A kind of method and its catalyst of rosin hydrogenation preparation hydrogenated rosin
A technology for rosin hydrogenation and hydrogenation of rosin, applied in physical/chemical process catalysts, chemical instruments and methods, chemical/physical processes, etc., can solve the problems of low catalytic activity, high catalyst cost, and poor recycling effect, and achieve catalyst The effect of simple separation, environmental friendliness and low cost
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Embodiment 1
[0022] Example 1 Catalyst Ni / CxNy@mSiO 2 preparation of
[0023] S 1 , Amphiphilic nano-mesoporous material CxNy@mSiO 2 The preparation of 0.16g CTAB (cetyltrimethylammonium bromide) and 5mL EDA (ethylenediamine) were weighed respectively and dispersed in the mixed solution of ethanol and water of 50mL (ethanol: water=3:7 ), then add 0.12g resorcinol, ultrasonically disperse for 30min, add dropwise 0.24mL formaldehyde, stir for 2h, then add 50mg CTAB, dropwise add 0.8mLTEOS (tetraethyl orthosilicate), continue to stir for 12h, then let stand After 48h, centrifugal separation, and finally high-temperature carbonization under argon atmosphere to obtain the amphiphilic nano-mesoporous material CxNy@mSiO 2 ;
[0024] S 2, Amphiphilic nanocatalyst Ni / CxNy@mSiO 2 Preparation, weigh 200mg CxNy@mSiO 2 Add it into a three-necked flask, ultrasonically disperse in ethanol solution at room temperature, and then add 50mg NiCl 2 , continue to disperse for 10min, then weigh 30mgNaBH ...
Embodiment 2
[0025] Embodiment 2 rosin hydrogenation prepares hydrogenated rosin
[0026] Weigh 1g of rosin and add it to a stainless steel mechanically stirred tank, then add 4mL of water and 6mL of 200# solvent oil, and weigh 40mg of the amphiphilic catalyst Ni / CxNy@mSiO 2 Mix evenly, replace the gas in the kettle with 1MPa hydrogen for 4 times, then flush into 4MPa hydrogen, and react with mechanical stirring at 140°C for 4 hours. After the reaction, let stand for a period of time to separate the catalyst from the product, collect the upper product phase and use chromatography Quantitative analysis shows that the conversion rate of rosin reaches 94.78%, the selectivity of tetrahydroabietic acid in the product is 61.80%, and the selectivity of dihydroarginic acid is 35.12%, which meet the requirements of super-grade rosin.
Embodiment 3
[0027] Embodiment 3 rosin hydrogenation prepares hydrogenated rosin
[0028] Weigh 1g of rosin and add it to a stainless steel mechanically stirred tank, then add 4mL of water and 6mL of 200# solvent oil, and weigh 40mg of the amphiphilic catalyst Ni / CxNy@mSiO 2 Mix evenly, replace the gas in the kettle with 1MPa hydrogen for 4 times, then pour in 2MPa hydrogen, and react with mechanical stirring at 120°C for 2 hours. Quantitative analysis by chromatography shows that the conversion rate of rosin reaches 92.09%, the selectivity of tetrahydroabietic acid in the product is 61.17%, and the selectivity of dihydroarginic acid is 29.09%, which meets the requirements of super-grade rosin.
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