Thomas Pugh
Senior lecturer
Protect young secondary forests for optimum carbon removal
Author
Summary, in English
Avoiding severe global warming requires large-scale removals of atmospheric carbon dioxide. Forest regeneration offers cost-effective carbon removals, but annual rates vary substantially by location and forest age. Here we generate grid-level (~1-km2) growth curves for aboveground live carbon in naturally regrowing forests by combining 109,708 field estimates with 66 environmental covariates. Across the globe and the first 100 years of growth, maximum carbon removal rates varied 200-fold, with the greatest rates estimated in ~20- to 40-year-old forests. Despite a focus on new forests for natural climate solutions, protecting existing young secondary forests can provide up to 8-fold more carbon removal per hectare than new regrowth. These maps could help to target the optimal ages and locations where a key carbon removal strategy could be applied, and improve estimates of how secondary forests contribute to global carbon cycling.
Department/s
- LU Profile Area: Nature-based future solutions
- MERGE: ModElling the Regional and Global Earth system
- BECC: Biodiversity and Ecosystem services in a Changing Climate
- Dept of Physical Geography and Ecosystem Science
Publishing year
2025
Language
English
Pages
793-800
Publication/Series
Nature Climate Change
Volume
15
Document type
Article
Publisher
Nature Publishing Group
Topic
- Forest Science
- Climate Science
Keywords
- SDG 13 - Climate Action
Status
Published
ISBN/ISSN/Other
- ISSN: 1758-678X