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土地利用和气候变化对区域净初级生产力影响
引用本文:高志强,刘纪远,曹明奎,LI Kerang,TAO Bo.土地利用和气候变化对区域净初级生产力影响[J].地理学报(英文版),2004,14(3):349-358.
作者姓名:高志强  刘纪远  曹明奎  LI Kerang  TAO Bo
作者单位:Inst. of Geographic Sciences and Natural Resources Research,CAS,Beijing 100101,China,Inst. of Geographic Sciences and Natural Resources Research,CAS,Beijing 100101,China,Inst. of Geographic Sciences and Natural Resources Research,CAS,Beijing 100101,China
基金项目:National 973 Project,No.2002CB412507,National Natural Science Foundation of China,No.90202002,Knowledge Innovation Project of IGSNRR,CAS,No.CXIOG-E01-02-04,One Hundred Talents Program of CAS.
摘    要:1IntroductionThe global change caused by the continuous increasing concentration of atmospheric greenhouse gases has threatened the existence of human beings, and the importance of carbon dioxide emissions as a major environmental issue of international concern has grown substantially in the world (IPCC, 2000). At the same time, the Kyoto Protocol, the first and only realistic plan for achieving a worldwide reduction in greenhouse gas emissions, has been passed. Since there are many uncertai…

关 键 词:土地利用  气候变化  区域净初级生产力  人造卫星
收稿时间:10 October 2003

Impacts of land use and climate change on regional net primary productivity
Gao?Zhiqiang,Liu?Jiyuan,Cao?Mingkui,Li?Kerang,Tao?Bo.Impacts of land use and climate change on regional net primary productivity[J].Journal of Geographical Sciences,2004,14(3):349-358.
Authors:Gao Zhiqiang  Liu Jiyuan  Cao Mingkui  Li Kerang  Tao Bo
Institution:Inst. of Geographic Sciences and Natural Resources Research, CAS, Beijing 100101, China
Abstract:Combined with recent historical climate data and two periods of land use data sets from remote sensing data, we test the net primary productivity (NPP) data sets in North China modelled by the satellite data-driven Global Production Efficiency Model (GLO-PEM) for detecting the widespread spatial and temporal characteristics of the impacts of climate and land use change on the regional NPP. Our results show that over the past 20 years, the mean annual temperature in the study region has remarkably increased by more than 0.064 °C, but over the same period, there has been a 1.49 mm decrease in annual precipitation and decrease in NPP by an annual rate of 6.9 TgC. The NPP changes in the study region were greatly affected by the average temperature and precipitation by ten-day periods as well as the seasonal temperature and precipitation in the study region. The correlation between seasonal NPP and seasonal precipitation and temperature is highly consistent with land cover spatially, and the correlation coefficient changes with the changes of vegetation types. The analysis reveals that the related areas in land use change only take up 5.45% of the whole studied region, so the climate changes dominate the impacts on the NPP in the whole study region (90% of the total). However, land use plays an absolute dominative role in areas with land cover changes, accounting for 97% of the total. From 1981 to 2000, the NPP in the whole study region remarkably reduced due to obvious precipitation decrease and temperature rise. Between two periods of land use (about 10 years), the changes in climate are predicted to promote a decrease in NPP by 78 (±0.6) TgC, and integrated impacts of climate changes and land use to promote a decrease in NPP by 87(±0.8) TgC.
Keywords:climate change  land use change  NPP  GLO-PEM  North China  Northeast China  
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