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Nonlinear Variations of Net Primary Productivity and Its Relationship with Climate and Vegetation Phenology, China

机译:净初级生产力的非线性变化及其与气候和植被物候的关系,中国

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Net primary productivity (NPP) is an important component of the terrestrial carbon cycle. In this study, NPP was estimated based on two models and Moderate Resolution Imaging Spaectroradiometer (MODIS) data. The spatiotemporal patterns of NPP and the correlations with climate factors and vegetation phenology were then analyzed. Our results showed that NPP derived from MODIS performed well in China. Spatially, NPP decreased from the southeast toward the northwest. Temporally, NPP showed a nonlinear increasing trend at a national scale, but the magnitude became slow after 2004. At a regional scale, NPP in Northern China and the Tibetan Plateau showed a nonlinear increasing trend, while the NPP decreased in most areas of Southern China. The decreases in NPP were more than offset by the increases. At the biome level, all vegetation types displayed an increasing trend, except for shrub and evergreen broad forests (EBF). Moreover, a turning point year occurred for all vegetation types, except for EBF. Generally, climatic factors and Length of Season were all positively correlated with the NPP, while the relationships were much more diverse at a regional level. The direct effect of solar radiation on the NPP was larger (0.31) than precipitation (0.25) and temperature (0.07). Our results indicated that China could mitigate climate warming at a regional and/or global scale to some extent during the time period of 2001–2014.
机译:净初级生产力(NPP)是地球碳循环的重要组成部分。在这项研究中,基于两个模型和中等分辨率成像电子放射仪(MODIS)数据估算了NPP。然后分析了核电厂的时空格局及其与气候因子和植被物候的相关性。我们的结果表明,MODIS衍生的NPP在中国表现良好。 NPP在空间上从东南向西北减少。暂时,全国范围内的NPP呈非线性增加趋势,但2004年之后幅度变慢。在区域范围内,华北和青藏高原的NPP呈非线性增加趋势,而华南大部分地区NPP呈下降趋势。 。 NPP的减少被增加所抵消。在生物群落水平上,除灌木和常绿阔叶林(EBF)外,所有植被类型均呈增长趋势。此外,除EBF以外,所有植被类型都发生了转折年。通常,气候因素和季节长度都与NPP呈正相关,而在区域一级,这种关系更为多样。太阳辐射对核电厂的直接影响大于降水(0.25)和温度(0.07)(0.31)。我们的结果表明,在2001-2014年期间,中国可以在一定程度上缓解区域和/或全球范围内的气候变暖。

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