Accurate quantification of below-ground biomass (BGB) of woody vegetation is critical to understanding ecosystem function and potential for climate change mitigation from sequestration of biomass carbon. We compiled 2054 measurements of planted and natural individual tree and shrub biomass from across different regions of Australia (arid shrublands to tropical rainforests) to develop allometric models for prediction of BGB. We found that the relationship between BGB and stem diameter was generic, with a simple power-law model having a BGB prediction efficiency of 72–93% for four broad plant functional types: (i) shrubs and Acacia trees, (ii) multi-stemmed mallee eucalypts, (iii) other trees of relatively high wood density, and; (iv) a speci...
To quantify the impact that planting indigenous trees and shrubs in mixed communities (environmental...
Root biomass may to contribute a substantial proportion of the carbon sequestered in new tree planti...
Aim Existing global models to predict standing woody biomass are based on trees characterized by a s...
Accurate quantification of below-ground biomass (BGB) of woody vegetation is critical to understandi...
Accurate quantification of below-ground biomass (BGB) of woody vegetation is critical to understandi...
Accurate ground-based estimation of the carbon stored in terrestrial ecosystems is critical to quant...
Accurate ground-based estimation of the carbon stored in terrestrial ecosystems is critical to quant...
Accurate ground-based estimation of the carbon stored in terrestrial ecosystems is critical to quant...
Accurate ground-based estimation of the carbon stored in terrestrial ecosystems is critical to quant...
Accurate ground-based estimation of the carbon stored in terrestrial ecosystems is critical to quant...
Accurate ground-based estimation of the carbon stored in terrestrial ecosystems is critical to quant...
Accurate ground-based estimation of the carbon stored in terrestrial ecosystems is critical to quant...
Accurate ground-based estimation of the carbon stored in terrestrial ecosystems is critical to quant...
To quantify the impact that planting indigenous trees and shrubs in mixed communities (environmental...
To quantify the impact that planting indigenous trees and shrubs in mixed communities (environmental...
To quantify the impact that planting indigenous trees and shrubs in mixed communities (environmental...
Root biomass may to contribute a substantial proportion of the carbon sequestered in new tree planti...
Aim Existing global models to predict standing woody biomass are based on trees characterized by a s...
Accurate quantification of below-ground biomass (BGB) of woody vegetation is critical to understandi...
Accurate quantification of below-ground biomass (BGB) of woody vegetation is critical to understandi...
Accurate ground-based estimation of the carbon stored in terrestrial ecosystems is critical to quant...
Accurate ground-based estimation of the carbon stored in terrestrial ecosystems is critical to quant...
Accurate ground-based estimation of the carbon stored in terrestrial ecosystems is critical to quant...
Accurate ground-based estimation of the carbon stored in terrestrial ecosystems is critical to quant...
Accurate ground-based estimation of the carbon stored in terrestrial ecosystems is critical to quant...
Accurate ground-based estimation of the carbon stored in terrestrial ecosystems is critical to quant...
Accurate ground-based estimation of the carbon stored in terrestrial ecosystems is critical to quant...
Accurate ground-based estimation of the carbon stored in terrestrial ecosystems is critical to quant...
To quantify the impact that planting indigenous trees and shrubs in mixed communities (environmental...
To quantify the impact that planting indigenous trees and shrubs in mixed communities (environmental...
To quantify the impact that planting indigenous trees and shrubs in mixed communities (environmental...
Root biomass may to contribute a substantial proportion of the carbon sequestered in new tree planti...
Aim Existing global models to predict standing woody biomass are based on trees characterized by a s...