Photocatalytic performance of electrospun silk fibroin/zno mats to remove pesticide residues fromwater under natural sunlight

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Abstract

We have evaluated the efficiency of silk fibroin (SF) coated with ZnO nanoparticles in the photocatalytic disappearance of one acaricide (etoxazole) and three fungicides (difenoconazole, myclobutanil and penconazole) in water exposed to sunlight irradiation. Electrospun SF/ZnO mats were successfully synthesized by electrospinning technique and characterized by XRD, FE-SEM, XPS, XDS, FTIR, and BET. The influence of catalyst loading on the degradation kinetics of the different pesticides was examined in order to gain knowledge of maximum degradation effciency. A significant increment in degradation rates was observed with the addition of ZnO. SF mats with 25 mg of ZnO were finally selected since no significant differences (p < 0.05) were detected when the loading was enlarged from 25 to 50 mg for the majority of the compounds. In the experimental conditions, the half-lives ranged from 33 min to 93 min for etoxazole and myclobutanil, respectively. The comparison of SF materials coated with similar amount of TiO2 and ZnO showed that the later was slightly more effcient to remove pesticide residues. Hence, the use of electrospun SF/ZnO nanostructures would provide an environmentally friendly approach with photocatalytic activity to be applied in the reclamation of water polluted by pesticides.

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Garrido, I., Aznar-Cervantes, S., Aliste, M., Yáñez-Gascón, M. J., Vela, N., Cenis, J. L., … Fenoll, J. (2020). Photocatalytic performance of electrospun silk fibroin/zno mats to remove pesticide residues fromwater under natural sunlight. Catalysts, 10(1). https://doi.org/10.3390/catal10010110

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