Elucidating HONO formation mechanism and its essential contribution to OH during haze events

Author:

Zhang XinranORCID,Tong Shengrui,Jia Chenhui,Zhang Wenqian,Wang Zhen,Tang GuiqianORCID,Hu Bo,Liu ZiruiORCID,Wang Lili,Zhao Pusheng,Pan YuepengORCID,Ge MaofaORCID

Abstract

AbstractAtmospheric nitrous acid (HONO) chemistry is of critical importance to air quality during polluted haze events, especially in China. However, current air quality models (such as WRF-CHEM, WRF-CMAQ, Box-MCM) generally underestimate the concentration of HONO, leading to a lack of fundamental understanding of haze pollution. Here, by combining field observations during haze events in Beijing and modeling results, we developed the new parameterization scheme for heterogeneous nitrogen dioxide (NO2) reaction on aerosol surfaces with the synergistic effects of relative humidity and ammonia, which has not been considered in existing air quality models. Including NO2heterogeneous reactions into modeling significantly improves the estimation accuracy of HONO and OH levels, with the contribution reaching up to 91% and 78% during pollution episodes. The OH derived by HONO can partly explain high concentrations of particulate matter. Together, our work provides a new approach to illustrate the formation of HONO, OH, and haze with the consideration of heterogeneous NO2 → HONO chemistry.

Funder

Beijing National Laboratory for Molecular Sciences

National Natural Science Foundation of China

Youth Innovation Promotion Association of Chinese Academy of Sciences

Publisher

Springer Science and Business Media LLC

Subject

Atmospheric Science,Environmental Chemistry,Global and Planetary Change

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