Addressing critiques refines global estimates of reforestation potential for climate change mitigation

K Kurt A. Fesenmyer E Erin E. Poor D Drew E. Terasaki Hart J Joseph W. Veldman F Forrest Fleischman P Pooja Choksi S Sally Archibald M Mohammed Armani M Matthew E. Fagan E Evan C. Fricke (Department of Civil and Environmental Engineering, School of Engineering, Massachusetts Institute of Technology) C Cesar Terrer (Institute of Ecological Conservation and Restoration, Chinese Academy of Forestry, Beijing, China.) N Natalia Hasler C Christopher A. Williams P Peter W. Ellis S Susan C. Cook-Patton

Abstract

Abstract Reforestation is a prominent climate change mitigation strategy, but available global maps of reforestation potential are widely criticized and highly variable, which limits their ability to provide robust estimates of both the locations and total area of opportunity. Here we develop global maps that address common critiques, build on a review of 89 reforestation maps created at multiple scales, and present eight reforestation scenarios with varying objectives, including providing ecosystem services, minimizing social conflicts, and delivering government policies. Across scenarios, we find up to 195 Mha (million hectares) are available (2225 TgCO2e (teragrams of carbon dioxide equivalent) per year total net mitigation potential), which is 71–92% smaller than previous estimates because of conservative modeling choices, incorporation of safeguards, and use of recent, high-resolution datasets. This area drops as low as 6 Mha (53 TgCO2e per year total net mitigation potential) if only statutorily protected areas are targeted. Few locations simultaneously achieve multiple objectives, suggesting that a mix of lands and restoration motivations will be needed to capitalize on the many potential benefits of reforestation.

Article Details

Volume / Issue Vol. 16, Issue 1
Published June 11, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (15)

K

Kurt A. Fesenmyer

E

Erin E. Poor

D

Drew E. Terasaki Hart

J

Joseph W. Veldman

F

Forrest Fleischman

P

Pooja Choksi

S

Sally Archibald

M

Mohammed Armani

M

Matthew E. Fagan

E

Evan C. Fricke

Department of Civil and Environmental Engineering, School of Engineering, Massachusetts Institute of Technology

C

Cesar Terrer

Institute of Ecological Conservation and Restoration, Chinese Academy of Forestry, Beijing, China.

N

Natalia Hasler

C

Christopher A. Williams

P

Peter W. Ellis

S

Susan C. Cook-Patton