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Spatio-temporal changes in biomass carbon sinks in China's forests from 1977 to 2008 被引量:52
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作者 GUO ZhaoDi HU HuiFeng +2 位作者 li Pin li nuyun FANG JingYun 《Science China(Life Sciences)》 SCIE CAS 2013年第7期661-671,1,共11页
Forests play a leading role in regional and global carbon (C) cycles. Detailed assessment of the temporal and spatial changes in C sinks/sources of China's forests is critical to the estimation of the national C b... Forests play a leading role in regional and global carbon (C) cycles. Detailed assessment of the temporal and spatial changes in C sinks/sources of China's forests is critical to the estimation of the national C budget and can help to constitute sustainable forest management policies for climate change. In this study, we explored the spatio-temporal changes in forest biomass C stocks in China between 1977 and 2008, using six periods of the national forest inventory data. According to the definition of the forest inventory, China's forest was categorized into three groups: forest stand, economic forest, and bamboo forest. We estimated forest biomass C stocks for each inventory period by using continuous biomass expansion factor (BEF) method for forest stands, and the mean biomass density method for economic and bamboo forests. As a result, China's forests have accumulated biomass C (i.e., biomass C sink) of 1896 Tg (1Tg=1012g) during the study period, with 1710, 108 and 78 Tg C in forest stands, and economic and bamboo forests, respectively. Annual forest biomass C sink was 70.2 Tg Ca-1 , offsetting 7.8% of the contemporary fossil CO2 emissions in the country. The results also showed that planted forests have functioned as a persistent C sink, sequestrating 818 Tg C and accounting for 47.8% of total C sink in forest stands, and that the old-, mid- and young-aged forests have sequestrated 930, 391 and 388 Tg C from 1977 to 2008. Our results suggest that China's forests have a big potential as biomass C sink in the future because of its large area of planted forests with young-aged growth and low C density. 展开更多
关键词 中国森林 生物量碳 时空变化 森林资源清查 二氧化碳排放量 森林生物量 经济林 国家预算
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Study of Priority Area Selection and Evaluation for Afforestation and Reforestation Project under CDM in China
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作者 li nuyun XU Zehong +4 位作者 WANG Chunfeng CHEN Jiang ZHANG Shengdong ZHANG Shuang HOU Ruiping 《Chinese Forestry Science and Technology》 2007年第2期1-6,共6页
This paper gives an expatiation on significance and specific requirements of developing afforestation and reforestation project under CDM in Kyoto Protocol. According to the international rules and the current forestr... This paper gives an expatiation on significance and specific requirements of developing afforestation and reforestation project under CDM in Kyoto Protocol. According to the international rules and the current forestry development situation in China, the priority area for CDM afforestation and reforestation (CDM A/R) project is finally found after scientific selection and assessment on indicators, including the non-forestland area in 1990, growth rate of tree, afforestation cost, biodiversity and community development. The outcome from the study provides a solid basis for finding and implementing CDM A/R carbon sequestration projects in China. The study also puts forward suggestions on the strategy to develop and manage CDM A/R projects in 展开更多
关键词 中国 植树造林 绿化工程 评估指标
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General Review on Afforestation in China
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作者 WANG Chunfeng li nuyun 《Chinese Forestry Science and Technology》 2003年第4期83-89,共7页
The author reviews the developing process of afforestation over the past 50 years in China, based on historical records. The general situation on the key afforestation projects and organizing ways, relevant policies a... The author reviews the developing process of afforestation over the past 50 years in China, based on historical records. The general situation on the key afforestation projects and organizing ways, relevant policies as well as techniques are stated in this article. The author also discusses further on the problems facing with Chinese afforestation. 展开更多
关键词 AFFORESTATION PROJECT POLICY TECHNIQUE
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