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Process for preparing aminomethane

A manufacturing method and methylamine technology, applied in separation methods, organic chemical methods, chemical instruments and methods, etc., can solve problems such as large energy consumption of methylamine, and achieve the effects of economical manufacturing and reduced energy consumption

Inactive Publication Date: 2003-08-06
MITSUBISHI RAYON CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] In this way, since trimethylamine forms a complex azeotropic system with ammonia, monomethylamine and dimethylamine, its separation requires very complicated distillation operations and large-scale devices, resulting in very large industrial energy consumption in the methylamine manufacturing process. question

Method used

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Embodiment 1

[0018] Formaldehyde and ammonia are subjected to a gas-phase contact reaction in the presence of a zeolite catalyst, and the resulting reaction mixture is separated from unreacted ammonia in an ammonia separation tower, and a distillate of 2170 kg / h is obtained from the bottom of the tower. The bottom distillate of the ammonia separation tower is supplied to the trimethylamine separation tower, and water is injected at a rate of 1140 kg / hour, and the separation operation is carried out under the conditions of a tower top / bottom distillation ratio of 0.07 and a reflux ratio of 15 to remove Trimethylamine, a distillate of 3100 kg / h was obtained from the bottom of the column. This distillate is supplied to the dehydration tower, and the separation operation is carried out under the conditions of the top / bottom distillation ratio of 1.56 and the reflux ratio of 1.3, and the water is separated at the top of the tower to obtain 1200 kg / hour of ammonia containing traces. The mixture ...

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PUM

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Abstract

A mixture of methylamine and methanol is subjected to a vapor phase catalytic reaction with ammonia in the presence of a zeolite catalyst. The thus-obtained reaction mixture is, after separating unreacted ammonia in an ammonia separation column, trimethylamine in a trimethylamine separation column and water in a dewatering column, fed to a monomethylamine / dimethylamine separation column to recover monomethylamine from the top of the column and dimethylamine from the bottom of the column while condensing distillate gas from the top of the column in a condenser.

Description

technical field [0001] The present invention relates to the method for producing methylamine by the vapor phase contact reaction of formaldehyde and ammonia. More specifically, the present invention relates to an economical manufacturing process by reducing energy consumption during distillation in the methylamine manufacturing process. Methylamines are important chemical intermediates as raw materials for various solvents, pharmaceuticals, rubber chemicals, and surfactants. Background technique [0002] Methylamine is generally produced by reacting formaldehyde and ammonia in the gas phase at high temperature (about 400°C) by dehydration and amination of alumina, silicon-alumina, etc. in the presence of a solid acid catalyst. Typically, a mixture of dimethylamine, monomethylamine, and trimethylamine is formed in this reaction. In addition, since the required amount of these methylamines is very small except for dimethylamine, after separating the dimethylamine of the reac...

Claims

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Application Information

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IPC IPC(8): B01D5/00C07B61/00C07C209/24C07C209/86C07C211/04
Inventor 横山勉伊藤幸男船冈隆博
Owner MITSUBISHI RAYON CO LTD
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