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Triple oxygen isotope analysis of nitrate using the denitrifier method and thermal decomposition of N2O

机译:反硝化剂法对硝酸盐的三重氧同位素分析和N2O的热分解

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摘要

Interaction with ozone transfers its anomalous (non-mass-dependent) O-17 enrichment to atmospheric nitrogen oxides and nitrate. The O-17 anomaly (Delta O-17) in nitrate can be used to identify atmospheric nitrate inputs into terrestrial and aquatic environments as well as to study the role of ozone in the atmosphere's reactive nitrogen cycle. We report here on an online method for analysis of the O-17 anomaly, using a strain of denitrifiers to convert nitrate to N2O, which decomposes quantitatively to N-2 and O-2 in a gold furnace at 800 degrees C, followed by gas chromatographic separation and isotope analysis of O-2. This method requires similar to 50 nmol of nitrate, 2-3 orders of magnitude less than previous offline thermal decomposition methods to achieve a similar analytical precision of 0.5 for Delta O-17. There is no significant memory effect, but calibration via nitrate or N2O reference materials is required for scale normalization. The N2O decomposition method is shown to be well-suited for nitrate analysis in freshwater and seawater samples from various environments.
机译:与臭氧的相互作用将其异常(非质量依赖性)O-17富集转移到大气中的氮氧化物和硝酸盐。硝酸盐中的O-17异常(Delta O-17)可用于识别大气中硝酸盐输入到陆地和水生环境中的情况,以及研究臭氧在大气活性氮循环中的作用。我们在这里报告了一种分析O-17异常的在线方法,使用一种反硝化剂将硝酸盐转化为N2O,N2O在800°C的金炉中定量分解为N-2和O-2,然后进行气相色谱分离和O-2的同位素分析。该方法需要类似于 50 nmol 的硝酸盐,比以前的离线热分解方法低 2-3 个数量级,才能实现 Delta O-17 的 0.5% 的类似分析精度。没有明显的记忆效应,但需要通过硝酸盐或N2O参考材料进行校准才能进行标度归一化。N2O分解方法被证明非常适合来自不同环境的淡水和海水样品中的硝酸盐分析。

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