Mimicking floodplain reconnection and disconnection using 15 N mesocosm incubations

反硝化 中观 硝酸盐 漫滩 有机质 环境化学 厌氧氨氧化菌 化学 氮气循环 环境科学 氮气 水文学(农业) 生态学 营养物 生物 地质学 反硝化细菌 岩土工程 有机化学
作者
Nina Welti,Elisabeth Bondar‐Kunze,M. Mair,Patricia Bonin,Wolfgang Wanek,Gilles Pinay,Thomas Hein
出处
期刊:Biogeosciences [Copernicus Publications]
卷期号:9 (11): 4263-4278 被引量:20
标识
DOI:10.5194/bg-9-4263-2012
摘要

Abstract. Floodplain restoration changes the nitrate delivery pattern and dissolved organic matter pool in backwaters, though the effects these changes have are not yet well known. We performed two mesocosm experiments on floodplain sediments to quantify the nitrate metabolism in two types of floodplains. Rates of denitrification, dissimilatory nitrate reduction to ammonium (DNRA) and anammox were measured using 15N-NO3 tracer additions in mesocosms of undisturbed floodplain sediments originating from (1) restored and (2) disconnected sites in the Alluvial Zone National Park on the Danube River downstream of Vienna, Austria. DNRA rates were an order of magnitude lower than denitrification and neither rate was affected by changes in nitrate delivery pattern or organic matter quality. Anammox was not detected at any of the sites. Denitrification was out-competed by assimilation, which was estimated to use up to 70% of the available nitrate. Overall, denitrification was higher in the restored sites, with mean rates of 5.7 ± 2.8 mmol N m−2 h−1 compared to the disconnected site (0.6 ± 0.5 mmol N m−2 h−1). In addition, ratios of N2O : N2 were lower in the restored site indicating a more complete denitrification. Nitrate addition had neither an effect on denitrification, nor on the N2O : N2 ratio. However, DOM (dissolved organic matter) quality significantly changed the N2O : N2 ratio in both sites. Addition of riverine-derived organic matter lowered the N2O : N2 ratio in the disconnected site, whereas addition of floodplain-derived organic matter increased the N2O : N2 ratio in the restored site. These results demonstrate that increasing floodplains hydrological connection to the main river channel increases nitrogen retention and decreases nitrous oxide emissions.
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