More Accurate Quantification of Direct Aerosol Radiative Effects Using Vertical Profiles of Single-Scattering Albedo Derived From Tethered Balloon Observations

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Abstract

Aerosol single-scattering albedo (SSA) is the most critical factor for the accurately calculating of aerosol radiative effects, however, the observation of vertical profiles of SSA is difficult to realize. Current assessments of aerosol radiative effects remain uncertain because of the lack of long-term, high-resolution vertical profiles of SSA observations. High-resolution SSA vertical profiles were observed in a semi-arid region of Northwest China during winter using a tethered balloon. The observed SSA vertical profiles were used to calculate the aerosol direct radiative forcing and radiative heating rates. Significant differences in the calculated radiative forcing were found (e.g., a 48.3% relative difference for the heating effect in the atmosphere at 14:00) between the observed SSA profiles and the constant assumption with SSA = 0.90. Diurnal variations in the vertical distribution of SSA decisively influenced direct radiative forcing of aerosols. Furthermore, high-resolution vertical profiles of absorbing aerosols and meteorological parameters provide robust observational evidence of the heating effect of an elevated absorbing aerosol layer. This study provides a more accurate calculation of aerosol radiative forcing using observed aerosol SSA profiles.

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APA

Guan, X., Tian, P., Wang, W., Zhang, M., Song, X., Zhang, Z., & Zhang, L. (2024). More Accurate Quantification of Direct Aerosol Radiative Effects Using Vertical Profiles of Single-Scattering Albedo Derived From Tethered Balloon Observations. Journal of Geophysical Research: Atmospheres, 129(14). https://doi.org/10.1029/2023JD040605

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