期刊文献+

1975—2005年中亚土地利用/覆被变化对森林生态系统碳储量的影响 被引量:34

Sources and Sinks of Carbon Caused by Forest Land Use Change from 1975 to 2005 in Central Asia
原文传递
导出
摘要 土地利用/覆被变化(LUCC)对碳循环的影响研究已覆盖全球绝大多数地区,但中亚LUCC对森林生态系统碳库的影响仍属未知。论文以人工林面积、森林产品收获产量及林地转移面积为基础数据,应用Bookkeeping模型,分析了1975—2005年期间三种LUCC方式对中亚森林碳库的影响。近30 a LUCC对其碳库的影响总体表现为碳汇,固碳量为3.07 Tg。植树造林表现出强烈的碳汇功能,总固碳量为12.97 Tg。森林采伐是最主要的碳释放来源,共释放碳5.80 Tg。林地转移呈现较强的碳释放特征,共排放为4.10 Tg。结果表明1975—2005年该区域LUCC对森林碳库具有明显的增汇效应。研究结果将有利于减少LUCC对全球碳收支影响的不确定性。 The contribution of forest land use change to the carbon source has been researched in most tropical regions, but it is poorly documented for arid forest ecosystem. Using Bookkeeping model, we estimated the sources and sinks of carbon caused by forest land use change between 1975 and 2005 in Central Asia. The results indicated that: The forest land use change performed as carbon sink overall, with total carbon sequestration of 3.07 Tg. The accelerated afforesting led to a strong carbon sequestration(12.97 Tg), while the deforestation was a main carbon source, releasing 5.80 Tg. The woodland transfer also performed as carbon source, releasing 4.10 Tg. We recommend that some efficient measures should be taken on increasing the quality and quantity of forest resources in the future to enhance the forestry carbon sequestration in Central Asia. Therefore, this can offset the carbon loss caused by industrial activities, so as to provide sufficient space for the sustained and healthy development of the economy in Central Asia. This study is conducive to profoundly understand the influence of human activities on global carbon balance.
出处 《自然资源学报》 CSSCI CSCD 北大核心 2015年第3期397-408,共12页 Journal of Natural Resources
基金 国家国际科技合作专项(2010DFA92720-09) 国家自然基金委与国际(地区)合作交流项目(41361140361)
关键词 土地利用/覆被变化 森林生态系统 碳动态 Bookkeeping模型 中亚 land use/cover change forest ecosystem carbon change Bookkeeping Model Central Asia
  • 相关文献

参考文献22

  • 1冯慧想.杨树人工林生长特性及生物量研究[D].中国林业科学研究院2007
  • 2白彦锋.中国木质林产品碳流动和碳储量研究[D].中国林业科学研究院2007
  • 3C. Hbirkou,C. Martius,A. Khamzina,J.P.A. Lamers,G. Welp,W. Amelung.Reducing topsoil salinity and raising carbon stocks through afforestation in Khorezm, Uzbekistan[J]. Journal of Arid Environments . 2010
  • 4P. E. Levy,A. D. Friend,A. White,M. G. R. Cannell.‘The Influence of Land Use Change On Global-Scale Fluxes of Carbon from Terrestrial Ecosystems’[J]. Climatic Change . 2004 (2)
  • 5A. Specht,P.W. West.Estimation of biomass and sequestered carbon on farm forest plantations in northern New South Wales, Australia[J]. Biomass and Bioenergy . 2003 (4)
  • 6Keryn I. Paul,Phil J. Polglase,Gary P. Richards.Sensitivity analysis of predicted change in soil carbon following afforestation[J]. Ecological Modelling . 2003 (2)
  • 7Jari Liski,Alexander V. Korotkov,Christopher F. L. Prins,Timo Karjalainen,David G. Victor,Pekka E. Kauppi.Increased Carbon Sink in Temperate and Boreal Forests[J]. Climatic Change . 2003 (1)
  • 8F.M Groenendijk,L.M Condron,W.C Rijkse.Effects of afforestation on organic carbon, nitrogen and sulfur concentrations in New Zealand hill country soils[J]. Geoderma . 2002 (1)
  • 9Pablo Laclau.Biomass and carbon sequestration of ponderosa pine plantations and native cypress forests in northwest Patagonia[J]. Forest Ecology and Management . 2002 (1)
  • 10K.I. Paul,P.J. Polglase,J.G. Nyakuengama,P.K. Khanna.Change in soil carbon following afforestation[J]. Forest Ecology and Management . 2002 (1)

共引文献6

同被引文献538

引证文献34

二级引证文献471

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部