How much has tropical forest fragmentation increased across the globe?

2024-02-22T11:07:49-05:00October 30th, 2021|Climate Change, Digests|
 

Tropical forests are a critical component of the global ecosystem. They support high levels of biodiversity, provide a large number of ecosystem services, sequester significant amounts of carbon, and act as buffers for changing climatic conditions. However, deforestation has lead to increasingly fragmented tropical forests around the world, leading to less forest area and more forest edges. Quantifying tropical forest fragmentation at a meaningful resolution across large spatial and temporal scales remains a challenge.

Fischer, R., Taubert, F., Müller, M.S., Groeneveld, J., Lehmann, S., Wiegand, T. and Huth, A. 2021. Accelerated forest fragmentation leads to critical increase in tropical forest edge area. Science Advances 7(37): eabg7012.

A new analysis tackles this issue by using high-resolution (30m pixel) forest cover maps to quantify changes in tropical forest fragmentation across America, Africa, and Asia from 2000 to 2010. An efficient cluster detection algorithm helped in determining size and spatial configuration of fragments, along with identifying critical edge area and quantifying forest transitions.

The resulting numbers are striking. The number of forest fragments overall increased by over 20 million in 10 years, with Africa showing a 42% increase in fragments. The average size of these forest fragments decreased overall from 15 ha to 12 ha. The fraction of forest edge area to total forest area increased on average from 27% to 31%.  Africa showed the greatest increase – from 30% to 37% – mainly due to an increase of 20 million small fragments (<10ha). Most forest lost occurred at the edge of fragments, with up to 77% of loss within 100m of the forest edge.

Changes in forest fragmentation numbers are a product of both forest loss and forest gain. Between 2000 and 2010, 177 million ha of forest core area was lost due to deforestation or (more commonly) increased forest edge due to deforestation, along with the loss of 108 million ha of forest edge area. However, this was countered with a gain of 93 million ha of forest core area and 51 million ha of forest edge area due to reforestation or afforestation.

Based on this information, future projections show that by 2100, about half of the global tropical forest will be in edge areas. Even if the net deforestation rate becomes half of what it is currently, the ratio of edge area to forest area will still increase to 40%.

What are the larger consequences of this increase in forest fragmentation and forest edges? Beyond harboring high biodiversity, intact tropical forests act as effective carbon sinks and buffers for micro-climate changes. Deforestation contributes significantly to carbon emissions, particularly through the complex consequences of edge effects. Fragmentation alters the hydrological cycle, through impacts on both precipitation and topological flow.

The impacts of tropical forest fragmentation likely reach beyond current predictions. Keeping these forests intact remains a major conservation challenge to protect stable ecosystems across the globe.

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About the Author:

Heather Cayton is the Managing Director of Conservation Corridor and a Research Assistant at Michigan State University. She received her B.S. from the University of Virginia and her M.S. from Virginia Tech, and has spent over a decade studying corridors and rare butterflies in North Carolina.
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