Process for synthesizing carbonic ethenyl (allyl) ester from carbon dioxide and epoxy ethane (propane)
A technology of carbon dioxide and ethylene oxide, applied in the direction of carbon dioxide or inorganic carbonate preparation, chemical instruments and methods, molecular sieve catalysts, etc., can solve the problems of separation catalyst, catalyst loss, increased cost, etc., and achieve simple reaction process and high preparation method Simple and economical effect
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Embodiment 1
[0017] Add 20 g of clover-shaped β-type molecular sieve into 200 g of 40% potassium iodide solution, soak for 30 hours, filter, and dry for 30 hours; the drying temperature is 150° C. to obtain a solid catalyst.
[0018] Add 420g of ethylene carbonate and 40mL of ethylene oxide to a 1L high-pressure reactor; 17.7g of β-type molecular sieve catalyst, react at 140°C and 5.25MPa for 2 hours, cool the reaction system to 40°C, and analyze the product. The content of ethylene oxide is 2.40%, the content of ethylene carbonate is 92.56%, and the conversion rate of ethylene oxide is 95.45%; the selectivity is 91.95%.
Embodiment 2
[0020] Utilize the catalyzer among the embodiment 1, then add the ethylene oxide of 420g ethylene carbonate, 40mL in the reactor; Reaction condition is identical with embodiment 1, product analysis, ethylene oxide content is 1.97%, ethylene carbonate The content is 94.14%, and the conversion rate of ethylene oxide is 96.22%; the selectivity is 93.95%.
Embodiment 3
[0022] Utilize the catalyzer among the embodiment 1, add the ethylene oxide of the ethylene carbonate of 420g, 40mL in the reactor again; Reaction condition is identical with embodiment 1, product analysis, ethylene oxide content 3.31%, ethylene carbonate content The conversion rate of ethylene oxide was 92.47%, and the conversion rate of ethylene oxide was 93.77%; the selectivity was 92.87%.
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