Bimetal Pt-Bi catalyst preparation method and method for selective catalytic oxidation of glycerinated DHA (docosahexaenoic acid)
A catalytic oxidation and catalyst technology, which is applied in the preparation of metal/metal oxide/metal hydroxide catalysts, organic compounds, catalyst regeneration/reactivation, etc. Activation, leaching and other problems, to achieve the effect of high DHA selectivity, simple preparation method, and efficient catalytic activity
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Embodiment 1
[0055] (1) Catalytic oxidation of glycerol to 1,3-dihydroxyacetone
[0056] In the four-necked flask of 150mL, add aqueous glycerol (50 g, 10wt.%, Bi (m Bi / m Pt = 0.2)) and 100 mgPt catalyst to form an in-situ bimetallic Pt-Bi catalyst, the temperature was raised to 60°C at a stirring rate of 600 rpm, and then oxygen (150 mL / min) was introduced to start the reaction; after 6h, the reaction was stopped. The mixture of the reaction solution and the catalyst in the reactor must be weighed before and after the reaction, and then the liquid-solid phase mixture is filtered; the reaction liquid is detected and analyzed by liquid chromatography.
[0057] (2) Regeneration of bimetallic Pt-Bi catalyst
[0058] The bimetallic Pt-Bi catalyst reacted in (1) was filtered, washed with water and alcohol, dried in vacuum, ground, put into a porcelain boat, placed in a horizontal high-temperature tube furnace for calcination, and the calcination condition was a temperature of 200 °C, Ar f...
Embodiment 2
[0060] The difference between this example and Example 1 is that the calcination temperature in (2) is 300° C.; the others are the same as Example 1; the obtained catalyst is marked as Pt-Bi(300).
Embodiment 3
[0062] The Pt-Bi(300) prepared in Example 2 was recycled once, that is, steps (1) and (2) were repeated, and the obtained catalyst was marked as Pt-Bi(300-2).
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