Accounting for deep soil carbon in tropical forest conservation payments

Author:

Sundqvist Maja K.,Hasselquist Niles J.,Jensen Joel,Runesson Josefin,Goodman Rosa C.,Axelsson E. Petter,Alloysius David,Lindh Arvid,Ilstedt UlrikORCID,Aguilar Francisco X.

Abstract

AbstractSecondary tropical forests are at the forefront of deforestation pressures. They store large amounts of carbon, which, if compensated for to avoid net emissions associated with conversion to non-forest uses, may help advance tropical forest conservation. We measured above- and below-ground carbon stocks down to 1 m soil depth across a secondary forest and in oil palm plantations in Malaysia. We calculated net carbon losses when converting secondary forests to oil palm plantations and estimated payments to avoid net emissions arising from land conversion to a 22-year oil palm rotation, based on land opportunity costs per hectare. We explored how estimates would vary between forests by also extracting carbon stock data for primary forest from the literature. When tree and soil carbon was accounted for, payments of US$18–51 tCO2–1 for secondary forests and US$14–40 tCO2–1 for primary forest would equal opportunity costs associated with oil palm plantations per hectare. If detailed assessments of soil carbon were not accounted for, payments to offset opportunity costs would need to be considerably higher for secondary forests (US$28–80 tCO2–1). These results show that assessment of carbon stocks down to 1 m soil depth in tropical forests can substantially influence the estimated value of avoided-emission payments.

Publisher

Springer Science and Business Media LLC

Reference84 articles.

1. Glasgow leaders’ declaration on forests and land use. 02.11.21. https://ukcop26.org/glasgow-leaders-declaration-on-forests-and-land-use/

2. van der Werf, E. & Peterson, S. Modeling linkages between climate policy and land use: An overview. Agric. Econ. 40, 507–517. https://doi.org/10.1111/j.1574-0862.2009.00394.x (2009).

3. Denman, K. L. et al. in In Climate Change 2007: The physical science basis, contribution of working group I to the Fourth Assessment Report of the Intergovernmental Panel on Climate Change (eds S. Solomon et al.) (Cambridge University Press, 2007).

4. IPCC. Climate change 2014: synthesis report. Contribution of working groups I, II and III to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change., (IPCC, 2014).

5. Kotowska, M. M., Leuschner, C., Triadiati, T., Meriem, S. & Hertel, D. Quantifying above- and belowground biomass carbon loss with forest conversion in tropical lowlands of Sumatra (Indonesia). Global Change Biol. 21, 3620–3634. https://doi.org/10.1111/gcb.12979 (2015).

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