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首页> 外文期刊>Atmospheric chemistry and physics >Detection of atmospheric gaseous amines and amides by a high-resolution time-of-flight chemical ionization mass spectrometer with protonated ethanol reagent ions
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Detection of atmospheric gaseous amines and amides by a high-resolution time-of-flight chemical ionization mass spectrometer with protonated ethanol reagent ions

机译:带有质子化乙醇试剂离子的高分辨率飞行时间化学电离质谱仪检测大气中的胺和酰胺

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Amines and amides are important atmospheric organic-nitrogen compounds but high time resolution, highly sensitive, and simultaneous ambient measurements of these species are rather sparse. Here, we present the development of a high-resolution time-of-flight chemical ionization mass spectrometer (HR-ToF-CIMS) method, utilizing protonated ethanol as reagent ions to simultaneously detect atmospheric gaseous amines (Csub1/sub to Csub6/sub) and amides (Csub1/sub to Csub6/sub). This method possesses sensitivities of 5.6–19.4?Hz?pptvsup?1/sup for amines and 3.8–38.0?Hz?pptvsup?1/sup for amides under total reagent ion signals of ?~??0.32?MHz. Meanwhile, the detection limits were 0.10–0.50?pptv for amines and 0.29–1.95?pptv for amides at 3iσ/i of the background signal for a 1?min integration time. Controlled characterization in the laboratory indicates that relative humidity has significant influences on the detection of amines and amides, whereas the presence of organics has no obvious effects. Ambient measurements of amines and amides utilizing this method were conducted from 25 July to 25 August 2015 in urban Shanghai, China. While the concentrations of amines?ranged from a few parts per trillion by volume to hundreds of parts per trillion by volume, concentrations of amides varied from tens of parts per trillion by volume to a few parts per billion by volume. Among the Csub1/sub- to Csub6/sub-amines, the Csub2/sub-amines were the dominant species with concentrations up to 130?pptv. For amides, the Csub3/sub-amides (up to 8.7?ppb) were the most abundant species. The diurnal and backward trajectory analysis profiles of amides suggest that in addition to the secondary formation of amides in the atmosphere, industrial emissions could be important sources of amides in urban Shanghai. During the campaign, photo-oxidation of amines and amides might be a main loss pathway for them in daytime, and wet deposition was also an important sink.
机译:胺和酰胺是重要的大气有机氮化合物,但是这些物种的高时间分辨率,高灵敏度和同时的环境测量非常稀疏。在这里,我们介绍一种高分辨率的飞行时间化学电离质谱仪(HR-ToF-CIMS)方法的开发,该方法利用质子化乙醇作为试剂离子同时检测大气中的气态胺(C 1 到C 6 )和酰胺(C 1 到C 6 )。在总试剂离子信号为〜的情况下,该方法对胺的灵敏度为5.6–19.4?Hz?pptv ?1 ,对酰胺的灵敏度为3.8–38.0?Hz?pptv ?1 。 0.32MHz。同时,在1µmin积分时间内,在背景信号的3σ处,胺的检测限为0.10–0.50?pptv,酰胺的检测限为0.29–1.95pptv。实验室中受控的表征表明,相对湿度对胺和酰胺的检测有重大影响,而有机物的存在则没有明显的影响。 2015年7月25日至8月25日,在中国上海市区采用这种方法对胺和酰胺进行了环境测量。胺的浓度范围从万亿分之几到万亿分之几,而酰胺的浓度则从万亿分之几万到几千亿不等。在C 1 -至C 6 -胺中,C 2 -胺是占主导地位的物种,浓度高达130pptv。对于酰胺,C 3 -酰胺(最高8.7?ppb)是最丰富的物种。酰胺的日间和向后轨迹分析表明,除了大气中酰胺的二次形成外,工业废气可能是上海市区酰胺的重要来源。在竞选期间,胺和酰胺的光氧化可能是它们白天的主要损失途径,而湿沉降也是一个重要的沉陷。

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