A kind of high-purity triallyl ammonium chloride and preparation method thereof
A technology of triallyl ammonium chloride and triallyl amine, applied in the field of high-purity triallyl ammonium chloride and its preparation, can solve the problems of violent reaction, high energy consumption, affecting product quality, etc. Guaranteed reaction safety and low energy consumption
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Embodiment 1
[0035] The present embodiment provides a kind of preparation method of high-purity triallyl ammonium chloride, described method is carried out according to the following steps:
[0036] S01: Add triallylamine and non-polar organic solvent (white oil) with a mass ratio of 1:1.4 into the tube reactor, turn on the frozen brine to cool down, and keep the system temperature below 20°C;
[0037] S02: Prepare hydrogen chloride gas with a molar ratio of 1:1.5 to triallylamine, slowly pass the prepared hydrogen chloride gas into the tubular reactor, control the temperature of the reactor below 20°C, react for 24 hours, no reaction The tail gas is absorbed by alkaline desiccant;
[0038] S03: After the reaction is completed, the product is subjected to liquid-solid separation, and the obtained solid is vacuum-dried at 110° C. for 10 hours to obtain a high-purity triallyl ammonium chloride product.
[0039] After testing, the concentration of the high-purity triallyl ammonium chloride p...
Embodiment 2
[0041] The present embodiment provides a kind of preparation method of high-purity triallyl ammonium chloride, described method is carried out according to the following steps:
[0042] S01: Add triallylamine and non-polar organic solvent (naphtha) in a mass ratio of 1:10 to the shell-and-tube reactor, turn on the circulating water to cool down, and keep the system temperature below 20°C;
[0043] S02: Prepare hydrogen chloride gas with a molar ratio of 1:1.3 to triallylamine, slowly pass the prepared hydrogen chloride gas into the tubular reactor, control the temperature of the reactor below 20°C, react for 48 hours, no reaction The tail gas is absorbed by alkaline desiccant;
[0044] S03: After the reaction is completed, the product is subjected to liquid-solid separation, and the obtained solid is vacuum-dried at 100° C. for 11 hours to obtain a high-purity triallyl ammonium chloride product.
[0045] After testing, the concentration of the high-purity triallyl ammonium ch...
Embodiment 3
[0047] The present embodiment provides a kind of preparation method of high-purity triallyl ammonium chloride, described method is carried out according to the following steps:
[0048] S01: Add triallylamine and non-polar organic solvent (white oil) with a mass ratio of 1:20 to the shell and tube reactor, turn on the frozen brine to cool down, and keep the system temperature below 20°C;
[0049] S02: Prepare hydrogen chloride gas with a molar ratio of 1:1.4 to triallylamine, slowly pass the prepared hydrogen chloride gas into the tubular reactor, control the temperature of the reactor below 20°C, react for 36 hours, no reaction The tail gas is absorbed by alkaline desiccant;
[0050] S03: After the reaction is completed, the product is subjected to liquid-solid separation, and the obtained solid is vacuum-dried at 90° C. for 12 hours to obtain a high-purity triallyl ammonium chloride product.
[0051] After testing, the concentration of the high-purity triallyl ammonium chlo...
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