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What Drives and Stops Deforestation, Reforestation, and Forest Degradation? An Updated Meta-analysis

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  • Jonah Busch
  • Kalifi Ferretti-Gallon

Abstract

This article updates our previous comprehensive meta-analysis of what drives and stops deforestation (Busch and Ferretti-Gallon 2017). By including six additional years of research, this article more than doubles the evidence base to 320 spatially explicit econometric studies published in peer-reviewed academic journals from 1996 to 2019. We find that deforestation is consistently associated with greater accessibility (as influenced by natural features such as slope and elevation and built infrastructure such as roads, cities, and cleared areas) and with higher economic returns (from agriculture, livestock, and timber). Some demographic variables are consistently associated with less deforestation (e.g., Indigenous people, poverty, and age) or more deforestation (e.g., population), and others are not associated with the level of deforestation (e.g., education and gender). Policies that directly influence allowable land-use activities are associated with less deforestation (e.g., protected areas, enforcement of forest laws, payments for ecosystem services, community forest management, and certification of sustainable commodities). But policies and institutions that primarily seek other ends are not consistently associated with more or less deforestation (e.g., democracy, general governance, conflict abatement, and land-tenure security). We introduce reforestation and forest degradation as new dependent variables alongside deforestation. Greater population is consistently associated with more forest degradation, whereas steeper slope, greater distance from cities, and lower population are consistently associated with more reforestation.

Suggested Citation

  • Jonah Busch & Kalifi Ferretti-Gallon, 2023. "What Drives and Stops Deforestation, Reforestation, and Forest Degradation? An Updated Meta-analysis," Review of Environmental Economics and Policy, University of Chicago Press, vol. 17(2), pages 217-250.
  • Handle: RePEc:ucp:renvpo:doi:10.1086/725051
    DOI: 10.1086/725051
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    Cited by:

    1. Yiannis Moustakis & Tobias Nützel & Hao-Wei Wey & Wenkai Bao & Julia Pongratz, 2024. "Temperature overshoot responses to ambitious forestation in an Earth System Model," Nature Communications, Nature, vol. 15(1), pages 1-18, December.

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