Exhaust gas treatment process for n-butyl isocyanate intermediate
A technology of n-butyl isocyanate and tail gas treatment, which is applied in the direction of air quality improvement, amino compound preparation, organic compound preparation, etc., can solve air pollution and other problems, achieve the effects of reducing side reactions, improving reaction efficiency, and increasing ratio
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Embodiment 1
[0023] Fill the primary reactor with ammonia first, and at the same time keep the temperature in the primary reactor at 100°C for 1-30 minutes, and keep the temperature in the primary reactor at 120°C for 31-60 minutes; Introduce n-butanol vapor at 118°C into the reactor, and add catalyst cobalt oxide into the primary reactor, keep stirring, and at the same time feed ammonia into the primary reactor; raise the temperature of the primary reactor To 195 ° C, and the reaction time is 3 hours, under the catalysis of the catalyst, the reactant reacts to improve the reaction rate, while reducing the generation of di- and tri-butylamine, thus increasing the ratio of n-butylamine, side reactions Further reduction, improved reaction efficiency;
[0024] Then feed nitrogen into the first-stage reactor for a flushing, and transfer the first-stage flushing gas to the second-stage reactor, and cool the temperature in the second-stage reactor to 130°C to separate dibutylamine ;
[0025] T...
Embodiment 2
[0030] Fill the primary reactor with ammonia first, and at the same time keep the temperature in the primary reactor at 95°C for 1-30 minutes, and keep the temperature in the primary reactor at 124°C for 31-60 minutes; Introduce n-butanol vapor at 121°C into the reaction kettle, and add catalyst cobalt oxide into the first-level reaction kettle, keep stirring, and at the same time, continuously feed ammonia into the first-level reaction kettle; raise the temperature of the first-level reaction kettle To 190 ° C, and the reaction time is 4 hours, under the catalysis of the catalyst, the reactant reacts to improve the reaction rate, and at the same time reduces the formation of di- and tri-butylamine, thus increasing the ratio of n-butylamine, side reactions Further reduction, improved reaction efficiency;
[0031] Then, nitrogen gas is injected into the first-stage reaction kettle to carry out a flushing, and the first-time flushing gas is transferred to the second-stage reacti...
Embodiment 3
[0037] Fill the primary reactor with ammonia first, and at the same time keep the temperature in the primary reactor at 90°C for 1-30 minutes, and keep the temperature in the primary reactor at 126°C for 31-60 minutes; Introduce n-butanol vapor at 123°C into the reactor, and add catalyst cobalt oxide into the primary reactor, keep stirring, and at the same time feed ammonia into the primary reactor; raise the temperature of the primary reactor To 185 ° C, and the reaction time is 5 hours, under the catalysis of the catalyst, the reactant reacts to improve the reaction rate, and at the same time reduces the generation of di- and tri-butylamine, thus increasing the ratio of n-butylamine, side reactions Further reduction, improved reaction efficiency;
[0038] Then, nitrogen gas is injected into the first-stage reaction kettle to carry out a flushing, and the first-time flushing gas is transferred to the second-stage reaction kettle, and the temperature in the second-stage reacti...
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