Cosmetic raw material adopting quadruple moisturizing technology and production and processing method thereof

By using the synergistic effect of components such as water, glycerin, oat β-glucan, threne polysaccharide, fucose, Salvia miltiorrhiza root extract, 1,2-hexanediol, Dendrobium extract and para-hydroxyacetophenone in cosmetics, the four-fold moisturizing effect of cosmetic raw materials is achieved, solving the problem that existing cosmetics are difficult to achieve long-term moisturizing, and significantly improving skin moisture retention and barrier function.

CN120114352AInactive Publication Date: 2025-06-10GUANGZHOU GRET BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510543738.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-28
Publication Date
2025-06-10
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing cosmetics are difficult to achieve the four-level moisturizing effect, and they cannot effectively replenish water, lock water, produce water, and store water, resulting in dry skin problems still exist.

Method used

Cosmetic raw materials that adopt four-fold moisturizing technology include water, glycerin, oat β-glucan, thremium polysaccharide, fucose, Salvia miltiorrhiza root extract, 1,2-hexanediol, Dendrobium extract and para-hydroxyacetophenone. Through the synergistic effect of these ingredients, the effects of replenishing water, locking water, producing water, and storing water are achieved.

Benefits of technology

It realizes the four-fold moisturizing effect of cosmetic raw materials, significantly improves skin moisture retention, enhances skin barrier function, delays aging, and has long-term moisturizing and anti-allergic soothing effects.

✦ Generated by Eureka AI based on patent content.
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Abstract

The invention belongs to the technical field of cosmetics, and discloses a cosmetic raw material adopting a quadruple moisturizing technology, and the cosmetic raw material comprises the following components: water, glycerol, oat beta-glucan, tremella polysaccharide, fucose, a salvia miltiorrhiza root extract, 1, 2-hexanediol, a dendrobium nobile extract and p-hydroxyacetophenone. According to the cosmetic raw materials provided by the invention, glycerol and water are added, so that the problem of water shortage of a skin cuticle is solved; the tremella polysaccharide is added, so that a waterproof film can be formed on the surface layer of the skin, water loss is prevented, and the durability of the cosmetic on the skin is improved; oat beta-glucan and fucose can permeate into epidermal cells so as to repair epidermal injury and enhance the skin barrier function; the dendrobium nobile extract and the salvia miltiorrhiza root extract can promote expression of aquaporin in skin cell membranes and promote transfer of small molecular substances such as water and glycerol, so that the cosmetic raw materials have quadruple moisturizing capabilities of moisturizing, water locking, water producing and water storing.
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Description

Technical Field

[0001] The present invention belongs to the technical field of cosmetics, and specifically relates to a cosmetic raw material adopting a quadruple moisturizing technology and its production and processing method. Background Art

[0002] The outermost layer of the skin is the stratum corneum, which is the key to skin moisturization. The normal water content of the stratum corneum is approximately between 15% and 25%. When the water content is lower than this value, problems such as dryness and itching will occur to the skin. Therefore, in addition to moisturizing, moisturization is particularly important for skin care.

[0003] For existing cosmetics, the problem of dry skin remains the biggest concern. Currently, when promoting products on the market, approximately 77% of the products claim moisturizing effects, 26% of the products claim instant moisturization, and 17% of the products claim long-term moisturization. However, the actual use effects are not as good as the claimed effects. The fundamental reasons are the lack of exogenous water supplementation or natural moisturizing factors; the inability to form a film on the skin to prevent water loss; the poor improvement of skin functions and enhancement of skin barrier effects; and the inability to improve water channels to increase water from the inside out. Most products only have one or several of these effects and cannot achieve quadruple moisturization of moisturizing, water locking, water production, and water storage. Therefore, improvements are needed in this regard. Summary of the Invention

[0004] Aiming at the deficiencies of the existing technology, the present invention provides a cosmetic raw material adopting a quadruple moisturizing technology and its production and processing method, which has the advantages of quadruple moisturization.

[0005] To achieve the above object, the present invention provides the following technical solution: A cosmetic raw material adopting a quadruple moisturizing technology includes the following components: water, glycerol, oat β-glucan, tremella polysaccharide, fucose, salvia miltiorrhiza root extract, 1,2-hexanediol, dendrobium nobile extract, and p-hydroxyacetophenone. Measured by mass percentage: water is 55.0% - 65.0%, glycerol is 30% - 40%, oat β-glucan is 0.1% - 1.0%, tremella polysaccharide is 0.1% - 1.0%, fucose is 0.1% - 1.5%, salvia miltiorrhiza root extract is 0.1% - 0.5%, 1,2-hexanediol is 0.1% - 1.0%, dendrobium nobile extract is 0.5% - 2.0%, and p-hydroxyacetophenone is 0.1% - 1.0%.

[0006] Preferably, the oat β-glucan is extracted from oat bran in oat fruits, and the oat β-glucan mainly exists in the cell walls of oat endosperm and aleurone layer, and the aleurone content in oat bran is high.

[0007] Preferably, the tremella polysaccharide is extracted from the fruiting body of Tremella fuciformis, and it is an acidic heteropolysaccharide. The tremella polysaccharide serves as a film-forming agent, a moisturizing agent, and an antioxidant in cosmetic raw materials.

[0008] Preferably, the fucose is a natural active polysaccharide extracted from brown algae, and the fucose is used as a skin moisturizing agent, a skin regenerating agent, and an anti-aging agent in cosmetic raw materials.

[0009] Preferably, the Salvia miltiorrhiza root extract is extracted from the dried roots and rhizomes of the Labiatae plant Salvia miltiorrhiza, and it is used as a moisturizing agent, an antibacterial agent, an anti-inflammatory agent, and an anti-aging agent in cosmetic raw materials.

[0010] Preferably, the Dendrobium nobile extract is extracted from the dried rhizomes of the Orchidaceae plant Dendrobium nobile, and the Dendrobium nobile extract is used as a moisturizing agent, an antioxidant, and an anti-aging agent in cosmetic raw materials.

[0011] Preferably, 1,2 - hexanediol and glycerol act synergistically and are used as a moisturizing agent and a preservative in cosmetic raw materials.

[0012] Preferably, the p - hydroxyacetophenone is used as a whitening agent, an antibacterial and anti - inflammatory agent, and a preservative in cosmetic raw materials.

[0013] To achieve the above - mentioned another object, the present invention provides the following technical solution: A production and processing method of cosmetic raw materials adopting a quadruple moisturizing technology. The production and processing method is applicable to the above - mentioned cosmetic raw materials adopting a quadruple moisturizing technology, and its production process has the following steps:

[0014] Step 1: Select plants

[0015] Select healthy oat bran, tremella fruiting bodies, brown algae, Salvia miltiorrhiza rhizomes, and Dendrobium nobile rhizomes, and then put them into clean water for cleaning to remove large - particle impurities such as sediment, ensuring that the selected plants are undamaged and have high active ingredients;

[0016] Step 2: Ultrasonic removal of pesticide residues

[0017] Put the selected plants into an ultrasonic cleaning device, set the temperature of the cleaning solution to 45°C and the concentration of the cleaning solution to 8%, and then start the ultrasonic cleaning device. The ultrasonic vibration destroys the pesticide residues on the surface of the plants, and at the same time drives the water to vibrate rapidly, so that the pesticide residues are effectively removed. After 1 hour, take out the cleaned plants, wash them twice with clean water and then air - dry them to remove the moisture on the surface of the plants;

[0018] Step 3: Enzymatic hydrolysis

[0019] Put the processed plants into a cutting machine for cutting to make the plants into uniformly sized pieces, and then put them into an enzymatic hydrolysis tank, pour in the hydrolysis enzyme solution, and carry out enzymatic hydrolysis at 42°C for 10 hours. During the enzymatic hydrolysis process, open the enzymatic hydrolysis tank every 2 hours for stirring, and the stirring time is 5 minutes. After 10 hours, open the enzymatic hydrolysis tank to filter the solution inside to remove large particle impurities;

[0020] Step Four: Extraction

[0021] Pour the solution in the enzymatic hydrolysis tank into an extraction tank, and then use the solvent extraction method to extract the target components inside the solution. During the extraction process, it needs to be heated to 45°C and maintained at a constant temperature state. At the same time, it is also necessary to continuously stir the solution in the extraction tank;

[0022] Step Five: Solid-Liquid Separation

[0023] After the extraction is completed, pour the solution into a centrifuge for centrifugal filtration. The rotation speed of the centrifuge is set at 12000 rpm, and the centrifugation time is 30 minutes until the solid particles and the liquid are separated, thereby improving the purity of the solution;

[0024] Step Six: Fine Filtration

[0025] Subsequently, pour the centrifuged solution into an ultrafiltration device and conduct further filtration through the ultrafiltration membrane in the ultrafiltration device to remove smaller impurity particles and microorganisms, improving the purity and stability of the solution;

[0026] Step Seven: Clarification

[0027] Pour the finely filtered solution into a static tank and let it stand at room temperature for 5 hours to precipitate the suspended matter in the solution, thereby making the solution clear and transparent, and then export the upper clarified solution for the next processing;

[0028] Step Eight: Concentration

[0029] Pour the clarified solution into a concentration tank, and remove most of the solvent in the solution by heating and evaporation, thereby concentrating the target components. Put the concentrated solution into clean storage respectively, and after cooling to room temperature, store it in a sealed manner;

[0030] Step Nine; Preparation

[0031] Take the oat β-glucan, tremella polysaccharide, fucose, Salvia miltiorrhiza root extract, and Dendrobium nobile extract extracted through Steps 1 to 8, and then add water, glycerol, 1,2-hexanediol, and hydroxyacetophenone. Among them, water is 59.8%, glycerol is 35%, oat β-glucan is 0.6%, tremella polysaccharide is 0.8%, fucose is 1%, Salvia miltiorrhiza root extract is 0.3%, 1,2-hexanediol is 0.5%, Dendrobium nobile extract is 1.5%, and hydroxyacetophenone is 0.5%. After stirring and mixing, perform emulsification treatment to complete the preparation of the target cosmetic raw materials;

[0032] Step Ten: Detection

[0033] Test the content of active ingredients, heavy metal impurity content, microbial indicators, and pesticide residues of the prepared target cosmetic raw materials to ensure that all indicators meet the quality standards;

[0034] Step Eleven: Sub-packaging and Warehousing

[0035] Sub-package the qualified target cosmetic raw materials according to the specified packaging specifications, affix a qualified label, and then store them in the warehouse.

[0036] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0037] The cosmetic raw materials proposed by the present invention solve the problem of water shortage in the skin cutin layer by adding glycerol and water; the addition of tremella polysaccharide can form a waterproof film on the skin surface to prevent water loss and increase the persistence of the cosmetics on the skin; oat β-glucan and fucose can penetrate into epidermal cells to repair epidermal damage and enhance the skin barrier function; Dendrobium nobile extract and Salvia miltiorrhiza root extract can promote the expression of aquaporin in the skin cell membrane and promote the transfer of small molecule substances such as water and glycerol, so that the cosmetic raw materials have the quadruple moisturizing ability of moisturizing, water locking, water production, and water storage, playing the roles of moisturizing and hydrating, long-term moisturizing, anti-aging, free radical scavenging, anti-allergic and soothing, and repair and antibacterial. Specific Embodiments

[0038] Based on the embodiments in the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the scope of protection of the present invention.

[0039] An embodiment of the present invention provides a cosmetic raw material adopting a quadruple moisturizing technology, comprising the following components: water, glycerol, oat β-glucan, tremella polysaccharide, fucose, salvia miltiorrhiza root extract, 1,2-hexanediol, dendrobium nobile extract, and p-hydroxyacetophenone. Measured by mass percentage: water is 55.0% - 65.0%, glycerol is 30% - 40%, oat β-glucan is 0.1% - 1.0%, tremella polysaccharide is 0.1% - 1.0%, fucose is 0.1% - 1.5%, salvia miltiorrhiza root extract is 0.1% - 0.5%, 1,2-hexanediol is 0.1% - 1.0%, dendrobium nobile extract is 0.5% - 2.0%, and p-hydroxyacetophenone is 0.1% - 1.0%.

[0040] Glycerol and water can solve the problem of water shortage in the skin cutin layer. A large number of hydroxyl groups can capture moisture from the air and supplement it to the skin (hydrating); macromolecular tremella polysaccharide can form a waterproof film on the skin surface to prevent water loss and increase the persistence of cosmetics on the skin (water locking); the use of small-molecule polysaccharides oat β-glucan and fucose can penetrate into epidermal cells to repair epidermal damage and enhance the skin barrier function (water production); dendrobium nobile extract and salvia miltiorrhiza root extract can promote the expression of aquaporin in the skin cell membrane and promote the transfer of small-molecule substances such as water and glycerol (water storage), and thus quadruple moisturizing can be achieved.

[0041] Among them, oat β-glucan is extracted from oat bran in oat fruits. Oat β-glucan mainly exists in the cell walls of oat endosperm and aleurone layer, and the aleurone content in oat bran is high.

[0042] Oat bran is the outer part separated after grinding oat grains. The oat β-glucan extracted from it is a high-molecular unbranched linear mucopolysaccharide formed by connecting β-D-glucopyranose units through β-(1,3) and β-(1,4) glycosidic bonds. It has a significant anti-inflammatory effect on skin wounds, can improve the recovery function of damaged skin, accelerate the healing of skin wounds, and at the same time can activate Langerhans cells. The activated Langerhans cells can secrete some factors to promote the proliferation of fibroblasts (skin cells) and the synthesis of skin tissue matrix (such as collagen, elastin, proteoglycan, etc.), making the skin more elastic, soft and delicate.

[0043] Among them, tremella polysaccharide is extracted from tremella fruiting bodies and is an acidic heteropolysaccharide. Tremella polysaccharide is used as a film-forming agent, moisturizing agent and antioxidant in cosmetic raw materials.

[0044] The main chain structure of Tremella polysaccharide is a mannan linked by α-(1→3) glycosidic bonds. The side chains are composed of glucuronic acid and xylose. It is a plant-derived hyaluronic acid-like substance, also known as Tremella hyaluronic acid, which has the functions of antioxidant, moisturizing, scavenging free radicals generated in the skin, reducing skin oxidative damage, delaying the aging process, conditioning skin color, repairing damaged skin mucosa, improving the damaged state of the skin, and promoting skin repair.

[0045] Among them, fucose is a natural active polysaccharide extracted from brown algae. Fucose is used as a skin moisturizer, skin regenerator and anti-aging agent in cosmetic raw materials.

[0046] Fucose is an important hexose sugar, also known as 6-deoxy-L-galactose. It has hydrophilicity, can absorb and lock moisture, helps maintain skin moisture balance, prevents moisture loss, and thus achieves the effect of moisturizing; it can also enhance the connection between stratum corneum cells, repair damaged skin barriers, improve the skin's self-protection ability, and reduce the damage of the external environment to the skin; in addition, it can stimulate the proliferation of fibroblasts and the synthesis of collagen, make the skin more elastic, help accelerate the repair process of damaged skin tissue, reduce scar formation, and make the skin restore smoothness and delicacy.

[0047] Among them, the extract of Salvia miltiorrhiza root is extracted from the dried roots and rhizomes of the Labiatae plant Salvia miltiorrhiza, and is used as a moisturizer, antibacterial agent, anti-inflammatory agent and anti-aging agent in cosmetic raw materials.

[0048] The extract of Salvia miltiorrhiza root is rich in tanshinone, cryptotanshinone, salvianolic acid B, etc. It has a good promoting effect on the proliferation of collagen, so it can enhance the metabolism of the dermis layer of the skin. With its antioxidant property, it can be used in skin rejuvenating and anti-wrinkle cosmetics. At the same time, the extract of Salvia miltiorrhiza root can also effectively improve the expression of aquaporin in keratinocytes.

[0049] Among them, the extract of Dendrobium nobile Lindl. is extracted from the dried rhizomes of the Orchidaceae plant Dendrobium nobile Lindl., and the extract of Dendrobium nobile Lindl. is used as a moisturizer, antioxidant and anti-aging agent in cosmetic raw materials.

[0050] The extract of Dendrobium nobile Lindl. contains polysaccharides and alkaloids of Dendrobium, mainly active ingredients such as dendrobine, nobiletin, 6-hydroxy dendrobine, etc., which can eliminate a variety of free radicals and can effectively improve the expression of aquaporin in keratinocytes.

[0051] Among them, 1,2-hexanediol and glycerol act synergistically and are used as a moisturizer and preservative in cosmetic raw materials.

[0052] 1,2 - Hexanediol has strong water absorption and can combine with moisture in the air to form a molecular film, creating a water - locking barrier that effectively prevents the loss of skin moisture, keeps the skin moisturized, is gentle and non - irritating to human skin, and when compounded with p - hydroxyacetophenone, can improve the overall antibacterial ability.

[0053] Among them, p - hydroxyacetophenone is used as a whitening agent, antibacterial and anti - inflammatory agent, and preservative in cosmetic raw materials.

[0054] p - Hydroxyacetophenone can inhibit the activity of tyrosinase, reduce the synthesis of melanin, thereby reducing skin spots and freckles, achieving the effect of whitening and beautifying the skin. p - Hydroxyacetophenone also has a certain antibacterial effect on a variety of bacteria, Gram - positive bacteria, Gram - negative bacteria, and atypical pathogens, etc., which helps to improve skin infections, impetigo and other diseases. At the same time, it also has a soothing effect on problems such as skin flushing and skin irritation, and can reduce the discomfort caused by external stimuli to the skin, such as burning and stinging.

[0055] The embodiment of the present invention also provides a production and processing method of cosmetic raw materials adopting a quadruple moisturizing technology. The production and processing method is applicable to the above - mentioned cosmetic raw materials adopting a quadruple moisturizing technology, and its production process has the following steps:

[0056] Step 1: Select plants

[0057] Select healthy oat bran, tremella fruiting bodies, brown algae, salvia miltiorrhiza rhizomes, and dendrobium nobile lindl. rhizomes, and then put them into clean water for cleaning to remove large - particle impurities such as sediment, ensuring that the selected plants are undamaged and have high active ingredients;

[0058] Step 2: Ultrasonic removal of pesticide residues

[0059] Put the selected plants into an ultrasonic cleaning device, set the temperature of the cleaning solution to 45°C and the concentration of the cleaning solution to 8%, then start the ultrasonic cleaning device. The ultrasonic vibration destroys the pesticide residues on the surface of the plants, and at the same time drives the water to vibrate rapidly, so that the pesticide residues are effectively removed. After 1 hour, take out the cleaned plants, wash them twice with clean water and then air - dry them to remove the moisture on the surface of the plants;

[0060] Step 3: Enzymatic hydrolysis

[0061] Put the processed plants into a cutting machine for cutting to make the plants into uniform block - shaped segments, and then put them into an enzymatic hydrolysis tank, pour in the hydrolytic enzyme solution, and carry out enzymatic hydrolysis at 42°C for 10 hours. During the enzymatic hydrolysis process, open the enzymatic hydrolysis tank for stirring once every 2 hours, and the stirring time is 5 minutes. After 10 hours, open the enzymatic hydrolysis tank to filter the solution inside to remove large - particle impurities;

[0062] Step 4: Extraction

[0063] Transfer the solution in the enzymatic hydrolysis tank into the extraction tank, and then use the solvent extraction method to extract the target components inside the solution. During the extraction process, it is necessary to heat to 45 °C and maintain a constant temperature state. At the same time, it is also necessary to continuously stir the solution in the extraction tank;

[0064] Step Five: Solid-liquid separation

[0065] After the extraction is completed, transfer the solution into a centrifuge for centrifugal filtration. The rotation speed of the centrifuge is set at 12,000 rpm, and the centrifugation time is 30 minutes until the solid particles and the liquid are separated, thereby improving the purity of the solution;

[0066] Step Six: Fine filtration

[0067] Subsequently, transfer the centrifuged solution into an ultrafiltration device and conduct further filtration through the ultrafiltration membrane in the ultrafiltration device to remove smaller impurity particles and microorganisms, improving the purity and stability of the solution;

[0068] Step Seven: Clarification

[0069] Transfer the finely filtered solution into a static tank and let it stand at room temperature for 5 hours to precipitate the suspended matter in the solution, thereby making the solution clear and transparent. Then, export the upper-layer clarified solution for the next step of processing;

[0070] Step Eight: Concentration

[0071] Transfer the clarified solution into a concentration tank and remove most of the solvent in the solution by heating and evaporation, thereby concentrating the target components. Put the concentrated solution into clean storage respectively. After cooling to room temperature, store it in a sealed manner;

[0072] Step Nine; Preparation

[0073] Take the oat β-glucan, tremella polysaccharide, fucose, salvia miltiorrhiza root extract, and dendrobium officinale extract extracted through Steps One to Eight, and then add water, glycerol, 1,2-hexanediol, and p-hydroxyacetophenone. Among them, water is 59.8%, glycerol is 35%, oat β-glucan is 0.6%, tremella polysaccharide is 0.8%, fucose is 1%, salvia miltiorrhiza root extract is 0.3%, 1,2-hexanediol is 0.5%, dendrobium officinale extract is 1.5%, and p-hydroxyacetophenone is 0.5%. After stirring and mixing, conduct emulsification treatment to complete the preparation of the target cosmetic raw materials;

[0074] Step Ten: Detection

[0075] Test the content of active ingredients, heavy metal impurity content, microbial indicators, and pesticide residues of the prepared target cosmetic raw materials to ensure that all indicators meet the quality standards;

[0076] Step Eleven: Sub-packaging and warehousing

[0077] Sub-package the qualified target cosmetic raw materials according to the specified packaging specifications, affix a qualified label, and then store them in the warehouse.

[0078] The prepared target cosmetic raw material is a colorless to light yellow liquid, with a characteristic odor, soluble in water, applicable pH value is 4.0 - 9.0. When used, the addition amount for leave-on cosmetics is 0.1% - 10%, and for rinse-off cosmetics is 0.1% - 10%. The addition method is low-temperature addition.

[0079] It should be noted that in this text, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device.

[0080] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A cosmetic raw material using quadruple moisturizing technology, characterized in that: The invention comprises the following ingredients: water, glycerin, oat beta-glucan, tremella polysaccharide, fucose, salvia miltiorrhiza root extract, 1,2-hexanediol, dendrobium nobile extract and p-hydroxyacetophenone, which are measured in percentage by mass as follows: 55.0% to 65.0% water, 30% to 40% glycerin, 0.1% to 1.0% oat beta-glucan, 0.1% to 1.0% tremella polysaccharide, 0.1% to 1.0% fucose, 0.1% to 1.5% salvia miltiorrhiza root extract, 0.1% to 0.5% 1,2-hexanediol, 0.5% to 2.0% dendrobium nobile extract and 0.1% to 1.0% p-hydroxyacetophenone.

2. The cosmetic raw material using quadruple moisturizing technology according to claim 1, characterized in that: The oat beta-glucan is extracted from oat bran in oat fruit. The oat beta-glucan mainly exists in oat endosperm and aleurone cell walls. The aleurone content in oat bran is high.

3. The cosmetic raw material using quadruple moisturizing technology according to claim 1, characterized in that: The tremella polysaccharide is extracted from tremella fruiting bodies and is an acidic heteropolysaccharide. The tremella polysaccharide is used as a film former, moisturizer and antioxidant in cosmetic raw materials.

4. The cosmetic raw material using quadruple moisturizing technology according to claim 1, characterized in that: The fucose is a natural active polysaccharide extracted from brown algae, and is used as a skin moisturizer, skin regenerator, and anti-aging agent in cosmetic raw materials.

5. The cosmetic raw material using quadruple moisturizing technology according to claim 1, characterized in that: The salvia miltiorrhiza root extract is extracted from the dried roots and rhizomes of the salvia miltiorrhiza plant of the Labiatae family, and is used as a moisturizer, antibacterial agent, anti-inflammatory agent and anti-aging agent in cosmetic raw materials.

6. The cosmetic raw material using quadruple moisturizing technology according to claim 1, characterized in that: The Dendrobium nobile extract is extracted from the dried rhizome of the orchid plant Dendrobium nobile, and the Dendrobium nobile extract is used as a moisturizer, an antioxidant and an anti-aging agent in cosmetic raw materials.

7. The cosmetic raw material using quadruple moisturizing technology according to claim 1, characterized in that: The 1,2-hexanediol and glycerin act synergistically and are used as a moisturizer and preservative in cosmetic raw materials.

8. The cosmetic raw material using quadruple moisturizing technology according to claim 1, characterized in that: The p-hydroxyacetophenone is used as a whitening agent, an antibacterial and anti-inflammatory agent and a preservative in cosmetic raw materials.

9. A production and processing method of cosmetic raw materials using quadruple moisturizing technology, characterized in that: The production and processing method is applicable to a cosmetic raw material using quadruple moisturizing technology as described in any one of claims 1 to 8, and the production process thereof comprises the following steps: Step 1: Select plants Select healthy oat bran, Tremella fuciformis fruiting bodies, brown algae, Salvia miltiorrhiza rhizomes and Dendrobium nobile rhizomes, then wash them in clean water to remove large particles of impurities such as mud and sand, ensuring that the selected plants are undamaged and have high active ingredients; Step 2: Ultrasonic removal of pesticide residues Put the selected plants into the ultrasonic cleaning equipment, set the temperature of the cleaning solution to 45°C and the concentration of the cleaning solution to 8%, then start the ultrasonic cleaning equipment to destroy the pesticide residues on the surface of the plants through ultrasonic vibration, and at the same time drive the water to vibrate rapidly, so that the pesticide residues are effectively removed. After 1 hour, take out the cleaned plants, wash them twice with clean water, and then air dry them to remove moisture from the surface of the plants; Step 3: Enzymatic hydrolysis The processed plants are placed in a cutting machine for cutting, so that the plants are in blocks of uniform size, and then placed in an enzymolysis tank, and a hydrolase solution is poured in, and enzymolysis is performed at 42°C for 10 hours. During the enzymolysis process, the enzymolysis tank is opened for stirring every 2 hours, and the stirring time is 5 minutes. After 10 hours, the enzymolysis tank is opened to filter the solution inside to remove large particle impurities; Step 4: Extract The solution in the enzymatic hydrolysis tank is introduced into the extraction tank, and then the target components in the solution are extracted using the solvent extraction method. During the extraction process, it is necessary to heat to 45°C and maintain a constant temperature, and the solution in the extraction tank needs to be continuously stirred; Step 5: Solid-liquid separation After the extraction is completed, the solution is introduced into a centrifuge for centrifugal filtration. The speed of the centrifuge is set at 12000rpm and the centrifugal time is 30 minutes until the solid particles and the liquid are separated, thereby improving the purity of the solution; Step 6: Fine filtration The centrifuged solution is then introduced into an ultrafiltration device and further filtered through an ultrafiltration membrane in the ultrafiltration device to remove smaller impurity particles and microorganisms, thereby improving the purity and stability of the solution. Step 7: Clarification The finely filtered solution is introduced into a standing tank and allowed to stand at room temperature for 5 hours to allow the suspended matter in the solution to settle, thereby making the solution clear and transparent, and then the upper clear solution is taken out for the next step of processing; Step 8: Concentration The clarified solution is introduced into a concentration tank, and most of the solvent in the solution is removed by heating and evaporation, thereby concentrating the target component. The concentrated solution is placed in a clean storage, cooled to room temperature, and then sealed for storage; Step nine; preparation Take oat β-glucan, tremella polysaccharide, fucose, salvia miltiorrhiza root extract, and dendrobium nobile extract extracted from steps 1 to 8, then add water, glycerin, 1,2-hexanediol, and p-hydroxyacetophenone, wherein the water is 59.8%, glycerin is 35%, oat β-glucan is 0.6%, tremella polysaccharide is 0.8%, fucose is 1%, salvia miltiorrhiza root extract is 0.3%, 1,2-hexanediol is 0.5%, dendrobium nobile extract is 1.5%, and p-hydroxyacetophenone is 0.5%, stir and mix, and then emulsify, thereby completing the preparation of the target cosmetic raw material; Step 10: Testing Test the prepared target cosmetic raw materials for active ingredient content, heavy metal impurity content, microbial indicators, and pesticide residues to ensure that all indicators meet quality standards; Step 11: Packaging and storage The target cosmetic raw materials that pass the inspection will be packaged according to the prescribed packaging specifications, affixed with qualified labels and stored in the warehouse.