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March 3, 20260 citations

Beyond Carbon Sequestration: The Critical Oversight of Emission Avoidance in Restoration of Wetland Ecosystems Commentary

SWS. WuRAR. ArtzABA. Barthelmes

Key Points

  • Restoration of wetland ecosystems may prevent ongoing greenhouse gas emissions, supporting climate goals.
  • Research indicates that the carbon sequestration potential of restored ecosystems is limited compared to prior emissions.
  • Assessment models for wetland restoration should consider the significant avoidance of future emissions from degradation.
  • Recognizing avoidance potential is essential for informing effective land-based strategies for climate mitigation.

Abstract

A recent study by Tölgyesi et al. 1 assessed the global potential of ecosystem restoration to mitigate climate change, concluding that restored ecosystems have very limited carbon sequestration potential (here referring to the net long-term uptake and storage of atmospheric CO2 in biomass and soils), compared to historical human carbon emissions. While this key message of their work may be valid, we need to highlight several important limitations in commonly used assumptions when such modeling approaches are applied to anthropogenically converted wetlands and peatlands. The conclusion risks misleading policymakers because it only accounts for carbon drawn down from the atmosphere. The equally critical climate benefit of restoration—preventing ongoing greenhouse gas emissions from degraded ecosystems (i.e., the reduction of ongoing greenhouse gas emissions that would otherwise occur under continued land degradation) 2—is overlooked. By ignoring this avoidance potential, the work offers a partial and potentially misleading picture of restoration’s role in climate mitigation. This oversight may lead to incomplete assessments of restoration’s climate role at a time when effective land-based strategies are urgently needed to support global net-zero targets by 2050, and the existence of climate change, as well as the need to restore ecosystems for human well-being, are increasingly challenged by parts of society 3. We emphasize that our comment is intended to complement, rather than invalidate, global restoration assessments by highlighting an additional dimension—avoided emissions—that is particularly relevant for emission-dominated wetland systems and near-term climate policy.

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Cite This Study

Wu et al. (2026) studied this question.

synapsesocial.com/papers/69a75e63c6e9836116a28ede
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Prompt active restoration of peatlands substantially reduces climate impact2019 · 96 citations
  2. 2Land management can contribute to net zero2022 · 38 citations
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  5. 5Tradeoff of CO2 and CH4 emissions from global peatlands under water-table drawdown2021 · 187 citations