Preparation method of solid base catalyst and reaction method for catalytically synthesizing ionone series fragrance intermediates

A solid base catalyst, ionone technology, applied in catalyst activation/preparation, preparation of organic compounds, preparation of carbon-based compounds, etc., can solve the difficulty of catalyst reuse, uneven distribution of active components, and troublesome alkali neutralization operations, etc. problems, to achieve the effect of increasing the load and impregnation rate, the load is stable and controllable, and easy to separate

Active Publication Date: 2018-08-21
广州百花香料股份有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The main disadvantages of using these liquid caustic soda catalysts are the difficulty of catalyst reuse, large equipment corrosion, serious environmental pollution and other problems.
In order to overcome the above shortcomings, domestic and foreign scholars have been exploring the improvement of the synthesis process of pseudoionone and its homologues. The current general idea is to replace the liquid alkali catalyst with a solid alkali catalyst, and use more such as hydrotalcite and MgO and Loaded alkali catalysts such as KNO3, KOH, K2CO3, and KF are immobilized on the Al2O3 carrier, which not only can realize a high-activity, high-selectivity catalytic reaction process, the catalyst is easy to recycle, and solves a series of environmental pollution problems. However, existing methods The prepared solid base catalyst was simply impregnated and did not use ultrasonic waves to assist in the production, so there were problems such as uneven distribution of active components on the load, and the content was low and uncontrollable, resulting in poor reproducibility of catalyst preparation.
[0004] In addition, when the existing liquid alkali catalyst is used to catalyze the synthesis of pseudoionone and its homologues, the operation of subsequent neutralization alkali is cumbersome, the cost is high, and the environment is polluted

Method used

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Examples

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Effect test

preparation example Construction

[0013] The preparation method of the solid base catalyst of the present invention is characterized in that it comprises the following steps: placing the carrier in a flask, adding KF aqueous solution, stirring in an ultrasonic oscillator at 40-80°C for 4-9h, and then stirring at 89-99°C Stir until viscous, dry, (that is, use the method of heating and evaporating the solvent to dryness), and then roast at 400-600°C for 4-7h, and after cooling, get KF-loaded solid on the carrier used to catalyze the synthesis of ionone-based fragrance intermediates An alkali catalyst, wherein the carrier is one of alumina, magnesia or calcium oxide, and the mass of KF·2H2O in the KF aqueous solution is 0.5-3 times the mass of the carrier.

[0014] The reaction method of using the solid base catalyst of the present invention to catalyze the synthesis of an ionone series perfume intermediate is characterized in that it comprises the following steps:

[0015] (1) Add acetone or methyl ethyl ketone ...

Embodiment 1

[0021] The preparation method of the solid base catalyst of the present invention comprises the following steps: take 10.00g of Al2O3 carrier in a flask, dissolve 5.81g of KF·2H2O in 40g of water, mix and add in the flask, and place in an ultrasonic oscillator at 60°C Stir for 5h, and then stir at 90°C until viscous; dry the precipitate at 80°C for 12h, take it out, roast it in a muffle furnace at 400°C for 5h, and cool it naturally in a desiccator to obtain 14.21g of supported solid base catalyst KF / Al2O3 1 (catalyst for short).

[0022] The method that above-mentioned catalyzer is used for catalytic synthesis pseudoionone reaction is as follows:

[0023] 1) Add 40.89g of acetone and 5.42g of catalyst KF / Al2O3 1 into the three-necked flask, reflux and stir, raise the reaction temperature to 50°C, add 10.35g of citral dropwise from the constant pressure dropping funnel, and control the dropping rate to 1s / 1d , After the dropwise addition, the reaction was continued for 5h. A...

Embodiment 2

[0027] The solid base catalyst of the present invention comprises the steps of: weighing 10.07g of MgO carrier in a flask, dissolving 11.65g of KF 2H2O in 40g of water, mixing and adding to the flask, stirring in an ultrasonic oscillator at 70°C for 6h , and then stirred at 93°C until viscous; the precipitate was dried at 80°C for 12h and taken out, roasted in a muffle furnace at 500°C for 6h, and cooled naturally in a desiccator to obtain 18.13g of supported solid base catalyst KF / MgO 1 ( referred to as catalyst).

[0028] The method that above-mentioned catalyzer is used for catalytic synthesis methyl pseudoionone reaction is as follows:

[0029] 1) Add 43.83g butanone and 5.39g catalyst KF / MgO 1 into a three-necked flask. Reflux and stir, rise to the reaction temperature of 70°C, add 20.49g of citral dropwise from the constant pressure dropping funnel, control the drop rate to 1s / 1d, and continue the reaction for 6h after the dropwise addition. After the reaction, the con...

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PUM

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Abstract

The invention discloses a preparation method of a solid alkali catalyst and a reaction method for the catalytic synthesis of an ionone fragrance intermediate by the solid alkali catalyst. The preparation method of the solid alkali catalyst comprises the following steps: putting a carrier in a flask, adding KF (Potassium Fluoride) aqueous solution, stirring for 4-9h at the temperature of 40-80DEG C in an ultrasonic oscillator, then, stirring at the temperature of 89-99DEG C until a mixture is viscous, drying the mixture, roasting for 4-7h at the temperature of 400-600DEG C, and cooling to obtain the solid alkali catalyst which loads KF on the carrier, wherein the carrier is one of aluminium oxide or magnesium oxide or calcium oxide. Since an ultrasonic-assisted excessive dipping method is adopted to prepare the solid alkali catalyst, the loading capability and the dipping rate of active components are effectively improved. In addition, when the solid alkali catalyst prepared with the preparation method is used for carrying out the catalytic synthesis of the ionone fragrance intermediate, a subsequent alkali neutralization operation carried out when liquid alkali catalyst is used is avoided, cost is lowered, sewage is reduced, catalytic reaction has a high yield, the catalyst and a product can be easily separated, and the catalyst can be repeatedly used.

Description

technical field [0001] The invention relates to a preparation method of a solid base catalyst for catalyzing and synthesizing an intermediate of ionone-series fragrance, and a reaction method for catalyzing the synthesis of an intermediate of ionone-series fragrance by using the catalyst. Background technique [0002] At present, pseudoionone and methyl pseudoionone are important intermediates for the synthesis of ionone, which are widely used in the industries of spices, medicine, and food additives. Ionone is a kind of precious spice with woody aroma. It is one of the largest and most important spices in the perfume industry. At the same time, the synthesized β-ionone is an important intermediate for the synthesis of vitamin A and β-carotene. [0003] The catalysts commonly used in the traditional synthesis process are liquid alkali catalysts, such as NaOH aqueous solution and Ba(OH)2 saturated aqueous solution, as well as alcohol solution systems such as EtONa / EtOH, NaOH / ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B01J27/12B01J27/138C07C49/203B01J37/02B01J37/08C07C45/74
CPCY02P20/584
Inventor 钟炼军姚菓张建斌
Owner 广州百花香料股份有限公司
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