesinger, William H. Shoch, David Siikamäki, Juha V. Smith, Pete Woodbury, Peter Zganjar, Chris Blackman, Allen Campari, João Conant, Richard T. Delgado, Christopher Elias, Patricia Gopalakrishna, Trisha Hamsik, Marisa R. Herrero, Mario Kiesecker, Joseph Landis, Emily Laestadius, Lars Leavitt, Sara M. Minnemeyer, Susan Polasky, Stephen Potapov, Peter Putz, Francis E. Sanderman, Jonathan Silvius, Marcel Wollenberg, Eva Fargione, Joseph |
author_facet | Griscom, Bronson W. Adams, Justin Ellis, Peter W. Houghton, Richard A. Lomax, Guy Miteva, Daniela A. Schlesinger, William H. Shoch, David Siikamäki, Juha V. Smith, Pete Woodbury, Peter Zganjar, Chris Blackman, Allen Campari, João Conant, Richard T. Delgado, Christopher Elias, Patricia Gopalakrishna, Trisha Hamsik, Marisa R. Herrero, Mario Kiesecker, Joseph Landis, Emily Laestadius, Lars Leavitt, Sara M. Minnemeyer, Susan Polasky, Stephen Potapov, Peter Putz, Francis E. Sanderman, Jonathan Silvius, Marcel Wollenberg, Eva Fargione, Joseph |
author_sort | Griscom, Bronson W. |
collection | PubMed |
description | Better stewardship of land is needed to achieve the Paris Climate Agreement goal of holding warming to below 2 °C; however, confusion persists about the specific set of land stewardship options available and their mitigation potential. To address this, we identify and quantify “natural climate solutions” (NCS): 20 conservation, restoration, and improved land management actions that increase carbon storage and/or avoid greenhouse gas emissions across global forests, wetlands, grasslands, and agricultural lands. We find that the maximum potential of NCS—when constrained by food security, fiber security, and biodiversity conservation—is 23.8 petagrams of CO(2) equivalent (PgCO(2)e) y(−1) (95% CI 20.3–37.4). This is ≥30% higher than prior estimates, which did not include the full range of options and safeguards considered here. About half of this maximum (11.3 PgCO(2)e y(−1)) represents cost-effective climate mitigation, assuming the social cost of CO(2) pollution is ≥100 USD MgCO(2)e(−1) by 2030. Natural climate solutions can provide 37% of cost-effective CO(2) mitigation needed through 2030 for a >66% chance of holding warming to below 2 °C. One-third of this cost-effective NCS mitigation can be delivered at or below 10 USD MgCO(2)(−1). Most NCS actions—if effectively implemented—also offer water filtration, flood buffering, soil health, biodiversity habitat, and enhanced climate resilience. Work remains to better constrain uncertainty of NCS mitigation estimates. Nevertheless, existing knowledge reported here provides a robust basis for immediate global action to improve ecosystem stewardship as a major solution to climate change. |
format | Online Article Text |
id | pubmed-5676916 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2017 |
publisher | National Academy of Sciences |
record_format | MEDLINE/PubMed |
spelling | pubmed-56769162017-11-15 Natural climate solutions Griscom, Bronson W. Adams, Justin Ellis, Peter W. Houghton, Richard A. Lomax, Guy Miteva, Daniela A. Schlesinger, William H. Shoch, David Siikamäki, Juha V. Smith, Pete Woodbury, Peter Zganjar, Chris Blackman, Allen Campari, João Conant, Richard T. Delgado, Christopher Elias, Patricia Gopalakrishna, Trisha Hamsik, Marisa R. Herrero, Mario Kiesecker, Joseph Landis, Emily Laestadius, Lars Leavitt, Sara M. Minnemeyer, Susan Polasky, Stephen Potapov, Peter Putz, Francis E. Sanderman, Jonathan Silvius, Marcel Wollenberg, Eva Fargione, Joseph Proc Natl Acad Sci U S A Physical Sciences Better stewardship of land is needed to achieve the Paris Climate Agreement goal of holding warming to below 2 °C; however, confusion persists about the specific set of land stewardship options available and their mitigation potential. To address this, we identify and quantify “natural climate solutions” (NCS): 20 conservation, restoration, and improved land management actions that increase carbon storage and/or avoid greenhouse gas emissions across global forests, wetlands, grasslands, and agricultural lands. We find that the maximum potential of NCS—when constrained by food security, fiber security, and biodiversity conservation—is 23.8 petagrams of CO(2) equivalent (PgCO(2)e) y(−1) (95% CI 20.3–37.4). This is ≥30% higher than prior estimates, which did not include the full range of options and safeguards considered here. About half of this maximum (11.3 PgCO(2)e y(−1)) represents cost-effective climate mitigation, assuming the social cost of CO(2) pollution is ≥100 USD MgCO(2)e(−1) by 2030. Natural climate solutions can provide 37% of cost-effective CO(2) mitigation needed through 2030 for a >66% chance of holding warming to below 2 °C. One-third of this cost-effective NCS mitigation can be delivered at or below 10 USD MgCO(2)(−1). Most NCS actions—if effectively implemented—also offer water filtration, flood buffering, soil health, biodiversity habitat, and enhanced climate resilience. Work remains to better constrain uncertainty of NCS mitigation estimates. Nevertheless, existing knowledge reported here provides a robust basis for immediate global action to improve ecosystem stewardship as a major solution to climate change. National Academy of Sciences 2017-10-31 2017-10-16 /pmc/articles/PMC5676916/ /pubmed/29078344 http://dx.doi.org/10.1073/pnas.1710465114 Text en Freely available online through the PNAS open access option. |
spellingShingle | Physical Sciences Griscom, Bronson W. Adams, Justin Ellis, Peter W. Houghton, Richard A. Lomax, Guy Miteva, Daniela A. Schlesinger, William H. Shoch, David Siikamäki, Juha V. Smith, Pete Woodbury, Peter Zganjar, Chris Blackman, Allen Campari, João Conant, Richard T. Delgado, Christopher Elias, Patricia Gopalakrishna, Trisha Hamsik, Marisa R. Herrero, Mario Kiesecker, Joseph Landis, Emily Laestadius, Lars Leavitt, Sara M. Minnemeyer, Susan Polasky, Stephen Potapov, Peter Putz, Francis E. Sanderman, Jonathan Silvius, Marcel Wollenberg, Eva Fargione, Joseph Natural climate solutions |
title | Natural climate solutions |
title_full | Natural climate solutions |
title_fullStr | Natural climate solutions |
title_full_unstemmed | Natural climate solutions |
title_short | Natural climate solutions |
title_sort | natural climate solutions |
topic | Physical Sciences |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5676916/ https://www.ncbi.nlm.nih.gov/pubmed/29078344 http://dx.doi.org/10.1073/pnas.1710465114 |
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