A novel machine learning model to predict the photo-degradation performance of different photocatalysts on a variety of water contaminants

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Abstract

This paper describes an innovative machine learning (ML) model to predict the performance of different metal oxide photocatalysts on a wide range of contaminants. The molecular structures of metal oxide photocatalysts are encoded with a crystal graph convolution neural network (CGCNN). The structure of organic compounds is encoded via digital molecular fingerprints (MF). The encoded features of the photocatalysts and contaminants are input to an artificial neural network (ANN), named as CGCNN-MF-ANN model. The CGCNN-MF-ANN model has achieved a very good prediction of the photocatalytic degradation rate constants by different photocatalysts over a wide range of organic contaminants. The effects of the data training strategy on the ML model performance are compared. The effects of different factors on photocatalytic degradation performance are further evaluated by feature importance analyses. Examples are illustrated on the use of this novel ML model for optimal photocatalyst selection and for assessing other types of photocatalysts for different environmental applications.

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Jiang, Z., Hu, J., Tong, M., Samia, A. C., Zhang, H., & Yu, X. (2021). A novel machine learning model to predict the photo-degradation performance of different photocatalysts on a variety of water contaminants. Catalysts, 11(9). https://doi.org/10.3390/catal11091107

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