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Quantification of Nitrate Sources to an Urban Stream Using Dual Nitrate Isotopes

机译:使用双重硝酸盐同位素定量分析城市河流中的硝酸盐源

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摘要

Human-engineered landscapes and subsequent altered hydrology affect the fate and transport of reactive nitrogen, particularly in urban watersheds. In this study, we used dual-nitrate isotopes and mixing model analysis (δ~(15)N and δ~(18)O of NO_3~-) to quantify nitrogen inputs from two sources concentrated in urban systems, sewage and atmospheric deposition. Analysis was conducted on samples collected from Nine Mile Run (Pittsburgh, PA) including over two years of samples collected biweekly and samples collected through the hydrographs of four storm events. Mixing models incorporated uncertainties in the isotopic composition of potential nitrate sources and resolved the relative proportions of nitrate inputs from each source using Bayesian techniques. The results indicate that up to 94% of nitrate in streamwater originated from sewage sources during baseflow conditions. During storms, atmospheric deposition was a substantial nitrate source (~34%) to total event-based nitrate loads, although sewage-derived nitrate remained the dominant source (66%). The potential influence of denitrincation was considered by incorporating associated isotopic fractionations into mixing models; up to 19% of sewage-derived samples showed the isotopic effects of denitrincation. This study quantitatively delineates proportions of nitrate from different sources to urban streamwater, while incorporating remaining uncertainties in source endmember compositions.
机译:人为设计的景观以及随后发生的水文学变化影响了活性氮的命运和运输,特别是在城市流域。在这项研究中,我们使用了双硝酸盐同位素和混合模型分析(NO_3〜-的δ〜(15)N和δ〜(18)O)来量化来自集中在城市系统中的两个来源(污水和大气沉积)的氮输入。对从Nine Mile Run(宾夕法尼亚州匹兹堡)收集的样本进行了分析,其中包括两年多一次的每两周收集一次的样本以及通过四次风暴事件的水文图收集的样本。混合模型将潜在硝酸盐来源的同位素组成纳入了不确定性,并使用贝叶斯技术解析了每种来源硝酸盐输入的相对比例。结果表明,在底流条件下,河水中的硝酸盐高达94%来自污水源。在暴风雨期间,尽管基于污水的硝酸盐仍是主要来源(66%),但大气沉积物是基于事件的硝酸盐总量的主要硝酸盐来源(约34%)。通过将相关的同位素分馏合并到混合模型中来考虑反硝化作用的潜在影响。高达19%的污水样品显示出反硝化作用的同位素效应。这项研究定量描述了不同来源的硝酸盐到城市溪流中的比例,同时在来源端成员组成中纳入了不确定性。

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  • 来源
    《Environmental Science & Technology》 |2014年第18期|10580-10587|共8页
  • 作者单位

    Department of Geology & Planetary Science, University of Pittsburgh, 4107 O'Hara Street, Pittsburgh, Pennsylvania 15260, United States;

    Department of Geology & Planetary Science, University of Pittsburgh, 4107 O'Hara Street, Pittsburgh, Pennsylvania 15260, United States;

    Department of Geology & Planetary Science, University of Pittsburgh, 4107 O'Hara Street, Pittsburgh, Pennsylvania 15260, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-17 14:01:16

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