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Nitrification and Denitrification in Lake and Estuarine Sediments Measured by the 15N Dilution Technique and Isotope Pairing

机译:用15N稀释技术和同位素配对测量湖泊和河口沉积物中的硝化反硝化作用。

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The transformation of nitrogen compounds in lake and estuarine sediments incubated in the dark was analyzed in a continuous-flowthrough system. The inflowing water contained 15NO3-, and by determination of the isotopic composition of the N2, NO3-, and NH4+ pools in the outflowing water, it was possible to quantify the following reactions: total NO3- uptake, denitrification based on NO3- from the overlying water, nitrification, coupled nitrification-denitrification, and N mineralization. In sediment cores from both lake and estuarine environments, benthic microphytes assimilated NO3- and NH4+ for a period of 25 to 60 h after darkening. Under steady-state conditions in the dark, denitrification of NO3- originating from the overlying water accounted for 91 to 171 μmol m-2 h-1 in the lake sediments and for 131 to 182 μmol m-2 h-1 in the estuarine sediments, corresponding to approximately 100% of the total NO3- uptake for both sediments. It seems that high NO3- uptake by benthic microphytes in the initial dark period may have been misinterpreted in earlier investigations as dissimilatory reduction to ammonium. The rates of coupled nitrification-denitrification within the sediments contributed to 10% of the total denitrification at steady state in the dark, and total nitrification was only twice as high as the coupled process.
机译:在连续流通系统中分析了在黑暗中孵育的湖泊和河口沉积物中氮化合物的转化。流入的水中含有15NO3-,通过确定流出水中的N2,NO3-和NH4 +池的同位素组成,可以量化以下反应:总NO3-的吸收,基于NO3的反硝化上覆水,硝化作用,耦合硝化-反硝化作用和氮矿化作用。在湖泊和河口环境的沉积物核心中,底栖微植物在变暗后的25至60小时内会吸收NO3-和NH4 +。在黑暗中的稳态条件下,来自上覆水的NO3-的反硝化作用在湖沉积物中占91-171μmolm-2 h-1,在河口沉积物中占131-182μmolm-2 h-1。 ,相当于两种沉积物的总NO3-吸收量的大约100%。似乎在最初的黑暗时期底栖植物的高NO3吸收在早期研究中可能被误解为铵的异化还原。在黑暗中,沉淀物中的耦合硝化-反硝化率占总反硝化作用的10%,而总硝化率仅为耦合过程的两倍。

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