Substitutional tea beverage based on Chinese herbal medicines and preparation method thereof
Through the scientific combination of Chinese herbal formulas and advanced preparation technology, a substitute tea beverage is prepared to enhance male immunity and improve skin and gastrointestinal function, which solves the shortcomings of existing male functional tea products and achieves efficient ingredient extraction and natural health effects.
Patent Information
- Application Number
- CN202510805204.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-17
- Publication Date
- 2025-09-16
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of beverages, and particularly relates to a beauty-enhancing substitute tea based on Chinese herbal medicine and a preparation method thereof. Background Art
[0002] With socioeconomic development and rising living standards, men are increasingly concerned about their image and health. Immunity is no longer a concern exclusive to women. Modern men face numerous challenges, including work pressure, environmental pollution, and irregular lifestyles. Prolonged late nights can lead to endocrine disorders, dull, rough skin, and frequent acne. High mental stress can cause insomnia, anxiety, and a weakened immune system. Overwork can slow metabolism and lead to insufficient Qi and blood, all of which severely impact men's appearance and health.
[0003] Currently, most functional products on the market are primarily targeted at women, with few products targeting men's immune needs. Some existing functional tea products often feature formulas that focus on simplicity and late-night benefits, failing to address the health needs of men due to factors like work pressure, alcohol and socializing. They also often utilize single plant ingredients or simple formulas, lacking comprehensive support for male bodily functions. Traditional extraction and processing methods can easily lead to the loss of active ingredients, hindering the full potential of the raw materials. Product stability and taste are also limited. Summary of the Invention
[0004] The object of the present invention is to provide a tea substitute beverage based on Chinese herbal medicine and a preparation method thereof, so as to solve the problems raised in the above background technology.
[0005] To achieve the above object, the present invention provides the following technical solutions:
[0006] Based on a Chinese herbal tea substitute beverage and a preparation method thereof, the tea substitute includes the following materials in parts by weight: 10 parts of Ganoderma lucidum, 8 parts of Rhodiola rosea, 7 parts of lily, 10 parts of Polygonatum sibiricum, 6 parts of Cistanche deserticola, 5 parts of mulberry, 12 parts of wolfberry, 10 parts of bergamot, and 5 parts of hawthorn.
[0007] The preparation method of the Chinese herbal medicine beauty substitute tea comprises the following steps:
[0008] S1. Raw material pretreatment:
[0009] 10 parts of Ganoderma lucidum, 8 parts of Rhodiola rosea, 7 parts of lily, 10 parts of Polygonatum sibiricum, 6 parts of Cistanche deserticola, 5 parts of mulberry, 12 parts of wolfberry, 10 parts of bergamot, and 5 parts of hawthorn were selected, and the Polygonatum sibiricum and Cistanche deserticola were sliced to a thickness of 2-3 mm. All the raw materials were screened to remove impurities and moldy parts, and the raw materials were quickly rinsed with clean water and placed in a cool and ventilated place to dry the surface moisture;
[0010] S2. Embedded component processing:
[0011] Ganoderma lucidum and Rhodiola rosea were embedded in β-cyclodextrin. The raw materials were crushed and passed through a 100-mesh sieve. The raw material powder and β-cyclodextrin were fully mixed in a ratio of 1:4. Deionized water 3 times the total mass of the raw materials was added. The mixture was stirred and embedded at 45°C and 200 r / min for 3 hours to promote the full combination of β-cyclodextrin and the raw material components. After the embedding was completed, the mixture was transferred to a vacuum drying oven to obtain the embedded powder for use.
[0012] S3, step-by-step countercurrent extraction
[0013] Extraction of mixed solution A: put the pretreated Ganoderma lucidum, Rhodiola rosea, lily, bergamot, and hawthorn into a multifunctional extraction tank, add 95°C hot water 12 times the total mass of the raw materials, start stirring, and after the extraction is completed, perform solid-liquid separation through a plate and frame filter press with the pressure controlled at 0.3-0.4 MPa, and combine the two filtrates to obtain mixed solution A;
[0014] The sliced Polygonatum sibiricum and Cistanche deserticola were placed in an extraction tank, and 80°C hot water 10 times the total mass of the raw materials was added for one extraction for 50 min. After the extraction was completed, a centrifuge was used for solid-liquid separation at a centrifugal speed of 3000 r / min for 10 min, and the supernatant was collected as mixed solution B;
[0015] Place wolfberry in an extraction kettle, add 60% ethanol (8 times the mass of the raw material), and after the extraction is completed, filter through a vacuum filtration device to obtain a mixed solution C;
[0016] Add mulberries to 60°C pure water (10 times the mass of the raw materials) and soak for 20 minutes. Stir gently every 5 minutes during the soaking process at a stirring speed of 40 r / min. After the soaking is completed, filter to obtain a mixed solution D.
[0017] S4, Hybrid
[0018] Transfer the mixed solutions A, B, C, and D into a vacuum concentrator, add the pre-treated embedding powder and stir; then add oligofructose and resistant dextrin in sequence and stir, and finally add the remaining 40% of β-cyclodextrin and stir to obtain a mixed solution;
[0019] S5. Drying
[0020] The mixed liquid is transported to a pressure spray dryer through a pipeline for spray drying. The dried powder is collected and the moisture content is tested to ensure it is ≤5%;
[0021] S6, granulation
[0022] The spray-dried powder was fed into the fluidized bed granulator, and 6% maltodextrin solution was used as a binder and sprayed into the granulator at a rate of 5 mL / min through a peristaltic pump. The temperature in the fluidized bed was controlled at 55-65°C and the air flow rate was 150 m 3 / h, forming uniform particles with a particle size of 0.3-0.5mm under fluidized state;
[0023] S7, Sterilization and Packaging
[0024] Sterilization is performed using cobalt-60 gamma irradiation at a dose of 9 kGy to ensure effective microbial destruction. Sterilized particles are quickly packaged in aluminum foil bags filled with nitrogen. The nitrogen purity within the bags is ≥99.5%, and the heat sealing temperature is 180°C for 3 seconds.
[0025] Preferably, the extraction condition of the mixed solution A in S2 is 95°C hot water, extracted twice, each time for 30 minutes.
[0026] Preferably, the vacuum drying oven in S2 is set at 55°C and vacuum degree -0.09MPa until the moisture content is ≤3%.
[0027] Preferably, the multifunctional extraction tank for preparing the mixed solution A in S3 is specifically set to have a rotation speed of 80 r / min, and is extracted twice, with each extraction time of 35 min.
[0028] Preferably, in the extraction process of the mixed solution B in S3, the stirring speed of the extraction tank is maintained at 60 r / min.
[0029] Preferably, during the extraction process, the mixed solution C in S3 is set at 75° C. in the extraction kettle, and reflux extraction is performed once for 70 min, during which the mixed solution C is stirred once every 20 min for 2 min at a rotation speed of 100 r / min.
[0030] Preferably, the filtration of the mixed solution D in S3 is performed by using an ultrafiltration membrane (molecular weight cut-off 10000Da) for filtration separation.
[0031] Preferably, the specific mixing step in S4 is to concentrate the mixed liquid to a solid content of 45% in a vacuum concentration tank set at 60°C and -0.09MPa, and when the temperature of the concentrated liquid drops to 55°C, add the pretreated embedding powder and stir at a speed of 150r / min for 30min; then add oligofructose and resistant dextrin in sequence, and continue stirring for 40min until completely dissolved; finally, add the remaining 40% of β-cyclodextrin and stir for 25min to mix the materials evenly.
[0032] Preferably, the pressure spray dryer in S5 is set to have an air inlet temperature of 170°C, an air outlet temperature of 90°C, and an atomization pressure of 28 MPa.
[0033] Compared with the prior art, the present invention has the following beneficial effects:
[0034] The male substitute tea beverage of the present invention, through a scientifically formulated Chinese herbal formula, helps to improve poor blood circulation caused by work stress and prolonged sitting, alleviates dull skin, and simultaneously enhances male immunity, reduces fatigue, and improves physical weakness caused by overwork. Hawthorn and tangerine peel can also help digest food and eliminate stagnation, helping men cope with the gastrointestinal burden caused by frequent social engagements and irregular diets, and promoting body metabolism. The synergistic effect of the ingredients fully meets men's beauty needs in multiple aspects, including anti-fatigue, endocrine regulation, skin improvement, and gastrointestinal conditioning.
[0035] At the same time, the present invention adopts a step-by-step countercurrent extraction process, selects appropriate extraction solvents, temperatures and times according to the characteristics of different raw materials, and adopts the application of ultrafine grinding and β-cyclodextrin pre-encapsulation technology, which not only increases the specific surface area of the raw materials and promotes the dissolution of effective ingredients, but also protects heat-sensitive and volatile components, reducing losses during processing. Compared with traditional processes, the extraction rate of effective ingredients is increased by about 30%, ensuring product efficacy.
[0036] All natural Chinese herbal ingredients are used, without adding chemically synthesized preservatives, pigments and flavors. While meeting men's beauty needs, it avoids the possible adverse effects of chemical substances on the body, which is in line with modern consumers' pursuit of natural and healthy consumption concepts. DETAILED DESCRIPTION
[0037] The following will be combined with the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0038] Example 1:
[0039] Preparation method of Chinese herbal medicine tea substitute beverage:
[0040] (1) Raw material screening and preliminary processing
[0041] Accurately weigh 10kg of Ganoderma lucidum, 8kg of Rhodiola rosea, 7kg of Lilium bulbs, 10kg of Polygonatum sibiricum, 6kg of Cistanche deserticola, 5kg of Mulberries, 12kg of Lycium barbarum, 10kg of Citron, and 5kg of Hawthorn fruit. Spread the ingredients evenly on a stainless steel sorting table fitted with a 5mm mesh screen. Manually screen each ingredient individually to remove impurities, insect-infested areas, and moldy parts. Transfer the screened ingredients to a cleaning tank equipped with a spray system and gently rinse them with deionized water at a flow rate of 5L / min for 3 minutes. After rinsing, drain the surface moisture by tilting the drain tank. Spread the ingredients flat on a plastic tray with a mesh bottom for ventilation. Place in a constant temperature and humidity drying room at 28°C and 55% humidity and air dry for 8 hours. Using specialized slicing equipment, slice the Polygonatum sibiricum and Cistanche deserticola into uniform 2.5mm slices.
[0042] (2) Embedded component processing
[0043] 10kg of Ganoderma lucidum and 8kg of Rhodiola rosea were placed in a grinder for crushing, and the crushed materials were sieved through a 100-mesh sieve to collect qualified powder. According to the mass ratio of raw material powder to β-cyclodextrin of 1:4, 72kg of β-cyclodextrin was weighed and poured into a stainless steel stirring tank with a volume of 300L together with Ganoderma lucidum and Rhodiola rosea powder. Deionized water was added in an amount of 3 times the total mass of the raw materials (i.e. 54kg), the stirring device was turned on, the stirring speed was set to 200r / min, and the stirring and embedding were carried out at a constant temperature of 45°C for 3 hours. After the embedding is completed, the material is transferred to a vacuum drying oven, the temperature is set to 55°C and the vacuum degree is -0.09MPa, and it is dried for 12 hours until the moisture content of the material is reduced to 2.8%. The dried material is taken out and crushed again, and sieved through an 80-mesh sieve to obtain the embedded powder and seal it for later use.
[0044] 2. Step-by-step countercurrent extraction
[0045] Extraction of mixed solution A: Place 7kg of pretreated Ganoderma lucidum, Rhodiola rosea, lily bulb, 10kg of bergamot, and 5kg of hawthorn into a 1500L multifunctional extraction tank. Add 95°C hot water (12 times the total mass of the raw materials, i.e., 360kg). Stirring is started at 80 rpm. Perform two extractions, each lasting 35 minutes. After each extraction, solid-liquid separation is performed using a plate and frame filter press, maintaining the filtration pressure at 0.35 MPa. Combine the filtrates from the two filtrations to obtain approximately 330kg of mixed solution A.
[0046] Extraction of Mixed Solution B: Place the sliced Polygonatum and Cistanche deserticola in a 500L extraction tank, add 80°C hot water (10 times the total mass of the raw materials, i.e., 160kg), and stir and extract once at a speed of 60r / min for 50min. After extraction, transfer the material to a centrifuge, set the centrifugal speed to 3000r / min, and centrifuge for 10min. Collect the supernatant after centrifugation as approximately 145kg of Mixed Solution B.
[0047] Lycium barbarum extraction: Place 12 kg of wolfberries in a 200 L extraction kettle. Add 60% ethanol (8 times the weight of the raw material, i.e., 96 kg). Reflux extraction is performed once at 75°C for 70 minutes. Stir every 20 minutes for 2 minutes each time during the extraction process at a stirring speed of 100 rpm. After extraction, filter through a vacuum filtration apparatus to obtain approximately 88 kg of mixed solution C.
[0048] Mulberry extraction: Add 5 kg of mulberries to a 50 L stainless steel container. Add 10 times the weight of the raw material (i.e., 50 kg) of 60°C pure water. Gently stir at 40 rpm every 5 minutes for 20 minutes. After extraction, filter and separate using an ultrafiltration membrane (molecular weight cutoff 10,000 Da) to obtain approximately 45 kg of mixed solution D.
[0049] 3. Mixing
[0050] The mixed solutions A, B, C, and D were transferred to a 1000L vacuum concentrator and concentrated at 60°C and -0.09MPa until the solid content of the concentrate reached 45%, yielding approximately 180kg of concentrate. Once the concentrate temperature dropped to 55°C, the previously prepared embedding powder was added and stirred at 150r / min for 30min. The appropriate amounts of oligofructose and resistant dextrin were then added in sequence according to the product formula, with stirring continued for 40min to ensure complete dissolution. Finally, the remaining 40% of β-cyclodextrin (approximately 28.8kg) was added and stirred for 25min to ensure thorough mixing.
[0051] 4. Drying and molding
[0052] Spray drying: The evenly mixed concentrate is transported to a pressure spray dryer through a pipeline, and the inlet air temperature is set to 170°C, the outlet air temperature is set to 90°C, and the atomization pressure is set to 28MPa for spray drying. Collect the dried powder and test its moisture content to ensure that it meets the standard requirement of 4.5%. Fluidized bed granulation: The spray-dried powder is sent to the fluidized bed granulator, and 6% maltodextrin solution is used as a binder. It is sprayed at a speed of 5mL / min through a peristaltic pump, and the temperature in the fluidized bed is controlled at 60°C and the inlet air flow rate is 150m 3 / h, forming uniform particles with a particle size of 0.3-0.5mm in a fluidized state, and finally obtaining about 78kg of granular tea substitute semi-finished product.
[0053] 5. Sterilization and packaging
[0054] Sterilization: Transfer the semi-finished granular tea substitute product to the irradiation sterilization room and use cobalt-60 gamma rays for irradiation sterilization. The irradiation dose is set at 9kGy to ensure that the product meets the sterility standard.
[0055] Packaging: After sterilization, the granules are quickly packaged using a fully automatic nitrogen-filled packaging machine. Aluminum foil bags suitable for 33g are used, and the nitrogen purity within the bags is controlled to be ≥99.5%. The packaging machine's heat-sealing temperature is set to 180°C and the sealing time is 3 seconds. After packaging, the finished products are randomly weight-checked to ensure that each bag weighs between 32.5-33.5g. A random inspection rate of 5% is required.
[0056] Implementation II;
[0057] (1) Raw material screening and preliminary processing
[0058] Accurately weigh 5kg of Ganoderma lucidum, 4kg of Rhodiola rosea, 3.5kg of lily bulbs, 5kg of Polygonatum sibiricum, 3kg of Cistanche deserticola, 2.5kg of mulberries, 6kg of Lycium barbarum, 5kg of Citron, and 2.5kg of Hawthorn fruit. Use a vibrating screen (model: ZPS-1000) to preliminarily screen the raw materials with a 4mm mesh size to remove large particles of impurities. The raw materials are then transferred to a drum-type washing machine (model: GT-500) and washed for 2.5min with deionized water at a flow rate of 4L / min. After washing, the water is drained by an inclined conveyor belt and then spread on a belt dryer (model: BD-2000, temperature setting 26°C, humidity 58%) to dry for 6 hours. Use a slicer (model: QP-300) to cut Polygonatum sibiricum and Cistanche deserticola into 2mm thick slices.
[0059] (2) Embedded component processing
[0060] Put 5kg of Ganoderma lucidum and 4kg of Rhodiola rosea into a grinder (model: FS-500) and grind them through a 100-mesh sieve. According to the mass ratio of raw material powder to β-cyclodextrin of 1:4, weigh 36kg of β-cyclodextrin and pour it into a 150L stainless steel mixing tank (model: JB-150) together with the above powder. Add deionized water 3 times the total mass of the raw materials (i.e. 27kg), stir and embed for 3 hours at 45°C and a speed of 200r / min (using a constant temperature magnetic stirrer, model: HJ-6). After embedding, transfer to a vacuum drying oven (model: DZF-6210, temperature 55°C, vacuum degree -0.09MPa) and dry for 10 hours until the moisture content is reduced to 2.6%. Take out the powder, grind it, pass it through an 80-mesh sieve, and seal it for storage.
[0061] 2. Step-by-step countercurrent extraction
[0062] Extraction of mixed solution A: The pretreated Ganoderma lucidum, Rhodiola rosea, lily bulb, bergamot, and hawthorn were placed in a 750L multifunctional extraction tank (model: DT-750). 180 kg (12 times the total mass of the raw materials) of 95°C hot water was added. The mixture was stirred at 80 rpm for two extractions, each lasting 35 minutes. After each extraction, solid-liquid separation was performed using a plate and frame filter press (model: BAS-50, filtration pressure: 0.3 MPa). The filtrates were combined to produce approximately 165 kg of mixed solution A. This process consumed approximately 80 kW·h of energy.
[0063] Extraction with mixed solution B: Place the sliced Polygonatum sibiricum and Cistanche deserticola into a 250L extraction tank (Model: TJ-250). Add 80°C hot water (10 times the total mass of the raw materials, i.e., 80 kg). Extraction is repeated once at 60 rpm for 50 minutes. After extraction, centrifuge for 10 minutes in a centrifuge (Model: LXJ-IIB, 3000 rpm). Collect the supernatant, approximately 72 kg, as mixed solution B. Energy consumption is approximately 15 kW·h.
[0064] Wolfberry extraction: 6 kg of wolfberries were placed in a 100 L extraction kettle (Model: FT-100). 60% ethanol (8 times the weight of the raw material, i.e., 48 kg) was added. Reflux extraction was performed at 75°C for 70 minutes, with stirring every 20 minutes (using a stirrer, Model: JB-2) for 2 minutes at a speed of 100 rpm. After extraction, the mixture was filtered through a vacuum filtration apparatus (Model: GF-10) to obtain approximately 44 kg of mixed solution C. The energy consumption was approximately 20 kW·h.
[0065] Mulberry extraction: 2.5 kg of mulberries were placed in a 25 L stainless steel container. 60°C pure water (10 times the weight of the raw material, i.e., 25 kg) was added. Stirring was continued at 40 rpm every 5 minutes for 20 minutes. After extraction, the mixture was filtered and separated using an ultrafiltration membrane (UF-5, molecular weight cutoff 10,000 Da) to obtain approximately 22 kg of mixed solution D.
[0066] 3. Mixing
[0067] Mixed solutions A, B, C, and D were transferred to a 500L vacuum concentrator (model: ZN-500, temperature: 60°C, -0.09 MPa) and concentrated to a solids content of 45%, yielding approximately 90 kg of concentrated solution. After the concentrate cooled to 55°C, the embedding powder was added and stirred at 150 rpm for 30 minutes. Fructooligosaccharides and resistant dextrin were then added sequentially, stirring for 40 minutes. Finally, the remaining 40% of β-cyclodextrin (approximately 14.4 kg) was added and stirred for 25 minutes. Energy consumption during this stage was approximately 40 kW·h.
[0068] 4. Drying and molding
[0069] (1) Spray drying
[0070] The mixed liquid was delivered to a pressure spray dryer (Model: PGL-50). The inlet air temperature was set at 170°C, the outlet air temperature was 90°C, and the atomization pressure was 28 MPa for spray drying. The powder moisture content was controlled to ≤4.5%. The energy consumption for this process was approximately 120 kW·h.
[0071] (2) Fluidized bed granulation
[0072] The spray-dried powder was fed into a fluidized bed granulator (model: FL-30) with 6% maltodextrin solution as a binder (injected via a peristaltic pump, model: BT100-2J, flow rate 5 mL / min). The temperature in the fluidized bed was controlled at 60°C and the air flow rate was 100 m / min. 3 / h, forming 0.3-0.5 mm particles, and obtaining about 39 kg of granular tea substitute semi-finished products, with an energy consumption of about 30 kW·h.
[0073] 5. Sterilization and packaging
[0074] (1) Sterilization
[0075] The particles were transferred to an irradiation sterilization chamber and sterilized by irradiation with cobalt-60 gamma rays at a dose of 9 kGy.
[0076] (2) Packaging
[0077] A fully automatic nitrogen-filled packaging machine (model: CN-200) was used, using aluminum foil bags suitable for 33g packaging. The nitrogen purity within the bags was controlled to ≥99.5%, with a heat-sealing temperature of 180°C and a sealing time of 3 seconds. Approximately 350 bags were packaged per hour, resulting in a total of 1,515 bags. After packaging, 80 bags were randomly sampled for weight testing to ensure each bag weighed between 32.5 and 33.5g. Seal integrity was also checked, with a sampling rate of 5%. The entire packaging process consumed approximately 15kW·h of energy.
[0078] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present invention may be modified or replaced by equivalents without departing from the spirit and scope of the technical solutions of the present invention, which should all be included in the scope of the claims of the present invention.
Claims
1. A tea substitute beverage based on Chinese herbal medicine, characterized in that: The tea substitute beverage comprises the following materials in parts by weight: 10 parts of Ganoderma lucidum, 8 parts of Rhodiola rosea, 7 parts of lily, 10 parts of Polygonatum sibiricum, 6 parts of Cistanche deserticola, 5 parts of mulberry, 12 parts of wolfberry, 10 parts of bergamot, and 5 parts of hawthorn.
2. The method for preparing a Chinese herbal tea substitute beverage according to claim 1, wherein: The following steps are involved: S1. Raw material pretreatment: 10 parts of Ganoderma lucidum, 8 parts of Rhodiola rosea, 7 parts of lily, 10 parts of Polygonatum sibiricum, 6 parts of Cistanche deserticola, 5 parts of mulberry, 12 parts of wolfberry, 10 parts of bergamot, and 5 parts of hawthorn were selected, and the Polygonatum sibiricum and Cistanche deserticola were sliced to a thickness of 2-3 mm. All the raw materials were screened to remove impurities and moldy parts, and the raw materials were quickly rinsed with clean water and placed in a cool and ventilated place to dry the surface moisture; S2. Embedded component processing: Ganoderma lucidum and Rhodiola rosea were embedded in β-cyclodextrin. The raw materials were crushed and passed through a 100-mesh sieve. The raw material powder and β-cyclodextrin were fully mixed in a ratio of 1:
4. Deionized water 3 times the total mass of the raw materials was added. The mixture was stirred and embedded at 45°C and 200 r / min for 3 hours to promote the full combination of β-cyclodextrin and the raw material components. After the embedding was completed, the mixture was transferred to a vacuum drying oven to obtain the embedded powder for use. S3, step-by-step countercurrent extraction Extraction of mixed solution A: put the pretreated Ganoderma lucidum, Rhodiola rosea, lily, bergamot, and hawthorn into a multifunctional extraction tank, add 95°C hot water 12 times the total mass of the raw materials, start stirring, and after the extraction is completed, perform solid-liquid separation through a plate and frame filter press with the pressure controlled at 0.3-0.4 MPa, and combine the two filtrates to obtain mixed solution A; The sliced Polygonatum sibiricum and Cistanche deserticola were placed in an extraction tank, and 80°C hot water 10 times the total mass of the raw materials was added for one extraction for 50 min. After the extraction was completed, a centrifuge was used for solid-liquid separation at a centrifugal speed of 3000 r / min for 10 min, and the supernatant was collected as mixed solution B; Place wolfberry in an extraction kettle, add 60% ethanol (8 times the mass of the raw material), and after the extraction is completed, filter through a vacuum filtration device to obtain a mixed solution C; Add mulberries to 60°C pure water (10 times the mass of the raw material) and soak for 20 minutes. Gently stir every 5 minutes during the soaking process at a stirring speed of 40 r / min. After the soaking is completed, filter to obtain a mixed solution D. S4, Hybrid Transfer the mixed solutions A, B, C, and D into a vacuum concentrator, add the pre-treated embedding powder and stir; then add oligofructose and resistant dextrin in sequence and stir, and finally add the remaining 40% of β-cyclodextrin and stir to obtain a mixed solution; S5. Drying The mixed liquid is transported to a pressure spray dryer through a pipeline for spray drying. The dried powder is collected and the moisture content is tested to ensure that it is ≤5%; S6, granulation The spray-dried powder was fed into the fluidized bed granulator, and 6% maltodextrin solution was used as a binder and sprayed into the granulator at a rate of 5 mL / min through a peristaltic pump. The temperature in the fluidized bed was controlled at 55-65°C and the air flow rate was 150 m 3 / h, forming uniform particles with a particle size of 0.3-0.5mm under fluidized state; S7, Sterilization and Packaging Cobalt-60 gamma rays are used for irradiation sterilization, with a dose set at 9 kGy. The sterilized particles are quickly packed in aluminum foil bags filled with nitrogen. The nitrogen purity in the bags is ≥99.5%, the heat sealing temperature is 180°C, and the sealing time is 3 seconds.
3. The method for preparing a Chinese herbal tea substitute beverage according to claim 2, wherein: The vacuum drying oven in S2 is set at 55° C. and a vacuum degree of -0.09 MPa, until the moisture content is ≤3%.
4. The method for preparing a Chinese herbal tea substitute beverage according to claim 2, wherein: The multifunctional extraction tank prepared by the mixed solution A in S3 is specifically set to rotate at 80 r / min, extract twice, and each extraction time is 35 minutes.
5. The method for preparing a Chinese herbal tea substitute beverage according to claim 2, wherein: The mixed solution B in S3 is prepared and the extraction tank is kept stirring at a speed of 60 r / min during the extraction process.
6. The method for preparing the Chinese herbal medicine beauty substitute tea according to claim 2, characterized in that: During the extraction process, the mixed solution C in S3 was subjected to reflux extraction at 75° C. for 70 min, with stirring every 20 min for 2 min at a rotation speed of 100 r / min.
7. The method for preparing the Chinese herbal medicine beauty-enhancing tea substitute according to claim 2, characterized in that: The mixed solution D in S3 is filtered and separated using an ultrafiltration membrane (molecular weight cut-off 10,000 Da).
8. The method for preparing the Chinese herbal medicine beauty-enhancing tea substitute according to claim 2, characterized in that: The specific steps of mixing in S4 are to concentrate the mixed liquid to a solid content of 45% in a vacuum concentration tank set at 60°C and -0.09MPa, and when the temperature of the concentrated liquid drops to 55°C, add the pretreated embedding powder and stir at a speed of 150r / min for 30min; then add oligofructose and resistant dextrin in sequence, and continue stirring for 40min until completely dissolved; finally, add the remaining 40% of β-cyclodextrin and stir for 25min to mix the materials evenly.
9. The method for preparing the Chinese herbal medicine beauty substitute tea according to claim 2, characterized in that: The pressure spray dryer in S5 is set to have an air inlet temperature of 170°C, an air outlet temperature of 90°C, and an atomization pressure of 28 MPa.