首页> 外文会议>2nd International Nitrogen Conference , Oct 14-18, 2001, Potomac, Maryland, USA >Ecosystem Processes and Nitrogen Export in Northern U.S. Watersheds
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Ecosystem Processes and Nitrogen Export in Northern U.S. Watersheds

机译:美国北部流域的生态系统过程和氮出口

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摘要

There is much interest in the relationship of atmospheric nitrogen (N) inputs to ecosystem outputs as an indicator of possible "nitrogen saturation" by human activity. Longer-term, ecosystem-level mass balance studies suggest that the relationship is not clear and that other ecosystem processes may dominate variation in N outputs. We have been studying small, forested watershed ecosystems in five northern watersheds for periods up to 35 years. Here I summarize the research on ecosystem processes and the N budget. During the past 2 decades, average wet-precipitation N inputs ranged from about 0.1 to 6 kg N ha~(-1) year~(-1) among sites. In general, sites with the lowest N inputs had the highest output-to-input ratios. In the Alaska watersheds, streamwater N output exceeded inputs by 70 to 250%. The ratio of mean monthly headwater nitrate (NO_3~-) concentration to precipitation NO_3~- concentration declined with increased precipitation concentration. A series of ecosystem processes have been studied and related to N outputs. The most important appear to be seasonal change in hydrologic flowpath, soil freezing, seasonal forest-floor inorganic N pools resulting from over-winter mineralization beneath the snowpack, spatial variation in watershed forest-floor inorganic N pools, the degree to which snowmelt percolates soils, and gross soil N mineralization rates.
机译:人们非常关注大气中氮的输入与生态系统输出的关系,以作为人类活动可能导致的“氮饱和”的指标。长期的生态系统水平的质量平衡研究表明,这种关系尚不明确,其他生态系统过程可能主导N产出的变化。我们一直在研究北部五个集水区中森林茂密的小流域生态系统,历时长达35年。在这里,我总结了有关生态系统过程和氮预算的研究。在过去的20年中,各地点的平均湿降水N输入量约为0.1至6 kg N ha〜(-1)年〜(-1)。通常,具有最低N输入的站点具有最高的输出与输入之比。在阿拉斯加的小流域,河流水氮的产量超出投入的70%至250%。随着降水浓度的增加,平均每月源水硝酸盐(NO_3〜-)与降水NO_3〜-的比值下降。已经研究了一系列生态系统过程,并将其与N项产出相关。最重要的似乎是水文流路的季节性变化,土壤冻结,积雪下的冬季越冬矿化导致的季节性林地无机氮池,分水岭林地无机氮池的空间变化,融雪渗入土壤的程度,以及土壤总氮矿化率。

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