Antibacterial moisturizing gel and preparation method thereof
A gel and moisturizing agent technology, applied in the field of skin care, can solve the problems of heavy metal poisoning and poor antibacterial effect, and achieve the effects of solving heavy metal poisoning, promoting disease recovery, and excellent killing ability.
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Embodiment 1
[0034] (1) Mix 8 parts of propylene glycol and 0.1 part of p-anisic acid, and stir evenly at a temperature of 50°;
[0035] (2) Add 40 parts of water and 1 part of sodium alginate to the above mixed solution sequentially at a stirring speed of 30 rpm until the sodium alginate is completely dissolved;
[0036] (3) After dissolving 4 parts of glycogen in 45 parts of water and stirring evenly, add the above mixed solution and stir evenly; and
[0037] (4) Add sodium lactate to the above mixed solution to adjust the pH of the solution to 4.2, and degas until there are no bubbles.
[0038] This embodiment provides an antibacterial moisturizing gel, which includes an organic acid, a moisturizing agent, a nutrient and water.
[0039] First, if figure 1 As shown, the organic acid used in the antibacterial moisturizing gel of the present invention, such as p-anisic acid, can pass through the cell wall of the microorganism and enter the cell to reduce the pH value of the cell. In orde...
Embodiment 2
[0045] (1) Mix 15 parts of glyceryl caprylate, 1 part of p-anisic acid and 1 part of levulinic acid, and stir evenly at a temperature of 70°;
[0046] (2) 42 parts of water and 1.5 parts of carboxymethyl cellulose were evenly added to the above-mentioned mixed solution successively under the condition that the stirring speed was 50 rpm, until the carboxymethyl cellulose was completely dissolved;
[0047] (3) After dissolving 4 parts of lactic acid in 45 parts of water and stirring evenly, add the above mixed solution and stir evenly; and
[0048] (4) Add sodium lactate to the above mixed solution to adjust the pH of the solution to 3.8, and degas until there are no bubbles.
Embodiment 3
[0050] (1) Mix 10 parts of aloe extract and 1 part of levulinic acid, and stir evenly at a temperature of 60°;
[0051] (2) 43 parts of water and 1.25 parts of gelatin were evenly added to the above mixed solution sequentially at a stirring speed of 40 rpm until the gelatin was completely dissolved;
[0052] (3) After dissolving 3 parts of glycogen in 43 parts of water and stirring evenly, add the above mixed solution and stir evenly; and
[0053] (4) Add sodium lactate to the above mixed solution to adjust the pH of the solution to 3.9, and degas until there are no bubbles.
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