School of Environmental Science and Engineering, Shanghai Jiao Tong University, Shanghai 200240, China.
School of Environmental Science and Engineering, Shanghai Jiao Tong University, Shanghai 200240, China.
J Environ Sci (China). 2025 Feb;148:210-220. doi: 10.1016/j.jes.2023.08.021. Epub 2023 Aug 24.
Heterogeneous oxidation by gas-phase oxidants is an important chemical transformation pathway of secondary organic aerosol (SOA) and plays an important role in controlling the abundance, properties, as well as climate and health impacts of aerosols. However, our knowledge on this heterogeneous chemistry remains inadequate. In this study, the heterogeneous oxidation of α-pinene ozonolysis SOA by hydroxyl (OH) radicals was investigated under both low and high relative humidity (RH) conditions, with an emphasis on the evolution of molecular composition of SOA and its RH dependence. It is found that the heterogeneous oxidation of SOA at an OH exposure level equivalent to 12 hr of atmospheric aging leads to particle mass loss of 60% at 25% RH and 95% at 90% RH. The heterogeneous oxidation strongly changes the molecular composition of SOA. The dimer-to-monomer signal ratios increase dramatically with rising OH exposure, in particular under high RH conditions, suggesting that aerosol water stimulates the reaction of monomers with OH radicals more than that of dimers. In addition, the typical SOA tracer compounds such as pinic acid, pinonic acid, hydroxy pinonic acid and dimer esters (e.g., CHO and CHO) have lifetimes of several hours against heterogeneous OH oxidation under typical atmospheric conditions, which highlights the need for the consideration of their heterogeneous loss in the estimation of monoterpene SOA concentrations using tracer-based methods. Our study sheds lights on the heterogeneous oxidation chemistry of monoterpene SOA and would help to understand their evolution and impacts in the atmosphere.
气相氧化剂的非均相氧化是二次有机气溶胶(SOA)的重要化学转化途径,对控制气溶胶的丰度、性质以及气候和健康影响具有重要作用。然而,我们对这种非均相化学的了解仍然不足。在这项研究中,研究了在低相对湿度(RH)和高相对湿度(RH)条件下,α-蒎烯臭氧氧化 SOA 与羟基(OH)自由基的非均相氧化,重点研究了 SOA 分子组成的演变及其对 RH 的依赖性。结果发现,在相当于大气老化 12 小时的 OH 暴露水平下,SOA 的非均相氧化会导致 25% RH 时 60%的颗粒质量损失和 90% RH 时 95%的颗粒质量损失。非均相氧化强烈改变了 SOA 的分子组成。随着 OH 暴露的增加,二聚体-单体信号比急剧增加,特别是在高 RH 条件下,这表明气溶胶水刺激单体与 OH 自由基的反应比二聚体更强烈。此外,典型的 SOA 示踪化合物,如 pinic 酸、pinonic 酸、羟基 pinonic 酸和二聚体酯(如 CHO 和 CHO),在典型的大气条件下,对非均相 OH 氧化的半衰期为数小时,这突出表明在使用示踪剂方法估算单萜 SOA 浓度时,需要考虑其非均相损失。本研究阐明了单萜 SOA 的非均相氧化化学,有助于理解其在大气中的演变和影响。