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High time and mass resolved PTR-TOF-MS measurements of VOCs at an urban site of India during winter: Role of anthropogenic, biomass burning, biogenic and photochemical sources

机译:冬季在印度城市现场对挥发性有机化合物进行高时间和高质量的PTR-TOF-MS测定:人为,生物量燃烧,生物和光化学源的作用

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摘要

This study is based on the high mass and time-resolved measurements of seven VOCs using a PTR-TOF-MS instrument at an urban site of India during winter 2013. Daily levels of OVOCs and aromatics were in the ranges of 3.5-37 ppbv and 0.85-23 ppbv, respectively with OVOCs accounted for up to 80% of total measured VOCs. The impact of long-range transport from the polluted Indo-Gangetic Plain and clean Thar desert was observed during the episodes of high and low VOCs, respectively. VOCs exhibited strong diurnal variations with peaks during morning and evening hours and lowest in the afternoon. Relatively elevated aromatics during evening hours coincided with the lowest-OVOCs indicating influence of fresh vehicular emissions. Emission ratios of isoprene and OVOCs with respect to benzene followed the diurnal cycles of temperature and solar flux indicating role of biogenic and photochemical processes, respectively. Correlation study of VOCs with benzene suggests major contribution from anthropogenic and also from biogenic and secondary sources to some extent. The higher emission ratios of Delta methanol/Delta acetonitrile correspond to the episodes of long-range transport from biomass burning sources located in the Indo-Gangetic Plain (IGP). In addition to the pattern of emission, the diurnal and day-today variations of VOCs were influenced by the local meteorological conditions and depth of planetary boundary layer (PBL). (C) 2015 Elsevier B.V. All rights reserved.
机译:这项研究基于2013年冬季在印度城市现场使用PTR-TOF-MS仪器对7种VOC进行的高质量和高时间分辨测量。每天的OVOC和芳族化合物含量在3.5-37 ppbv和OVOC分别为0.85-23 ppbv,占总测量VOC的80%。在高和低VOCs发生期间,分别观察到了来自污染的印度恒河平原和塔尔沙漠的远距离运输的影响。 VOCs表现出强烈的昼夜变化,早晨和傍晚时分高峰,下午最低。傍晚时分相对较高的芳烃含量与最低OVOC值吻合,表明新鲜车辆排放的影响。异戊二烯和OVOC相对于苯的排放比遵循温度和太阳通量的昼夜循环,分别表明生物发生和光化学过程的作用。 VOC与苯的相关性研究表明,在一定程度上,人为因素以及生物和次要来源均起主要作用。 δ甲醇/δ乙腈的较高排放比对应于位于印度恒河平原(IGP)的生物质燃烧源的远距离迁移。除了排放模式外,VOC的日变化和每日变化还受到当地气象条件和行星边界层(PBL)深度的影响。 (C)2015 Elsevier B.V.保留所有权利。

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