Title of article
Vegetation net primary productivity and its response to climate change during 2001–2008 in the Tibetan Plateau Original Research Article
Author/Authors
Yanhua Gao a، نويسنده , , Xu Zhou، نويسنده , , Qiao Wang، نويسنده , , Changzuo Wang، نويسنده , , Zhiming Zhan، نويسنده , , Liangfu Chen a، نويسنده , , Junxia Yan، نويسنده , , Ran Qu، نويسنده ,
Issue Information
دوهفته نامه با شماره پیاپی سال 2013
Pages
7
From page
356
To page
362
Abstract
Alpine ecosystems are highly sensitive to global climate changes. The Tibetan Plateau is one of the areas that are most sensitive to global climate change. Increases in temperature and changes in precipitation can impact the plateauʹs ecosystem productivity. Net primary productivity (NPP) is one of the most important factors in the carbon cycle of terrestrial ecosystems. In this paper, a light-use-efficiency model was used to estimate the net primary productivity in the Tibetan Plateau. The model is based on a 1-km × 1-km-resolution map of vegetation type, multi-temporal 500-m-resolution MODIS data and daily meteorological data. The spatial distribution pattern and dynamic change of the annual NPP from 2001 to 2008 are analyzed. Then, we analyzed the response of the NPP to temperature and precipitation changes. The results show that the mean annual NPP of alpine ecosystems in the Tibetan Plateau is equal to 0.472 Pg C and that the NPP exhibits significant seasonal and interannual variation due to the combined effects of temperature and precipitation changes. Finally, to analyze the effect of temperature and precipitation on the inter-annual change of the NPP, the correlation coefficient between temperature, precipitation and the NPP was computed. It was found that the relations among air temperature, precipitation and the NPP in the Tibetan Plateau region are different. The annual average temperature increase had a significantly positive effect on the vegetation NPP (R2 = 0.83). In contrast, the annual precipitation changes had a weakly negative effect on the vegetation NPP (R2 = 0.373).
Keywords
Tibetan plateau , Climate change , Net primary productivity
Journal title
Science of the Total Environment
Serial Year
2013
Journal title
Science of the Total Environment
Record number
988780
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