Atmospheric Nitrate Formation Through Oxidation By Carbonate Radical

ACS EARTH AND SPACE CHEMISTRY(2021)

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摘要
The carbonate radical (CO3 center dot-) has been proved to be of great significance in the water environment. However, a few studies concerned with its contribution to atmospheric heterogeneous chemistry. Here, we report the pathway for the first time for CO3 center dot- generation by interfacial photogenerated hole/hydroxyl radical ((OH)-O-center dot) transfer between the photoactive component and (bi)carbonate (CO32-/HCO3-) of mineral dust under atmospherically relevant actinic irradiation. By combining laboratory simulation, nanosecond transient absorption spectroscopy (NTAS), and field observation, we demonstrate that (bi)carbonate in the atmosphere not only has a pH buffering effect in the uptake of NO2 but more importantly directly participates in the photochemical reactions by generating CO3 center dot- under irradiation. CO3 center dot- can play an important role by facilitating nitrite transformation to nitrate, especially under a lower light intensity (15 mW/cm(2)) and a higher humidity (60% RH). Diffuse reflectance infrared Fourier transform spectrometry (DRIFTS) was used to detect the surface species generated on simulated mineral dust. Under irradiation, the time-dependent reactive uptake coefficient for the first-order reaction of NO2 uptake on simulated mineral dust was found to be 2.817 x 10(-8) x e(-t/6559). These results highlight the important role of CO3 center dot- in atmospheric photochemistry, which could act as a reactive radical and influence secondary aerosol formation.
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关键词
NO2, heterogeneous uptake, secondary nitrate aerosol, carbonate radical, transient absorption spectroscopy
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