empirical estimates of aboveground carbon in open eucalyptus forests of south-eastern australia and its potential implication for national carbon accounting

empirical estimates of aboveground carbon in open eucalyptus forests of south-eastern australia and its potential implication for national carbon accounting

;Liubov Volkova;Huiquan Bi;Simon Murphy;Christopher J Weston
tecnologia del agua 2015 Vol. 6 pp. 3395-3411
147
volkova2015forestsempirical

Abstract

The aboveground carbon (AGC) storage of open Eucalyptus forests is unknown yet they are estimated to account for almost 25% of all Australian forests and about 60% of forests in Victoria. In this study we provide the best possible estimates of total AGC including tree biomass derived from destructive biomass sampling across 23 study plots established in open Eucalyptus forests in Victoria. The field estimates of AGC were then used for calibration of Australia’s National Carbon Accounting Model, FullCAM. The study aimed to develop a transparent and defendable method to estimate AGC for one of the most common Australian forests. Our calibrations showed that the 8.3 M ha of open Eucalyptus forests of SE Australia sequester at least 139 Mt C more than default FullCAM predictions. Because most of these forests are not subject to human-induced emission such as harvesting, only emissions and stock changes from a small area of these forests is reported in national inventories and international greenhouse emissions agreements. Concern for climate change and emission reduction will inevitably require land managers to come up with defendable methods of estimating forest carbon stocks and changes in all forest types; here we show how FullCAM can be further developed for this purpose.

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