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Central power generation versus distributed generation - An air quality assessment in the South Coast Air Basin of California

机译:中央发电与分布式发电-加利福尼亚南海岸空气盆地的空气质量评估

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摘要

This study assesses the air quality impacts of central power generation and compares them with the impacts of distributed generation (DC). The central power plant emissions factors used are from a newly installed combined cycle gas turbine system. Because location of power plants is a key parameter affecting air quality impacts, this study considers three potential locations for the installation of central power plants. Air quality impacts are evaluated for the South Coast Air Basin of California, in the year 2010, using a three-dimensional air quality model. Results are compared to air quality impacts from two potential DG scenarios to meet the same power demand as that of the central power plant case.rnEven though emissions from central generation are lower than emissions from the DG technology mix considered herein, central generation concentrates emissions in a small area, whereas DG spreads emissions throughout a larger cross-section of the air basin. As a result, air quality impacts from central generation are more significant than those from DG. The study also shows that assessment of air quality impacts from distributed and central generation should not only consider emissions levels, but also the spatial and temporal distribution of emissions and the air quality that results from atmospheric chemistry and transport - highly non-linear processes.rnFinally, analysis of population exposure to ozone and PM_(2.5) shows that central generation located in coastal areas upwind from populated areas would cause the highest population exposure and even though emissions from central generation are considerably lower than DG emissions spread throughout the basin, results show that central generation causes a higher pollutant exposure than DG.
机译:这项研究评估了中央发电对空气质量的影响,并将其与分布式发电(DC)的影响进行了比较。使用的中央发电厂排放因子来自新安装的联合循环燃气轮机系统。由于发电厂的位置是影响空气质量影响的关键参数,因此本研究考虑了安装中央发电厂的三个潜在位置。使用三维空气质量模型,于2010年对加利福尼亚州南海岸空气盆地的空气质量影响进行了评估。将结果与两种潜在的DG情景对空气质量的影响进行比较,以满足与中央发电厂情况相同的电力需求。rn尽管中央发电的排放量低于此处考虑的DG技术组合的排放量,但中央发电的排放量集中在较小的区域,而DG将排放物散布到整个空气盆的较大横截面上。结果,来自中央发电的空气质量影响比来自DG的影响更大。该研究还表明,评估分布式发电和中央发电对空气质量的影响不仅应考虑排放水平,而且还应考虑排放的时空分布以及大气化学和运输-高度非线性过程所产生的空气质量。 ,对臭氧和PM_(2.5)人口暴露的分析表明,位于人口稠密地区上风的沿海地区的中央发电将导致最高的人口暴露,即使中央发电的排放量大大低于整个流域的DG排放,结果表明中央发电比DG造成更高的污染物暴露。

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  • 来源
    《Atmospheric environment 》 |2010年第26期| P.3215-3223| 共9页
  • 作者单位

    Computational Environmental Sciences Laboratory, Department of Mechanical & Aerospace Engineering, University of California, Irvine, Irvine, CA 92697-3975, USA;

    rnICF International, 394 Pacific Ave., Suite200, San Francisco, CA 94111, USA;

    rnAdvanced Power and Energy Program, Department of Mechanical & Aerospace Engineering, University of California, Irvine, Irvine, CA 92697-3975, USA;

    rnComputational Environmental Sciences Laboratory, Department of Mechanical & Aerospace Engineering, University of California, Irvine, Irvine, CA 92697-3975, USA;

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

    distributed generation; central generation; air quality modeling; reactivity;

    机译:分布式发电中央代;空气质量建模;反应性;

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