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      Wood density, phytomass variations within and among trees, and allometric equations in a tropical rainforest of Africa

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      Forest Ecology and Management
      Elsevier BV

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          Root biomass allocation in the world's upland forests

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            Error propagation and scaling for tropical forest biomass estimates.

            The above-ground biomass (AGB) of tropical forests is a crucial variable for ecologists, biogeochemists, foresters and policymakers. Tree inventories are an efficient way of assessing forest carbon stocks and emissions to the atmosphere during deforestation. To make correct inferences about long-term changes in biomass stocks, it is essential to know the uncertainty associated with AGB estimates, yet this uncertainty is rarely evaluated carefully. Here, we quantify four types of uncertainty that could lead to statistical error in AGB estimates: (i) error due to tree measurement; (ii) error due to the choice of an allometric model relating AGB to other tree dimensions; (iii) sampling uncertainty, related to the size of the study plot; (iv) representativeness of a network of small plots across a vast forest landscape. In previous studies, these sources of error were reported but rarely integrated into a consistent framework. We estimate all four terms in a 50 hectare (ha, where 1 ha = 10(4) m2) plot on Barro Colorado Island, Panama, and in a network of 1 ha plots scattered across central Panama. We find that the most important source of error is currently related to the choice of the allometric model. More work should be devoted to improving the predictive power of allometric models for biomass.
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              Variation in wood density determines spatial patterns inAmazonian forest biomass

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                Author and article information

                Journal
                Forest Ecology and Management
                Forest Ecology and Management
                Elsevier BV
                03781127
                September 2010
                September 2010
                : 260
                : 8
                : 1375-1388
                Article
                10.1016/j.foreco.2010.07.040
                00a9fa04-06ba-4249-b2f8-6b5fb71216d4
                © 2010

                http://www.elsevier.com/tdm/userlicense/1.0/

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