Department of Earth and Planetary Sciences, Weizmann Institute of Science, Rehovot 76100, Israel.
Univ Lyon, Université Claude Bernard Lyon 1, CNRS, IRCELYON, F-69626 Villeurbanne, France.
Environ Sci Technol. 2021 Mar 2;55(5):2878-2889. doi: 10.1021/acs.est.0c06838. Epub 2021 Feb 17.
Nighttime oxidation of biogenic volatile organic compounds (BVOCs) by nitrate radicals (NO·) represents one of the most important interactions between anthropogenic and natural emissions, leading to substantial secondary organic aerosol (SOA) formation. The direct climatic effect of such SOA cannot be quantified because its optical properties and atmospheric fate are poorly understood. In this study, we generated SOA from the NO· oxidation of a series BVOCs including isoprene, monoterpenes, and sesquiterpenes. The SOA were subjected to comprehensive online and offline chemical composition analysis using high-resolution mass spectrometry and optical properties measurements using a novel broadband (315-650 nm) cavity-enhanced spectrometer, which covers the wavelength range needed to understand the potential contribution of the SOA to direct radiative forcing. The SOA contained a significant fraction of oxygenated organic nitrates (ONs), consisting of monomers and oligomers that are responsible for the detected light absorption in the 315-400 nm range. The SOA created from β-pinene and α-humulene was further photochemically aged in an oxidation flow reactor. The SOA has an atmospheric photochemical bleaching lifetime of >6.2 h, indicating that some of the ONs in the SOA may serve as atmosphere-stable nitrogen oxide sinks or reservoirs and will absorb and scatter incoming solar radiation during the daytime.
夜间生物源挥发性有机化合物 (BVOCs) 与硝酸根自由基 (NO·) 的氧化作用是人为排放和自然排放之间最重要的相互作用之一,导致大量二次有机气溶胶 (SOA) 的形成。由于其光学性质和大气命运尚不清楚,因此无法量化这种 SOA 的直接气候效应。在这项研究中,我们利用一系列包括异戊二烯、单萜和倍半萜在内的 BVOCs 的 NO·氧化生成了 SOA。使用高分辨率质谱对 SOA 进行了全面的在线和离线化学成分分析,并使用新型宽带(315-650nm)腔增强分光光度计对其光学性质进行了测量,该光度计涵盖了理解 SOA 对直接辐射强迫潜在贡献所需的波长范围。SOA 中含有相当一部分含氧有机硝酸盐 (ONs),由单体和低聚物组成,这些单体和低聚物负责检测到的 315-400nm 范围内的光吸收。进一步在氧化流动反应器中对 β-蒎烯和 α-律草烯生成的 SOA 进行光化学老化。SOA 的大气光化学漂白寿命 >6.2 小时,这表明 SOA 中的一些 ONs 可能作为大气稳定的氮氧化物汇或储库,在白天会吸收和散射入射的太阳辐射。