首页> 外文期刊>Journal of arid environments >Urbanization Alters Spatiotemporal Patterns Of Ecosystem Primary Production: A Case Study Of The Phoenix Metropolitan Region, Usa
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Urbanization Alters Spatiotemporal Patterns Of Ecosystem Primary Production: A Case Study Of The Phoenix Metropolitan Region, Usa

机译:城市化改变了生态系统初级生产的时空格局:以美国凤凰城大都市地区为例

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Previous studies have found that urbanization often decreases net primary production (NPP), an important integrative measure of ecosystem functioning. In arid environments, however, urbanization may boost productivity by introducing highly productive plant communities and weakening the coupling of plant growth to naturally occurring cycles of water and nutrients. We tested these ideas by comparing NPP estimated for natural and anthropogenic land covers in the Phoenix metropolitan region of USA using MODIS NDVI data and a simplified parametric NPP model. Most anthropogenic land covers exhibited higher production than the natural desert. Consequently, the combined urban and agricultural areas contributed more to the regional primary production than the natural desert did in normal and dry years, whereas this pattern was reversed in wet years. Primary production of this urban landscape was only weakly correlated with rainfall, but strongly with socio-economic variables. Our productivity estimates agreed well with NPP predicted by a process-based ecosystem model for the area. Significant uncertainties, however, remain due to extremely high heterogeneity of urban vegetation. Nevertheless, our results clearly show that urbanization may not only increase regional NPP and disrupt the coupling between vegetation and precipitation, but also increase spatial heterogeneity of NPP in this arid region.
机译:先前的研究发现,城市化通常会降低净初级生产力(NPP),这是生态系统功能的重要综合指标。然而,在干旱的环境中,城市化可能会通过引入高产植物群落并削弱植物生长与水和养分自然循环的耦合来提高生产力。我们使用MODIS NDVI数据和简化的参数化NPP模型,通过比较美国凤凰城大都会地区自然和人为土地覆盖的NPP估算值,测试了这些想法。大多数人为土地覆盖物的产量都高于自然沙漠。因此,与正常和干旱年份的自然沙漠相比,城市和农业地区合并对区域初级生产的贡献更大,而在潮湿年份则相反。这种城市景观的初级生产与降雨之间的相关性很弱,而与社会经济变量之间的相关性却很强。我们的生产力估算与该地区基于过程的生态系统模型所预测的NPP非常吻合。然而,由于城市植被的高度异质性,仍然存在很大的不确定性。然而,我们的结果清楚地表明,城市化不仅可能增加区域NPP并破坏植被与降水之间的耦合,而且还会增加该干旱地区NPP的空间异质性。

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