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Biogenic secondary organic aerosols: A review on formation mechanism, analytical challenges and environmental impacts

机译:生物学二次有机气溶胶:关于地层机制,分析挑战和环境影响综述

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The review initiates with current state of information on the atmospheric reaction mechanism of biogenic volatile organic compounds (BVOCs) and its fate in the atmosphere. The plants release BVOCs, i.e., isoprene, monoterpenes, and sesquiterpenes, which form secondary organic aerosols (SOA) upon oxidation. These oxidation reactions are primarily influenced by solar radiations along with other meteorological parameters viz.; temperature and relative humidity, therefore, the chemistry behind SOA formation is different during day than the night time. The review throws light upon the day and nighttime formation mechanism of SOA, recent advancements in the analytical techniques available for the measurements, and its impact on the environment. Studies have revealed that day time SOA formation is dominated by OH and O-3, however, NOx initiated SOA production is dominated during night. The formation mechanism addresses that the gaseous products of VOCs are firstly formed and then partitioned over the pre-existing particles. New particle formation and biomass-derived aerosols are found to be responsible for enhanced SOA formation. 2-Dimensional gas chromatography-mass spectrometer (2D-GC/MS) is observed to be best for the analysis of organic aerosols. Radiative forcing (RF) SOA is observed to be a useful parameter to evaluate the environmental impacts of SOA and reviewed studies have shown mean RF in the ranges of -0.27 to +0.20 W m(-2). (C) 2020 Elsevier Ltd. All rights reserved.
机译:审查引发了关于生物挥发性有机化合物(BVOCs)的大气反应机制的当前信息状态及其在大气中的命运。植物释放BVOCs,即异戊二烯,单萜,单萜,在氧化时形成二次有机气溶胶(SOA)。这些氧化反应主要受太阳辐射的影响以及其他气象参数viz;因此,温度和相对湿度,SOA形成后面的化学在日内比夜间不同。审查在SOA的日期和夜间形成机制上抛出了灯光,最新进展在测量的分析技术中,其对环境的影响。研究表明,日时间SOA形成由OH和O-3主导,然而,NOx发起的SOA生产在夜间主导。形成机制地址,首先形成VOC的气态产物,然后通过预先存在的颗粒分隔。发现新的颗粒形成和生物质衍生的气溶胶负责增强的SOA形成。观察到二维气相色谱 - 质谱仪(2D-GC / MS)最适合分析有机气溶胶。辐射强制(RF)SOA被观察到是评估SOA的环境影响的有用参数,并回顾研究的研究表明为-0.27至+0.20wm(-2)的平均值。 (c)2020 elestvier有限公司保留所有权利。

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