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首页> 外文期刊>Atmosphere >Determination of Semivolatile Organic Nitrates in Ambient Atmosphere by Gas Chromatography/Electron Ionization–Mass Spectrometry
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Determination of Semivolatile Organic Nitrates in Ambient Atmosphere by Gas Chromatography/Electron Ionization–Mass Spectrometry

机译:气相色谱/电子电离质谱法测定环境中的半挥发性有机硝酸盐

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Semivolatile organic nitrates (SVONs) contribute a large proportion of total organic nitrates and play an important role in the tropospheric chemistry. However, the composition and concentrations of SVONs in the atmosphere remain unclear due to the lack of reliable analytical techniques for specific organic nitrates. In this study, a method based on gas chromatography and electron ionization–mass spectrometry was developed to detect ambient SVONs that were collected via polyurethane foam disk enrichment. Three SVONs were identified in the semivolatile samples from urban Jinan during spring based on the characteristic fragment ions of [NO 2 ] + and [CH 2 NO 3 ] + and the characteristic fragment loss of NO 2 and NO 3 : 1-pentyl nitrate (molecular weight [MW] = 133), 4-hydroxy-isoprene nitrate (MW = 147), and (3,4)-di-hydroxy-isoprene nitrate (MW = 163). The latter two isoprene nitrates were rarely detected in the real atmosphere in previous studies. The contents of 1-pentyl nitrate, 4-hydroxy-isoprene nitrate, and (3,4)-di-hydroxy-isoprene nitrate were roughly quantified based on the standard of 1-pentyl nitrate, with a detection limit of 50 μg L ?1 . In addition, Fourier transform infrared spectrometry was used to determine the total SVONs content. The average concentrations of 1-pentyl nitrate, 4-hydroxy-isoprene nitrate, (3,4)-di-hydroxy-isoprene nitrate, and total SVONs in Jinan during spring were 20.2 ± 7.2, 13.2 ± 7.2, 36.5 ± 8.4, and 380.0 ± 190.8 ng m ?3 , respectively. The three identified SVONs contributed only 20.2 ± 5.5% to the total SVONs, which suggests that some unidentified SVONs are present in the ambient atmosphere and that studies with improved or advanced analytical techniques will be required to identify them.
机译:半挥发性有机硝酸盐(SVON)占有机硝酸盐总量的很大一部分,并且在对流层化学中起重要作用。但是,由于缺乏对特定有机硝酸盐的可靠分析技术,大气中SVON的成分和浓度仍不清楚。在这项研究中,开发了一种基于气相色谱和电子电离质谱的方法,以检测通过聚氨酯泡沫盘富集收集的环境SVON。根据[NO 2] +和[CH 2 NO 3] +的特征碎片离子以及NO 2和NO 3的特征碎片损失,在春季济南市区的半挥发性样品中鉴定出3个SVONs。分子量[MW] = 133),4-羟基异戊二烯硝酸酯(MW = 147)和(3,4)-二羟基异戊二烯硝酸酯(MW = 163)。后两种硝酸异戊二烯硝酸盐在以前的研究中很少在实际大气中被检测到。硝酸1-戊基酯,硝酸4-羟基异戊二烯酯和硝酸(3,4)-二羟基异戊二烯酯的含量根据硝酸1-戊基酯的标准进行粗略定量,检测限为50μgL?。 1。另外,使用傅立叶变换红外光谱法测定总的SVON含量。春季春季济南市的硝酸1-戊酯,硝酸4-羟基异戊二烯,硝酸(3,4)-二羟基异戊二烯和总SVON的平均浓度分别为20.2±7.2、13.2±7.2、36.5±8.4和380.0±190.8 ng m?3。三种已识别的SVON仅占总SVON的20.2±5.5%,这表明周围大气中存在一些未识别的SVON,需要使用改进或先进的分析技术进行研究才能识别它们。

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