[Carbon storage and allocation in Cunninghamia lanceolata plantations with different stand ages.]
Si An Lan, Hu Du, Fu Ping Zeng, Tong Qing Song, Wan Xia Peng, Chang Han, Li Chen, Liang Su
Abstract
Si An Lan, Hu Du, Fu Ping Zeng, Tong Qing Song, Wan Xia Peng, Chang Han, Li Chen, Liang Su
Abstract
) by accounting for 62.6%-72.6% of carbon storage in the canopy layer, which increased with ages. The branches and leaves accounted for 4.8%-11.0% and 11.1%-14.2% of C stored in the canopy layer, respectively, which all decreased with ages, while increased to some extent in the over-mature plantation. Roots occupied 11.3%-12.3% of carbon storage in the canopy layer with small fluctuation with the stand age.
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) by accounting for 62.6%-72.6% of carbon storage in the canopy layer, which increased with ages. The branches and leaves accounted for 4.8%-11.0% and 11.1%-14.2% of C stored in the canopy layer, respectively, which all decreased with ages, while increased to some extent in the over-mature plantation. Roots occupied 11.3%-12.3% of carbon storage in the canopy layer with small fluctuation with the stand age.
Key concepts: Cunninghamia, Litter, Environmental science, Carbon fibers, Vegetation (pathology), Canopy, Soil carbon, Ecosystem