Synthesis technology of halogen-free high-poly type phosphate flame retardant
A synthesis process, phosphate ester technology, applied in the field of polymer synthesis process, can solve the problems of low flame retardant efficiency, complicated preparation steps, and inability to large-scale industrial production of flame retardants, and achieve heat and ultraviolet stability, reaction The process is convenient and the flame retardant effect is good
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Embodiment 1
[0009] 1) Put 1 part of phosphorus oxychloride, 1.8 parts of ammonia water, 0.5 parts of phosphorus pentoxide, 1.0 parts of pentaerythritol, and 1.8 parts of melamine in a reaction kettle, raise the temperature to 60 ° C within half an hour, pressurize to 0.7 MPa, and continue to heat up Temperature was maintained at 115°C for 5 hours, the obtained product was cooled to room temperature, washed with dichloromethane three times, and vacuum-dried at room temperature to constant weight to obtain an intermediate.
[0010] 2) Put the intermediate obtained in step 1), 1 part of diammonium hydrogen phosphate, 3.5 parts of polyvinyl alcohol, 0.7 parts of urea, and 3.8 parts of 201 type polyether polyol into the reaction kettle, raise the temperature to 55 ° C, and add 0.2 parts Initiator, pressurize to 0.7MPa, continue to heat up to 105°C and keep it warm for 2h, after the reaction is completed, cool with water, filter, wash the product with distilled water until there are no chloride ...
Embodiment 2
[0012] 1) Put 1 part of phosphorus oxychloride, 1.35 parts of ammonia water, 1.25 parts of phosphorus pentoxide, 2 parts of pentaerythritol, and 1.2 parts of melamine in a reaction kettle, heat up to 85°C in half an hour, pressurize to 0.4MPa, and continue to heat up to 145°C and heat preservation for 6.5h. After the reaction, the obtained product was cooled to room temperature, washed with dichloromethane three times, and vacuum-dried at room temperature to constant weight to obtain an intermediate.
[0013] 2) Put the intermediate obtained in step 1), 1.75 parts of diammonium hydrogen phosphate, 2.5 parts of polyvinyl alcohol, 1.7 parts of urea, and 2.35 parts of 201 type polyether polyol in a reaction kettle, raise the temperature to 80 °C, and add 0.35 parts of initiator part, pressurize to 0.4MPa, continue to heat up to 115°C and keep it warm for 3h, after the reaction is completed, cool with water, filter, wash with distilled water until there are no chloride ions, and va...
Embodiment 3
[0015] 1) Put 1 part of phosphorus oxychloride, 0.9 parts of ammonia water, 2.0 parts of phosphorus pentoxide, 3.0 parts of pentaerythritol, and 0.6 parts of melamine in a reaction kettle, raise the temperature to 75 ° C within half an hour, pressurize to 0.6 MPa, and continue to heat up Temperature was maintained at 130°C for 8 hours, the resulting product was cooled to room temperature, washed three times with dichloromethane, and vacuum-dried at room temperature to constant weight to obtain an intermediate.
[0016] 2) Put the intermediate obtained in step 1), 2.5 parts of diammonium hydrogen phosphate, 0.5 parts of polyvinyl alcohol, 2.6 parts of urea, and 0.9 parts of 201-type polyether polyol in a reaction kettle, raise the temperature to 68°C, and add 0.5 parts of initiator Parts, pressurized to 0.5MPa, continue to heat up to 125°C and keep it warm for 1h, after the reaction is completed, cool with water, filter, wash with distilled water until there are no chloride ions...
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