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A method of co-producing dimethyl sulfoxide and acetone

A technology of dimethyl sulfoxide and dimethyl sulfide, which is applied in chemical instruments and methods, preparation of carbon-based compounds, preparation of organic compounds, etc., can solve the problem of low conversion rate of dimethyl sulfide, environmental pollution, and reduction of The effective treatment capacity of the device and other issues have been achieved to achieve high dimethyl sulfide conversion rate, high dimethyl sulfoxide selectivity, and environmental protection effects

Active Publication Date: 2016-03-30
CHINA PETROLEUM & CHEM CORP +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] The disadvantages of the nitric acid oxidation method are that the reaction is not easy to control, the equipment is severely corroded, and the environment is polluted.
Ozone oxidation method has the problem of low conversion rate of dimethyl sulfide
Anodizing is not suitable for large-scale implementation
Nitrogen dioxide oxidation law has the problem of environmental pollution
But, as the most commonly used oxidant in the peroxide oxidation method, hydrogen peroxide is usually provided in the form of hydrogen peroxide, and its commercial concentration is generally between 20-50% by weight, so a large amount of water will inevitably be introduced in the reaction system, reducing The effective processing capacity of the device
In the actual operation process, hydrogen peroxide (hydrogen peroxide) is generally used and produced on the spot, so the production equipment using hydrogen peroxide (hydrogen peroxide) as the oxidant is generally equipped with a hydrogen peroxide (hydrogen peroxide) production unit, which increases the construction cost of the device and running costs
In addition, hydrogen peroxide may decompose during the reaction process, thus reducing the effective utilization rate of hydrogen peroxide and further increasing the operating cost of the device

Method used

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  • A method of co-producing dimethyl sulfoxide and acetone

Examples

Experimental program
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Effect test

Embodiment 1

[0065] In the tank reactor, under an oxygen atmosphere (an atmosphere formed by oxygen with a purity of 99%), dimethyl sulfide and isopropanol are contacted with the original powder of titanium silicon molecular sieve TS-1 as a catalyst, wherein , the molar ratio of dimethyl sulfide to isopropanol is 1:4, the weight ratio of dimethyl sulfide to catalyst is 20:1, the temperature is 90°C, the pressure is 2.5MPa (gauge pressure), the oxygen partial pressure is 1.5MPa. After reacting for 2 hours, the resulting mixture was filtered, and the resulting liquid mixture was collected and analyzed by gas chromatography, thereby obtaining the conversion rate of dimethyl sulfide, the conversion rate of isopropanol, the selectivity of dimethyl sulfoxide and the selectivity of acetone , and the results are listed in Table 1.

Embodiment 2

[0067] Dimethyl sulfide was oxidized by the same method as in Example 1, except that a hollow titanium-silicon molecular sieve of equal mass was used instead of titanium-silicon molecular sieve TS-1, and the temperature was 60°C. The experimental results are listed in Table 1.

Embodiment 3

[0069] Dimethyl sulfide was oxidized by the same method as in Example 1, except that the reaction temperature was 120°C. The experimental results are listed in Table 1.

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Abstract

A method of co-producing dimethyl sulfoxide and acetone is disclosed. The method includes bringing dimethyl sulfide and isopropanol into contact with a titanium silicalite molecular sieve in the presence of oxygen to obtain a mixture containing dimethyl sulfoxide and acetone. By the method, a high dimethyl sulfide conversion ratio and high dimethyl sulfoxide selectivity can be achieved and the acetone can be produced as a by-product. Raw materials used in the method are environmental friendly, and environment pollutants produced by the method is less, so that the method is beneficial to environment protection. The method can be free of solvents, the raw materials can be directly used without the need of preparing into solutions, and effective throughput of a device is not reduced. The method is simple and convenient in process, easy to operate and suitable for large-scale application.

Description

technical field [0001] The present invention relates to a method for simultaneously producing dimethyl sulfoxide and acetone. Background technique [0002] Dimethyl sulfoxide (DMSO) is a sulfur-containing organic compound. It is a colorless and transparent liquid at room temperature. It has the characteristics of high polarity, high hygroscopicity, flammability, and high boiling point aprotic. Dimethyl sulfoxide is soluble in water, ethanol, acetone, ether and chloroform, is a highly polar inert solvent, widely used as a solvent and reaction reagent, for example, as a processing solvent and spinning solvent in acrylonitrile polymerization, as Polyurethane synthesis solvent and spinning solvent, as a synthesis solvent of polyamide, fluorochloroaniline, polyimide and polysulfone. Moreover, dimethyl sulfoxide has high selective extraction ability and can be used as an extraction solvent for the separation of alkanes and aromatic hydrocarbons. For example, dimethyl sulfoxide ca...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C07C317/04C07C315/02C07C49/08C07C45/39
Inventor 史春风林民朱斌
Owner CHINA PETROLEUM & CHEM CORP
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