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Unexpected air quality impacts from implementation of green infrastructure in urban environments: A Kansas City case study

机译:城市环境中绿色基础设施实施意外的空气质量影响:堪萨斯城案例研究

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摘要

Green infrastructure (GI) implementation can benefit an urban environment by reducing the impacts of urban stormwater on aquatic ecosystems and human health. However, few studies have systematically analyzed the biophysical effects on regional meteorology and air quality that are triggered by changes in the urban vegetative coverage. In this study we use a state-of-the-art high-resolution air quality model to simulate the effects of a hypothetically feasible vegetation-focused GI implementation scenario in Kansas City, MO/KS on regional meteorology and air quality. Full year simulations are conducted for both the base case and GI land use scenarios using two different land surface models (LSMs) schemes inside the meteorological model. While the magnitudes of the changes in air quality due to the GI implementation differ using the two LSMs, the model outputs consistently showed increases in summertime PM_(2.5) (1.1 μg m~(-3), approximately 10% increase using NOAH LSM), which occurred mostly during the night and arose from the primary components, due to the cooler surface temperatures and the decreased planetary boundary layer height (PBLH). Both the maximum daily 8-hour average ozone and 1 h daily maximum O_3 during summertime, decreased over the downtown areas (maximum decreases of 0.9 and 1.4 ppbv respectively). The largest ozone decreases were simulated to happen during the night, mainly caused by the titration effect of increased NO_x concentration from the lower PBLH. These results highlight the region-specific non-linear process feedback from GI on regional air quality, and further demonstrate the need for comprehensive coupled meteorological-air quality modeling systems and necessity of accurate land surface model for studying these impacts.
机译:绿色基础设施(GI)实施可以通过降低城市雨水对水生生态系统和人类健康的影响而有利于城市环境。然而,很少有研究已经系统地分析了对区域气象学和空气质量的生物物理作用,这些影响是由城市植物覆盖的变化引发的。在这项研究中,我们使用最先进的高分辨率空气质量模型来模拟堪萨斯城的假设可行的植被综合理解集事厂的影响,在堪萨斯城,Mo / Ks对区域气象和空气质量的影响。使用气象模型内的两种不同的陆地表面模型(LSM)方案进行全年模拟,用于基本情况和GI土地使用场景。虽然使用两个LSM的GI实现引起的空气质量变化的大小不同,但是夏季PM_(2.5)(1.1μgm〜(-3)的模型输出始终显示增加(1.1μgm〜(-3),使用Noah Lsm增加约10%) ,这主要发生在夜间,并且由于冷却器表面温度和行星边界层高度(PBLH)降低,从主要部件出现。夏季期间最多每日8小时平均臭氧和1小时每日最大O_3,在市中心区域下降(分别为0.9和1.4 PPBV的最大降低)。在夜间模拟最大的臭氧降低,主要是由滴度效应从下部PBLH的滴度效应引起的。这些结果突出了GI对区域空气质量的特定区域的非线性过程反馈,并进一步证明了对研究这些影响的综合耦合气象空气质量建模系统的需求和准确的陆地表面模型的必要性。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第20期|140960.1-140960.10|共10页
  • 作者单位

    Oak Ridge Institute for Science and Education (ORISE) Fellowship Participant at U.S. Environmental Protection Agency Research Triangle Park NC 27711 United States of America Nicholas School of the Environment Duke University. Durham NC 27708 United States of America;

    Computational Exposure Division National Exposure Research Laboratory Office of Research and Development U.S. Environmental Protection Agency Research Triangle Park NC 27711 United States of America;

    Computational Exposure Division National Exposure Research Laboratory Office of Research and Development U.S. Environmental Protection Agency Research Triangle Park NC 27711 United States of America;

    Outreach Information Division Office of Air Quality Planning and Standards Office of Air and Radiation US. Environmental Protection Agency Research Triangle Park NC 27711 United States of America;

    Research Services Department Mid-America Regional Council Kansas City MO 64105 United States of America;

    Computational Exposure Division National Exposure Research Laboratory Office of Research and Development U.S. Environmental Protection Agency Research Triangle Park NC 27711 United States of America;

    Computational Exposure Division National Exposure Research Laboratory Office of Research and Development U.S. Environmental Protection Agency Research Triangle Park NC 27711 United States of America;

    Water Permits Division Office of Wastewater Management Office of Water. US. Environmental Protection Agency Washington DC 20460 United States of America;

    Transportation and Environment. Mid-America Regional Council Kansas City MO 64105 United States of America;

    National Risk Management Research Laboratory Office of Research and Development. US. Environmental Protection Agency Cincinnati OH 45268 United States of America;

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

    Green infrastructure; Urban air quality; Temperature; Planetary boundary layer; Particular matter; Ozone;

    机译:绿色基础设施;城市空气质量;温度;行星边界层;具体的;臭氧;
  • 入库时间 2022-08-18 22:36:37

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