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Even more significantly, the observed changes in the amount of carbon over time don't fit the volcanic model.
"So the question is, 'What would it take for the soil to accumulate carbon over time, rather than lose it all the next year?' ".
Although dead material decomposes and emit carbon to the atmosphere, it also accumulates carbon over time (Figure 2), being an important component of total carbon accumulation in regrowing forests [13].
Conversely, land areas that do not consistently sequester carbon over time may be adding to already rising atmospheric CO2 levels from fossil fuel burning sources, Temperate forests recovering from disturbances, such as harvest for wood products or regrowth on abandoned agricultural lands, may represent important sinks globally for CO2 [1].
Although dead material decomposes and emit carbon to the atmosphere, it also accumulates carbon over time, being an important component of total carbon accumulation in regrowing forests [ 13].
Conversely, land areas that do not consistently sequester carbon over time may be adding to already rising atmospheric CO2 levels from fossil fuel burning sources, Temperate forests recovering from disturbances, such as harvest for wood products or regrowth on abandoned agricultural lands, may represent important sinks globally for CO2 [ 1].
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We plotted carbon accretion as the change in the carbon pool over time in plots with only live tree carbon and calculated a peak at age 34.7 years (±0.5, bootstrap SE; Fig. 2b).
B 1 and B 2 describe growth rate and the inflection point of the modeled relationship, respectively We plotted carbon accretion as the change in the carbon pool over time in plots with only live tree carbon and calculated a peak at age 34.7 years (±0.5, bootstrap SE; Fig. 2b).
While carbon accretion was more variable than carbon stock estimates, carbon accretion can also be estimated as the derivative of carbon stocks over time.
The study shows a cyclic development of carbon storage over time: periods of lower levels of carbon storage follow periods with higher levels.
Table 7 shows for both study periods (until 2050 and 2100) and all scenarios the relative contribution of the forest carbon and the harvested wood products pools as well as the fuel and material substitution.> The study shows a cyclic development of carbon storage over time: periods of lower levels of carbon storage follow periods with higher levels.
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