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The impacts of reactive terpene emissions from plants on air quality in Las Vegas, Nevada.

机译:内华达州拉斯维加斯工厂的反应性萜烯排放对空气质量的影响。

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摘要

Biogenic volatile organic compounds (BVOCs) emitted from vegetation can significantly impact tropospheric air quality by interacting with anthropogenic pollutants to produce ozone and particulate matter (PM). Monoterpenes and isoprene have been the focus of most BVOC studies, but recent research indicates that a class of very reactive BVOCs (VR-BVOCs) is emitted at especially high rates. Sesquiterpenes have been implicated as significant VR-BVOCs due to their rapid reactivities. Very little is known about VR-BVOC emissions and the concomitant effects on air quality because their chemistry is complicated and measurements are difficult. The present study examined emissions of sesquiterpenes, monoterpenes, and isoprene from dominant vegetation in the Las Vegas metropolitan area. BVOC emission measurements were obtained using a novel collection system and these data were then synthesized with a GIS framework to develop an emissions inventory for the Las Vegas metropolitan area. A series of atmospheric chemistry box model simulations utilizing the BVOC emissions inventory data were run to assess impacts of BVOCs on air quality for industrial, suburban, and rural areas.; Monoterpene emissions were an order of magnitude higher than sesquiterpene emissions for almost every plant species measured. As a result of their low emissions, sesquiterpenes did not exert a significant influence over ozone and PM pollution in the troposphere, but other BVOCs did. Total BVOCs had the greatest effect on ozone concentrations in a rural area, and in the mid-afternoon, ozone growth rates were almost 50 times greater with BVOCs present than without. Total monoterpenes had the strongest effect on PM pollution in a rural area as well, and contributed roughly 30% of the total organic carbon measured at this site. Studying the magnitude of BVOC emissions provides a more thorough understanding of the factors contributing to ozone and PM pollution. This information is of increasing importance as the Las Vegas area continues to expand at a rapid pace and local planners search for ways to mitigate air quality problems.
机译:植被排放的生物挥发性有机化合物(BVOC)通过与人为污染物相互作用产生臭氧和颗粒物(PM),可以显着影响对流层空气质量。萜烯和异戊二烯一直是大多数BVOC研究的重点,但是最近的研究表明,一类非常活泼的BVOC(VR-BVOC)的发射速率特别高。由于其快速反应性,倍半萜烯被认为是重要的VR-BVOC。关于VR-BVOC排放及其对空气质量的伴随影响知之甚少,因为它们的化学成分复杂且测量困难。本研究调查了拉斯维加斯大都市地区主要植被中的倍半萜,单萜和异戊二烯的排放。使用新型收集系统获得BVOC排放量测量值,然后将这些数据与GIS框架进行合成,以开发拉斯维加斯大都市区的排放量清单。进行了一系列利用BVOC排放清单数据的大气化学箱模型模拟,以评估BVOC对工业,郊区和农村地区空气质量的影响。在几乎所有被测植物物种中,单萜的排放量都比倍半萜的排放量高一个数量级。由于其低排放,倍半萜烯对对流层中的臭氧和PM污染没有显着影响,而其他BVOC却有。在农村地区,总BVOC对臭氧浓度的影响最大,在午后,使用BVOC时,臭氧的生长速度几乎是不使用臭氧时的50倍。单萜类化合物对农村地区的PM污染影响最大,占该地点有机碳总量的30%左右。研究BVOC的排放量可以更彻底地了解造成臭氧和PM污染的因素。随着拉斯维加斯地区的快速发展和当地规划人员寻找减轻空气质量问题的方法,这些信息变得越来越重要。

著录项

  • 作者

    Papiez, Maria R.;

  • 作者单位

    University of Nevada, Reno.;

  • 授予单位 University of Nevada, Reno.;
  • 学科 Atmospheric Sciences.; Environmental Sciences.
  • 学位 M.S.
  • 年度 2007
  • 页码 127 p.
  • 总页数 127
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境科学基础理论;
  • 关键词

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