Data Processing and Quality Control of the CW193 Sun Photometer Network and Evaluation of Satellite Aerosol Products
Miao Song, Xiuqing Hu, Jibiao Zhu, Yupeng Wang, Li Li, Yidan Si, Tianlei Yu, Lin Chen, Na Xu, Xiangang Zhao, Peng ZhangReliable ground-based aerosol observations are essential for evaluating satellite aerosol products across heterogeneous surfaces and aerosol regimes. This study established a six-site CW193 sun photometer network in China with quality-controlled observations from January 2023 to May 2026 and assessed CW193 AOD consistency using collocated CE318 observations at Fujin and Lijiang. A consistent processing chain including Langley calibration, preprocessing, triplet consistency screening, 440 nm daily-stability screening, temporal smoothness tests, and statistical outlier removal was applied, and the sensitivity to QC threshold perturbations was examined. The quality-controlled observations were then used to evaluate the FY-3F/MERSI-III daily AOD product and three MODIS products (MCD19A2, MOD04_L2, and MYD04_L2). Across 440–1020 nm, CW193 and CE318 showed strong agreement (R = 0.979–0.999; slopes = 0.989–1.019; RMSE = 0.007–0.024), with no evident long-term drift during the available comparison periods. At Lijiang, Hebi, and Qingdao, FY-3F/MERSI-III yielded R values of 0.220, 0.664, and 0.702 and RMSE values of 0.128, 0.157, and 0.183, respectively. MODIS performance varied strongly among sites and products; MCD19A2 yielded the lowest RMSE at Dunhuang, Kashgar, and Lijiang, whereas MYD04_L2 yielded the lowest RMSE at Hebi and Qingdao. The small MOD04_L2 and MYD04_L2 matchup samples at Fujin precluded a robust ranking. All three MODIS products substantially underestimated AOD at Kashgar. Regional CW193 observations further distinguished high-AOD, low-AE conditions at Kashgar from low AOD, high-AE conditions at Lijiang. QC threshold perturbations affected data retention more than the principal aerosol and satellite evaluation statistics. These results support CW193 as a regional ground-based reference for satellite AOD evaluation while emphasizing the importance of site conditions, collocation strategy, sampling, and the empirical nature of AOD–AE optical regimes.