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Measurements of nitrogen oxides from Hudson Bay: Implications for NO_x release from snow and ice covered surfaces

机译:哈德逊湾一氧化氮的测量:对NO_x从冰雪覆盖的表面释放的影响

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摘要

Measurements of NO and NO_2 were made at a surface site (55.28 °N, 77.77 °W) near Kuujjuarapik, Canada during February and March 2008. NO_x mixing ratios ranged from near zero to 350 pptv with emission from snow believed to be the dominant source. The amount of NO_x was observed to be dependent on the terrain over which the airmass has passed before reaching the measurement site. The 24 h average NO_x emission rates necessary to reproduce observations were calculated using a zero-dimensional box model giving rates ranging from 6.9 × 10~8 molecule cm~(-2) s~(-1) to 1.2 × 10~9 molecule cm~(-2) s~(-1) for trajectories over land and from 3.8 × 10~8 molecule cm~(-2) s~(-1) to 6.6 × 10~8 molecule cm~(-2) s~(-1) for trajectories over sea ice. These emissions are higher than those suggested by previous studies and indicate the importance of lower latitude snowpack emissions. The difference in emission rate for the two types of snow cover shows the importance of snow depth and underlying surface type for the emission potential of snow-covered areas.
机译:在2008年2月至2008年3月期间,在加拿大Kuujjuarapik附近的地面站点(55.28°N,77.77°W)进行了NO和NO_2的测量。NO_x的混合比范围从接近零到350 pptv,其中雪的排放被认为是主要来源。观察到NO_x的量取决于到达测量点之前气团所经过的地形。使用零维箱模型计算再现观测所需的24小时平均NO_x排放速率,其排放速率范围为6.9×10〜8分子cm〜(-2)s〜(-1)至1.2×10〜9分子cm陆上轨迹的〜(-2)s〜(-1),从3.8×10〜8分子cm〜(-2)s〜(-1)到6.6×10〜8分子cm〜(-2)s〜 (-1)海冰上的轨迹。这些排放量高于以前的研究结果,表明了降低纬度积雪的重要性。两种积雪排放速率的差异表明,积雪深度和下垫面类型对于积雪覆盖地区排放潜力的重要性。

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  • 来源
    《Atmospheric environment》 |2010年第25期|P.2971-2979|共9页
  • 作者单位

    Department of Chemistry, University of York, Heslington, York, YO10 5DD, UK;

    rnDepartment of Chemistry, University of York, Heslington, York, YO10 5DD, UK National Centre for Atmospheric Sciences, University of York, Heslington, York, YO10 5DD, UK;

    rnSchool of Chemistry, University of Leeds, Leeds, LS2 9JT, UK School of Engineering and Applied Science, Harvard University, MA, USA;

    rnSchool of Chemistry, University of Leeds, Leeds, LS2 9JT, UK;

    rnSchool of Chemistry, University of Leeds, Leeds, LS2 9JT, UK National Centre for Atmospheric Sciences, University of Leeds, Leeds, LS2 9JT, UK;

    rnDepartment of Chemistry, University of York, Heslington, York, YO10 5DD, UK National Centre for Atmospheric Sciences, University of York, Heslington, York, YO10 5DD, UK;

    rnSchool of Chemistry, University of Leeds, Leeds, LS2 9JT, UK National Centre for Atmospheric Sciences, University of Leeds, Leeds, LS2 9JT, UK;

    rnSchool of Chemistry, University of Leeds, Leeds, LS2 9JT, UK Laboratorio de Ciencias de la Atmosfera y el Clima (CIAC) - CSIC, Toledo, Spain;

    rnSchool of Chemistry, University of Leeds, Leeds, LS2 9JT, UK Department of Chemistry and Biochemistry, University of Colorado at Boulder, Boulder, USA;

    rnSchool of Chemistry, University of Leeds, Leeds, LS2 9JT, UK;

    rnBritish Antarctic Survey, High Cross, Madingley Road, Cambridge, CB3 0ET, UK;

    rnDepartment of Chemistry, University of York, Heslington, York, YO10 5DD, UK National Centre for Atmospheric Sciences, University of York, Heslington, York, YO10 5DD, UK;

    rnDepartment of Chemistry, University of York, Heslington, York, YO10 5DD, UK;

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

    NO_x; snow-atmosphere interactions; COBRA; NO_x emission; box modelling; photochemistry;

    机译:NO_x;雪气相互作用;眼镜蛇;NO_x排放;盒子建模;光化学;

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