Immediate dehydration DMC preparation system and preparation method

A preparation system and interface technology, applied in carbon monoxide and oxygen preparation, chemical instruments and methods, organic chemistry, etc., can solve the problems of small gas-liquid phase interface area, long residence time, large power consumption, etc., to improve phase boundary transmission Mass area, increase the reaction conversion rate, reduce the effect of reaction energy consumption

Inactive Publication Date: 2021-10-15
NANJING YANCHANG REACTION TECH RES INST CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Since the sparger openings are at the millimeter level (φ5mm), the diameter of the generated bubbles is relatively large (8-15mm), the gas-liquid interface area is relatively small, and the initially distributed bubbles are easy to coalesce during the rising process, and the bubbles in the reactor The distribution is uneven, and the liquid circulation adopts the density difference circulation method, and the flow velocity is slow (<0.1m / s), which makes the gas-liquid mass transfer rate low, resulting in a macroscopic reaction rate that is seriously lower than the design expected value;
[0008] (2)O 2 The consumption is high, but the actual effective utilization rate is very low;
[0009] (3) The single-pass conversion rate of CO is about 2-8%, and the amount of CO feed is too much, so the power consumption of the fresh CO compressor and the circulating CO compressor is too large;
[0010] (4) Because the product DMC stays in the system for too long, it undergoes a hydrolysis reaction with water to generate CO 2 , while CO and O 2 Side reactions are prone to occur, and these factors greatly reduce the conversion rate of raw materials

Method used

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  • Immediate dehydration DMC preparation system and preparation method
  • Immediate dehydration DMC preparation system and preparation method
  • Immediate dehydration DMC preparation system and preparation method

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Experimental program
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Effect test

Embodiment 1

[0068] refer to Figure 1-2 , the present embodiment provides a DMC preparation system for instant dehydration, comprising: a reactor 10, a partition plate 40 is arranged in the middle of the reactor 10; the top of the partition plate 40 is the first reaction zone 30, and the bottom is the second reaction zone 20; the side wall of the first reaction zone 30 is provided with a methanol inlet 307 and a mixed gas inlet 308; the methanol inlet 307 is connected with a methanol pipeline 50, and the mixed gas inlet 308 is connected with a mixed gas pipeline 60; the side wall of the first reaction zone 30 is provided with There is a second product outlet 306 which is connected to the second reaction zone 20 for conveying the product of the first reaction zone 30 into the second reaction zone 20 .

[0069] Such as figure 2 As shown, the first micro-interface generator 301 is arranged in the first reaction zone 30, and the first micro-interface generator 301 is connected with the mixe...

Embodiment 2

[0084] Present embodiment and embodiment 1 are only different in process parameter, and concrete process parameter is as follows:

[0085]

[0086] Wherein, the reaction temperature is 110° C., and the pressure is 1.5 MPa.

[0087] It is calculated that the single pass conversion rate of methanol reaches 20.92%, and the yield of DMC reaches 18.60%. It can be seen that the temperature and pressure of the system of this embodiment are significantly lower than that of the existing process.

Embodiment 3

[0089] Present embodiment and embodiment 1 are only different in process parameter, and concrete process parameter is as follows:

[0090]

[0091] Wherein, the reaction temperature is 113° C., and the pressure is 1.8 MPa.

[0092] It is calculated that the single pass conversion rate of methanol reaches 20.97%, and the yield of DMC reaches 18.73%. It can be seen that the temperature and pressure of the system of this embodiment are significantly lower than that of the existing process.

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Abstract

The present invention provides an instant dehydration DMC preparation system and preparation method, wherein the instant dehydration DMC preparation system comprises: a reactor, and the middle of the reactor is provided with a partition plate; a first reaction zone is arranged above the partition plate, and a second reaction zone is arranged below the partition plate; a methanol inlet and a mixed gas inlet are formed in the side wall of the first reaction zone; the methanol inlet is connected with a methanol pipeline; a first micro-interface generator is arranged in the first reaction zone, and the first micro-interface generator is connected with the mixed gas inlet; the first micro-interface generator is positioned below a first liquid level in the first reaction region; a second micro-interface generator is arranged above the first micro-interface generator, and a micro-bubble outlet is formed in the position, tightly attached to the first micro-interface generator, above the first micro-interface generator; and a bottom outlet of the second micro-interface generator is connected with a micro-bubble pipeline. The preparation system disclosed by the invention is low in required reaction temperature and pressure, few in side reaction, high in methanol conversion rate and worthy of wide popularization and application.

Description

technical field [0001] The invention relates to the field of methanol carbonylation reaction preparation, in particular to an instant dehydration DMC preparation system and a preparation method. Background technique [0002] The methanol liquid-phase oxidative carbonylation method is a CH-based 3 OH, O 2 And the method for synthesizing DMC (dimethyl carbonate) with CO under catalyst action. [0003] The existing production process is generally carried out in two sets of reaction devices. Each reaction device consists of two parallel reactors and a gas-liquid separation tank. The reaction temperature is 115-120° C., and the reaction pressure is 2.2-2.5 MPaG. The normal operating liquid level of the gas-liquid separation tank is about 50%. The catalyst is a cuprous chloride-based catalyst, the particle size of the catalyst particle is 200 mesh (74 μm), it is in a quasi-homogeneous state in the slurry, and the content is 1.5%-3% (wt). [0004] The liquid phase feed of the...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B01J8/00C07C68/01C07C69/96
CPCB01J8/008C07C68/01C07C69/96
Inventor 张志炳孟为民周政王宝荣杨高东罗华勋张锋李磊杨国强田洪舟曹宇
Owner NANJING YANCHANG REACTION TECH RES INST CO LTD
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