2017•PubMedRequires access

[Carbon storage and its allocation in karst forest at different stand ages in Guangxi, China].

Fang Qin Hu, Hu Du, Fu Ping Zeng, Tong Qing Song, Wan Xia Peng, Si An Lan, Fang Zhang

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Abstract

, respectively. Total ecosystem carbon storage was greater in underground part than in aboveground part except mature plantation. The carbon storage in aboveground part carbon increased with stand age but that in underground part changed insignificantly with the carbon storage of soil. The soil and tree layer were the major carbon pools of the forest ecosystems in the karst region, and the sum of carbon stored in soil and tree accounted for more than 96% of total ecosystem carbon storage.

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, respectively. Total ecosystem carbon storage was greater in underground part than in aboveground part except mature plantation. The carbon storage in aboveground part carbon increased with stand age but that in underground part changed insignificantly with the carbon storage of soil. The soil and tree layer were the major carbon pools of the forest ecosystems in the karst region, and the sum of carbon stored in soil and tree accounted for more than 96% of total ecosystem carbon storage.

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Available abstract

, respectively. Total ecosystem carbon storage was greater in underground part than in aboveground part except mature plantation. The carbon storage in aboveground part carbon increased with stand age but that in underground part changed insignificantly with the carbon storage of soil. The soil and tree layer were the major carbon pools of the forest ecosystems in the karst region, and the sum of carbon stored in soil and tree accounted for more than 96% of total ecosystem carbon storage.

Key concepts: Shrub, Karst, Soil carbon, Environmental science, Vegetation (pathology), Litter, Total organic carbon, Carbon fibers

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[Carbon storage and its allocation in karst forest at different stand ages in Guangxi, China]. — Research Paper | ScholarLens