In this research, a novel magnetic sonocatalyst nanocomposite, CoFeO@Cr-MIL-101/Y zeolite, has been successfully fabricated employing a simple hydrothermal method. The as-prepared catalyst was thoroughly identified using Fourier transform infrared spectroscopy (FTIR), X-ray diffraction (XRD), field emission scanning electron microscopy (FESEM), energy dispersive X-ray spectroscopy (EDS), EDS elemental dot-mapping, transmission electron microscopy (TEM), atomic force microscopy (AFM), vibrating sample magnetometer (VSM), and nitrogen Brunauer-Emmett-Teller (N-BET) analyses. The procured CoFeO@Cr-MIL-101/Y nanocomposite was then assessed for the decomposition of three types of organic dyes namely methylene blue (MB), rhodamine B (RhB) and methyl orange (MO) from water solution using ultrasound irradiation and subsequently monitored UV-Vis absorption technique. The sonodecomposition reactions of organic dyes were accomplished in the presence of the HO solution as a green oxidizing agent. Furthermore, the influence of various experimental independent factors such as irradiation time, process type, initial dye concentration, catalyst dosage, HO concentration, scavenger type, and catalyst regeneration on the decomposition of MB, RhB and MO were surveyed. Additionally, a first order kinetic model was applied to investigate the sonodecomposition reactions of dye contaminants. The rate constant () and half-life ( ) data were gained as 0.0675 min and 10.2666 min, respectively, for the decomposition of MB in the US/HO/CoFeO@Cr-MIL-101/Y system. Besides, evaluating the attained results, the distinctive performance of ˙OH as the radical scavenger originating from HO throughout the sonodecomposition process is vividly approved.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9050219PMC
http://dx.doi.org/10.1039/d0ra00877jDOI Listing

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