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首页> 外文期刊>Hydrological ProcHydrological Processesrnesses >Evaluating relative sensitivity of SWAT-simulated nitrogen discharge to projected climate and land cover changes for two watersheds in North Carolina, USA
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Evaluating relative sensitivity of SWAT-simulated nitrogen discharge to projected climate and land cover changes for two watersheds in North Carolina, USA

机译:评估美国北卡罗莱纳州两个流域的SWAT模拟氮排放对预估气候和土地覆盖变化的相对敏感性

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摘要

We investigated how projected changes in land cover and climate affected simulated nitrate (NO3−) and organic nitrogen discharge for two watersheds within the Neuse River Basin, North Carolina, USA, for years 2010–2070. We applied the Soil and Water Assessment Tool watershed model to predict nitrogen discharge using (1) atmospheric carbon dioxide (CO2) concentrations predicted by the Intergovernmental Panel on Climate Change, (2) land cover change predicted by the Integrated Climate and Land Use Change project and (3) precipitation and temperature simulated by two statistically downscaled and bias-corrected Global Circulation Models. We determined the sensitivity of simulated nitrogen discharge to separate changes in each treatment [(1) CO2, (2) land cover and (3) precipitation and temperature (PT)] by comparing each treatment to a reference condition. Results showed that nitrogen discharges were most sensitive to changes in PT over the 60-year simulation. Nitrogen discharges had similar sensitivities to the CO2 and land cover treatments, which were only one-tenth the influence of the PT treatment. Under the CO2 treatment, nitrogen discharges increased with increasing ambient CO2. NO3− discharge decreased with increased urbanization; however, organic nitrogen had a varied response. Under the PT treatment, there was high spatial variability in nitrogen discharges. In a single year, certain sub-basins showed an 80% increase in nitrogen discharge relative to reference, while others showed a 400% decrease. With nitrogen discharge showing high sensitivity to PT change, we suggest that more emphasis should be placed on investigating impacts of PT on nutrient transport in the Neuse River Basin. Published 2015. This article is a U.S. Government work and is in the public domain in the USA
机译:我们调查了2010-2070年美国北卡罗来纳州内兹河流域内两个流域的预估土地覆盖率和气候变化如何影响模拟硝酸盐(NO3-)和有机氮排放。我们应用了土壤和水评估工具的分水岭模型来预测氮的排放量,其中(1)由政府间气候变化专门委员会预测的大气中二氧化碳(CO2)的浓度,(2)由“综合气候和土地利用变化”项目预测的土地覆盖变化(3)通过两个按比例缩小和经偏差校正的全球环流模型模拟的降水和温度。通过将每种处理与参考条件进行比较,我们确定了模拟氮排放对每种处理[(1)CO2,(2)土地覆盖和(3)降水和温度(PT)]的变化分开的敏感性。结果表明,在60年的模拟中,氮气排放对PT的变化最敏感。氮排放与二氧化碳和土地覆盖处理具有相似的敏感性,仅为PT处理的影响的十分之一。在CO2处理下,氮排放随着环境CO2的增加而增加。随着城市化程度的提高,NO3-排放量减少;然而,有机氮的反应却各不相同。在PT处理下,氮排放存在很大的空间变异性。在一年中,某些子流域的氮排泄量相对于参考量增加了80%,而其他子流域则减少了400%。由于氮排放对PT的变化表现出高度敏感性,因此我们建议应更多地研究PT对Neuse河流域养分迁移的影响。 2015年出版。本文是美国政府的工作,在美国属于公共领域

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  • 来源
    《Hydrological ProcHydrological Processesrnesses》 |2016年第9期|1403-1418|共16页
  • 作者单位

    USEPA/Office of Research and Development (ORD)/National Exposure Research Laboratory (NERL)/Ecosystem Research Division (ERD) Athens GA USA;

    USEPA/Office of Research and Development (ORD)/National Exposure Research Laboratory (NERL)/Ecosystem Research Division (ERD) Athens GA USA;

    USEPA/ORD/NERL/Atmospheric Modeling and Analysis Division (AMAD) Research Triangle Park NC USA;

    USEPA/ORD/NERL/Atmospheric Modeling and Analysis Division (AMAD) Research Triangle Park NC USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    GCM; climate change; nitrogen; land cover; CO2; watershed;

    机译:GCM;气候变化;氮;土地覆盖;CO2;分水岭;

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