Nesting Elterman Model and Spatiotemporal Linear Mixed-Effects Model to Predict the Daily Aerosol Optical Depth over the Southern Central Hebei Plain, China

Author:

Li Fuxing12,Li Mengshi13,Zheng Yingjuan4,Yang Yi13ORCID,Duan Jifu13,Wang Yang13ORCID,Fan Lihang13,Wang Zhen13,Wang Wei13ORCID

Affiliation:

1. School of Geographic Sciences, Hebei Normal University, Shijiazhuang 050024, China

2. Hebei Remote Sensing Technology Identification Innovation Center for Environmental Change, Shijiazhuang 050024, China

3. Hebei Laboratory of Environmental Evolution and Ecological Construction, Shijiazhuang 050024, China

4. Chinese Research Academy of Environmental Science, Beijing 100012, China

Abstract

Aerosol optical depth (AOD), an important indicator of atmospheric aerosol load, characterizes the impacts of aerosol on radiation balance and atmospheric turbidity. The nesting Elterman model and a spatiotemporal linear mixed-effects (ST-LME) model, which is referred to as the ST-Elterman retrieval model (ST-ERM), was employed to improve the temporal resolution of AOD prediction. This model produces daily AOD in the Southern Central Hebei Plain (SCHP) region, China. Results show that the ST-ERM can effectively capture the variability of correlations between daily AOD and meteorological variables. After being validated against the daily Multi-Angle Implementation of Atmospheric Correction (MAIAC) AOD, the correlation coefficient between daily retrieved AOD from ST-ERM and MAIAC observations in 2017 reached 0.823. The validated Nash–Sutcliffe efficiency (Ef) of daily MAIAC AOD and ST-ERM-retrieved AOD is greater than or equal to 0.50 at 72 of the 95 stations in 2017. The relative error (Er) is less than 14% at all the stations except for Shijiazhuang (17.5%), Fengfeng (17.8%), and Raoyang (30.1%) stations. The ST-ERM significantly outperforms the conventional meteorology–AOD prediction approaches, such as the revised Elterman retrieval model (R-ERM). Thus, the ST-ERM shows great potential for daily AOD estimation in study regions with missingness of data.

Funder

Youth Project of Hebei Natural Science Foundation

Science and Technology Project of Hebei Education Department

National Natural Science Foundations of China

Science Foundation of Hebei Normal University

Publisher

MDPI AG

Subject

Management, Monitoring, Policy and Law,Renewable Energy, Sustainability and the Environment,Geography, Planning and Development,Building and Construction

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