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Hydrologic and Biogeochemical Drivers of Riparian Denitrification in an Agricultural Watershed

机译:农业流域河岸脱氮的水文和生物地球化学驱动因素

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This study investigated drivers of denitrification and overall NO3- removal in an agricultural riparian area in central New York. Denitrification was measured using an in situ "push-pull" method with N-15-NO3- as a tracer during summer and fall 2011 at a pair of riparian sites characterized by different hydrologic regimes. Median denitrification rates were 1347 and 703 mu g N kg soil(-1) day(-1) for the two study sites. These rates are higher than those reported for other riparian areas, emphasizing the role of some riparian areas as hotspots of NO3- removal. N2O production was significantly higher at one site, demonstrating that riparian areas can be a greenhouse gas source under certain conditions. Denitrification was negatively correlated with groundwater flux, suggesting that slower flushing of water, and thus longer residence time, promotes denitrification. A mass balance of NO3- loss revealed that denitrification only accounted for 5-12% of total NO3- loss, and production of NH4+ indicated that dissimilatory NO3- reduction to NH4+ (DNRA) may be occurring at both sites. While both sites were characterized by high NO3- removal, differences in denitrification rates and NO3- removal processes demonstrate the need to improve our ability to capture spatial and process heterogeneity in landscape biogeochemical models.
机译:这项研究调查了纽约中部一个农业河岸地区反硝化和整体NO3去除的驱动因素。使用原位“推拉”方法,以N-15-NO3-作为示踪剂,于2011年夏季和秋季在一对以不同水文体制为特征的河岸站点对反硝化作用进行了测量。两个研究地点的反硝化中位数分别为1347和703μg N kg土壤(-1)天(-1)。这些比率高于其他河岸地区的报告比率,强调了一些河岸地区作为NO3去除热点的作用。一个地点的N2O产量显着较高,表明沿河地区在某些条件下可能是温室气体源。反硝化作用与地下水通量呈负相关,表明较慢的水冲洗速度和更长的停留时间促进了反硝化作用。 NO3-损失的质量平衡表明,反硝化仅占总NO3-损失的5-12%,而NH4 +的产生表明在这两个位置都可能发生异化的NO3-还原为NH4 +(DNRA)。虽然两个站点都具有较高的NO3去除率,但反硝化率和NO3去除过程的差异表明需要提高我们在景观生物地球化学模型中捕获空间和过程异质性的能力。

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