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Catalyst for regenerating anthraquinone degradation product, preparing method of catalyst and method for regenerating anthraquinone degradation product

A catalyst and degradation product technology, applied in the preparation of organic compounds, physical/chemical process catalysts, quinone preparation, etc., can solve problems such as reducing the regeneration efficiency of clay on degradation products

Active Publication Date: 2019-08-09
ZHEJIANG HENGYI PETROCHEMICAL RES INST CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] The purpose of the present invention is to overcome the problem that o-methylcyclohexyl acetate that exists in the prior art can reduce the regeneration efficiency of clay to degradation products, provide a catalyst for regenerating anthraquinone degradation products, a preparation method thereof and a method for regenerating anthraquinone degradation products method, the catalyst can effectively improve the regeneration efficiency of anthraquinone degradation products in the hydrogen peroxide working solution containing o-methylcyclohexyl acetate, and the effective anthraquinone in the regenerated hydrogen peroxide working solution

Method used

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  • Catalyst for regenerating anthraquinone degradation product, preparing method of catalyst and method for regenerating anthraquinone degradation product
  • Catalyst for regenerating anthraquinone degradation product, preparing method of catalyst and method for regenerating anthraquinone degradation product

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preparation example Construction

[0012] The first aspect of the present invention provides a method for preparing a catalyst for regenerating anthraquinone degradation products, comprising: first impregnating alumina with a solution containing alkaline earth metal salts and silicon sources to obtain the first solid product, and then performing the second step in sequence - drying and first calcining; alternatively, a second impregnation of alumina with a solution containing a silicon source followed by drying to obtain a first product, said first product being subjected to a third impregnation with a solution containing an alkaline earth metal salt, A second solid product is obtained, followed by a second drying and a second calcination in sequence.

[0013] According to the method of the present invention, the consumption of alkaline earth metal salt, silicon source and alumina makes in the prepared catalyst, relative to 100 parts by weight of alumina, the content of alkaline earth metal oxide is 0.5-40 parts...

Embodiment 1

[0038] 50.5g calcium nitrate tetrahydrate and 13.3g silica sol (SiO 2 content of 30% by weight) and water to prepare 120mL of impregnating liquid, which was added dropwise to 200.0g of alumina under stirring conditions, impregnated at 35°C for 4h, and then rotary evaporated at 60°C for 2h to remove excess The obtained solid was dried at 100°C for 8 hours; then raised to 120°C at a heating rate of 5°C / min, kept for 1 hour, then raised to 500°C at a heating rate of 4°C / min, kept for 5 hours for roasting, and obtained The catalyst for regenerating anthraquinone degradation products is denoted as C1.

[0039] The catalyst contains alumina, calcium dioxide (alkaline earth metal oxide) and silicon dioxide, relative to 100 parts by weight of alumina, the content of calcium dioxide is 6 parts by weight, and the content of silicon dioxide is 2 parts by weight.

[0040] The total pore volume of the catalyst is 0.42mL / g; the specific surface area is 224m 2 / g.

Embodiment 2

[0042] 75.8g calcium nitrate tetrahydrate and 13.3g silica sol (SiO 2 content of 30% by weight) and water to prepare 130mL of impregnating liquid, which was added dropwise to 200.0g of alumina under stirring conditions, impregnated at 25°C for 6h, and then rotary evaporated at 50°C for 3h to remove excess The obtained solid was dried at 90°C for 12 hours; then raised to 110°C at a heating rate of 2°C / min, kept for 2 hours, then raised to 400°C at a heating rate of 2°C / min, kept for 6 hours for roasting, and obtained The catalyst for regeneration of anthraquinone degradation products is denoted as C2.

[0043] The catalyst contains alumina, calcium dioxide (alkaline earth metal oxide) and silicon dioxide, relative to 100 parts by weight of alumina, the content of calcium dioxide is 9 parts by weight, and the content of silicon dioxide is 2 parts by weight.

[0044] The total pore volume of the catalyst is 0.39mL / g; the specific surface area is 202m 2 / g.

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Abstract

The invention relates to the field of regenerated anthraquinone degradation products, and discloses a catalyst for regenerating an anthraquinone degradation product, a preparing method of the catalystand a method for regenerating the anthraquinone degradation product. The preparing method of the catalyst includes the steps of conducting primary impregnating on aluminum oxide through a solution containing alkaline-earth metal salt and a silicon source to obtain a first solid product and sequentially conducting primary drying and primary calcinating or includes the steps of conducting secondaryimpregnating on aluminum oxide through a solution containing a silicon source, conducting drying to obtain a first product, conducting tertiary impregnating on the first product through a solution containing alkaline-earth metal salt to obtain a second solid product, and sequentially conducting secondary drying and secondary calcinating. The prepared catalyst can effectively improve the regeneration effect on the anthraquinone degradation product in a working solution containing o-methyl cyclohexyl acetate when applied to the hydrogen peroxide working solution containing o-methyl cyclohexyl acetate, the adding amount of effective anthraquinone in the regenerated working solution is remarkably increased, and therefore the production efficiency can be easily improved.

Description

technical field [0001] The invention relates to the field of regenerated anthraquinone degradation products, in particular to a catalyst for regenerating anthraquinone degradation products, a preparation method thereof and a method for regenerating anthraquinone degradation products. Background technique [0002] The method for industrial large-scale production of hydrogen peroxide is the anthraquinone method, which uses non-polar heavy aromatics as a solvent for dissolving anthraquinone, and polar trioctyl phosphate or o-methylcyclohexyl acetate as a solvent for dissolving hydrogen anthraquinone. These two types of solvents together with anthraquinone as a circulating hydrogenation working carrier constitute a working fluid, and hydrogen peroxide is produced through processes such as hydrogenation, oxidation, extraction, purification and post-treatment. Affected by many factors, during the long-term recycling of anthraquinone molecules, various side reactions will occur to ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B01J21/14B01J23/02B01J35/02B01J35/10C07C46/00C07C50/16C07C50/18B01J35/00
CPCB01J23/002B01J23/02C07C46/00B01J2523/00B01J35/40B01J35/633B01J35/615B01J2523/22B01J2523/31B01J2523/41C07C50/16C07C50/18Y02P20/584
Inventor 梁希慧程义孔振飞朱朝莹王韩徐锦龙王松林
Owner ZHEJIANG HENGYI PETROCHEMICAL RES INST CO LTD