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臭氧引发人源纳米团簇气溶胶的排放。

Ozone Initiates Human-Derived Emission of Nanocluster Aerosols.

机构信息

Human-Oriented Built Environment Lab, School of Architecture, Civil and Environmental Engineering, École Polytechnique Fédérale de Lausanne (EPFL), Lausanne 1015, Switzerland.

International Centre for Indoor Environment and Energy, Department of Civil Engineering, Technical University of Denmark, Kongens Lyngby 2800, Denmark.

出版信息

Environ Sci Technol. 2021 Nov 2;55(21):14536-14545. doi: 10.1021/acs.est.1c03379. Epub 2021 Oct 21.

Abstract

Nanocluster aerosols (NCAs, particles <3 nm) are important players in driving climate feedbacks and processes that impact human health. This study reports, for the first time, NCA formation when gas-phase ozone reacts with human surfaces. In an occupied climate-controlled chamber, we detected NCA only when ozone was present. NCA emissions were dependent on clothing coverage, occupant age, air temperature, and humidity. Ozone-initiated chemistry with human skin lipids (particularly their primary surface reaction products) is the key mechanism driving NCA emissions, as evidenced by positive correlations with squalene in human skin wipe samples and known gaseous products from ozonolysis of skin lipids. Oxidation by OH radicals, autoxidation reactions, and human-emitted NH may also play a role in NCA formation. Such chemical processes are anticipated to generate aerosols of the smallest size (1.18-1.55 nm), whereas larger clusters result from subsequent growth of the smaller aerosols. This study shows that whenever we encounter ozone indoors, where we spend most of our lives, NCAs will be produced in the air around us.

摘要

纳米团簇气溶胶(NCAs,粒径<3nm)是驱动气候反馈和影响人类健康的过程的重要参与者。本研究首次报道了气相臭氧与人体表面反应时形成的 NCAs。在有人居住的空调室内,只有臭氧存在时才会检测到 NCAs。NCAs 的排放取决于衣物的覆盖程度、居住者的年龄、空气温度和湿度。臭氧与人体皮肤脂质(特别是它们的主要表面反应产物)引发的化学反应是驱动 NCAs 排放的关键机制,这一点可以从人体皮肤擦拭样本中的角鲨烯和皮肤脂质臭氧分解的已知气态产物与 NCAs 排放的正相关得到证明。OH 自由基的氧化、自动氧化反应和人类排放的 NH 也可能在 NCAs 的形成中发挥作用。这些化学过程预计会产生最小尺寸(1.18-1.55nm)的气溶胶,而较大的团簇则是由较小的气溶胶随后生长而成。本研究表明,只要我们在室内遇到臭氧——我们一生中大部分时间都在室内度过,周围空气中就会产生 NCAs。

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