Plant active slimming conditioning bath liquid and method for preparing the same
Patent Information
- Application Number
- CN202611042991.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-07-14
- Publication Date
- 2026-08-21
AI Technical Summary
[0002]当前市场上的植物减肥泡浴液,大多采用常见的草本组合,成分和功效较为常规,其在原料处理上多使用简单的浸泡或普通加热提取,有效成分提取率低;在制备工艺方面,也未充分考虑活性成分稳定性和产品使用体验的优化,因此,开发一种在原料和工艺上均具备突出创新性的植物活性减肥调理泡浴液迫在眉睫
[0014]藤黄果提取物和壳寡糖的加入,以及与传统植物原料的协同搭配,形成全新的减肥调理机制,相比现有产品,减肥效果提升 30% - 50%,同时显著增强皮肤护理功效;
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Abstract
Description
Technical Field
[0001] This invention belongs to the field of bath liquid technology, specifically referring to a plant-based active weight loss and conditioning bath liquid and its preparation method. Background Technology
[0002] Most plant-based slimming bath liquids currently on the market use common herbal combinations with relatively conventional ingredients and effects. Their raw material processing often involves simple soaking or ordinary heating extraction, resulting in a low extraction rate of effective ingredients. In terms of preparation technology, the stability of active ingredients and optimization of product user experience have not been fully considered. Therefore, it is urgent to develop a plant-based active slimming and conditioning bath liquid with outstanding innovation in both raw materials and processes. Summary of the Invention
[0003] To address the aforementioned challenges, this invention provides a plant-based active weight-loss conditioning bath liquid and its preparation method, which enhances the weight-loss conditioning effect while simultaneously strengthening the nourishment and protection of the skin.
[0004] To achieve the above functions, the technical solution adopted by the present invention is as follows: A plant-based active weight loss and conditioning bath liquid, comprising the following components by weight: 12-18 parts lotus leaf, 10-14 parts hawthorn, 8-11 parts cassia seed, 6-9 parts seaweed, 4-7 parts ginger, 3-5 parts peppermint, 3-4 parts mugwort, 2-5 parts Garcinia cambogia extract, 1-3 parts chitosan oligosaccharide, 6-12 parts glycerin, 0.8-1.8 parts sodium hyaluronate, 0.2-0.4 parts sodium benzoate, and 120-180 parts deionized water.
[0005] This invention also discloses a plant-based active weight-loss conditioning bath liquid and its preparation method, characterized by comprising the following steps:
[0006] Raw material pretreatment: Wash lotus leaves, hawthorn, cassia seeds, seaweed, ginger, mint, and mugwort leaves separately, dry them, pulverize them, and pass them through a 100-120 mesh sieve to obtain powders of each raw material; dissolve Garcinia Cambogia extract and chitosan oligosaccharide separately in an appropriate amount of deionized water to prepare solutions with a mass fraction of 10-15% for later use.
[0007] Extraction: Mix the powders of seven raw materials, including lotus leaf and hawthorn, in a certain proportion, add 6-7 times the amount of deionized water, and add 0.1-0.3% cellulase. Extract for 1.5-2 hours at a temperature of 45-55℃ and an ultrasonic power of 300-400W. Filter to obtain the extract. Add 4-5 times the amount of deionized water to the filter residue and repeat the extraction once. Combine the extracts.
[0008] Concentration and protection: The extract is concentrated through a nanofiltration membrane at a temperature of 30-40℃ and a pressure of 0.3-0.5MPa to 1 / 4-1 / 3 of its original volume;
[0009] Preparation and microemulsification: Add glycerin, sodium hyaluronate and sodium benzoate to the concentrate in sequence and stir until homogeneous; then add Garcinia Cambogia extract solution and chitosan oligosaccharide solution and stir to emulsify for 10-15 minutes; finally add the remaining deionized water and stir until completely dissolved to obtain a homogeneous mixture.
[0010] Filtration and filling: The mixture is filtered through a 0.1μm polyvinylidene fluoride (PVDF) membrane to remove tiny impurities and microorganisms, and then filled into sterile packaging containers and sealed to obtain plant-based active weight loss conditioning bath liquid.
[0011] Preferably, the nanofiltration membrane in step (3) has a molecular weight of 500-1000 Da.
[0012] Preferably, in step (4), a high-speed shear emulsifier is used for emulsification at a speed of 8000-10000 r / min.
[0013] The beneficial effects achieved by adopting the above structure in this invention are as follows:
[0014] The addition of Garcinia Cambogia extract and chitosan oligosaccharide, along with the synergistic combination with traditional plant ingredients, forms a brand-new weight loss conditioning mechanism. Compared with existing products, the weight loss effect is increased by 30% - 50%, while significantly enhancing skin care effects.
[0015] Ultrasonic-assisted extraction combined with cellulase treatment significantly improves the extraction rate of active ingredients; the application of nanofiltration membrane concentration and microemulsification technology not only protects the active ingredients but also improves product stability and skin absorption, demonstrating significant innovation and progress in the preparation process.
[0016] The bath liquid of this invention not only has outstanding weight loss and conditioning effects, but also deeply nourishes the skin and improves problems such as dry and rough skin; the preparation process is suitable for large-scale industrial production and has extremely high market application value and competitiveness. Detailed Implementation
[0017] The technical solution of the present invention will be clearly and completely described below with reference to the embodiments. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention. Example 1
[0018] This invention relates to a plant-based active weight-loss conditioning bath liquid and its preparation method. The plant-based active weight-loss conditioning bath liquid, by weight, comprises: 12 parts lotus leaf, 10 parts hawthorn, 8 parts cassia seed, 6 parts seaweed, 4 parts ginger, 3 parts peppermint, 3 parts mugwort, 2 parts Garcinia cambogia extract, 1 part chitosan oligosaccharide, 6 parts glycerin, 0.8 parts sodium hyaluronate, 0.2 parts sodium benzoate, and 120 parts deionized water.
[0019] This invention also discloses a method for preparing a plant-based active weight-loss conditioning bath liquid, comprising the following steps:
[0020] Raw material pretreatment: Wash, dry, and crush seven kinds of raw materials, including lotus leaves, and pass them through a 100-mesh sieve; prepare 10% solutions of Garcinia Cambogia extract and chitosan oligosaccharide separately with deionized water;
[0021] Extraction: Mix the seven raw material powders, add 6 times the amount of deionized water and 0.1% cellulase, and extract for 1.5 hours at 45℃ and 300W ultrasonic power. Filter; the filter residue is then extracted once more with 4 times the amount of deionized water, and the extracts are combined.
[0022] Concentration and protection: The extract was concentrated to 1 / 4 of its original volume by passing it through a 500 Da nanofiltration membrane at 30 °C and 0.3 MPa.
[0023] Blending and microemulsification: Add other ingredients to the concentrate in sequence, stir evenly, emulsify for 10 minutes at 8000 r / min using a high-speed shear emulsifier, and then add the remaining deionized water and stir evenly.
[0024] Filtration and filling: The mixture is filtered through a 0.1μm PVDF membrane and then filled and sealed. Example 2
[0025] This invention discloses a plant-based active weight-loss conditioning bath liquid and its preparation method. The plant-based active weight-loss conditioning bath liquid, by weight, comprises: 15 parts lotus leaf, 12 parts hawthorn, 10 parts cassia seed, 8 parts seaweed, 6 parts ginger, 4 parts peppermint, 3.5 parts mugwort, 3.5 parts Garcinia cambogia extract, 2 parts chitosan oligosaccharide, 9 parts glycerin, 1.3 parts sodium hyaluronate, 0.3 parts sodium benzoate, and 150 parts deionized water.
[0026] (1) Raw material pretreatment: The raw material treatment is the same as in Example 1, and the mass fraction of Garcinia Cambogia extract and chitosan oligosaccharide solution is 12%.
[0027] (2) Extraction: Add 6.5 times the amount of deionized water and 0.2% cellulase, and extract for 1.8 hours at 50℃ and 350W ultrasonic power;
[0028] (3) Concentration and protection: Concentrate to 1 / 3 of the original volume through a 700 Da nanofiltration membrane at 35℃ and 0.4 MPa;
[0029] (4) Blending and emulsification: High-speed shear emulsifier with a speed of 9000 r / min, emulsification for 12 minutes;
[0030] (5) Filtering and filling: Same as in Example 1. Example 3
[0031] This invention relates to a plant-based active weight-loss conditioning bath liquid and its preparation method. The plant-based active weight-loss conditioning bath liquid, by weight, comprises: 18 parts lotus leaf, 14 parts hawthorn, 11 parts cassia seed, 9 parts seaweed, 7 parts ginger, 5 parts peppermint, 4 parts mugwort, 5 parts Garcinia cambogia extract, 3 parts chitosan oligosaccharide, 12 parts glycerin, 1.8 parts sodium hyaluronate, 0.4 parts sodium benzoate, and 180 parts deionized water.
[0032] This invention also discloses a plant-based active weight-loss conditioning bath liquid and its preparation method, comprising the following steps:
[0033] (1) Raw material pretreatment: The raw material treatment was the same as in Example 1, with Garcinia Cambogia extract and chitosan oligosaccharide solution having a mass fraction of 15%;
[0034] (2) Extraction: Add 7 times the amount of deionized water and 0.3% cellulase, and extract for 2 hours at 55℃ and 400W ultrasonic power;
[0035] (3) Concentration and protection: Concentrate to 1 / 3 of the original volume through a 1000 Da nanofiltration membrane at 40℃ and 0.5 MPa;
[0036] (4) Mixing and emulsification: High-speed shear emulsifier speed 10000r / min, emulsification for 15 minutes;
[0037] (5) Filtering and filling: Same as in Example 1.
[0038] In practice, 180 healthy volunteers aged 20-45 years with a BMI of overweight (BMI≥24) were selected and randomly divided into 6 groups of 30 each. Each group used the bath liquids of Example 1, Example 2, and Example 3, as well as a traditional weight loss bath liquid with high sales volume on the market (control group 1) and a blank control group (using ordinary shower gel).
[0039] The experiment lasted for 8 weeks, requiring volunteers to use bath soap or shower gel 3 times a week for 20 minutes each time, and to maintain a normal diet and daily exercise during the experiment.
[0040] Volunteers' weight, waist circumference, and body fat percentage were measured before the start of the experiment, at week 4, and at week 8, and the changes in each indicator were calculated.
[0041] After the experiment, the volunteers' skin moisture content, elasticity, and roughness were tested using a professional skin testing instrument; at the same time, the volunteers were asked to give subjective ratings (out of 10) on the comfort and smoothness of their skin after the treatment.
[0042] Table 1
[0043]
[0044] Table 2
[0045]
[0046] The comparative analysis of the effects of the three embodiments in Tables 1 and 2 shows that the plant-based active weight loss and conditioning bath liquid of the present invention is significantly superior to traditional products in terms of weight loss efficacy, skin care effect, and product stability. Among them, Example 3, with its superior raw material ratio and process parameters, performs the best in all indicators, fully demonstrating the superiority and feasibility of the innovative technical solution of the present invention, and has good market application prospects and promotion value.
[0047] The present invention and its embodiments have been described above, and such description is not restrictive. In conclusion, if those skilled in the art are inspired by this description and design similar structures and embodiments without departing from the spirit of the invention, such designs should fall within the protection scope of the present invention.
Claims
1. A plant-based active weight loss and conditioning bath liquid, characterized in that, The ingredients, by weight, include the following components: 12-18 parts lotus leaf, 10-14 parts hawthorn, 8-11 parts cassia seed, 6-9 parts seaweed, 4-7 parts ginger, 3-5 parts peppermint, 3-4 parts mugwort, 2-5 parts Garcinia cambogia extract, 1-3 parts chitosan oligosaccharide, 6-12 parts glycerin, 0.8-1.8 parts sodium hyaluronate, 0.2-0.4 parts sodium benzoate, and 120-180 parts deionized water.
2. A method for preparing a plant-based active weight-loss conditioning bath liquid as described in claim 1, characterized in that: Includes the following steps: (1) Raw material pretreatment: Wash lotus leaves, hawthorn, cassia seeds, seaweed, ginger, mint and mugwort leaves respectively, dry them and then crush them and pass them through a 100-120 mesh sieve to obtain powder of each raw material; dissolve Garcinia cambogia extract and chitosan oligosaccharide in an appropriate amount of deionized water to prepare a solution with a mass fraction of 10-15% for later use. (2) Extraction: Mix the powders of seven raw materials, including lotus leaf and hawthorn, in proportion, add 6-7 times the amount of deionized water, and add 0.1-0.3% cellulase. Extract for 1.5-2 hours at a temperature of 45-55℃ and an ultrasonic power of 300-400W. Filter to obtain the extract. Add 4-5 times the amount of deionized water to the filter residue and repeat the extraction once. Combine the extracts. (3) Concentration and protection: The extract is concentrated by passing it through a nanofiltration membrane at a temperature of 30-40℃ and a pressure of 0.3-0.5MPa to 1 / 4-1 / 3 of its original volume; (4) Preparation and microemulsification: Add glycerin, sodium hyaluronate and sodium benzoate to the concentrate in sequence and stir evenly; then add Garcinia cambogia extract solution and chitosan oligosaccharide solution and stir emulsify for 10-15 minutes; finally add the remaining deionized water and stir until completely dissolved to obtain a uniform mixture. (5) Filtration and filling: The mixture is filtered through a 0.1μm polyvinylidene fluoride (PVDF) membrane to remove tiny impurities and microorganisms, and then filled into a sterile packaging container and sealed to obtain the plant active weight loss conditioning bath liquid.
3. A method for preparing a plant-based active weight-loss conditioning bath liquid as described in claim 2, characterized in that: The nanofiltration membrane in step (3) has a molecular weight of 500-1000 Da.
4. A method for preparing a plant-based active weight-loss conditioning bath liquid as described in claim 2, characterized in that: In step (4), a high-speed shear emulsifier is used for emulsification at a speed of 8000-10000 r / min.