Soil Organic Carbon Accumulation in Intensively Managed Phyllostachys praecox Stands

被引:0
|
作者
Guomo Zhou
Shunyao Zhuang
Pekun Jiang
Qiufang Xu
Hua Qin
Minghung Wong
Zhihong Cao
机构
[1] Institute of Soil Science,Joint Laboratory for Forest Soil and the Environment
[2] CAS,School of Environment Science and Technology
[3] Zhejiang A & F University,Zhejiang Provincial Key Laboratory of Carbon Cycling in Forest Ecosystem and Carbon Sequestration
[4] Zhejiang A & F University,Joint Laboratory for Soil and Environment
[5] Institute of Soil Science,undefined
[6] CAS,undefined
[7] Hong Kong Baptist University,undefined
来源
The Botanical Review | 2011年 / 77卷
关键词
Winter Mulch; Soil Organic Matter; Carbon Sequestration;
D O I
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中图分类号
学科分类号
摘要
Area of bamboo forest (Phyllostachys praecox) has rapidly increased in southern China during the last 20 years due to its high economic value. Aims of this study were to analyse the temporal and spatial variations of soil organic matter (SOM) in heavily winter mulched bamboo stands and to estimate potential for carbon sequestration. Total of 60 soil profiles with 0–15 years of bamboo plantation were sampled from three towns in Lin’an County. Results showed that with increased plantation years, SOM decreased slightly at the beginning (1–5 years), and then rose up steadily. Based on the average of the three locations, the highest SOM content of 75.82 g/kg was the surface layer (0–10 cm) of the 15 years. As plantation year increased, the variation of SOM in the surface layer (0–10 cm) was represented by a parabolic shape, and in the second layer (10–20 cm), it was a similar mode, but less vigorous. Soil organic carbon (SOC) storage significantly increased during 5 to 15 years after it reached full production, and the calculated annual SOC increment in 0–40 cm soil profile was about 6.3 t C/ha/year. Therefore, extended Phyllostachys praecox forests can be considered as one option for countering CO2 emissions and regional climate change.
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页码:296 / 303
页数:7
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