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Cai, Qinqing; Lee, Brandon Chuan Yee; Ong, Say Leong; Hu, Jiangyong. Application of a Multiobjective Artificial Neural Network (ANN) in Industrial Reverse Osmosis Concentrate Treatment with a Fluidized Bed Fenton Process: Performance Prediction and Process Optimization. ACS ES&T Water. 9 April 2021, 1 (4): 847–858. S2CID 234110033. doi:10.1021/acsestwater.0c00192.
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Hayyan, M.; Hashim, M. A.; Al Nashef, I. M. Superoxide ion: Generation and chemical implications. Chemical Reviews. 2016, 116 (5): 3029–3085. PMID 26875845. doi:10.1021/acs.chemrev.5b00407.
Cai, Q. Q.; Lee, B. C. Y.; Ong, S. L.; Hu, J. Y. Fluidized-bed Fenton technologies for recalcitrant industrial wastewater treatment–Recent advances, challenges and perspective. Water Research. 15 February 2021, 190: 116692. PMID 33279748. S2CID 227523802. doi:10.1016/j.watres.2020.116692.
Brömme, H. J.; Mörke, W.; Peschke, E. Transformation of barbituric acid into alloxan by hydroxyl radicals: interaction with melatonin and with other hydroxyl radical scavengers. Journal of Pineal Research. November 2002, 33 (4): 239–247. PMID 12390507. S2CID 30242100. doi:10.1034/j.1600-079X.2002.02936.x.
Cai, Q. Q.; Lee, B. C. Y.; Ong, S. L.; Hu, J. Y. Fluidized-bed Fenton technologies for recalcitrant industrial wastewater treatment–Recent advances, challenges and perspective. Water Research. 15 February 2021, 190: 116692. PMID 33279748. S2CID 227523802. doi:10.1016/j.watres.2020.116692.
Cai, Qinqing; Lee, Brandon Chuan Yee; Ong, Say Leong; Hu, Jiangyong. Application of a Multiobjective Artificial Neural Network (ANN) in Industrial Reverse Osmosis Concentrate Treatment with a Fluidized Bed Fenton Process: Performance Prediction and Process Optimization. ACS ES&T Water. 9 April 2021, 1 (4): 847–858. S2CID 234110033. doi:10.1021/acsestwater.0c00192.
Brömme, H. J.; Mörke, W.; Peschke, E. Transformation of barbituric acid into alloxan by hydroxyl radicals: interaction with melatonin and with other hydroxyl radical scavengers. Journal of Pineal Research. November 2002, 33 (4): 239–247. PMID 12390507. S2CID 30242100. doi:10.1034/j.1600-079X.2002.02936.x.