Technical method for associated producing carbonic allyl ester, methyl carbonate, and propylene glycol
A technology of propylene carbonate and dimethyl carbonate, which is applied in the process field of joint production of propylene carbonate, dimethyl carbonate and propylene glycol, can solve the problems of incapability of comprehensive utilization and waste of excess heat, save intermediate storage equipment, improve Separation accuracy and yield, the effect of simplifying the production process
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Embodiment 1
[0014] Embodiment 1, propylene oxide and potassium iodide catalyst are according to mass ratio 4: 1, are sent into reaction preheater after being metered by metering pump and are heated to reaction required temperature 180 ℃ and enter the top of the first reactor, and carbon dioxide is sent to the top of first reactor with delivery pump It is sent to the carbon dioxide buffer tank, and then sent to the first reactor, and the excess carbon dioxide in the reaction system is controlled to balance the pressure in the reactor, and the excess CO 2 React with propylene oxide catalyst at 180°C and 6.5Mpa to generate crude propylene carbonate and release a lot of heat. The reaction residence time is 2 hours. It enters the high-temperature and high-pressure circulation pump from the bottom of the reactor, removes the excess heat generated during the reaction, and sends it to the reaction preheater in the form of circulating liquid to exchange heat with propylene oxide and catalyst. The ...
Embodiment 2
[0018] Embodiment 2, propylene oxide and potassium iodide catalyst are according to mass ratio 3: 1, are sent into reaction preheater after being metered by metering pump and are heated to reaction required temperature 185 ℃ and enter the top of the first reactor, and carbon dioxide is sent to the top of first reactor with delivery pump It is sent to the carbon dioxide buffer tank, and then sent to the first reactor, and the excess carbon dioxide in the reaction system is controlled to balance the pressure in the reactor, and the excess CO 2 React with propylene oxide catalyst at 185°C and 5.5Mpa to generate crude propylene carbonate and release a lot of heat. The reaction residence time is 1.5 hours. The crude product propylene carbonate is concentrated and evaporated under reduced pressure, and the obtained evaporative cooling liquid is the qualified propylene carbonate refined product with a content of 99.5% (by weight).
[0019] Propylene carbonate, methanol, and potassium...
Embodiment 3
[0021] Embodiment 3, propylene oxide and potassium iodide catalyst are according to mass ratio 2: 1, are sent into reaction preheater after being metered by metering pump and are heated to reaction required temperature 190 ℃ and enter the top of the first reactor, and carbon dioxide is sent to the top of first reactor with delivery pump It is sent to the carbon dioxide buffer tank, and then sent to the first reactor, and the excess carbon dioxide in the reaction system is controlled to balance the pressure in the reactor, and the excess CO 2 React with propylene oxide catalyst at 190°C and 6.0Mpa to generate crude propylene carbonate and release a lot of heat. The reaction residence time is 1.5 hours. The crude product propylene carbonate is concentrated and evaporated under reduced pressure, and the obtained evaporative cooling liquid is qualified propylene carbonate refined product, and the content is 99.0% (by weight).
[0022] Propylene carbonate, methanol, and potassium m...
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