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Climate-Driven Increases in Global Terrestrial Net Primary Production from 1982 to 1999

机译:1982年至1999年,气候驱动的全球陆地净初级生产增长

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Recent climatic changes have enhanced plant growth in northern mid-Latitudes and high latitudes. However, a comprehensive analysis of the impact of global climatic changes on vegetation productivity has not before been expressed in the context of variable limiting factors to plant growth. We present a global investigation of vegetation responses to climatic changes by analyzing 18 years (1982 to 1999) of both climatic data and satellite observations of vegetation activity. Our results indicate that global changes in climate have eased several critical climatic constraints to plant growth, such that net primary production increased 6% (3.4 petagrams of carbon over 18 years) globally. The largest increase was in tropical ecosystems. Amazon rain forests accounted for 42% of the global increase in net primary production, owing mainly to decreased cloud cover and the resulting increase in solar radiation.
机译:最近的气候变化提高了北中纬度和高纬度地区的植物生长。但是,以前从未在对植物生长产生各种限制因素的背景下对全球气候变化对植被生产力的影响进行全面分析。我们通过分析18年(1982年至1999年)的气候数据和植被活动的卫星观测资料,对植被对气候变化的响应进行了一项全球调查。我们的结果表明,全球气候变化缓解了植物生长的几个关键气候制约因素,从而使全球净初级生产增加了6%(18年内碳3.4克)。增长最大的是热带生态系统。亚马逊雨林占全球净初级生产量增长的42%,主要是由于云量减少以及由此导致的太阳辐射量增加。

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