Spatio-temporal changes of vegetation net primary productivity and its driving factors on the Qinghai-Tibetan plateau from 2001 to 2017

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Abstract

The Qinghai-Tibetan Plateau (QTP) is the highest plateau in the world. Under the background of global change, it is of unique significance to study the net primary productivity (NPP) of vegetation on the QTP. Based on the Google Earth Engine (GEE) cloud computing platform, the spatio-temporal variation characteristics of the NPP on the QTP from 2001 to 2017 were studied, and the impacts of climate change, elevation and human activity on the NPP in the QTP were dis-cussed. The mean and trend of NPP over the QTP were “high in the southeast and low in the north-west” during 2001–2017. The trend of NPP was mostly between 0 gC·m−2·yr−1 and 20 gC·m−2·yr−1 (regional proportion: 80.3%), and the coefficient of variation (CV) of NPP was mainly below 0.16 (regional proportion: 89.7%). Therefore, NPP was relatively stable in most regions of the QTP. Among the correlation coefficients between NPP and temperature, precipitation and human activi-ties, the positive correlation accounted for 81.1%, 48.6% and 56.5% of the QTP area, respectively. Among the two climatic factors, the influence of temperature on NPP was greater than that of pre-cipitation. The change of human activities and the high temperature at low altitude had positive effects on the increase of NPP.

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Zhang, Y., Hu, Q., & Zou, F. (2021). Spatio-temporal changes of vegetation net primary productivity and its driving factors on the Qinghai-Tibetan plateau from 2001 to 2017. Remote Sensing, 13(8). https://doi.org/10.3390/rs13081566

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