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Regional sources of atmospheric formaldehyde and acetaldehyde, and implications for atmospheric modeling

机译:大气中甲醛和乙醛的区域来源及其对大气建模的影响

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摘要

Formaldehyde and acetaldehyde concentrations over the Eastern half of the United States are simulated with a 3-D air quality model to identify the most important chemical precursors under January and July conditions. We find that both aldehydes primarily result from photochemical production, although 25% or more result from direct emissions in urban areas during winter. Isoprene is the major precursor of formaldehyde in most areas during summer, contributing 20-60% of total production, with the magnitude being spatially variable. Other alkenes from anthropogenic and/or biogenic emissions dominate formaldehyde production in winter, contributing 60—85% of total formation, and are prominent contributors in summer. Alkenes, including biogenic alkenes, dominate acetaldehyde production during both seasons. These conclusions are based on the degradation of emitted VOCs described by the SAPRC07TB chemical mechanism, but even this detailed model has difficulty reproducing observed values better than a factor of 2. The substantial role of isoprene and other alkenes in aldehyde formation emphasizes that we examine and improve emission estimates of these compounds. Until we can estimate the emissions and understand the chemistry of VOC precursors to aldehyde formation with greater certainty, it will be difficult to accurately predict atmospheric concentrations of aldehydes and develop strategies to reduce their concentrations.
机译:使用3-D空气质量模型模拟了美国东半部的甲醛和乙醛浓度,以识别1月和7月条件下最重要的化学前体。我们发现这两种醛主要来自光化学生产,尽管25%或更多的醛来自冬季城市地区的直接排放。夏季,异戊二烯是大多数地区甲醛的主要前体,占总产量的20-60%,其量级在空间上是可变的。来自人为和/或生物排放的其他烯烃在冬季占甲醛生产的主导地位,占总形成量的60%至85%,并且在夏季是重要的贡献者。在两个季节中,包括生物烯烃在内的烯烃均占乙醛产量的主导地位。这些结论基于SAPRC07TB化学机理描述的排放VOC的降解,但是即使是这个详细的模型也很难将观测值更好地再现为2倍。异戊二烯和其他烯烃在醛形成中的重要作用强调我们需要检查和改善这些化合物的排放估算。在我们无法更加确定地估计排放量并了解形成醛的VOC前体的化学作用之前,很难准确地预测大气中醛的浓度并制定降低其浓度的策略。

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  • 来源
    《Atmospheric environment》 |2012年第2期|p.477-490|共14页
  • 作者单位

    US. Environmental Protection Agency, 109 T.W. Alexander Dr., Mail Drop E243-03, Research Triangle Park, NC 27709, USA;

    US. Environmental Protection Agency, 109 T.W. Alexander Dr., Mail Drop E243-03, Research Triangle Park, NC 27709, USA;

    US. Environmental Protection Agency, 109 T.W. Alexander Dr., Mail Drop E243-03, Research Triangle Park, NC 27709, USA;

    US. Environmental Protection Agency, 109 T.W. Alexander Dr., Mail Drop E243-03, Research Triangle Park, NC 27709, USA;

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

    formaldehyde; acetaldehyde; HAPs; photochemical production; isoprene;

    机译:甲醛;乙醛HAP;光化学生产;异戊二烯;

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