Microreactor modeling for green photocatalytic degradation of water contaminants
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Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s11696-024-03543-x.pdf
Reference33 articles.
1. Alkaabi M et al (2022) Design of a microfluidic photocatalytic reactor for removal of volatile organic components: process simulation and techno-economic assessment. ACS Omega 7(10):8306–8313
2. Anastopoulos I et al (2020) Removal of caffeine, nicotine and amoxicillin from (waste) waters by various adsorbents: a review. J Environ Manag 261:110236
3. Baetens D, Schoofs K, Somers N, Denys S (2023) A brief review on Multiphysics modelling of the various physical and chemical phenomena occurring in active photocatalytic oxidation reactors. Curr Opin Green Sustain Chem 40:100764
4. Castedo A, Mendoza E, Angurell I, Llorca J (2016) Silicone microreactors for the photocatalytic generation of hydrogen. Catal Today 273:106–111
5. Castedo A, Uriz I, Soler L, Gandía LM, Llorca J (2017) Kinetic analysis and CFD simulations of the photocatalytic production of hydrogen in silicone microreactors from water-ethanol mixtures. Appl Catal B Environ 203:210–217
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