2019
DOI: 10.3390/catal9060530
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Degradation of Crystal Violet by Catalytic Wet Peroxide Oxidation (CWPO) with Mixed Mn/Cu Oxides

Abstract: The environment protection has been the starting point for the development of new technologies, which allow the control of highly toxic substances present in the effluents of various industries, whose removal is not feasible by conventional methods. In this research, mixed oxide catalysts Mn and Cu in different molar ratios were prepared from the autocombustion method and characterized by XRD, XRF, TPR-H2, and N2 adsorption–desorption isotherms. The solids were evaluated in the catalytic wet peroxide oxidation… Show more

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Cited by 16 publications
(6 citation statements)
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“…21-11052). These results are conclusive regarding the successful synthesis of mixed oxides by the self-combustion method, generating active phases that are responsible for the oxidation processes [1,35]. The catalysts containing both Ni and Fe metals had a combination of the two phases without shifting the characteristic planes.…”
Section: Characterizationsupporting
confidence: 55%
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“…21-11052). These results are conclusive regarding the successful synthesis of mixed oxides by the self-combustion method, generating active phases that are responsible for the oxidation processes [1,35]. The catalysts containing both Ni and Fe metals had a combination of the two phases without shifting the characteristic planes.…”
Section: Characterizationsupporting
confidence: 55%
“…Here, it is necessary to use the Scherrer equation, where K is the form factor with a value of 1, λ is the wavelength that is influenced in the analysis corresponding to the λ of Cu (nm), θ is the Bragg angle, β is the mean height width (FMWH), and τ is the average grain size. For mixed oxides with Fe, the FMWH of the plane in 2θ = 35.5 • was characteristic of Fe 3 O 4 and for those with Ni, the 2θ = 43.1 • corresponded to NiO [35,36].…”
Section: Characterizationmentioning
confidence: 99%
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“…Thus, in order to reduce the harm to human and nature, it is highly desirable to treat MV in the wastewater of printing and dyeing industry. Recently, various technologies, such as photocatalytic degradation, 10,11 decolorization, 12 bioremediation, 13 peroxide oxidation, 14 and adsorption, 15–17 have been principally applied to remove organic dyes, especially MV from wastewaters. Among these methods, adsorption has been proved to be an environment‐friendly, simple, cost‐effective, and convenient technique to treat the wastewater pollutants 18 …”
Section: Introductionmentioning
confidence: 99%
“…On the other hand, different innovative solutions show the current trends in the CWPO technology, mainly aimed at the development of an efficient process operated at ambient conditions, by assisting CWPO with UV light irradiation [6], solar light [7], air flow [8], or additional radical activators [9,10]; and also by operated under neutral pH with efficient production of hydroxyl radicals [11]. All these achievements, with significant impact on the operating cost of the CWPO units, were conditioned by the presence of a proper catalyst designed and tailored to provide the best performance.…”
mentioning
confidence: 99%