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Extending the baseline of tropical dry forest loss in Ghana (1984–2015) reveals drivers of major deforestation inside a protected area

  • Thomas A.J. Janssen
  • , George K.D. Ametsitsi
  • , Murray Collins
  • , Stephen Adu-Bredu
  • , Imma Oliveras
  • , Edward T.A. Mitchard
  • , Elmar M. Veenendaal

Research output: Contribution to JournalArticleAcademicpeer-review

Abstract

Abstract Tropical dry forests experience the highest deforestation rates on Earth, with major implications for the biodiversity of these ecosystems, as well as for its human occupants. Global remote sensing based forest cover data (2000 − 2012) point to the rapid loss of tropical dry forest in South America and Africa, also, if not foremost, inside formally protected areas. Here, we significantly extend the baseline of tropical dry forest loss inside a protected area in Ghana using a generalizable change detection technique. The forest cover change detection is based on the normalized difference vegetation index (NDVI) derived from historical Landsat data (1984–2015). Field measurements were carried out in dry semi-deciduous forest and in the adjacent savanna and woodland. Estimates of the canopy area index and above ground woody biomass were related to NDVI derived from Landsat 8 data. The change detection indicated significant NDVI decrease in a large area initially covered by tropical dry forest, associated with deforestation. The peak in deforestation was found to have occurred between 1990 and 2002, hereafter, the conservation status of the area was improved. A combination of remote sensing data corroborated by secondary data sources provides evidence for the almost complete clearance of a tropical dry forest inside a strictly protected area, attributable to logging and land clearing for arable farming. The NDVI change detection also revealed NDVI increase in the adjacent woodlands from 2002 to 2015, demonstrating woody encroachment. Historical fire data from the MODIS burned area product indicate that the deforested area experienced a high frequency of anthropogenic burning since 2004, which may have caused further degradation and largely prevents forest regeneration. The results show the ongoing destruction of tropical ecosystems even within ostensibly protected areas and ask for the revision of protection and management strategies of such areas.
Original languageEnglish
Pages (from-to)163-172
Number of pages10
JournalBiological Conservation
Volume218
DOIs
Publication statusPublished - 28 Feb 2018

Funding

We would like to thank the Wildlife Division of the Forestry Commission of Ghana for granting us research permission to work in the Kogyae Strict Nature Reserve (KSNR). Our appreciation also goes to the Park Manager, Mr. Dwoben Nyantakyi, and his staff at Dome Camp for providing security and technical assistance in the field, particularly Isaac Sarpong, Kwaku Yinye and Yaw Agyeman, who in addition organized various scattered settler communities in KSNR to participate in interviews to verify our findings. Finally, we would like to thank the three anonymous reviewers for their comments and suggestions. EM was funded by a research fellowship from NERC (grant ref.: NE/I021217/1). TJ was partly funded by the Netherlands Earth System Science Centre (NESSC) , a program of the Ministry of Education, Culture and Science (OCW) of the Netherlands. EV and GA were funded by the EU FP7 GEOCARBON project (grant agreement no. 283080 ) in Ghana.

FundersFunder number
Netherlands Earth System Science Centre
European Commission
Seventh Framework Programme283080
Ministerie van Onderwijs, Cultuur en Wetenschap
UK Research and Innovation
Natural Environment Research CouncilNE/I021217/1

    UN SDGs

    This output contributes to the following UN Sustainable Development Goals (SDGs)

    1. SDG 15 - Life on Land
      SDG 15 Life on Land

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