Preparation method and application of calcium-magnesium double active center catalyst

A dual-activity, catalyst technology, applied in catalyst activation/preparation, chemical instruments and methods, physical/chemical process catalysts, etc., can solve problems such as the decrease of fructose selectivity, increase contact sites, reduce natural deposition, and highly dispersed sexual effect

Active Publication Date: 2019-10-25
GUANGXI ACAD OF SCI
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

MgO is another cheap and efficient alkaline catalyst, which can realize the isomerization of glucose to fructose under low temperature conditions. By changing the morphology and pore structure of MgO, the amount of alkali can be adjusted. After reacting in 90°C aqueous solution for 45 minutes, glucose Conversion rate and fructose selectivity are 44.1% and 75.8% respectively, a small amount of CaO impurity that exists in natural MgO can increase the alkali amount of catalyst and can effectively improve the conversion rate of glucose, but fructose selectivity then declines to some extent (Asimina A Marianou, Chrysoula M Michailof, Dimitrios K Ipsakis, StamatiaA Karakoulia, Konstantinos G Kalogiannis, Haris Yiannoulakis, Konstantinos STriantafyllidis, A A Lappas. Isomerization of glucose into fructose overnatural and synthetic MgO catalysts[J].ACS Sustainable198ineeringry,6&Eng –16470.)

Method used

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  • Preparation method and application of calcium-magnesium double active center catalyst
  • Preparation method and application of calcium-magnesium double active center catalyst
  • Preparation method and application of calcium-magnesium double active center catalyst

Examples

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Effect test

Embodiment 1

[0038] A preparation method of a calcium-magnesium double active center catalyst, comprising the following steps:

[0039] (1) Put 5g of shrimp shells, 50g of hydrogen peroxide and 100g of deionized water in a glass beaker, heat it to 100°C for 10 minutes, then cool it down to 30°C naturally, add 0.8g of non-limiting protease, at a speed of 250r / min After stirring for 120min, the precipitate was collected by filtration and dried;

[0040] (2) Put 4g of the precipitate obtained in step (1), 100g of a mixture of lithium hydroxide, urea and water in a mass ratio of 11:4:85 in a glass beaker, stir well and freeze at -50°C for 24h, then Place the beaker under greenhouse conditions and stir at a speed of 800r / min until the sample is completely dissolved;

[0041] (3) Put 2g of AEO-9, 100g of magnesium hydroxide emulsion and 100g of the solution obtained in step (2), stir at a speed of 1500r / min for 2h to form a uniform emulsion, then reduce the stirring speed to 300r / min and slowly...

Embodiment 2

[0044] A preparation method of a calcium-magnesium double active center catalyst, comprising the following steps:

[0045] (1) Put 5g of shrimp shells, 2g of dung beetle shells, 45g of hydrogen peroxide and 100g of deionized water in a glass beaker, heat to 100°C for 10 minutes, then naturally cool to 28°C, add 0.5g of non-limiting proteolytic enzyme, and heat at 250r After stirring for 120min at a speed of 1 / min, the precipitate was collected by filtration and dried;

[0046] (2) Put 3.5g of the precipitate obtained in step (1), 100g of a mixture of sodium hydroxide, urea and water with a mass ratio of 11:4:85 in a glass beaker, stir well and freeze at -30°C for 24h, The beaker is then placed under greenhouse conditions and stirred at a speed of 800r / min until the sample is completely dissolved;

[0047] (3) Put 3g of AEO-7, 100g of magnesium hydroxide emulsion and 100g of the solution obtained in step (2), stir at a speed of 1500r / min for 2h to form a uniform emulsion, then...

Embodiment 3

[0050] A preparation method of a calcium-magnesium double active center catalyst, comprising the following steps:

[0051] (1) Put 15g of crab shells, 40g of hydrogen peroxide, and 100g of deionized water in a glass beaker, heat to 100°C for 10 minutes, then cool naturally to 25°C, add 0.5g of non-limiting proteolytic enzymes, and heat at 250r / min After stirring at high speed for 120min, the precipitate was collected by filtration and dried;

[0052] (2) Put 5g of the precipitate obtained in step (1), 100g of a mixture of lithium hydroxide, sodium hydroxide, urea and water in a mass ratio of 5:6:4:85 in a glass beaker, and stir it evenly at -70 Freeze at ℃ for 24 hours, then place the beaker under greenhouse conditions, and stir at a speed of 800r / min until the sample is completely dissolved;

[0053] (3) Stir 2.5g of AEO-9, 100g of magnesium hydroxide emulsion and 100g of the solution obtained in step (2) at a speed of 1500r / min for 2h to form a uniform emulsion, then reduce...

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Abstract

The invention discloses a preparation method and application of a calcium-magnesium double active center catalyst. The preparation method of the calcium-magnesium double active center catalyst comprises the steps that in particular, a crustacean shell and a magnesium hydroxide emulsion are used as raw materials, through the process of protein removing by enzymatic hydrolysis, gelation and high-temperature roasting, the highly dispersed MgO/CaO double active center catalyst using N-doped porous carbon as a carrier is obtained. A Ca element based on active centers is magnesium which is naturallypresent in the crustacean shell and the magnesium hydroxide emulsion and is present as ultrafine particles, and the active centers in the prepared catalyst can be uniformly dispersed in the porous carbon carrier, the catalyst has excellent catalytic activity for isomerization of glucose to fructose and the decomposition preparation of sucrose to fructose. The catalyst is simple in preparation process, high in catalytic efficiency and easy to promote.

Description

technical field [0001] The invention relates to a preparation method of a high-efficiency, heterogeneous calcium-magnesium dual-active center catalyst capable of catalyzing the isomerization of glucose into fructose and the conversion of sucrose into fructose, belonging to the fields of industrial catalysis and biomass-based chemicals. Background technique [0002] 5-Hydroxymethylfurfural can be prepared by dehydration and decomposition of cheap and renewable six-carbon sugars, oligosaccharides, high polysaccharides, and even straw, bagasse, and corn cobs and other biomass raw materials under the action of catalysts. As a key bridge compound between bio-based sugar chemistry and petroleum-based chemistry, many fine chemicals, medical supplies and macrocyclic compounds can be synthesized based on it, and can be further aldolized and hydrogenated to form a liquid Fuel; As a monomer, new polymer materials with optical activity and biodegradable properties can be synthesized. ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B01J27/24B01J37/03B01J37/36C07H1/00C07H3/02C13K11/00
CPCB01J27/24B01J37/031B01J37/36C07H1/00C07H3/02C13K11/00
Inventor 黎演明龙思宇唐培朵杜芳黎杜奇石
Owner GUANGXI ACAD OF SCI
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