Method for treating 4 chloro pyridine in solvent
A treatment method, the technology of tetrachloropyridine, applied in the direction of organic chemistry, etc., can solve the problems of high cost, long time, and time-consuming alkali hydrolysis in the separation and purification process, and achieve the effect of simple and reliable process
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Embodiment 1
[0017] Containing 2% (accounting for the percentage of the total mass of the oil phase, the same below) o-dichlorobenzene of tetrachloropyridine and 40% sodium hydroxide solution and polyethylene glycol with a molecular weight of 600 are added in the same reaction kettle, and the oil phase and The volume ratio of the water phase is controlled at 1:1, the catalyst consumption is 1% of the total weight of the oil phase and the water phase, react at 80°C, and stir with 100 rev / min, follow the reaction process with gas chromatography to determine the end point.
Embodiment 2
[0019] O-dichlorobenzene containing 5% tetrachloropyridine, 20% sodium hydroxide solution and polyethylene glycol with a molecular weight of 200 are added to the same reaction kettle, the volume ratio of the oil phase and the water phase is controlled at 1:5, and the amount of catalyst 2% of the total weight of the oil phase and the water phase, reacted at 120° C., and stirred at 200 rpm, followed the reaction process with gas chromatography to determine the end point.
Embodiment 3
[0021] Containing nitrobenzene of 1% tetrachloropyridine and 10% sodium hydroxide solution and polyethylene glycol with a molecular weight of 800 are added in the same reaction kettle, the oil phase and water phase volume ratio are controlled at 1: 0.5, and the catalyst consumption is 0.3% of the total weight of the oil phase and the water phase were reacted at 40° C. and stirred at 40 rpm, and the reaction process was followed by gas chromatography to determine the end point.
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