Platinum gallium catalyst loaded on double oxide composite carrier and its preparation method and application
A composite carrier and double oxide technology, which is applied in physical/chemical process catalysts, catalyst carriers, chemical instruments and methods, etc., can solve the problems of carbon deposition in platinum catalysts, low propylene selectivity, easy deactivation selectivity, etc. Achieve the effects of improving oxygen storage capacity, high dehydrogenation activity, and improving oxygen moving capacity
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Embodiment 1
[0030] (1) Dissolve 0.5046g of cerium nitrate hexahydrate in 3g of deionized water, and dissolve 1.8g of Al 2 o 3Soak in the above solution, ultrasonic for 30min, dry at room temperature for 12h, and dry at 80°C for 12h;
[0031] (2) Calcining the solid obtained in (1) at 600°C for 3h to obtain the composite oxide support CeO 2 -Al 2 o 3 ;
[0032] (3) Dissolve 0.36g of gallium nitrate in 3g of deionized water, and dissolve 2g of CeO 2 -Al 2 o 3 Immerse in the above solution, then add chloroplatinic acid solution with a concentration of 0.01g / mL, sonicate for 30min, dry at room temperature for 12h, and dry at 80°C for 12h;
[0033] (4) Calcinate the solid obtained in (2) at 600°C for 3h to obtain PtGaOx / CeO 2 -Al 2 o 3 , and finally at 500°C H 2 Reduction under the atmosphere for 1h, the PtxGa / yCeAl catalyst was obtained. where x and y are Ga and CeO respectively 2 In the mass content percentage in the catalyst, x is 3, and y is 10.
[0034] (5) Pt3Ga / 10CeAl 3 T...
Embodiment 2
[0048] Adopt the method of embodiment 1 to react, and its difference is only that the quality of the cerium nitrate hexahydrate of step (1) is 0.2523g, and the obtained catalyst y is 5.
Embodiment 3
[0050] Adopt the method of embodiment 1 to react, and its difference is only that the quality of the cerium nitrate hexahydrate of step (1) is 0.7570g, and the obtained catalyst y is 15.
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