Active-carbon-loaded manganese dioxide and titanium dioxide ozone catalyst for advanced treatment and preparation method
An advanced treatment, manganese dioxide technology, applied in the field of water pollution treatment, can solve the problems of shortening the reaction time, difficulty in recycling, poor degradation effect, etc., and achieve the effect of solving difficulty in recycling, improving catalytic efficiency, and good COD removal effect
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Embodiment 1
[0021] Weigh a certain amount of KMnO 4 and MnSO 4 Dissolve in deionized water respectively, until completely dissolved, MnSO 4 The solution was added dropwise to the KMnO 4 In the solution, mix and stir, add TiO according to the Mn / Ti molar ratio of 1:1 2 powder, stir evenly, transfer it to a polytetrafluoroethylene reactor, react at 180°C for 12 hours, then wash, filter and dry the product to obtain MnO 2 -TiO 2 Composite particles;
[0022] Take a certain amount of MnO 2 -TiO 2 Composite particles, dispersed in deionized water, added activated carbon according to the loading rate of 5%, impregnated in MnO 2 -TiO 2 After soaking in the suspension for 12 hours, place it in a muffle furnace at 350°C for 4 hours to obtain activated carbon-supported MnO 2 -TiO 2 Ozone catalyst particles, the prepared supported ozone catalyst has a COD degradation rate of 70.7% for pesticide wastewater.
Embodiment 2
[0024] Weigh a certain amount of KMnO 4 and MnSO 4 Dissolve in deionized water respectively, until completely dissolved, MnSO 4 The solution was added dropwise to the KMnO 4 In the solution, mix and stir, add TiO according to the Mn / Ti molar ratio of 2:1 2 powder, stir evenly, transfer it to a polytetrafluoroethylene reactor, react at 180°C for 12 hours, then wash, filter and dry the product to obtain MnO 2 -TiO 2 Composite particles;
[0025] Take a certain amount of MnO 2 -TiO 2 Composite particles, dispersed in deionized water, added activated carbon according to the loading rate of 10%, impregnated in MnO 2 -TiO 2 After soaking in the suspension for 12 hours, place it in a muffle furnace at 550°C for 4 hours to obtain activated carbon-supported MnO 2 -TiO 2 Ozone catalyst particles, the prepared supported ozone catalyst has a COD degradation rate of 74.5% for pesticide wastewater.
Embodiment 3
[0027] Weigh a certain amount of KMnO 4 and MnSO 4 Dissolve in deionized water respectively, until completely dissolved, MnSO 4 The solution was added dropwise to the KMnO 4 In the solution, mix and stir, add TiO according to the Mn / Ti molar ratio of 1:1 2 powder, stir evenly, transfer it to a polytetrafluoroethylene reactor, react at 180°C for 12 hours, then wash, filter and dry the product to obtain MnO 2 -TiO 2 Composite particles;
[0028] Take a certain amount of MnO 2 -TiO 2 Composite particles, dispersed in deionized water, added activated carbon according to the loading rate of 10%, impregnated in MnO 2 -TiO 2 After soaking in the suspension for 6 hours, place it in a muffle furnace at 350°C for 4 hours after impregnation to obtain activated carbon-supported MnO 2 -TiO 2 Ozone catalyst particles, the prepared supported ozone catalyst has a COD degradation rate of 54.3% for pesticide wastewater.
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