High oxidation potential water, method for manufacturing the same, and use thereof
By using a water electrolysis device containing weak acid citric acid or compound acid (pH 3-3.5) and small molecule hyaluronic acid HA35, the problem of decreased biological function of water electrolysis devices under high temperature conditions has been solved, achieving the stability of high oxidation potential water at high temperatures and enhanced therapeutic and cosmetic effects.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- QINGDAO HUINUODE BIOLOGICAL TECH CO LTD
- Filing Date
- 2023-09-26
- Publication Date
- 2026-05-08
AI Technical Summary
Existing water electrolysis devices suffer from decreased biological function under high-temperature environments, making it impossible to guarantee the effectiveness of high-oxidation-potential water.
We use weak acid citric acid or compound acid (pH 3-3.5) as raw water, combined with conductive diamond electrodes to produce water with high oxidation potential, and add small molecule hyaluronic acid HA35 to ensure stable oxidation potential under high temperature environment.
Maintaining the biological functions of high-oxidation-potential water under high-temperature conditions improves the treatment effects of skin itching, skin redness and swelling, and athlete's foot itching, and enhances the ability to beautify the face and kill microorganisms.
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Abstract
Description
Technical Field
[0001] This invention relates to the field of water electrolysis, and in particular to a high oxidation potential water, its manufacturing method, and its application. Background Technology
[0002] Prior to this invention, the applicant filed an invention patent entitled "A New Application of Electrolyzed Water, Application No.: 202310374389.5," which described an electrolyzed water spray or mist produced instantly using a water electrolysis device employing conductive diamond electrodes. After spraying, it generates non-volatile total oxidizing capacity with a high oxidation potential of ≥1200mV (referred to as instant-produced high-oxidation electrolyzed water), without releasing detectable ozone or oxidizing gases into the surrounding environment. The electrolyzed water produced instantly by this device has the following biological functions, such as relieving or treating inflammatory diseases of the skin and mucous membranes (skin itching or skin redness), and has antimicrobial properties.
[0003] In actual use, it was found that this biological function and the high oxidation potential of electrolyzed water are affected by the temperature of the raw water. When used in summer when the temperature is high, the effect is poor or there is no effect, and its biological function cannot be guaranteed. Summary of the Invention
[0004] The technical problem to be solved by the present invention is to provide a new high oxidation potential water and its manufacturing method and application; so that the high oxidation potential water manufactured by the manufacturing method is not affected by the temperature rise, and its biological function can be guaranteed even when the temperature rises.
[0005] To solve the above-mentioned technical problems, the present invention adopts the following technical solution:
[0006] On the one hand, the present invention provides a new method for manufacturing high oxidation potential water, using weak acid citric acid or complex acid as raw water, and electrolyzing it with a water electrolysis device with conductive diamond electrodes to instantly produce electrolyzed water spray or water spray with a high oxidation potential of ≥1200mv.
[0007] Furthermore, the anode surface of the water electrolysis device is made using a layer of conductive diamond material.
[0008] Furthermore, the pH of the weak acid citric acid or the complex acid is between 3 and 3.5; the components of the complex acid include at least two of citric acid, lactic acid, white vinegar, and salicylic acid, as well as water.
[0009] Furthermore, the compound acid is prepared by comprising 0.05% citric acid, 10% lactic acid, 10% white vinegar, 2% salicylic acid, and the remainder being water.
[0010] Furthermore, the raw water also contains small molecule hyaluronic acid HA35.
[0011] Furthermore, the temperature of the raw water is 16-32 degrees Celsius or the temperature of the raw water is 20-32 degrees Celsius.
[0012] On the other hand, the present invention also provides high oxidation potential water that is manufactured in real time using the above-described manufacturing method.
[0013] Furthermore, the present invention also provides an application of the above-mentioned high oxidation potential water, wherein the application is as follows:
[0014] (1) Used to prepare medicines for relieving or treating itchy skin, red and swollen skin or itchy athlete's foot;
[0015] (2) Used for facial beauty;
[0016] Or (3) used to kill microorganisms.
[0017] Furthermore, the facial beauty treatment includes complexion, skin hydration, and facial slimming.
[0018] Furthermore, it prevents the functional effect from decreasing when used in high-temperature environments during summer.
[0019] This invention has discovered through research that using citric acid or compound acids, which are weak acids with less harmfulness and odor, as raw water, or adding small molecule hyaluronic acid HA35 to the above raw water, produces high oxidation potential water with a high oxidation potential. This results in better effects on skin itching, skin redness and swelling, athlete's foot itching, facial beauty, and killing microorganisms. The high oxidation potential water produced on the spot is not affected by temperature rise and can maintain its biological function even when the temperature rises. Detailed Implementation
[0020] The instruments and equipment used in the embodiments of the present invention are as follows:
[0021] I. Portable Oxidation-Reduction Potential Meter (Liquid MV Value Detector) (Shenzhen Kodida Electronics Co., Ltd. CT-8022 Pen-type ORP Meter):
Test Principle
Measurement Range
[0022] II. The embodiments of the present invention employ a novel water electrolysis device (CN215308550U; https: / / www.deposon.com.cn; https: / / www.deposon.com). This novel water electrolysis device is a small handheld device that uses a diamond anode plate and employs a low-pressure electrolysis method to produce electrolyzed water spray or water jet.
[0023] Example 1
[0024] Objective: To investigate the relationship between the high oxidation potential of a novel water electrolysis spray or spray device and the temperature of the raw water (tap water) it uses, as well as the decay rate of the high oxidation potential generated.
[0025] Background: When using the above-mentioned water electrolysis device, the inventors discovered that the biological function of this water electrolysis device is affected by the temperature of the raw water. As the temperature of the raw water increases, its biological function continuously declines or even disappears.
[0026] Method: The oxidation potential of the electrolyzed water produced by this water electrolysis device using raw water at different temperatures and at different distances was measured using a liquid mv value detector.
[0027] result:
[0028] Table 1-1 Oxidation potential of raw water at different temperatures and measurement distances measured using a liquid mv value detector
[0029]
[0030]
[0031] Conclusion: The high oxidation potential generated by this water electrolysis device using freshly produced electrolyzed water is greatly affected by the temperature of the raw water and decays rapidly.
[0032] Example 2
[0033] Objective: To investigate the relationship between the high oxidation potential of a novel water electrolysis spray or spray device and the temperature of the raw water (a weak acid, citric acid, with a pH between 3 and 3.5).
[0034] Background: When using the above-mentioned water electrolysis device, the inventors discovered that the high oxidation potential of this water electrolysis device is affected by the temperature of the raw water. As the temperature of the raw water increases, its high oxidation potential continuously decreases. However, using citric acid, a weak acid with a pH between 3 and 3.5, as the raw water for immediate electrolysis can correct the problem of the decrease in high oxidation potential caused by the increase in the temperature of the raw water.
[0035] Method: The oxidation potential of the electrolyzed water generated by this water electrolysis device at a normal spray distance (8-10cm) was measured using a liquid mv value detector when using citric acid, a weak acid with a pH between 3 and 3.5 at different water temperatures, as raw material water.
[0036] result:
[0037] Table 2-1 Oxidation potential of raw water (weak acid citric acid with pH between 3 and 3.5) at normal spray distance (8-10 cm) measured by a liquid mv value detector.
[0038] Temperature (°C) Oxidation potential 16 ≥1200 18 ≥1200 20 ≥1200 22 ≥1200 24 ≥1200 26 ≥1200 28 ≥1200 30 ≥1200 32 1095±25 34 978±32 36 707±23 38 545±25 40 476±24
[0039] Conclusion: The high oxidation potential of this water electrolysis device is affected by the temperature of the raw water. As the temperature of the raw water increases, its high oxidation potential continuously decreases. However, using citric acid, a weak acid with a pH between 3 and 3.5, as the raw water for immediate electrolysis can correct the problem of the decrease in high oxidation potential caused by the increase in the temperature of the raw water.
[0040] Example 3
[0041] Objective: To determine the oxidation potential of electrolyzed water generated on-site using a compound acid with a pH between 3 and 3.5 as the raw material water (the compound acid is specifically prepared as follows: 0.05% citric acid, 10% lactic acid, 10% white vinegar, 2% salicylic acid, with the remainder being water).
[0042] method:
[0043] The oxidation potential of the electrolyzed water generated at a normal spray distance (8-10cm) was measured using a liquid mv value detector when different temperatures of compound acid were used as raw water in this water electrolysis device.
[0044] result:
[0045] Table 3-1 Oxidation potential of raw water (compound acid with pH between 3 and 3.5) at normal spray distance (8-10 cm) measured by a liquid mv value detector.
[0046] Temperature (°C) Oxidation potential 16 ≥1200 18 ≥1200 20 ≥1200 22 ≥1200 24 ≥1200 26 ≥1200 28 ≥1200 30 ≥1200 32 1125±25 34 1008±27 36 819±21 38 616±24 40 508±22
[0047] Conclusion: The high oxidation potential of this water electrolysis device is affected by the temperature of the raw water. As the temperature of the raw water increases, its high oxidation potential continuously decreases. However, using a compound acid with a pH between 3 and 3.5 as the raw water for immediate electrolysis can correct the problem of the decrease in high oxidation potential caused by the increase in raw water temperature.
[0048] Example 4
[0049] Objective: A novel electrolyzed water spray or water misting device uses citric acid, a weak acid with a pH between 3 and 3.5, as raw water to instantly produce electrolyzed water, which can correct the problem of poor treatment effect for skin itching and athlete's foot itching caused by the rise in the temperature of the raw water.
[0050] Background: When using the above-mentioned water electrolysis device, the inventors discovered that the electrolyzed water produced instantly by this device using citric acid, a weak acid with a pH between 3 and 3.5, enhances the treatment effect of skin itching and athlete's foot itching.
[0051] Methods: This was an open-label, single-arm, pre- and post-treatment comparative study. The treatment included 14 patients with pruritus and 14 patients with athlete's foot (mean age 42 ± 18 years). The experimental group (n=7, 4 males, 3 females) received treatment using citric acid (pH 3-3.5, 32°C) as the raw water. The solution was applied to the itchy areas using an electrolyzed water spray device until half the device volume (250 ml) was used up, once daily for one month. The control group (n=7, 4 males, 3 females) received treatment using tap water (32°C) as the raw water. The solution was applied to the itchy areas using an electrolyzed water spray device until half the device volume (250 ml) was used up, once daily for one month. After treatment, the researchers followed up with the patients and recorded the severity of pruritus using the Discomfort and Itching Scale. This discomfort and itching scale is a modification of the National Pain Rating Scale (NPRS), the most commonly used pain assessment scale in clinical practice, which is a means for doctors to unilaterally assess the intensity of a patient's pain. Researchers used numbers 0-10 to represent patients' self-ratings of the degree of scalp discomfort or itching, with "0" indicating no discomfort or itching and "10" indicating the most discomfort or itching.
[0052] result:
[0053] Table 4-1 Scale for Skin Itching and Athlete's Foot Itching (Raw Water Temperature 32℃)
[0054]
[0055] Note: Results of measurements from 7 volunteers in each group.
[0056] Conclusion: Using citric acid, a weak acid with a pH between 3 and 3.5, as the raw water can improve the therapeutic effect of instant electrolyzed water on pruritus and athlete's foot.
[0057] Example 5
[0058] Objective: A novel electrolyzed water spray or misting device uses citric acid, a weak acid with a pH between 3 and 3.5, as the raw material water to instantly produce electrolyzed water, which can correct the problem of poor facial beauty effect caused by the rise of the raw water temperature.
[0059] Background: When using the above-mentioned water electrolysis device, the inventors discovered that the facial beauty treatment effect of the electrolyzed water produced instantly by this device using citric acid, a weak acid with a pH between 3 and 3.5, as the raw material water is enhanced.
[0060] Methods: This was an open-label, single-arm, pre- and post-treatment comparative study. Ten patients (6 males, 4 females, mean age 40 ± 10 years) were included. The experimental group (3 males, 2 females) received treatment using citric acid (pH 3-3.5, 32°C) as the raw water, sprayed onto the face using an electrolyzed water spray device (eyes closed) until half the device's volume (250ml) was used up, once daily for one month. The control group (3 males, 2 females) received treatment using tap water (32°C) as the raw water, sprayed onto the face using an electrolyzed water spray device (eyes closed) until half the device's volume (250ml) was used up, once daily for one month. After treatment, researchers followed up with the patients and recorded their facial aesthetic improvement using a self-assessment scale for facial aesthetics. This scale uses a 0-10 self-assessment scale to evaluate the degree of improvement in facial aesthetics (complexion, skin hydration, and facial slimming). 10 represents the complexion before treatment, and 0 represents the best improvement the subject perceived in their complexion, meaning they looked "most energetic." In other words, 0-9 represent different degrees of improvement in complexion after treatment. 10 represents the brightness of the facial skin before treatment, and 0 represents the best level of radiance or brightness the subject perceived in their facial skin. In other words, 0-9 represent less significant improvement in radiance or brightness of the facial skin after treatment. 10 represents the condition of the face before treatment, and 0 represents the best level of facial fat reduction or slimming the face. In other words, 0-9 represent improvements in the degree of facial fat reduction or slimming the face after treatment.
[0061] result:
[0062] Table 5-1 Facial Beauty Self-Assessment Scale (Raw water temperature 32℃)
[0063]
[0064]
[0065] Note: The results were obtained from 5 volunteers in each group.
[0066] Conclusion: Using citric acid, a weak acid with a pH between 3 and 3.5, as the raw water can improve the therapeutic effect of instant electrolyzed water on facial beauty.
[0067] Example 6
[0068] Objective: To measure the oxidation-reduction potential of electrolyzed water produced on-site using raw water with different pH values in an electrolyzed water device.
[0069] method:
[0070] The liquid mv value detector measures the oxidation potential (liquid mv) of electrolyzed water produced immediately from water samples with pH values below 32℃ (pH=3, pH=3.5, pH=7, pH=12).
[0071] result:
[0072] Table 6-1 Oxidation-reduction potentials of electrolyzed water produced immediately from feed water at different pH values (feed water temperature 32℃)
[0073] pH Oxidation potential measured in real time 3 (weak acid, citric acid, or complex acid) 1095±25mV 3.5 (weak acid, citric acid, or complex acid) 1067±23mV 7 (Neutral water, tap water) 815±15mV 12 (alkaline water) -50±3mV
[0074] Note: Results from three consecutive measurements.
[0075] in conclusion:
[0076] Using weak acids such as citric acid and compound acids with a pH between 3 and 3.5 as raw water can significantly increase the oxidation potential of the electrolyzed water produced by the equipment, thereby correcting the problem of reduced machine oxidation potential caused by increased water and ambient temperatures in summer and improving the biological efficacy of the equipment. Using alkaline water as raw water will significantly reduce the oxidation potential of the electrolyzed water produced by the equipment, thus reducing the effectiveness of the equipment.
[0077] Example 7
[0078] Objective: To measure the redox potential of different raw water sources used in the water electrolysis equipment, namely, electrolyzed water, electrolyzed acidic solution (weak acid citric acid or compound acid with pH between 3 and 3.5), electrolyzed small molecule hyaluronic acid solution (HA35 solution), electrolyzed acidic small molecule hyaluronic acid solution (a mixed solution of weak acid citric acid and small molecule hyaluronic acid HA35 with pH between 3 and 3.5; or a mixed solution of compound acid and small molecule hyaluronic acid HA35 with pH between 3 and 3.5, without electrolysis) and acidic small molecule hyaluronic acid solution (a mixed solution of weak acid citric acid and small molecule hyaluronic acid HA35 with pH between 3 and 3.5; or a mixed solution of compound acid and small molecule hyaluronic acid HA35 with pH between 3 and 3.5, without electrolysis).
[0079] The preparation process of HA35 is based on Chinese patent application CN105018547A (A bioactive hyaluronic acid fragment, its production method, application, formulation and articles containing the formulation) and Chinese patent application CN114848667A (A new application and manufacturing method of a hyaluronic acid fragment). Among them, Chinese patent application CN105018547A (A bioactive hyaluronic acid fragment, its production method, application, formulation and article containing the formulation) discloses a hyaluronic acid fragment with a molecular weight of 10KD-60KD produced by cleaving large molecular weight hyaluronic acid with glycosylated recombinant human hyaluronidase PH20 produced by CHO cells, at least one end of which is cleaved by recombinant human hyaluronidase that can recognize the normal structure of hyaluronic acid; further research (Chinese patent application CN114848667A - A new application and manufacturing method of hyaluronic acid fragment) shows that by using recombinant human hyaluronidase PH20 or extracted bovine hyaluronidase PH20, sufficient or slightly excessive enzymatic hydrolysis of high or medium molecular weight hyaluronic acid raw materials can produce a hyaluronic acid fragment with an average molecular weight of 35±8KDa (i.e., an average molecular weight of about 35KDa) that can pass through a 0.22μm pore size filter membrane, referred to as HA35.
[0080] background:
[0081] The inventors discovered that using an acidic small-molecule hyaluronic acid solution as the raw water for the water electrolysis device resulted in a stronger cosmetic effect on the skin.
[0082] method:
[0083] The liquid mv value analyzer measures the redox potential of the following solutions at a raw water temperature of 32℃: electrolyzed water, electrolyzed acidic solutions (weak acid citric acid and compound acid with pH between 3 and 3.5), electrolyzed small molecule hyaluronic acid solution (HA35 solution), electrolyzed acidic small molecule hyaluronic acid solution (a mixed solution of weak acid citric acid and small molecule hyaluronic acid HA35 with pH between 3 and 3.5; or a mixed solution of compound acid and small molecule hyaluronic acid HA35 with pH between 3 and 3.5, without electrolysis)
[0084] result:
[0085] Table 7-1 Oxidation-reduction potentials of different raw water sources (raw water temperature 32℃)
[0086]
[0087] Note: Results from three consecutive measurements.
[0088] Conclusion: The addition of small molecule hyaluronic acid had no significant effect on the high oxidation potential of the water electrolysis device. The enhancement of its biological function may be due to the high oxidation potential promoting the absorption of small molecule hyaluronic acid or the small molecule hyaluronic acid solving the skin dryness caused by the high oxidation potential.
[0089] Example 8
[0090] Objective: To develop a novel electrolyzed water spray or water spraying device that uses acidic small molecule hyaluronic acid solution (a mixed solution of weak acid citric acid and small molecule hyaluronic acid HA35 with pH between 3 and 3.5; or a mixed solution of compound acid and small molecule hyaluronic acid HA35 with pH between 3 and 3.5) as raw water to instantly generate electrolyzed water for facial beauty.
[0091] Background: When using the above-mentioned water electrolysis device, the inventors discovered that the facial beauty treatment effect of the electrolyzed water produced instantly using acidic small molecule hyaluronic acid solution (a mixed solution of weak acid citric acid and small molecule hyaluronic acid HA35 with pH between 3 and 3.5; or a mixed solution of complex acid and small molecule hyaluronic acid HA35 with pH between 3 and 3.5) as raw water is enhanced.
[0092] Methods: This was an open-label, single-arm, pre- and post-treatment comparative study. Twenty-five patients (10 males, 15 females, mean age 40 ± 15 years) were treated. Four experimental groups were included, with five patients in each group (2 males, 3 females). Treatment methods involved spraying the face with electrolyzed water, electrolyzed low-molecular-weight hyaluronic acid solution, electrolyzed acidic low-molecular-weight hyaluronic acid solution (a mixture of weakly acidic citric acid and low-molecular-weight hyaluronic acid HA35 with a pH between 3 and 3.5; or a mixture of compound acid and low-molecular-weight hyaluronic acid HA35 with a pH between 3 and 3.5, without electrolysis), and acidic low-molecular-weight hyaluronic acid solution (a mixture of weakly acidic citric acid and low-molecular-weight hyaluronic acid HA35 with a pH between 3 and 3.5; or a mixture of compound acid and low-molecular-weight hyaluronic acid HA35 with a pH between 3 and 3.5, without electrolysis), with eyes closed, until half the device's volume (250ml) was used. The treatment involved two groups: a control group (2 males and 3 females) who received an electrolyzed acidic solution (a weak acid, such as citric acid or a compound acid, with a pH between 3 and 3.5) sprayed on their faces (eyes closed during spraying) until half the device's volume (250 ml) was used up, once daily for one month. After treatment, researchers followed up with the patients, recording their facial aesthetic improvement using a self-assessment scale. This scale, ranging from 0 to 10, reflects the degree of improvement in facial aesthetics (complexion, skin hydration, and facial slimming). A 10 represents the pre-treatment complexion, while a 0 represents the best perceived improvement, indicating the patient looked "most energetic." In other words, 0-9 represent varying degrees of improvement after treatment. Similarly, a 10 represents the pre-treatment skin brightness, while a 0 represents the best perceived hydration or brightness. In other words, 0-9 represent less significant improvement in skin hydration or brightness after treatment. A score of 10 indicates the facial condition before treatment, while 0 indicates that the subject considered the facial fat dissolution or slimming effect to be the best. In other words, 0-9 represents the improvement in facial fat dissolution or slimming effect after treatment.
[0093] result:
[0094] Table 8-1 Facial Beauty Self-Assessment Scale (Raw Water Temperature 32℃)
[0095]
[0096] Note: The results were obtained from 5 volunteers in each group.
[0097] Conclusion: The addition of small molecule hyaluronic acid significantly enhanced the facial beauty effect of the water electrolysis device. This may be because the high oxidation potential promoted the absorption of small molecule hyaluronic acid, or because the small molecule hyaluronic acid solved the skin dryness problem caused by spraying the face with high oxidation potential.
[0098] Example 9
[0099] Objective: To improve the microbial killing effect of electrolyzed water produced instantly using a novel electrolyzed water spray or spraying device with a pH between 3 and 3.5, using citric acid or a compound acid as raw water.
[0100] Background: When using the above-mentioned water electrolysis device, the inventors discovered that the electrolyzed water produced by this device using weak acid citric acid or compound acid with a pH between 3 and 3.5 as raw water has a stronger effect in killing microorganisms.
[0101] Methods: Following the disinfection technical specifications (Ministry of Health, 2002 edition), Part II (2.1.5.8), disinfection was carried out within the specified range of 5×10⁻⁶. 5 -5×10 6 For the E. coli culture, the experimental group used weakly acidic citric acid or a compound acid with a pH between 3 and 3.5 as the raw water, and directly sprayed the culture plates using an electrolyzing water device for 30 seconds. The control group used tap water as the raw water, and directly sprayed the culture plates using an electrolyzing water device for 30 seconds. Finally, the kill rate of E. coli on the culture plates was calculated, and the results were obtained.
[0102] result:
[0103] Table 9-1 Escherichia coli kill rate in collected water samples (raw water temperature 32℃)
[0104]
[0105] Note: Results from three consecutive measurements.
[0106] Conclusion: Using weak acid citric acid or compound acid with a pH between 3 and 3.5 as raw water significantly improves the microbial killing effect.
[0107] In the above embodiments, when compound acids are involved, only a certain ratio of compound acid is given (specifically, 0.05% citric acid, 10% lactic acid, 10% white vinegar, 2% salicylic acid, and the remainder is water). In fact, as long as the pH is between 3 and 3.5, it can be prepared with at least two of citric acid, lactic acid, white vinegar, and salicylic acid, as well as water, and similar effects can be achieved.
[0108] The above description is merely a preferred embodiment of the present invention and is not intended to limit the present invention in any way. Any simple modifications, equivalent changes, or alterations made by those skilled in the art using the disclosed technical content shall fall within the protection scope of the present invention.
Claims
1. A method for manufacturing high oxidation potential water, characterized in that, Using weak acid citric acid or complex acid as raw water, an electrolytic water device with conductive diamond electrodes is used to electrolyze the water, instantly producing an electrolyzed water spray or water jet with a high oxidation potential of ≥1200mv. The pH of the weak acid citric acid or complex acid is between 3 and 3.5; The compound acid comprises at least two of the following: citric acid, lactic acid, white vinegar, and salicylic acid, as well as water.
2. The method for manufacturing high oxidation potential water according to claim 1, characterized in that, The anode surface of the water electrolysis device is made using a layer of conductive diamond material.
3. The method for manufacturing high oxidation potential water according to claim 1, characterized in that, The compound acid is prepared by comprising 0.05% citric acid, 10% lactic acid, 10% white vinegar, 2% salicylic acid, and the remainder being water.
4. The method for manufacturing high oxidation potential water according to claim 1, characterized in that, The raw water also contains small molecule hyaluronic acid HA35.
5. The method for manufacturing high oxidation potential water according to any one of claims 1-4, characterized in that, The temperature of the raw water is 16-32 degrees Celsius; or the temperature of the raw water is 20-32 degrees Celsius.
6. A high oxidation potential water, characterized in that, It is manufactured in real time using the manufacturing method described in any one of claims 1-5.
7. An application of the high oxidation potential water according to claim 6, characterized in that, The application is as follows: (1) Used to prepare medicines for relieving or treating pruritus, redness and swelling of the skin or pruritus of the feet; (2) Used for facial beauty; Or (3) used to prepare electrolyzed water spray or water spray for killing microorganisms.
8. The application of the high oxidation potential water according to claim 7, characterized in that, The facial beauty treatments include complexion, skin hydration, and facial slimming.
9. The application of high oxidation potential water according to claim 7 or 8, characterized in that, It prevents the functional effect from decreasing when used in high-temperature environments during summer.
Citation Information
Patent Citations
Bioactive hyaluronic acid fragment, production method, application, preparation and object containing preparation
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New application and preparation method of hyaluronic acid fragment
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