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One-Year Characterization and Reactivity of Isoprene and Its Impact on Surface Ozone Formation at A Suburban Site in Guangzhou, China

机译:广州市郊区异戊二烯的一年表征和反应性及其对表面臭氧形成的影响

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Isoprene has a potentially large effect on ozone (O 3 ) formation in the subtropical, highly polluted city of Guangzhou. Online measurements of isoprene in Guangzhou city are scarce; thus, isoprene levels were monitored for one year at the Guangzhou Panyu Atmospheric Composition Station (GPACS), a suburban site in Guangzhou, using an online gas chromatography-flame ionization detector (GC–FID) system to investigate the characterization and reactivity of isoprene and its effect on the O 3 peak profile in different seasons. The results showed that the daily average mixing ratios of isoprene at GPACS were 0.40, 2.20, 1.40, and 0.13 mixing ratio by volume (ppbv) in spring, summer, autumn, and winter, respectively. These values were considerably higher than the mixing ratios of isoprene in the numerous other subtropical and temperate cities around the world. Furthermore, isoprene ranked first with regard to O 3 formation potential (OFP) and propylene-equivalent mixing ratio among 56 measured non–methane hydrocarbons (NMHCs). The ratios of isoprene to cis-2-butene, an exhaust tracer, were determined to estimate the fractions of biogenic and anthropogenic emissions. The results revealed a much greater contribution from biogenic than anthropogenic factors during the daytime in all four seasons. In addition, night-time isoprene emissions were mostly associated with vehicles in winter, and the residual isoprene that remained after photochemical loss during the daytime also persisted into the night. The high levels of isoprene in summer and autumn may cause the strong and broad peaks of the O 3 profile because of its association with the most favorable meteorological conditions (e.g., high temperature and intense solar radiation) and the highest OH mixing ratio, which could affect human health by exposing people to a high O 3 mixing ratio for prolonged periods. The lower mixing ratios of isoprene resulted in a weak and sharp peak in the O 3 profile in both spring and winter. The high level of isoprene in the subtropical zone could accentuate its large impact on atmospheric oxidant capacity and air quality in Guangzhou city.
机译:异戊二烯可能会对高度污染的亚热带广州市的臭氧(O 3)形成很大的影响。广州市对异戊二烯的在线测量很少。因此,使用在线气相色谱-火焰电离检测器(GC-FID)系统在广州市郊区广州番yu大气成分站(GPACS)监测异戊二烯水平一年,以调查异戊二烯的特征和反应性。它对不同季节的O 3峰剖面的影响。结果表明,春季,夏季,秋季和冬季,GPACS的异戊二烯的日平均混合比分别为0.40、2.20、1.40和0.13体积比(ppbv)。这些值大大高于世界上许多其他亚热带和温带城市的异戊二烯的混合比。此外,在56种非甲烷碳氢化合物(NMHC)中,异戊二烯在O 3形成潜能(OFP)和丙烯当量混合比方面排名第一。确定异戊二烯与顺式-2-丁烯(一种尾气示踪剂)的比率,以估算生物和人为排放物的比例。结果表明,在所有四个季节中,白天的人为因素比人为因素贡献更大。此外,冬季夜间异戊二烯的排放主要与车辆有关,白天在光化学损失后残留的异戊二烯也一直持续到深夜。夏季和秋季高水平的异戊二烯可能会导致O 3轮廓的强而宽的峰,因为它与最有利的气象条件(例如高温和强烈的太阳辐射)和最高的OH混合比有关。通过长时间使人们暴露于高O 3混合比中来影响人类健康。异戊二烯的混合比例较低,导致春季和冬季的O 3曲线峰弱而尖锐。亚热带地区的异戊二烯含量高可能会加剧其对广州市大气氧化能力和空气质量的巨大影响。

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