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1.
Science ; 341(6150): 1085-9, 2013 Sep 06.
Artículo en Inglés | MEDLINE | ID: mdl-23929948

RESUMEN

Seasonal variations of atmospheric carbon dioxide (CO2) in the Northern Hemisphere have increased since the 1950s, but sparse observations have prevented a clear assessment of the patterns of long-term change and the underlying mechanisms. We compare recent aircraft-based observations of CO2 above the North Pacific and Arctic Oceans to earlier data from 1958 to 1961 and find that the seasonal amplitude at altitudes of 3 to 6 km increased by 50% for 45° to 90°N but by less than 25% for 10° to 45°N. An increase of 30 to 60% in the seasonal exchange of CO2 by northern extratropical land ecosystems, focused on boreal forests, is implicated, substantially more than simulated by current land ecosystem models. The observations appear to signal large ecological changes in northern forests and a major shift in the global carbon cycle.


Asunto(s)
Atmósfera/química , Ciclo del Carbono , Dióxido de Carbono/química , Ecosistema , Árboles , Regiones Árticas , Océanos y Mares , Estaciones del Año
2.
Science ; 314(5802): 1130-2, 2006 Nov 17.
Artículo en Inglés | MEDLINE | ID: mdl-17110574

RESUMEN

We report measurements and analysis of a boreal forest fire, integrating the effects of greenhouse gases, aerosols, black carbon deposition on snow and sea ice, and postfire changes in surface albedo. The net effect of all agents was to increase radiative forcing during the first year (34 +/- 31 Watts per square meter of burned area), but to decrease radiative forcing when averaged over an 80-year fire cycle (-2.3 +/- 2.2 Watts per square meter) because multidecadal increases in surface albedo had a larger impact than fire-emitted greenhouse gases. This result implies that future increases in boreal fire may not accelerate climate warming.


Asunto(s)
Incendios , Efecto Invernadero , Árboles , Ecosistema
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