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Above-ground biomass and structure of 260 African tropical forests

الكتلة الحيوية فوق الأرض وهيكل 260 غابة استوائية أفريقية
Authors: Vincent Droissart; Kathryn J. Jeffery; Annette Hladik; Joey Talbot; Andrew R. Marshall; Hans Beeckman; Oliver L. Phillips; +68 Authors

Above-ground biomass and structure of 260 African tropical forests

Abstract

We report above-ground biomass (AGB), basal area, stem density and wood mass density estimates from 260 sample plots (mean size: 1.2 ha) in intact closed-canopy tropical forests across 12 African countries. Mean AGB is 395.7 Mg dry mass ha −1 (95% CI: 14.3), substantially higher than Amazonian values, with the Congo Basin and contiguous forest region attaining AGB values (429 Mg ha −1 ) similar to those of Bornean forests, and significantly greater than East or West African forests. AGB therefore appears generally higher in palaeo- compared with neotropical forests. However, mean stem density is low (426 ± 11 stems ha −1 greater than or equal to 100 mm diameter) compared with both Amazonian and Bornean forests (cf. approx. 600) and is the signature structural feature of African tropical forests. While spatial autocorrelation complicates analyses, AGB shows a positive relationship with rainfall in the driest nine months of the year, and an opposite association with the wettest three months of the year; a negative relationship with temperature; positive relationship with clay-rich soils; and negative relationships with C : N ratio (suggesting a positive soil phosphorus–AGB relationship), and soil fertility computed as the sum of base cations. The results indicate that AGB is mediated by both climate and soils, and suggest that the AGB of African closed-canopy tropical forests may be particularly sensitive to future precipitation and temperature changes.

Countries
Netherlands, United Kingdom, United Kingdom, Australia, Belgium, United Kingdom, United Kingdom, Belgium, United States, United Kingdom, France, United Kingdom, United Kingdom, Netherlands, France, United Kingdom, United Kingdom, France
Keywords

Life Sciences & Biomedicine - Other Topics, Biomass (ecology), Atmospheric Science, 550, FoR 11 (Medical and Health Sciences), WOOD DENSITY, Climate, Precipitation, Estimation of Forest Biomass and Carbon Stocks, AMAZONIAN FORESTS, Trees, Aboveground Biomass, Basal area, Soil, Biodiversity Conservation and Ecosystem Management, Models, SD Forestry, Soil water, Biomass, FoR 06 (Biological Sciences), CLIMATE-CHANGE, Ecology, Geography, east Africa, Causes and Impacts of Climate Change Over Millennia, Amazonian, Forestry, RAIN-FOREST, 11 Medical And Health Sciences, Articles, Sciences bio-médicales et agricoles, wood density, Earth and Planetary Sciences, Physical Sciences, GROWTH, ecology, CARBON STOCKS, SENSITIVITY, Tree Height-Diameter Models, Biologie, Life Sciences & Biomedicine, Wood density, GE Environmental Sciences, 570, Conservation of Natural Resources, Amazon rainforest, Climate Change, west Africa, SPATIAL-PATTERNS, Soil fertility, Models, Biological, 333, Ecology and Environment, Environmental science, soil, Carbon Cycle, Congo basin, Meteorology, West Africa, climate, Biology, TREE ALLOMETRY, Nature and Landscape Conservation, 580, Evolutionary Biology, Tropical Climate, Science & Technology, Canopy, Tropics, Biology and Life Sciences, 06 Biological Sciences, Biological, East Africa, SOILS, Congo Basin, FOS: Biological sciences, Africa, Environmental Science, Environmental Sciences

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