A kind of isobornyl acetate synthetic catalyst and the synthetic method of isobornyl acetate
A kind of technology of isobornyl acetate and synthesis method, which is applied in the field of synthesis of isobornyl acetate, can solve the problems of low catalyst usage, low selectivity of target product, large amount of waste water, etc., and achieve broadening of sources, short reaction time, The effect of improving the utilization rate
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Embodiment 1
[0026] Step 1: Mix 10 grams of mordenite with 100 grams of 20% zinc acetate aqueous solution, heat to 90°C-100°C and stir for 5h-7h;
[0027] Step 2: filter the mixed solution after stirring, and roast and activate the obtained mordenite at 550° C. to 650° C. for 3 hours to 5 hours to obtain a mordenite-supported zinc acetate catalyst;
[0028] Step 3: Add 40g of raw material oil (containing 47.2% amphene), 10g of glacial acetic acid and 1g of mordenite-supported zinc acetate catalyst into the reaction flask, and stir and react at 50°C for 6h; the reaction liquid contains 1.2% of amphene by gas chromatography. %, camphene conversion rate 97.5%, isobornyl acetate 41.7%; isobornyl acetate selectivity is 90.7%;
[0029] Step 4: The reaction solution was filtered to recover the mordenite-supported zinc acetate catalyst, and the oil phase was distilled under reduced pressure to obtain a chromatographic content of isobornyl acetate of 98.7%.
Embodiment 2
[0031] Step 1: Mix 10 grams of mordenite with 50 grams of 30% copper acetate aqueous solution, heat to 90°C-100°C and stir for 5h-7h;
[0032] Step 2: filter the mixed solution after stirring, and roast and activate the obtained mordenite at 550° C. to 650° C. for 3 hours to 5 hours to obtain a mordenite-supported copper acetate catalyst;
[0033] Step 3: Add 40g of raw oil (containing 63.8% amphene), 12g of glacial acetic acid and 0.4g of mordenite-supported copper acetate catalyst into the reaction flask, and stir and react at 65°C for 4h; the reaction liquid is detected to contain amphene by gas chromatography 1.3%, camphene conversion rate 98.0%, isobornyl acetate 56.8%; isobornyl acetate selectivity 90.9%;
[0034] Step 4: The reaction solution was filtered to recover the mordenite-supported copper acetate catalyst, and the oil phase was distilled under reduced pressure to obtain a chromatographic content of isobornyl acetate of 99.2%.
Embodiment 3
[0036] Step 1: Mix 10 grams of mordenite with 70 grams of 25% cobalt acetate aqueous solution, heat to 90°C-100°C and stir for 5h-7h;
[0037] Step 2: filter the mixed solution after stirring, and roast and activate the obtained mordenite at 550° C. to 650° C. for 3 hours to 5 hours to obtain a mordenite-supported cobalt acetate catalyst;
[0038] Step 3: Add 40g of raw oil (containing 80.3% amphene), 16g of glacial acetic acid and 0.8g of mordenite-supported cobalt acetate catalyst into the reaction flask, and stir and react at 60°C for 5h; the reaction liquid is detected to contain amphene by gas chromatography 1.4%, camphene conversion rate 98.3%, isobornyl acetate 71.9%; isobornyl acetate selectivity 91.1%;
[0039] Step 4: The reaction solution was filtered to recover the mordenite-supported cobalt acetate catalyst, and the oil phase was distilled under reduced pressure to obtain a chromatographic content of isobornyl acetate of 99.3%.
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