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二次电喷雾电离高分辨质谱观测到的臭氧-皮肤脂质氧化产物的新见解。

A Novel Insight into the Ozone-Skin Lipid Oxidation Products Observed by Secondary Electrospray Ionization High-Resolution Mass Spectrometry.

机构信息

Institute of Mass Spectrometry and Atmospheric Environment, Jinan University, Guangzhou 510632, China.

Guangdong Provincial Engineering Research Center for On-line Source Apportionment System of Air Pollution, Guangzhou, 510632, China.

出版信息

Environ Sci Technol. 2020 Nov 3;54(21):13478-13487. doi: 10.1021/acs.est.0c05100. Epub 2020 Oct 21.

Abstract

Emissions of secondary products through reactions of oxidants, ozone (O), and hydroxyl radical (·OH) with human skin lipids have become increasingly important in indoor environments. Here, we evaluate the secondary organic compounds formed through heterogeneous reactions of gaseous O with hand skin lipids by using a high-resolution quadrupole Orbitrap mass spectrometer coupled to a commercial secondary electrospray ionization (SESI) source. More than 600 ions were detected over a period of less than 40 min real-time measurements, among which 53 ions were characterized with a significant increasing trend in signal intensity at the presence of O. Based on the detected ions, we suggest detailed reaction pathways initiated by ozone oxidation of squalene that results in primary and secondary ozonides; we noticed for the first time that these products may be further cleaved by direct reaction of nucleophilic ammonia (NH), emitted from human skin. Finally, we estimate the fate of secondarily formed carbonyl compounds with respect to their gas-phase reactions with ·OH, O, and NO and compared with their removal by air exchange rate (AER) with outdoors. The obtained results suggest that human presence is a source of an important number of organic compounds, which can significantly influence the air quality in indoor environments.

摘要

通过氧化剂、臭氧(O)和羟基自由基(·OH)与人体皮肤脂质的反应产生的二次产物的排放,在室内环境中变得越来越重要。在这里,我们使用高分辨率四极杆轨道阱质谱仪结合商业二次电喷雾电离(SESI)源,评估气态 O 与手部皮肤脂质发生非均相反应形成的次生有机化合物。在不到 40 分钟的实时测量期间,检测到超过 600 个离子,其中 53 个离子的信号强度呈现出显著增加的趋势,表明存在 O。基于检测到的离子,我们提出了详细的反应途径,这些途径是由 squalene 的臭氧氧化引发的,导致了初级和次级臭氧化物的形成;我们首次注意到,这些产物可能会通过人体皮肤排放的亲核氨(NH)的直接反应进一步断裂。最后,我们根据与·OH、O 和 NO 的气相反应以及与室外空气交换率(AER)的去除情况,估算了二次形成的羰基化合物的归宿。研究结果表明,人类的存在是大量有机化合物的一个来源,这些有机化合物会显著影响室内环境的空气质量。

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