Method for synthesizing prenol by composite catalyst
A composite catalyst and isopentenol technology, which is applied in organic chemistry, isomerization preparation, etc., can solve the problems of reducing product competitiveness, increasing product cost, and less application times, achieving more application times, saving energy consumption, low cost effect
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Embodiment 1
[0016] Add 200 grams of 3-methyl-3-buten-1 alcohol to a 500ml autoclave, add 0.5 grams of Raney nickel, 0.5 grams of SO 4 2- / TiO 2 Solid superacid, after nitrogen replacement, hydrogen pressure of 1 kg, temperature control 20-30 ° C, reaction for 60 minutes, filtration, gas phase detection, 130.2 grams of isopentenol, reaction 3-methyl-3-butene-1 Alcohol 137.05 grams, selectivity 95%, conversion rate 68.5%, yield 65.1%.
Embodiment 2
[0018] Add 200 grams of 3-methyl-3-buten-1 alcohol to a 500ml autoclave, add 1.5 grams of Raney nickel, 1.5 grams of SO 4 2- / ZrO 2 Solid superacid, after nitrogen replacement, hydrogen pressure of 1 kg, temperature control 20-30 ° C, reaction for 60 minutes, filtration, gas phase detection, 110.8 grams of isopentenol, reaction 3-methyl-3-butene-1 Alcohol 140.5 grams, selectivity 78.8%, transformation rate 70.25%, yield 55.4%.
Embodiment 3
[0020] Add 200 grams of 3-methyl-3-butene-1 alcohol into a 500ml autoclave, add 28 grams of Raney nickel, 2 grams of SO 4 2- / SiO 2 Solid superacid, after nitrogen replacement, hydrogen pressure of 1 kg, temperature control 20-30 ° C, reaction for 60 minutes, filtration, gas phase detection, 90.8 grams of isopentenol, reaction 3-methyl-3-butene-1 Alcohol 160.5 grams, selectivity 56.57%, conversion rate 80.25%, yield 45.4%.
[0021]
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