Propylene hydration reaction system for preparing isopropanol

A technology for hydration of propylene and isopropanol, which is applied in the preparation of hydroxyl compounds, the preparation of organic compounds, the separation/purification of hydroxyl compounds, etc., to achieve the effects of improving reaction efficiency, yield and effect.

Active Publication Date: 2022-06-17
JIANGSU XINHUA CHEM +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] The purpose of the present invention is: to overcome the deficiencies of the prior art, to provide a system for preparing isopropanol by propylene hydration reaction, after the reaction in the reactor, the mixed gas is first condensed through a condenser, so that the mixed gas that does not participate in the reaction is condensed Propylene is separated, and then the pure water in the mixed liquid produced after condensation is separated through the dehydration tower, and finally the isopropanol in the mixture is purified and collected through the purification tower; The structural setting of the interlayer facilitates the mixing of the micron-sized propylene bubbles generated by the micro-interface generator and the pure water in the reactor to form an emulsion that first passes through the annular catalyst interlayer to produce isopropanol, and then passes through the central catalyst interlayer. When the layer is formed, the reaction produces isopropanol, thereby improving the effect of the propylene hydration reaction and increasing the yield of isopropanol; the pure water inlet branch is connected to the reactor tank, so that the gas-liquid in the reactor tank can The mixture can play the role of stirring and mixing under the action of the liquid inlet branch pipe, which improves the mixing effect of the gas-liquid mixture; through the structure of the pure water inlet branch pipe, the direct pre-mixed The gas-liquid mixture further improves the reaction efficiency of the hydration reaction of propylene gas in the reactor tank; the reactor tank forms a multi-stage mixing zone through multiple catalyst compartments, so that the propylene gas in the reactor tank has more opportunities for hydration reaction, which further improves the effect of propylene hydration reaction and increases the yield of isopropanol; the gas-liquid mixture entered by the pure water inlet branch pipe can mix the micron-sized propylene bubbles remaining in the annular catalyst compartment and it with water The emulsion is formed and taken away and mixed with the gas-liquid mixture in the mixing zone to react with the central catalyst compartment. At the same time, it is also convenient for the micro-interface generator to continue to generate more micron-sized propylene bubbles and the emulsion formed by mixing with water. React with the ring-shaped catalyst interlayer; through the purification of the multi-layer horizontal membrane structure in the tower body, the multi-layer mixed liquid can be distilled at the same time, which improves the distillation effect; through the function of the liquid guide chamber and the drip chamber, it minimizes the The influence of the liquid on the mixed liquid on the horizontal membrane when the liquid flows downward ensures the distillation effect of the mixed liquid; through the action of the liquid tank, the tank can withstand the impact of the mixed liquid flowing downward, thereby avoiding the long-term impact of the horizontal membrane The impact force affects the service life or even damages; through the action of the drain pipe extending into the body of the purification tower and the liquid inlet B in the body of the purification tower, the purified mixed liquid can affect the purification tower when it enters the body of the purification tower. The influence of the mixed liquid at the bottom of the tower body is minimal, and the mixed liquid can form a certain circulation while maintaining the height difference, further improving the distillation effect

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  • Propylene hydration reaction system for preparing isopropanol
  • Propylene hydration reaction system for preparing isopropanol
  • Propylene hydration reaction system for preparing isopropanol

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Embodiment Construction

[0043] combine Figure 1~Figure 4 It can be seen that the system for preparing isopropanol by hydration of propylene includes a reactor 1, and the top of the reactor 1 is communicated with the feed port A of the gas-liquid separator 2 through the pipeline A9, and the liquid outlet of the gas-liquid separator 2 is connected. The port A is communicated with the feed port B of the dehydration tower 3 through the pipeline B10, and the gas outlet A of the gas-liquid separator 2 is communicated with the propylene gas supply pipe 7 of the reactor 1 through the pipeline C11, and the gas outlet B of the dehydration tower 3 passes through The pipeline D12 is condensed by the condenser (not shown in the description) and then communicated with the feed port C of the purification tower 4, and the liquid outlet B of the dehydration tower 3 is connected to the pure water supply pipe 8 of the reactor 1 through the pipeline E13. Connected, the air outlet C of the purification tower 4 is commun...

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Abstract

The invention discloses a system for preparing isopropanol through propylene hydration reaction. The reactor communicates with a gas-liquid separator through a pipeline A, the gas-liquid separator communicates with a dehydration tower through a pipeline B, and the gas-liquid separator communicates with a propylene supply through a pipeline C. The air pipe is connected, the dehydration tower is connected with the purification tower through the pipeline D, the dehydration tower is connected with the pure water supply pipe through the pipeline E, the purification tower is connected with the heat exchanger through the pipeline F, and the pipeline G of the heat exchanger is connected with the pipeline D through the pipeline H, The purification tower communicates with the extraction tank through a pipeline I, the extraction tank is connected with a pipeline J, the extraction tank is connected with a pipeline K, and the pipeline K is connected with the purification tower, and each pipeline is provided with its own valve. It can be seen from the above structure that in the system for preparing isopropanol by propylene hydration reaction of the present invention, the mixed gas after the reaction is condensed by a condenser, the propylene in the mixed gas is separated, and the pure water in the condensed mixture is separated by a dehydration tower, and finally The isopropanol in the mixture is purified and collected through a purification tower.

Description

technical field [0001] The invention relates to the technical field of preparing isopropanol by hydration reaction of propylene, in particular to a system for preparing isopropanol by hydration reaction of propylene. Background technique [0002] Isopropanol is an organic compound, the molecular formula is C3H8O, is the isomer of n-propanol, alias dimethyl methanol, 2-propanol, also known as IPA in the industry. It is a colorless and transparent liquid, flammable, and has an odor like a mixture of ethanol and acetone. Soluble in water, also soluble in most organic solvents such as alcohol, ether, benzene, chloroform, etc. Isopropanol is an important chemical product and raw material. [0003] There are generally three preparation methods of isopropanol: indirect hydration, direct hydration and acetone hydrogenation. Among these three methods, the direct hydration method is relatively the most environmentally friendly, and the technological process is also the simplest. P...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B01J8/04B01D3/32B01D3/14C07C31/10C07C29/74C07C29/80
CPCB01J8/0469B01J8/0492B01J8/0496B01D3/32B01D3/14C07C29/74C07C29/80B01J2208/00176B01J2208/00548B01J2208/00902C07C31/10
Inventor 张绍志陈金玉周永美赵建标申林王卫明吴建仲舒晨王许宗杨梵
Owner JIANGSU XINHUA CHEM
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