Preparation process of edible oil diglyceride

A technology of oil diglyceride and edible oil, which is applied in the production process of edible oil diglyceride, can solve the problems of difficulty in obtaining partial glyceride lipase, increased production cost, and high price, and minimize the reduction of enzyme activity , Reduce the cost of raw materials, the effect of short reaction time

Pending Publication Date: 2021-12-14
RUNKE BIOENG FUJIAN
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0011] Partial glyceride lipase can catalyze the esterification of fatty acids and glycerol, and the obtained products only contain fatty acids, monoglycerides and diglycerides, and there will be no triglycerides. Ideal catalyst, but partial glyceride lipase is difficult to obtain. At present, most partial glyceride lipases are in the laboratory stage and cannot be commercialized. Only lipase Lipase "Amano" G50 of Amano Enzyme Products Group in Japan has a small amount of supply, which is expensive. caused a substantial increase in production costs

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0052] In the present embodiment, the preparation process of edible oil diglyceride comprises the following steps:

[0053] (1) Saponification reaction

[0054] Carry out saponification reaction with soybean oil as raw material to obtain soap liquid;

[0055] In this step (1), water and sodium hydroxide are added to the soybean oil, the weight ratio of water and soybean oil is 1:2, and the amount of sodium hydroxide added is 15% of the weight of soybean oil; Saponification reaction (stirring speed is 200 rpm), the reaction temperature of saponification reaction is 78°C, and the reaction time is 4 hours;

[0056] (2) Acidification reaction

[0057] Add excess sulfuric acid to the soap liquid obtained in step (1), carry out acidification reaction, obtain fatty acid crude liquid;

[0058] In this step (2), the acidification reaction is carried out under stirring (the stirring speed is 200 rpm), the reaction temperature of the acidification reaction is 75° C., and the reaction ...

Embodiment 2

[0073] In the present embodiment, the preparation process of edible oil diglyceride comprises the following steps:

[0074] (1) Saponification reaction

[0075] Carry out saponification reaction with corn oil as raw material to obtain soap liquid;

[0076] In this step (1), water and sodium hydroxide are added to the corn oil, the weight ratio of water and corn oil is 1:2.5, and the amount of sodium hydroxide added is 16% of the weight of corn oil; Saponification reaction (stirring speed is 300 rpm), the reaction temperature of saponification reaction is 80°C, and the reaction time is 4 hours;

[0077] (2) Acidification reaction

[0078] Add excess phosphoric acid to the soap liquid obtained in step (1), carry out acidification reaction, obtain fatty acid crude liquid;

[0079] In this step (2), the acidification reaction is carried out under stirring (the stirring speed is 200 rpm), the reaction temperature of the acidification reaction is 85° C., and the reaction time is ...

Embodiment 3

[0094] In the present embodiment, the preparation process of edible oil diglyceride comprises the following steps:

[0095] (1) Saponification reaction

[0096] Carry out saponification reaction with sunflower oil as raw material, obtain soap liquid;

[0097] In this step (1), water and sodium hydroxide are added to the sunflower oil, the weight ratio of water and sunflower oil is 1:3, and the addition of sodium hydroxide is 15% of the sunflower oil weight; Carry out saponification reaction (stirring speed is 300 rev / min) under the circumstance, the reaction temperature of saponification reaction is 85 ℃, and reaction time is 4 hours;

[0098] (2) Acidification reaction

[0099] Add excess phosphoric acid to the soap liquid obtained in step (1), carry out acidification reaction, obtain fatty acid crude liquid;

[0100] In this step (2), the acidification reaction is carried out under stirring (the stirring speed is 300 rpm), the reaction temperature of the acidification rea...

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Abstract

The invention relates to a preparation process of edible oil diglyceride. The preparation process comprises the following steps of (1) carrying out saponification reaction by using edible oil as a raw material to obtain liquid soap; (2) adding excessive sulfuric acid or phosphoric acid into the liquid soap, and carrying out acidification reaction to obtain crude fatty acid liquid; (3) adding water into the crude fatty acid liquid for washing, standing after washing, and separating fatty acid on the upper layer from water on the lower layer; (4) performing vacuum drying on fatty acid; (5) uniformly mixing fatty acid and glycerol according to a molar ratio of 1.5: 1 to 2.5: 1 to obtain a first mixed material; then adding the first mixed material into an immobilized enzyme column, and reacting for 2-4 hours under the condition that the temperature is 50-55 DEG C; and (6) carrying out molecular distillation on the reaction product in the step (5) by adopting a molecular distillation device to obtain a heavy component which is the required edible oil diglyceride. The diglyceride is obtained by adopting a direct esterification method, the raw materials are easy to obtain, the production cost is relatively low, the product yield is high, and the product purity is high.

Description

technical field [0001] The invention relates to the technical field of oil modification, in particular to a preparation process of edible oil diglyceride. Background technique [0002] Diacylglycerol (also known as diglyceride) is the esterification product of glycerol and two fatty acids. Diacylglycerol is a natural component of animal and vegetable oils, but its content is generally low. The content of diacylglycerol in different oils is different, usually between 4-8%. Therefore, high-content glycerol is generally obtained by chemical methods or biological enzyme methods diester. Due to its different metabolic pathway from triglyceride, diacylglycerol has special physiological functions, which can reduce fat accumulation, reduce obesity, and reduce postprandial blood lipid content, so as to prevent and treat hyperlipidemia, hypertension, cardiovascular and cerebrovascular diseases, etc. Diacylglycerides can provide the body with the required fatty acids and energy, and ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C12P7/64C11C3/02C11C1/02
CPCC12P7/6454C11C3/02C11C1/02C11C1/025
Inventor 许团辉陈璇李媛媛郑震堃郑晓辉王文谦
Owner RUNKE BIOENG FUJIAN
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