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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Measurements of PAN, PPN, and MPAN made during the 1994 and 1995 Nashville Intensives of the Southern Oxidant Study: Implications for regional ozone production from biogenic hydrocarbons
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Measurements of PAN, PPN, and MPAN made during the 1994 and 1995 Nashville Intensives of the Southern Oxidant Study: Implications for regional ozone production from biogenic hydrocarbons

机译:在1994年和1995年纳什维尔南部氧化剂研究强度中进行的PAN,PPN和MPAN的测量:对生物烃类产生区域臭氧的影响

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摘要

Isoprene and a variety of other reactive hydrocarbons are released in large quantities by vegetation in forested regions and are thought to participate in the NOx-catalyzed production of ozone, a serious air quality problem in North America and Europe [National Research Council, 1991]. The determination of the fraction of O-3 formed from anthropogenic NOx and biogenic hydrocarbons (BHC) is a crucial step in the formulation of effective control strategies. Peroxymethacrylic nitric anhydride (MPAN, CH2C(CH3)C(O)OONO2) is formed almost entirely from the atmospheric oxidation of isoprene in the presence of NOx and is an excellent indicator of recent ozone production from isoprene and therefore biogenic hydrocarbons. Measurements are presented here of MPAN, peroxyacetic nitric anhydride (PAN, CH3C(O)OONO2), peroxypropionic nitric anhydride (PPN, CH3CH2C(O)OONO2) and ozone from separate data sets acquired during the 1994 and 1995 Nashville intensive studies of the Southern Oxidant Study. It was found that PAN, a general product of HC-NOx photochemistry, could be well represented as a simple linear combination of contributions from BHC and anthropogenic hydrocarbon (AHC) chemistries as indicated by MPAN and PPN, respectively. The PAN:MPAN ratios found to be characteristic of BHC-dominated chemistry ranged from 6 to 10. The PAN:PPN ratios found to be characteristic of AHC-dominated chemistry ranged from 5.8 to 7.4. These BHC and AHC attributions were used to estimate the contributions of anthropogenic and biogenic hydrocarbons to regional tropospheric ozone production, and substantial BKC-O-3 (50-60 ppbv) was estimated in cases where high NOx from power plants was present in areas of high BHC emission. This estimation method provides direct evidence of significant photochemical ozone production from the oxidation of biogenic hydrocarbons in the presence of NOx. [References: 49]
机译:异戊二烯和其他多种反应性碳氢化合物在森林地区的植被中大量释放,被认为参与了NOx催化的臭氧生产,这在北美和欧洲是一个严重的空气质量问题[国家研究委员会,1991]。确定人为NOx和生物烃(BHC)形成的O-3比例是制定有效控制策略的关键步骤。过氧甲基丙烯酸一氧化氮(MPAN,CH2C(CH3)C(O)OONO2)几乎完全由NOx存在下的异戊二烯在大气中氧化而形成,是近期由异戊二烯和由此产生的生烃产生臭氧的极好指标。此处显示的是MPAN,过氧乙酸酐(PAN,CH3C(O)OONO2),过氧丙酸酐(PPN,CH3CH2C(O)OONO2)和臭氧的数据,这些数据来自于1994年和1995年纳什维尔南部地区密集研究期间获得的单独数据集氧化剂研究。发现PAN是HC-NOx光化学的一般产物,可以很好地表示为BHC和人为烃(AHC)化学成分的简单线性组合,分别由MPAN和PPN表示。被发现是BHC主导化学特性的PAN:MPAN比值介于6到10之间。被发现是AHC主导化学特性的PAN:PPN比值介于5.8到7.4之间。这些BHC和AHC归因用于估算人为和生物碳氢化合物对区域对流层臭氧生产的贡献,并且在发电厂高NOx存在于以下地区时,估算出大量BKC-O-3(50-60 ppbv)。 BHC排放量高。这种估算方法提供了直接证据,证明存在NOx时,生物碳氢化合物的氧化会产生大量光化学臭氧。 [参考:49]

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