Method for synthesizing cis-2,6-dimethyl piperazine
A dimethylpiperazine, cis technology, applied in the field of synthesizing cis-2, can solve the problems of increasing production cost and industrial separation difficulty, unclear cis product selectivity, increasing the load of solvent recovery, etc., and achieves the goal Good product selectivity, easy operation, and the effect of improving reactivity
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Embodiment 1
[0021] In the presence of a catalyst, react with diisopropanolamine and ammonia, proceed as follows:
[0022] (1) in the stainless steel reactor of 5 liters, add content respectively and be 98% diisopropanolamine 1200.0 grams, 290.0 grams framework nickel catalysts (active component is Ni, auxiliary agent is Mo, Al to form multiple catalyst, its Weight composition 80%Ni-10%Mo-10%Al), 920.0 grams of ammoniacal liquor of 25%, 400.0 grams of deionized water are used as reaction capacity agent; After putting on the reactor lid, check the airtightness of reactor; Wherein: ammonia The weight ratio with diisopropanolamine is 19.16: 100, and the catalyst and diisopropanolamine dosage ratio is 24.16: 100;
[0023] (2) Then start the stirrer, and start to slowly heat up to 180°C, the pressure reaches 2.6Mpa, and react for 5 hours;
[0024] (3) Cool the mixture after the reaction to room temperature in the reaction kettle, take out the mixture and separate the catalyst by suction filtra...
Embodiment 2
[0033] The difference from Example 1 is that the reaction temperature is 165°C, and the crystallization temperature is 5°C, wherein: the amount of toluene, an organic compound, is 1.0 times the theoretical yield of product quality;
[0034] As a result, 663.5 grams of crystals with a purity of 99.50% cis-2,6-dimethylpiperazine were obtained; the filtered filtrates were combined and weighed to obtain 1694.5 grams, and cis-2,6-dimethylpiperazine was analyzed The content of 2,6-dimethylpiperazine is 7.16%, the content of trans-2,6-dimethylpiperazine is 8.89%, and the content of diisopropanolamine is 3.19%.
[0035] The results of crystallization and filtrate were combined and calculated to obtain:
[0036] The conversion rate of diisopropanolamine: 95.40%;
[0037] Synthetic selectivity of cis-2,6-dimethylpiperazine: 81.25%;
[0038] The molar yield of cis-2,6-dimethylpiperazine: 77.51%;
[0039] Synthetic selectivity of trans-2,6-dimethylpiperazine: 15.66%;
[0040] Molar yi...
Embodiment 3
[0042] The difference from Example 1 is:
[0043] The catalyst consumption is 120.0 grams, and the catalyst and diisopropanolamine consumption ratio is 10.0: 100;
[0044] As a result, 526.0 grams of crystals with a purity of 99.65% cis-2,6-dimethylpiperazine were obtained; the filtered filtrates were combined and weighed to obtain 1733.8 grams, and cis-2,6-dimethylpiperazine was analyzed content of 7.04%, the content of trans-2,6-dimethylpiperazine is 7.96%, and the content of diisopropanolamine is 6.85%.
[0045] The results of crystallization and filtrate were combined and calculated to obtain:
[0046] The conversion rate of diisopropanolamine: 89.90%;
[0047] Synthetic selectivity of cis-2,6-dimethylpiperazine: 71.29%;
[0048] The molar yield of cis-2,6-dimethylpiperazine: 64.09%;
[0049] Synthetic selectivity of trans-2,6-dimethylpiperazine: 15.23%;
[0050]Molar yield of trans-2,6-dimethylpiperazine: 13.69%.
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