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Natural climate solutions

delete2017-10-16
delete1.9K
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OA
AI
B
Bronson W. Griscom *
J
Justin Adams
P
Peter W. Ellis
R
R. A. Houghton
G
Guy Lomax
D
Daniela A. Miteva
W
William H. Schlesinger *
D
David Shoch
J
Juha Siikamäki
P
Pete Smith
P
Peter B. Woodbury
C
Chris Zganjar
A
Allen Blackman
J
João S. Campari
R
Richard T. Conant
C
Christopher L. Delgado
P
Patricia Elias
T
Trisha Gopalakrishna
M
Marisa R. Hamsik
M
Mario Herrero
J
Joseph M. Kiesecker
E
Emily Landis
L
Lars Laestadius
S
Sara M. Leavitt
S
Susan Minnemeyer
S
Stephen Polasky
P
Peter Potapov
F
Francis E. Putz
J
Jonathan Sanderman
M
Marcel Silvius
E
Eva Wollenberg
J
Joseph Fargione
DOI:10.1073/pnas.1710465114delete
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摘要

摘要

En 中文
Better stewardship of land is needed to achieve the Paris Climate Agreement goal of holding warming to below 2 degrees 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 CO2 equivalent (PgCO(2)e) y(-1) (95% Cl 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(-1)) represents cost-effective climate mitigation, assuming the social cost of CO2 pollution is >= 100 USD MgCO(2)e(-1) by 2030. Natural climate solutions can provide 37% of cost-effective CO2 mitigation needed through 2030 for a >66% chance of holding warming to below 2 degrees C. One-third of this cost-effective NCS mitigation can be delivered at or below 10 USD MgCO2-1. 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.
Keyword:
climate mitigation
forests
agriculture
wetlands
ecosystems
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P
Proceedings of the National Academy of Sciences of the United States of America
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9.1
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10.8W
被引数:
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U
University of Florida
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State University System of Florida
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University System of Ohio
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Colorado State University
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Resources for the Future
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279
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Swedish University of Agricultural Sciences
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university of vermont
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woodwell climate research center
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417
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Ohio State University
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Cornell University
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nature conservancy
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C
Cary Institute of Ecosystem Studies
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402
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