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首页> 外文期刊>Water, air and soil pollution >A Modeling Study of the Impact of a Power Plant on Ground-Level Ozone in Relation to its Location: Southwestern Spain as a Case Study
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A Modeling Study of the Impact of a Power Plant on Ground-Level Ozone in Relation to its Location: Southwestern Spain as a Case Study

机译:电厂对地面臭氧的影响及其位置的模拟研究:以西班牙西南部为例

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摘要

The impact of atmospheric industrial emissions on secondary pollutant formation depends on many factors; one of the most important being the environmental setting in which the industry is located. The environmental setting affects an industry's impact on ozone levels through both the air mass dispersion (a function of topography and wind patterns) and the emissions of organic volatile compounds (VOC) and nitrogen oxides (NO_x) in the area. This model-based study shows how the sensitivity of surface ozone changes with the choice of source location. For the analysis, seven points distributed along the Tinto-Guadalquivir Basin (in the Southwestern Iberian Peninsula) were selected. This area is characterized by the close proximity of natural environments and crop fields to cities, roads, and industrial areas with high NO_x emissions. Natural VOC emissions represent more than 60% of the total non-methane volatilernorganic compounds emitted in the study area. The results reveal that the largest increases in ozone levels are produced when the industry is located both far away from NO_x emission sources and near to biogenic VOC emissions. Furthermore, the highest increases over the hourly and 8-hourly maximums, as well as the highest accumulated daily values, are found in areas characterized by high VOC/NO_x emission ratios and NO_x sensitivity. The study of the recurrent meteorological patterns along with the distribution of chemical indicators of the O_3-NO_x-VOC sensitivity allows the determination of the industry's geographical impact on ozone levels. This information enables air quality managers to decide the future location of an industry minimizing its impact on smog levels.
机译:大气工业排放对二次污染物形成的影响取决于许多因素;其中最重要的一项是行业所处的环境。环境设置通过空气质量分散(地形和风向的函数)以及该区域内有机挥发性化合物(VOC)和氮氧化物(NO_x)的排放,影响了行业对臭氧水平的影响。这项基于模型的研究显示了表面臭氧的敏感性如何随源位置的选择而变化。为了进行分析,选择了沿Tinto-Guadalquivir盆地(西南伊比利亚半岛)分布的七个点。该地区的特点是自然环境和农田靠近具有高NO_x排放量的城市,道路和工业区。挥发性有机化合物的自然排放量占研究区域排放的非甲烷挥发性有机化合物总量的60%以上。结果表明,当该行业既远离NO_x排放源又靠近生物VOC排放源时,臭氧水平的增加最大。此外,在以高VOC / NO_x排放比和NO_x敏感性为特征的区域中,发现了每小时和每小时最大最大值的最高增加值以及最高的累积日值。对周期性气象模式的研究以及对O_3-NO_x-VOC敏感性的化学指标分布的研究,可以确定该行业对臭氧水平的地理影响。这些信息使空气质量管理者能够决定该行业的未来位置,从而将其对烟雾水平的影响降至最低。

著录项

  • 来源
    《Water, air and soil pollution》 |2010年第4期|P.61-79|共19页
  • 作者单位

    Fundacion Centra de Estudios Ambientales del Mediterraneo (CEAM),Parque Tecnologico. C/ Charles R. Darwin, 14,46980 Paterna, Valencia, Spain;

    rnFundacion Centra de Estudios Ambientales del Mediterraneo (CEAM),Parque Tecnologico. C/ Charles R. Darwin, 14,46980 Paterna, Valencia, Spain;

    Earth Resources and Technology on assignment to NOAA/Air Resources Laboratory,1315 East West Highway,Silver Spring, MD 20910, USA;

    rnFundacion Centra de Estudios Ambientales del Mediterraneo (CEAM),Parque Tecnologico. C/ Charles R. Darwin, 14,46980 Paterna, Valencia, Spain;

    rnFundacion Centra de Estudios Ambientales del Mediterraneo (CEAM),Parque Tecnologico. C/ Charles R. Darwin, 14,46980 Paterna, Valencia, Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    ground-level ozone; impact assessment; power plant location; photochemical modeling;

    机译:地面臭氧影响评估;发电厂位置;光化学模型;

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