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δ(15)N 和 δ(18)O 揭示城市住区雨水径流水体中硝酸盐氮的来源。

δ(15)N and δ(18)O Reveal the Sources of Nitrate-Nitrogen in Urban Residential Stormwater Runoff.

机构信息

Soil and Water Quality Laboratory, Gulf Coast Research and Education Center, University of Florida, Institute of Food and Agricultural Sciences , 14625 CR 672, Wimauma, Florida 33598, United States.

出版信息

Environ Sci Technol. 2016 Mar 15;50(6):2881-9. doi: 10.1021/acs.est.5b05353. Epub 2016 Feb 22.

Abstract

Nitrogen (N) sources are widely distributed in the complex urban environment. High-resolution data elucidating N sources in the residential catchments are not available. We used stable isotopes of N and oxygen (O) of nitrate (δ(18)O-NO3(-) and δ(15)N-NO3(-)) along with δ(18)O and hydrogen (δD) of water (H2O) to understand the sources and transformations of N in residential stormwater runoff. Stormwater runoff samples were collected over 25 stormwater events at 5 min intervals using an autosampler installed at the residential catchment outlet pipe that drained 31 low-density homes with a total drainage area of 0.11 km(2). Bayesian mixing model results indicated that atmospheric deposition (range 43-71%) and chemical N fertilizers (range <1-49%) were the dominant NO3-N sources in the stormwater runoff and that there was a continuum of source changes during the stormwater events. Further, the NO3-N transport in the stormwater runoff from the residential catchment was driven by mixing of multiple sources and biotic (i.e., nitrification) processes. This work suggests that a better understanding of N transport and sources is needed to reduce N export and improve water quality in urban water systems.

摘要

氮(N)源广泛分布于复杂的城市环境中。目前还没有关于居民集水区中 N 源的高分辨率数据。我们使用硝酸盐中的氮和氧的稳定同位素(δ¹⁸O-NO3⁻和 δ¹⁵N-NO3⁻)以及水的氧和氢的稳定同位素(δD-H2O),来了解居民雨水径流中 N 的来源和转化。使用安装在居民集水区排水口的自动采样器,每隔 5 分钟收集 25 次雨水事件的雨水径流样本,该排水口排出 31 座低密度住宅,总面积为 0.11 平方公里。贝叶斯混合模型结果表明,大气沉降(范围为 43-71%)和化学氮肥(范围为 <1-49%)是雨水径流中硝酸盐氮的主要来源,并且在雨水事件过程中存在源变化的连续体。此外,来自居民集水区的雨水径流中的 NO3-N 传输是由多种来源的混合和生物(即硝化)过程驱动的。这项工作表明,需要更好地了解 N 传输和来源,以减少城市水系统中的 N 输出并改善水质。

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