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Modified technique for refined unit in acrylic acid production device

A production device, acrylic acid technology, applied in the separation/purification of carboxylic acid compounds, organic chemistry, chemical recovery, etc., can solve the problems that affect the long-term stable operation of the device, high processing cost, difficult operation, etc., and achieve obvious economic benefits and social benefits, saving device operating costs, and significant social benefits

Active Publication Date: 2011-01-26
中石油吉林化工工程有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Since the boiling points of water, acetic acid, and acrylic acid are relatively close, the purification of acrylic acid by conventional rectification requires a large amount of steam, and conventional rectification requires a high temperature in the tower, which intensifies the tendency of self-polymerization of acrylic acid and affects the long-term stability of the device. run
In terms of environmental protection, it is not allowed to be directly discharged as waste water. Therefore, all current processes adopt thermal incineration or catalytic incineration for treatment, but the treatment cost is expensive and the operation is difficult.

Method used

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  • Modified technique for refined unit in acrylic acid production device
  • Modified technique for refined unit in acrylic acid production device

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example 1

[0020] Example 1 Operating Cost Comparison Table

Description of drawings

[0021] figure 1 The process flow diagram is simplified for the present invention.

[0022] In the figure, there are reactant cooler E-106, gas-liquid separation tank D-106, absorption tower T-110, light component fractionation tower T-210, acetic acid tower T-220, stripping tower T-240, cooler E -211, condenser E-212, reflux tank D-211, second reactor R-102.

[0023] The present invention will be further described in detail below in conjunction with the accompanying drawings and specific embodiments.

[0024] The acrylic acid gas generated by the second acrylic acid reactor R-102 reaches 67°C after heat exchange between the reactant cooler E-106 and the circulating wastewater of the waste water stripping tower, and the gas enters the absorption tower after being separated by the gas-liquid separation tank D-106 T-110 cools and absorbs, the lower liquid directly enters the light component fraction...

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Abstract

The invention discloses an improved process for a refining unit in an acrylic acid production device. Acrylic acid gas generated by a second acrylic acid reactor is cooled in a reactant cooler and is absorbed in an absorption tower; liquid on the lower part enters a light component fractionating tower; azeotropic distillation is carried out to water, acetic acid and acrylic acid; toluene is used as azeotrope former. The improved process is characterized in that: in the reactant cooler, circulating wastewater on the bottom of a stripping tower is adopted for cooling inside a shell side; the temperature of a tube side reactant outlet of the reactant cooler is 65-70 DEG C; a gas-liquid separation tank is provided additionally; an absorption tower bottom cooler is canceled; the overhead reflux ratio of the light component fractionating tower is 6.5-7.0; a wastewater stripping tower is provided. The improved process has the advantages that: for a 140, 000 ton / year acrylic acid device, 12, 000, 000 yuan of operation cost, 6, 400, 000 tons of circulating water, 120, 000 tons of steam and 26, 000 tons of desalted water can be saved each year; the improved process can reduce the discharge amount of acrylic acid waste gas and wastewater, is adapted to the industrial policy of China about saving energy and reducing emission, and has remarkable economic benefit as well as obvious social benefit.

Description

technical field [0001] The invention relates to an improved process for a refining unit in an acrylic acid production device. Background technique [0002] Two-step oxygenation of propylene is used to produce acrylic acid. After the reaction gas is cooled by the cooling gas, it needs to be absorbed with water in the acrylic acid absorption tower to form a crude acrylic acid solution containing 59% (wt) acrylic acid. Therefore, a large amount of water needs to be consumed. In the refining process of acrylic acid, through three towers, it is necessary to separate the organic matter and water in the crude acrylic acid solution to obtain acrylic acid products containing more than 99.50% (wt), and a large amount of waste water containing organic matter (0.8t waste water / 1t) is produced in the refining process acrylic acid). [0003] In the existing acrylic acid production technology, take the 140,000 tons / year acrylic acid plant as an example. The acrylic acid gas generated by ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C07C57/07C07C51/42
CPCY02P20/582
Inventor 巩传志刘利刘学线张木兰李欣平杨莉纪忠斌郭勇
Owner 中石油吉林化工工程有限公司
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