Insight into the Role of NH 3 /NH 4 + and NO x /NO 3 - in the Formation of Nitrogen-Containing Brown Carbon in Chinese Megacities.
Diwei WangZhenxing ShenXueting YangShasha HuangYu LuoGezi BaiJunji CaoPublished in: Environmental science & technology (2024)
Particulate brown carbon (BrC) plays a crucial role in the global radiative balance due to its ability to absorb light. However, the effect of molecular formation on the light absorption properties of BrC remains poorly understood. In this study, atmospheric BrC samples collected from six Chinese megacities in winter and summer were characterized through ultrahigh-performance liquid chromatography coupled with Orbitrap mass spectrometry (UHPLC-Orbitrap MS) and light absorption measurements. The average values of BrC light absorption coefficient at a wavelength of 365 nm ( b abs365 ) in winter were approximately 4.0 times higher than those in summer. Nitrogen-containing organic molecules (CHNO) were identified as critical components of light-absorbing substances in both seasons, underscoring the importance of N-addition in BrC. These nitrogen-containing BrC chromophores were more closely related to nitro-containing compounds originating from biomass burning and nitrogen oxides (NO x )/nitrate (NO 3 - ) reactions in winter. In summer, they were related to reduced N-containing compounds formed in ammonia (NH 3 )/ammonium (NH 4 + ) reactions. The NH 3 /NH 4 + -mediated reactions contributed more to secondary BrC in summer than winter, particularly in southern cities. Compared with winter, the higher O/Cw, lower molecule conjugation indicator (double bond equivalent, DBE), and reduced BrC b abs365 in summer suggest a possible bleaching mechanism during the oxidation process. These findings strengthen the connection between molecular composition and the light-absorbing properties of BrC, providing insights into the formation mechanisms of BrC chromophores across northern and southern Chinese cities in different seasons.
Keyphrases
- mass spectrometry
- liquid chromatography
- room temperature
- heat stress
- high resolution mass spectrometry
- high resolution
- tandem mass spectrometry
- perovskite solar cells
- simultaneous determination
- multiple sclerosis
- high performance liquid chromatography
- ultra high performance liquid chromatography
- particulate matter
- drinking water
- magnetic resonance imaging
- magnetic resonance
- capillary electrophoresis
- ionic liquid
- computed tomography