Chlorination method for sucrose-6-ethyl ester

A technology of ethyl ester and sucrose, applied in the field of chlorination of sucrose-6-ethyl ester, can solve problems affecting the yield of sucralose-6-ethyl ester and reducing the solubility of sucrose-6-ethyl ester

Inactive Publication Date: 2015-07-15
NANTONG CHANGHAI FOOD ADDITIVE
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The reaction of Vilsmeier reagent and sucrose-6-ethyl ester has been reported since Mufti (see U.S. Patent 4380476), and there have been improved patent reports, such as Chinese patents CN102964397, CN101619083, etc. have reported improved methods for chlorination, but these methods all need to be When chlorination, a large amount of solvents with a polarity much weaker than N,N-dimethylformamide are added to accelerate the release of sulfur dioxide gas generated by the reaction and promote the positive progress of the reaction, and these weakly polar solvents will reduce the sucrose- The solubility of 6-ethyl ester and Vilsmeier reagent complex in the reaction system, the final reaction temperature must exceed 110 ° C, resulting in a large amount of carbonization, which affects the final yield of sucralose-6-ethyl ester

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0014] The concrete steps of chlorinated sucrose-6-ethyl ester solution are as follows:

[0015] ① Add 300 kg (2521 mol) of thionyl chloride dropwise to 300 kg of polar aprotic solvent N,N-dimethylformamide and mix to prepare a chlorination reagent solution, thionyl chloride and N,N-dimethylformamide The mass ratio of methyl formamide is 1:1,

[0016] Dissolving 100 kg (260 mol) of sucrose-6-ethyl ester in 300 kg of polar aprotic solvent N,N-dimethylformamide to obtain a sucrose-6-ethyl ester solution with a concentration of 25 wt%;

[0017] ②After cooling the sucrose-6-ethyl ester solution prepared in step ① to 0°C, add the chlorination reagent solution prepared in step ① for chlorination, and keep the temperature ≤ 20°C during the period, wherein the chlorination in the chlorination reagent solution The molar ratio of sulfoxide (2521mol) to sucrose-6-ethyl ester (260mol) in the sucrose-6-ethyl ester solution is 9.7:1;

[0018] ③After adding the chlorination reagent solutio...

Embodiment 2

[0023] The concrete steps of chlorinated sucrose-6-ethyl ester solution are as follows:

[0024] ① Add 155 kg (1300 mol) of thionyl chloride dropwise to 300 kg of polar aprotic solvent N,N-dimethylacetamide and mix to prepare a chlorination reagent solution. Thionyl chloride and N,N-di The mass ratio of methylacetamide is 1:1.9,

[0025] 100 kg (260 mol) of sucrose-6-ethyl ester was dissolved in 500 kg of polar aprotic solvent N,N-dimethylacetamide to obtain a sucrose-6-ethyl ester solution with a concentration of 16.7wt%;

[0026] ②After cooling the sucrose-6-ethyl ester solution prepared in step ① to 0°C, add the chlorination reagent solution prepared in step ① for chlorination, and keep the temperature ≤ 20°C during the period, wherein the chlorination in the chlorination reagent solution The molar ratio of sulfoxide (1300mol) to sucrose-6-ethyl ester (260mol) in the sucrose-6-ethyl ester solution is 5:1;

[0027] ③After adding the chlorination reagent solution, depressur...

Embodiment 3

[0031] The concrete steps of chlorinated sucrose-6-ethyl ester solution are as follows:

[0032] ① Add 217 kg (1822 mol) of thionyl chloride dropwise to 283 kg of polar aprotic solvent N,N-dimethylformamide and mix to prepare a chlorination reagent solution. Thionyl chloride and N,N-di The mass ratio of methyl formamide is 1:1.3,

[0033] 100 kg (260 mol) of sucrose-6-ethyl ester was dissolved in 250 kg of polar aprotic solvent N,N-dimethylformamide to obtain a sucrose-6-ethyl ester solution with a concentration of 28.6 wt%;

[0034] ②After cooling the sucrose-6-ethyl ester solution prepared in step ① to 0°C, add the chlorination reagent solution prepared in step ① for chlorination, and keep the temperature ≤ 20°C during the period, wherein the chlorination in the chlorination reagent solution The molar ratio of sulfoxide (1822mol) to sucrose-6-ethyl ester (260mol) in the sucrose-6-ethyl ester solution is 7:1;

[0035] ③After adding the chlorination reagent solution, depress...

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Abstract

The invention relates to a chlorination method for sucrose-6-ethyl ester. The chlorination method comprises the following steps: (1) respectively preparing a chlorination reagent and a solution of sucrose-6-ethyl ester from a polar non-proton solvent; (2) chlorinating the sucrose-6-ethyl ester solution by a chlorination reagent solution; (3) refluxing under reduced pressure; and (4) evaporating the polar non-proton solvent by distilling, recycling, neutralizing the sucrose-6-ethyl ester solution in a distillation kettle, removing the solvent, adding water to dissolve, discoloring and crystallizing to obtain a sucrose-6-ethyl ester crude product, wherein the recycled a polar non-proton solvent is used for the chlorination reagent solution prepared in the step (1). According to the chlorination method, generated hydrogen chloride and sulfur dioxide are discharged by refluxing under reduced pressure to promote reaction to positively perform, and the final reaction temperature is reduced to 105 DEG C which is lower than the highest holding temperature in the existing chlorination technology by 10 DEG C, so that the defects generated by carbonization in the chlorination process are completely avoided; and the used polar non-proton solvent can be recycled for a next-batch chlorination reaction process, and therefore, the chlorination method is especially suitable for industrial production.

Description

technical field [0001] The invention belongs to the technical field of food additives, and in particular relates to a chlorination method of sucrose-6-ethyl ester. Background technique [0002] Sucralose is a new sweetener developed by Tate&Lyle in the 1970s. Its sweetness is 600 times that of sucrose, and it is one of the most outstanding sweeteners at present. Sucralose-6-ethyl ester is the most important intermediate for the synthesis of sucralose by the single-group protection method. It is prepared by reacting sucralose-6-ethyl ester with a chlorination reagent under suitable conditions. Reagents mainly include thionyl chloride, pyridine, chlorinated hydrocarbon system (see US Patent 5136031) and Vilsmeier reagent system (see US Patent 4380476). Among them, the Vilsmeier reagent system has the advantages of large steric hindrance, strong selectivity and high yield, and is suitable for industrial production. Domestic sucralose manufacturers basically use the Vilsmeier ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C07H13/06C07H1/00
Inventor 高正兵王立成陈凯王波
Owner NANTONG CHANGHAI FOOD ADDITIVE
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