Spatio-temporal distribution of net primary productivity along the Northeast China Transect and its response to climatic change

被引:41
作者
Wen-quan Zhu
Yao-zhong Pan
Xin Liu
Ai-ling Wang
机构
[1] Beijing Normal University,Key Laboratory of Environmental Change and Natural Disaster of Ministry of Education, College of Resources Science and Technology
关键词
China Transect; Remote sensing; Net primary productivity (NPP); Climatic change; Spatio-temporal distribution; S718.556;
D O I
10.1007/s11676-006-0022-4
中图分类号
学科分类号
摘要
An improved Carnegie Ames Stanford Approach model (CASA model) was used to estimate the net primary productivity (NPP) of the Northeast China Transect (NECT) every month from 1982 to 2000. The spatial-temporal distribution of NPP along NECT and its response to climatic change were also analyzed. Results showed that the change tendency of NPP spatial distribution in NECT is quite similar to that of precipitation and their spatial correlation coefficient is up to 0.84 (P < 0.01). The inter-annual variation of NPP in NECT is mainly affected by the change of the aestival NPP every year, which accounts for 67.6% of the inter-annual increase in NPP and their spatial correlation coefficient is 0.95 (P < 0.01). The NPP in NECT is mainly cumulated between May and September, which accounts for 89.8% of the annual NPP. The NPP in summer (June to August) accounts for 65.9% of the annual NPP and is the lowest in winter. Recent climate changes have enhanced plant growth in NECT. The mean NPP increased 14.3% from 1980s to 1990s. The inter-annual linear trend of NPP is 4.6 gC·m−2·a−1, and the relative trend is 1.17%, which owns mainly to the increasing temperature.
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页码:93 / 98
页数:5
相关论文
共 82 条
[1]  
Alexandrov G.A.(2002)The scheme for globalization of a process-based model explaining gradations in terrestrial NPP and its application [J] Ecological Modeling 148 293-306
[2]  
Oikawa T.(1998)Dynamic responses of terrestrial ecosystem carbon cycling to global climate change [J] Nature 393 249-252
[3]  
Yamagata Y.(2002)Estimating Net Primary Productivity of Terrestrial Vegetation in China Using Remote Sensing [J] Journal of Remote Sensing 6 129-135
[4]  
Cao M.K.(1999)Comparing global models of terrestrial net primary productivity (NPP): overview and key results [J] Global Change Biology 1 1-15
[5]  
Woodward F.I.(1998)Primary production of the biosphere: integrating terrestrial and oceanic components [J] Science 281 237-240
[6]  
Chen L.(1995)Global net primary production: combining ecology and remote sensing [J] Remote Sensing of Environment 51 74-88
[7]  
Liu G.(1999)Satellite remote sensing of primary production: an improved production efficiency modeling approach [J] Ecological Modeling 122 239-255
[8]  
Li H.(1998)The terrestrial carbon cycle: implications for Kyoto Protocol [J] Science 280 1393-1394
[9]  
Cramer W.(1999)Modeling the spatial pattern of net primary productivity in Chinese forests [J] Ecological Modeling 122 275-288
[10]  
Kicklighter D.W.(1999)Net primary productivity distribution in the BOREAS region from a process model using satellite and surface data [J] Journal of Geophysical Research 104 27735-27754