Predicting long-term trends in forest growth requires
accurate characterization of how the relationship between forest productivity
and climatic stress varies across climatic regimes. Using a network of over two
million tree-ring observations spanning North America and a space-for-time substitution
methodology, we forecast climate impacts on future forest growth. We explored differing
scenarios of increased water-use efficiency (WUE) due to CO2-fertilisation,
which we simulated as increased effective precipitation. In our forecasts: (1)
climate change negatively impacted forest growth rates in the interior west and
positively impacted forest growth along the western, southeastern and
northeastern coasts; (2) shifting climate sensitivities offset positive effects
of warming on high-latitude forests, leaving no evidence for continued ‘boreal
greening’; and (3) it took a 72% WUE enhancement to compensate for
continentally averaged growth declines under RCP 8.5. Our results highlight the
importance of locally adapted forest management strategies to handle regional
differences in growth responses to climate change.
Sustainable Products, Design And Development
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Showing posts with label CO2 Balance. Show all posts
Showing posts with label CO2 Balance. Show all posts
Thursday, July 21, 2016
An unprecedented study combining projections of future climate |
Trees can slow the warming
of our planet by taking carbon out of the air, but only if they’re healthy:
Monday, September 22, 2014
Climate change is a fact, and most of the warming is caused by human activity.
Only recently scientists have realized that sea ice has an impact on the planet's CO2 balance.
"We have long known that the Earth's oceans are able to absorb huge amounts of CO2. But we also thought that this did not apply to ocean areas covered by ice, because the ice was considered impenetrable. However, this is not true: New research shows that sea ice in the Arctic draws large amounts of CO2 from the atmosphere into the ocean", says Dorte Haubjerg Søgaard.
Read more at:
"We have long known that the Earth's oceans are able to absorb huge amounts of CO2. But we also thought that this did not apply to ocean areas covered by ice, because the ice was considered impenetrable. However, this is not true: New research shows that sea ice in the Arctic draws large amounts of CO2 from the atmosphere into the ocean", says Dorte Haubjerg Søgaard.
Read more at:
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