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Global N removal by freshwater aquatic systems using a spatially distributed, within-basin approach

机译:使用空间分布的流域内方法在淡水水生系统中去除全球氮

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摘要

We explored the role of aquatic systems in the global N cycle using a spatially distributed, within-basin, aquatic nitrogen (N) removal model, implemented within the Framework for Aquatic Modeling in the Earth System (FrAMES-N). The model predicts mean annual total N (TN) removal by small rivers (with drainage areas from 2.6 - 1000 km(2)), large rivers, lakes, and reservoirs, using a 300 latitude x longitude river network to route and process material from continental source areas to the coastal zone. Mean annual aquatic TN removal (for the mid-1990s time period) is determined by the distributions of aquatic TN inputs, mean annual hydrological characteristics, and biological activity. Model-predicted TN concentrations at basin mouths corresponded well with observations (median relative error = -12%, interquartile range of relative error = = 85%), an improvement over assumptions of uniform aquatic removal across basins. Removal by aquatic systems globally accounted for 14% of total N inputs to continental surfaces, but represented 53% of inputs to aquatic systems. Integrated aquatic removal was similar in small rivers (16.5% of inputs), large rivers (13.6%), and lakes (15.2%), while large reservoirs were less important (5.2%). Bias related to runoff suggests improvements are needed in nonpoint N input estimates and/or aquatic biological activity. The within-basin approach represented by FrAMES-N will improve understanding of the freshwater nutrient flux response to anthropogenic change at global scales.
机译:我们使用空间分布的盆地内部水生氮(N)去除模型探索了水生系统在全球N循环中的作用,该模型在地球系统水生建模框架(FrAMES-N)中实施。该模型使用300纬度和经度的河网来路由和处理来自小河流(流域面积2.6-1000 km(2)),大河流,湖泊和水库的年平均总氮去除量。大陆源地区到沿海地区。 (1990年代中期)年平均水生TN去除量取决于水生TN投入的分布,年均水文特征和生物活性。模型预测的流域口TN浓度与观测值非常吻合(中位相对误差= -12%,四分位数的相对误差范围= = 85%),比整个流域水体均匀去除的假设要好。在全球范围内,水生系统对水体的去除量占氮输入总量的14%,但占水生系统总氮输入量的53%。在小河(占投入的16.5%),大河(占13.6%)和湖泊(占15.2%)中,水生生物的综合清除率相似,而大型水库的重要性较低(占5.2%)。与径流有关的偏差表明,非点N输入估算值和/或水生生物活性需要改善。以FrAMES-N为代表的流域内方法将增进对全球规模上人为变化对淡水养分通量响应的理解。

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