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Ammonium Transformation in a Nitrogen-Rich Tidal Freshwater Marsh

机译:富氮潮汐淡水沼泽中的铵态转化

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The fate and transport of watershed-derived ammonium in a tidal freshwater marsh fringing the nutrient rich Scheldt River, Belgium, was quantified in a whole ecosystem 15N labeling experiment. In late summer (September) we added 15N-NH 4 + to the flood water entering a 3477 m2 tidal freshwater marsh area, and traced the ammonium processing and retention in four subsequent tide cycles. In this paper we present the results for the water-phase components of the marsh system and compare them to a similar experiment conducted in spring/early summer (May). Changes in concentration and isotopic enrichment of NO 3 − + NO 2 − , N2O, N2, NH 4 + and suspended particulate nitrogen (SPN) were measured in concert with a mass balance study. All analyzed N-pools were labeled, and 49% of the added 15NH 4 + was retained or transformed. The most important pool for 15N was nitrate, accounting for 17% of 15N-transformation. N2, N2O and SPN accounted for 2.4, 0.02 and 1.4%, respectively. The temporal and spatial patterns of 15N transformation in the water phase component of the system were remarkably similar to those observed in May, indicating good reproducibility of the whole ecosystem labeling approach, but the absolute ammonium transformation rate was 3 times higher in May. While the marsh surface area was crucial for nitrification in May this was less pronounced in September. Denitrification, on the other hand, appeared more important in September compared to May.
机译:在整个15 N标记生态系统的实验中,对比利时营养丰富的Scheldt河边缘的潮汐淡水沼泽中流域性铵的去向和迁移进行了定量。在夏末(9月),我们向进入3477 m2潮汐淡水沼泽区的洪水中添加了15 N-NH 4 + ,并追踪了氨的处理和保留在随后的四个潮汐周期中。在本文中,我们介绍了沼泽系统水相成分的结果,并将其与春季/初夏(5月)进行的类似实验进行了比较。 NO 3 - + NO 2 -,N2 O,N2 ,NH 4 的浓度和同位素富集变化结合质量平衡研究测量了+和悬浮颗粒氮(SPN)。标记所有分析的氮池,并保留或转化添加的15 NH 4 + 中的49%。 15 N最重要的库是硝酸盐,占15 N转化的17%。 N2 ,N2 O和SPN分别占2.4%,0.02%和1.4%。系统水相部分中15 N转化的时空格局与5月份观察到的非常相似,表明整个生态系统标记方法具有良好的重现性,但绝对铵态转化率要高3倍。在五月。虽然沼泽地面积对于5月的硝化至关重要,但在9月却不那么明显。另一方面,与5月相比,9月的反硝化显得更为重要。

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