A preparation device and production process of sodium lauroyl glycinate
A sodium lauroylglycinate and a preparation device technology, which is applied in the preparation of carboxylic acid amide, the preparation of organic compounds, the separation/purification of carboxylic acid amide, etc., can solve the problem of increasing the production cost and time of sodium lauroylglycinate and reducing the cost of sodium lauroylglycinate Problems such as the purity of the finished product and the quality of the sodium lauroyl glycinate product are affected, so as to ensure the smooth operation of production, reduce the occurrence of side reactions, and improve the quality of the finished product.
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Embodiment 1
[0038] Such as figure 2 Shown, embodiment 1, a kind of preparation process method of sodium lauroyl glycinate, method comprises the following steps:
[0039] S1. First put sodium glycinate and deionized water into the condensation reactor, then turn on the radial agitator in the condensation reactor to stir and dissolve. Fill with cooling liquid to control the reaction temperature at about 10°C;
[0040] S2. After stirring evenly, turn on the axial stirrer of the condensation reaction kettle to stir, add lauroyl chloride dropwise from the lauroyl chloride high position tank to the condensation reaction kettle, the molar ratio of lauroyl chloride to sodium glycinate is 1:1.05, and simultaneously from The sodium hydroxide solvent tank continuously pumps 30% sodium hydroxide into the feeding port at the bottom of the condensation reaction kettle to control the pH value of the system at 9.5-10.5; when the addition of lauroyl chloride is completed, continue to keep warm for 2.5 h...
Embodiment 2
[0046] Example 2, the preparation process and steps of this example are basically the same as Example 1, the difference is that S1, S2,
[0047] S1. First put sodium glycinate and deionized water into the condensation reactor, then turn on the radial agitator in the condensation reactor to stir and dissolve. Fill with freezing liquid to control the reaction temperature at about 5°C;
[0048] S2. After stirring evenly, turn on the axial stirrer of the condensation reaction kettle to stir, add lauroyl chloride dropwise from the lauroyl chloride high position tank to the condensation reaction kettle, the molar ratio of lauroyl chloride to sodium glycinate is 1:1.05, and simultaneously from The sodium hydroxide solvent tank continuously pumps 30% sodium hydroxide into the feeding port at the bottom of the condensation reaction kettle to control the pH value of the system at 9.5 to 10.5; when the lauroyl chloride is added dropwise, continue to keep warm for 3 hours to obtain a mixe...
Embodiment 3
[0049] Example 3, the preparation process and steps of this example are basically the same as Example 1, the difference is that S1, S2,
[0050] S1. First put sodium glycinate and deionized water into the condensation reactor, then turn on the radial agitator in the condensation reactor to stir and dissolve. Fill with freezing liquid to control the reaction temperature at about 15°C;
[0051] S2. After stirring evenly, turn on the axial stirrer of the condensation reaction kettle to stir, add lauroyl chloride dropwise from the lauroyl chloride high position tank to the condensation reaction kettle, the molar ratio of lauroyl chloride to sodium glycinate is 1:1.02, and at the same time from The sodium hydroxide solvent tank continuously pumps 30% sodium hydroxide into the feeding port at the bottom of the condensation reaction kettle to control the pH value of the system at 9.5-10.5; when the lauroyl chloride is added dropwise, continue to keep warm for 2.0 hours to obtain a mi...
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