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Effects of Nitrogen Deposition on Ecosystem Carbon Fluxes in Sanjiang Plain Marsh of Northeastern China

机译:氮沉积对中国东北普通沼泽生态系统碳通量的影响

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It has widely been demonstrated that nitrogen (N) addition enhances plant growth and net primary productivity of terrestrial ecosystems. Moreover, N enrichment could have a profound impact on ecosystem carbon fluxes, especially in the regions where N is deficient. However, there is still debate on how N affects net ecosystem CO_2 exchange (NEE). A field experiment manipulating N has been conducted in Calamagrostis anagustifolia community of Sanjiang Plain marsh of northeastern China from 2009 to 2010. N was added at a rate of 5 and 10gN m~(-2) yr~(-1) with NH_4NO_3. The results for the 2 yr showed that gross ecosystem productivity (GEP) was higher than ecosystem respiration, leading to net carbon(C)sink (measured by NEE) over the growing season in the study site. Furthermore, low nitrogen (LN) and high nitrogen (HN) addition all significantly stimulated growing-season NEE, on average, by 22 and 36%, respectively. It's indicated that air temperature plays a major role in regulating ecosystem net C exchange and their responses to climatic change in Sanjiang Plain of northern China. We need long-term field studies to predict the long-term effects of N deposition on ecosystem processes.
机译:它普遍证明氮气(n)添加增强植物生长和陆地生态系统的净初级生产力。此外,N浓缩可能对生态系统碳通量产生深远的影响,尤其是n缺乏的区域。但是,仍然有关n如何影响Net Ecosystem Co_2 Exchange(NEE)的辩论。在2009年至2010年的Sanjiang Plane Sanagustifolia Anagustifolis Anagustifolia群落中进行了一个田间实验,从2009年到2010年。用NH_4NO_3,以5和10gnm〜(-2)Yr〜(-1)的速率加入。 2年的结果表明,生态系统生产率(GEP)高于生态系统呼吸,导致净碳(C)在研究现场的生长季节上碳(C)下沉(由NEE测量)。此外,低氮(LN)和高氮(HN)加入所有显着刺激的生长季节,平均分别为22和36%。结果表明,空气温度在调节生态系统净兑换及其对中国北方三江平原气候变化的反应方面发挥着重要作用。我们需要长期的现场研究来预测N沉积对生态系统过程的长期影响。

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