Global forecasts of urban expansion to 2030 and direct impacts on biodiversity and carbon pools

Глобальные прогнозы расширения урбанизированных территорий до 2030 года и прямые последствия для биоразнообразия и углеродных запасов
Karen C. Seto, Burak Güneralp, Lucy R. Hutyra
2012-09-17

biodiversity hotspotsglobal urban expansion forecasts to 2030spatially explicit probabilistic forecaststropical carbon biomass lossurban land-cover change impacts
Urban land-cover change threatens biodiversity and affects ecosystem productivity through loss of habitat, biomass, and carbon storage. However, despite projections that world urban populations will increase to nearly 5 billion by 2030, little is known about future locations, magnitudes, and rates of urban expansion. Here we develop spatially explicit probabilistic forecasts of global urban land-cover change and explore the direct impacts on biodiversity hotspots and tropical carbon biomass. If current trends in population density continue and all areas with high probabilities of urban expansion undergo change, then by 2030, urban land cover will increase by 1.2 million km(2), nearly tripling the global urban land area circa 2000. This increase would result in considerable loss of habitats in key biodiversity hotspots, with the highest rates of forecasted urban growth to take place in regions that were relatively undisturbed by urban development in 2000: the Eastern Afromontane, the Guinean Forests of West Africa, and the Western Ghats and Sri Lanka hotspots. Within the pan-tropics, loss in vegetation biomass from areas with high probability of urban expansion is estimated to be 1.38 PgC (0.05 PgC yr(-1)), equal to ∼5% of emissions from tropical deforestation and land-use change. Although urbanization is often considered a local issue, the aggregate global impacts of projected urban expansion will require significant policy changes to affect future growth trajectories to minimize global biodiversity and vegetation carbon losses.
1
Majority of forecasted urban growth will occur in regions relatively undisturbed by urban development in 2000, shifting impacts to previously less-urbanized biodiversity-rich areas.
2
Mitigating aggregate global biodiversity and vegetation carbon losses from projected urban expansion will require significant policy changes to alter future urban growth trajectories.
3
Projected urban expansion will cause considerable habitat loss in key biodiversity hotspots, with highest forecasted growth in Eastern Afromontane, Guinean Forests of West Africa, and Western Ghats and Sri Lanka.
4
Spatially explicit probabilistic forecasts predict global urban land cover will increase by 1.2 million km^2 by 2030, nearly tripling circa-2000 urban area if high-probability areas urbanize.
5
Within the pan-tropics, vegetation biomass loss from high-probability urban expansion areas is estimated at 1.38 PgC (0.05 PgC yr^-1), about 5% of emissions from tropical deforestation and land-use change.

Global urban land-cover (projected urban expansion to 2030)

Direct impacts of projected urban expansion on biodiversity hotspots and tropical vegetation carbon biomass (habitat loss, biomass/carbon storage loss, and spatial rates/magnitudes of change)

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2012-09-17
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Karen C. Seto
Burak Güneralp
Lucy R. Hutyra
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