El Haber Manuella, Gérard Violaine, Kleinheins Judith, Ferronato Corinne, Nozière Barbara
Institut de Recherches sur l'Environnement et la Catalyse de Lyon (IRCELYON), CNRS and Université Lyon 1, Villeurbanne 69626, France.
Institute for Atmospheric and Climate Science, ETH Zürich, Universitätstrasse 16, 8092 Zürich, Switzerland.
Chem Rev. 2024 Oct 9;124(19):10924-10963. doi: 10.1021/acs.chemrev.4c00173. Epub 2024 Aug 23.
Aerosol and aqueous particles are ubiquitous in Earth's atmosphere and play key roles in geochemical processes such as natural chemical cycles, cloud and fog formation, air pollution, visibility, climate forcing, etc. The surface tension of atmospheric particles can affect their size distribution, condensational growth, evaporation, and exchange of chemicals with the atmosphere, which, in turn, are important in the above-mentioned geochemical processes. However, because measuring this quantity is challenging, its role in atmospheric processes was dismissed for decades. Over the last 15 years, this field of research has seen some tremendous developments and is rapidly evolving. This review presents the state-of-the-art of this subject focusing on the experimental approaches. It also presents a unique inventory of experimental adsorption isotherms for over 130 mixtures of organic compounds in water of relevance for model development and validation. Potential future areas of research seeking to better determine the surface tension of atmospheric particles, better constrain laboratory investigations, or better understand the role of surface tension in various atmospheric processes, are discussed. We hope that this review appeals not only to atmospheric scientists but also to researchers from other fields, who could help identify new approaches and solutions to the current challenges.
气溶胶和水相颗粒在地球大气中普遍存在,并在地球化学过程中发挥关键作用,如自然化学循环、云雾形成、空气污染、能见度、气候强迫等。大气颗粒的表面张力会影响其粒径分布、凝结增长、蒸发以及与大气的化学物质交换,而这些反过来在上述地球化学过程中很重要。然而,由于测量这个量具有挑战性,其在大气过程中的作用在几十年里都被忽视了。在过去的15年里,这个研究领域取得了一些巨大的进展,并且正在迅速发展。这篇综述介绍了该主题的最新进展,重点关注实验方法。它还提供了一份独特的实验吸附等温线清单,涉及130多种与模型开发和验证相关的水中有机化合物混合物。文中讨论了未来潜在的研究领域,旨在更好地测定大气颗粒的表面张力、更好地限制实验室研究,或更好地理解表面张力在各种大气过程中的作用。我们希望这篇综述不仅能吸引大气科学家,也能吸引其他领域的研究人员,他们可以帮助找到应对当前挑战的新方法和解决方案。