期刊文献+

全球气候变化背景下湿地系统的碳汇作用研究——以天津为例 被引量:10

The Research of Wetland Carbon Sink Function under Global Climate Change——The Case Study of Tianjin Area
下载PDF
导出
摘要 在当今全球气候变化背景下,水环境属于最易受到影响的基础系统。由于天津特殊的地理位置和发展趋势,使得其水环境更为敏感和脆弱。从天津湿地系统保护与恢复规划架构角度,预估可保护的面积总数,并对湿地系统的大气价值做初步估算,从预估可增加的碳汇量来看,湿地系统对于天津地区碳汇增长有帮助。并以提高天津水系统的生态安全保障水平为目标,从加强水安全和生物保护安全为策略出发点,以兼顾天津经济发展和生态环境质量提高为前提,提出天津湿地系统生态安全格局的强化策略。 The value of the wetland ecosystem service has been outstanding.The ecosystem service of the regional wetland system helps to strengthen the security pattern of the regional ecology and improve the regional environmental problem.When city grows rapidly,the regional wetland system will ease the tension of the city enlargement,and help to harmonize the region.The wetland system can regulate the climate and to improve greenhouse gas emissions.Therefore,the core of the paper is to discuss the urgency of wetland carbon sink ecosystem service under the pressure of climate change.By the comprehensive wetland planning of protection and rehabilitation,the ecological security pattern in Tianjin area can be strengthened.
作者 李孟颖
出处 《中国园林》 北大核心 2010年第6期27-30,共4页 Chinese Landscape Architecture
关键词 风景园林 湿地系统 碳汇 全球气候变化 天津 landscape architecture wetland system carbon sink global climate change Tianjin
  • 相关文献

参考文献4

  • 1马学慧,吕国宪,阎敏华,等.简述沼泽生态系统CO2[M]//陈刚起.三江平原沼泽研究,北京:科学出版社,1996:165-168.
  • 2湿地国际组织中国办事处.湿地保护与全球变暖.环境经济杂志,2007,(42):25-27.
  • 3刘子刚.湿地生态系统碳储存和温室气体排放研究[J].地理科学,2004,24(5):634-639. 被引量:85
  • 4刘向华.生态系统服务价值评估方法研究-基于三江平原七星河湿地价值评估实证分析[M].北京:中国农业出版社,2009:124.

二级参考文献26

  • 1Gorham E. The biogeochemistry of northern peatlands and its possible responses to global warming[A]. In: woodwell G M, Mackenzic F T (eds.). Biotic Feedbacks in the Global Climatic System [C]. New York: Oxford University Press, 1995. 169 -187.
  • 2Zoltai S T, P J Martikainen. Estimated extent of forested peatlands and their role in the global carbon cycle. In Forest Ecosystems, Forest Management and the Global Carbon Cycle[J]. M J Apps, D T Price (eds.). NATO ASI Series, Series I: Global Environmen
  • 3Gorham E. Northern peatlands: Role in the carbon cycle and probable responses to climatic warming[J]. Ecological Applications, 1991, 1: 182-195.
  • 4Euliss N H Jr, Olness A, Gleason R A. Organic Carbon in Soils of Prairie Wetlands in the United States[Z]. Paper presented at The Carbon Sequestration Workshop, Oak Hammock Marsh,Manitoba, 1999. April 19-20, 1999.
  • 5Bartlett K B, Harris R C. Review and assessment of methane emission from wetlands[J]. Chemosphere, 1993, 26:261-320.
  • 6Joiner D W, Lafleur P M, McCaughey J H, et al.. Interannual variability in carbon dioxide exchanges at aboreal wetland in the BOREAS northern study area[J]. J. Geophys. Res. , 1999,104: 27 663 - 27 672.
  • 7Brix H, Sorrell B K, Lorenzen B. Are Phragmites - dominated wetlands a net souroe or net sink of greenhouse gases? [J].Aquat. Bot., 2001, 69:313-324.
  • 8Waddington J M, Price J S. Effect of peatland drainage, harvesting, and restoration on atmospheric water and carbon exchange[J]. Physical Geography, 2000, 21(5): 433 -451.
  • 9Maltby E, Immirzi C P. The Global Status of Peatlands and Their Role in Carbon Cycling[M]. Published by Friend of the Earth Trust Limited, 1992.
  • 10Kasimir-Klemedtsson A, Klemedtsson L, Bergelund K, et al.Greenhouse gas emissions from farmed organic soils: a review,Soil Use and Management[J]. 1997, 13:245 - 250.

共引文献84

同被引文献124

引证文献10

二级引证文献55

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