Weight-losing blend oil, processing equipment and method for preparing weight-losing blend oil

By introducing detection components and cleaning devices into the slimming oil processing equipment, the filter device is monitored and cleaned in real time, solving the problem of filter clogging and ensuring the high quality and efficient production of slimming oil.

CN120789746AInactive Publication Date: 2025-10-17SHANGHAI MOMI INFORMATION TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202511232199.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-29
Publication Date
2025-10-17
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

In existing slimming oil preparation processes, filtration devices are prone to clogging, leading to decreased product quality and reduced production efficiency. Furthermore, current technologies have failed to effectively detect and address this issue in real time.

Method used

A weight-loss blended oil processing device was designed, which includes a solid-liquid separation filter cylinder, a detection component, and a cleaning device. Through the coordinated work of a float plate, connecting rod, balance frame, and pressure sensor, the device can detect the difference between the inlet and outlet liquid volumes in real time, clean the clogged filter device in a timely manner, and ensure the filtration effect.

Benefits of technology

It achieves efficient separation of impurities, ensuring the purity and quality stability of the slimming oil, reducing production downtime, improving production efficiency, and lowering costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses weight-losing blend oil, processing equipment and a method for preparing the weight-losing blend oil, and particularly relates to the technical field of weight-losing blend oil processing.The weight-losing blend oil comprises a processing barrel, the top and the bottom of one side of the processing barrel are provided with a liquid inlet pipe and a liquid outlet pipe respectively, and the liquid inlet pipe and the liquid outlet pipe are jointly provided with a detection assembly; a control device is arranged on the front side of the processing barrel, a solid-liquid separation filter cartridge is arranged in the processing barrel, a liquid discharge pipe with a control valve is arranged at the bottom of the processing barrel and located in the solid-liquid separation filter cartridge, a barrel cover is arranged at the top of the processing barrel, a supporting frame is arranged at the top of the barrel cover, and a motor is installed in the supporting frame. A power driving end of the motor is connected with a connecting plate; a cleaning brush is mounted at one end of the bottom of the connecting plate; impurities in the liquid are separated through the solid-liquid separation filter cartridge; and the detection assembly is arranged, and the difference between the liquid inlet amount and the liquid outlet amount can be accurately detected in real time through the synergistic effect of a floating plate, a connecting rod, a balancing frame and a pressure sensor.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of weight loss blend oil processing, more particularly, the present application relates to a kind of weight loss blend oil, processing equipment and the method for preparing weight loss blend oil. BACKGROUND

[0002] With the improvement of people's living standards and the enhancement of health consciousness, the demand for food with specific health efficacy is increasing, and weight loss products, as an important category, are expanding in market size. In the weight loss market, in addition to traditional weight loss drugs, fitness equipment and other products, food with weight loss function gradually wins the favor of consumers. Weight loss blend oil, as a new type of weight loss food, combines the advantages of various oils and active ingredients, not only provides the necessary fatty acids for the human body, but also has the functions of regulating blood lipids and promoting fat metabolism, meeting the needs of consumers for healthy weight loss and nutritional balance, and has a broad market prospect.

[0003] In the traditional preparation process of weight loss oil, separation and filtration are extremely critical operation links, and the core purpose is to effectively remove impurities contained in the liquid from the mixture to ensure the quality of the product and the smooth running of the subsequent process.

[0004] At present, in the preparation of existing weight loss oil, a filtering device is needed to separate the impurities in the liquid. However, after long-term use, the filtering device may be blocked. If this situation cannot be detected and treated in time, it may reduce the quality and working efficiency of the weight loss oil. Therefore, we propose a kind of weight loss blend oil, processing equipment and the method for preparing weight loss blend oil. SUMMARY

[0005] In order to overcome the above-mentioned defects of the prior art, the present application provides a kind of weight loss blend oil, processing equipment and the method for preparing weight loss blend oil to solve the problems raised in the background art.

[0006] To achieve the above-mentioned purpose, the present application provides the following technical scheme: a kind of weight loss blend oil, processing equipment and the method for preparing weight loss blend oil, including processing barrel, the top and bottom of one side of processing barrel are respectively provided with liquid inlet pipe and liquid outlet pipe, liquid inlet pipe and liquid outlet pipe are provided with detection assembly, the front side of processing barrel is provided with control device, the inside of processing barrel is provided with solid-liquid separation filter cartridge, the bottom of processing barrel and located in the inside of solid-liquid separation filter cartridge are provided with liquid discharge pipe with control valve, the top of processing barrel is provided with barrel cover, the top of barrel cover is provided with support frame, the inside of support frame is installed with motor, the power driven end of motor is connected with connecting plate, the bottom of connecting plate one end is installed with cleaning brush, cleaning brush is used to clean solid-liquid separation filter cartridge, the top of connecting plate is installed with rotating plate, the bottom of barrel cover is provided with rotating groove, rotating plate is connected in the inside of rotating groove.

[0007] Preferably, the detection assembly comprises a connecting pipe one installed at the bottom of the liquid inlet pipe and a connecting pipe two installed at the top of the liquid outlet pipe, and the interiors of the connecting pipe one and the connecting pipe two are respectively provided with a float one and a float two.

[0008] Preferably, the interiors of the connecting pipe one and the connecting pipe two are respectively provided with a sealing ring, and one end of the float one and the float two is respectively provided with a connecting rod.

[0009] Preferably, the outer side of the processing barrel is provided with a fixing frame, and one end of the two connecting rods is connected with a balance frame.

[0010] Preferably, one end of the fixing frame is connected to the middle of the balance frame, and the top and the bottom of the fixing frame are respectively provided with a supporting plate.

[0011] Preferably, one side of the two supporting plates is respectively provided with a pressure sensor, and one end of the pressure sensor is provided with a spring.

[0012] Preferably, one end of the two springs is respectively connected to the two ends of the balance frame.

[0013] A weight-reducing blend oil is prepared by blending the following raw materials in parts by weight:

[0014] 32-48 parts of grape seed oil, 22-38 parts of safflower seed oil, 22-38 parts of medlar seed oil, 12-18 parts of olive oil, 12-18 parts of conjugated linoleic acid, 12-18 parts of hawthorn seed oil, 7-13 parts of flaxseed oil, 4-9 parts of phytosterol, 1.5-4.5 parts of lycopene, and 2.5-5.5 parts of grape polyphenol.

[0015] The blend oil is prepared by blending the following raw materials in parts by weight:

[0016] 42 parts of grape seed oil, 28 parts of safflower seed oil, 28 parts of medlar seed oil, 16 parts of olive oil, 16 parts of conjugated linoleic acid, 16 parts of hawthorn seed oil, 9 parts of flaxseed oil, 6 parts of phytosterol, 2.5 parts of lycopene, and 3.5 parts of grape polyphenol.

[0017] A method for preparing the above-mentioned weight-reducing blend oil, comprising the following steps:

[0018] Step one, dissolving raw materials: in a suitable container, dissolve safflower seed oil in 1,3-propanediol solution, ensure that the safflower seed oil is fully dissolved, and form a uniform mixed solution;

[0019] Isomerization reaction: place the above-mentioned mixed solution under the condition of 300W microwave, add potassium hydroxide as an alkaline catalyst, start the microwave equipment, and make the reaction system undergo isomerization reaction under the action of microwave, and the reaction time is controlled within 15min;

[0020] Post-processing: after the reaction is completed, the reaction system is cooled to room temperature; then, acid washing is carried out, citric acid aqueous solution is used to adjust the pH value, and the alkaline substances are removed; then, organic solvent extraction is carried out with ethyl acetate, and conjugated linoleic acid is separated out; finally, multiple water washing is carried out to remove residual organic solvents and impurities, and relatively pure conjugated linoleic acid is obtained;

[0021] Step two: base oil mixing

[0022] Measuring raw materials: according to the selected ratio, accurately measure various oil and fat raw materials by using an accurate electronic balance;

[0023] Preliminary mixing: pour the weighed grape seed oil, safflower seed oil, medlar seed oil, olive oil, hawthorn seed oil, linseed oil and conjugated linoleic acid prepared in step one into a clean and dry stirring container;

[0024] High-speed stirring: start the stirring equipment, set the stirring rate to 3000-4000 r / min, and stir for 5-10 min to fully mix and uniformly disperse the various oils and fats, forming a base mixed oil;

[0025] Step three: adding active ingredients

[0026] Adding active substances: accurately weighed plant sterols, lycopene and grape polyphenols are added into the base mixed oil;

[0027] Low-speed stirring: adjust the stirring rate to 200-500 r / min, and continue to stir for 10-15 min to ensure that the plant sterols, lycopene and grape polyphenols are uniformly dispersed in the base mixed oil, obtaining a preliminary blended oil;

[0028] Step four: filtration treatment

[0029] Preparing the filter device: select appropriate filter equipment and filter material to ensure that the pore size of the filter material can effectively filter out impurities and undissolved particles in the blended oil;

[0030] Filtering operation: slowly pour the preliminary blended oil into the filter device and filter at room temperature; during the filtering process, the flow rate should be controlled to avoid incomplete filtering due to too fast filtering;

[0031] Collecting the filtrate: collect the filtered filtrate.

[0032] Technical effects and advantages of the present application:

[0033] 1. The application separates impurities in the liquid by using the solid-liquid separation filter cartridge, and through the cooperation of the floating plate, connecting rod, balance frame and pressure sensor, the difference between the liquid inlet amount and the liquid outlet amount can be detected in real time and accurately. When there is a large difference between the liquid inlet amount and the liquid outlet amount, the pressure sensor can quickly detect the pressure change signal and transmit it to the control device. After the control device analyzes and processes the signal, it can determine whether the filter device is blocked in time. If it is blocked, the motor drives the cleaning brush to clean the solid-liquid separation filter cartridge. This device avoids the situation that impurities cannot be effectively separated due to the blockage of the filter device, ensures that the filtered weight loss oil is pure and stable in quality, provides reliable protection for producing high-quality weight loss oil, and reduces the production downtime caused by the blockage of the filter device, greatly improving the work efficiency of weight loss oil preparation and reducing the production cost.

[0034] 2. The application has a scientific and reasonable formula for the weight loss blend oil, which combines grape seed oil, safflower seed oil, medlar seed oil and other high-quality oils, as well as active ingredients such as phytosterol, lycopene and grape polyphenol. These ingredients work together, phytosterol can competitively inhibit the absorption of cholesterol in the intestine, helping to reduce the cholesterol level in the blood; lycopene and grape polyphenol have strong antioxidant capacity, can eliminate free radicals in the body, reduce the damage of oxidative stress to the body, thereby helping to lose weight while providing comprehensive health protection for the body and reducing the risk of chronic diseases such as cardiovascular disease. BRIEF DESCRIPTION OF DRAWINGS

[0035] Figure 1 It is a schematic diagram of the overall structure of the application.

[0036] Figure 2 It is an internal structure diagram of the application.

[0037] Figure 3 It is an enlarged view of A in the application. Figure 2

[0038] Figure 4 It is a semi-explosion diagram of the structure of the application.

[0039] Figure 5 It is a schematic diagram of the detection assembly of the application.

[0040] Figure 6 It is an internal diagram of the detection assembly of the application.

[0041] ​The reference signs are: 1, processing barrel; 2, liquid inlet pipe; 3, liquid outlet pipe; 4, detection assembly; 5, control device; 6, solid-liquid separation filter cartridge; 7, liquid discharge pipe; 8, barrel cover; 9, support frame; 10, motor; 11, connecting plate; 12, cleaning brush; 13, rotating plate; 14, rotating groove; 41, connecting pipe one; 42, connecting pipe two; 43, floating plate one; 44, floating plate two; 45, sealing ring; 46, connecting rod; 47, fixing frame; 48, balance frame; 49, support plate; 410, pressure sensor; 411, spring. DETAILED DESCRIPTION

[0042] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.

[0043] As shown in the accompanying drawings Figures 1-6 A weight loss blend oil, processing equipment and a method for preparing the weight loss blend oil, comprising a processing barrel 1, a liquid inlet pipe 2 and a liquid outlet pipe 3 are arranged at the top and the bottom of one side of the processing barrel 1 respectively, the liquid inlet pipe 2 and the liquid outlet pipe 3 are provided with a detection assembly 4 together, a control device 5 is arranged on the front side of the processing barrel 1, a solid-liquid separation filter cartridge 6 is arranged in the inside of the processing barrel 1, a liquid discharge pipe 7 with a control valve is arranged at the bottom of the processing barrel 1 and in the inside of the solid-liquid separation filter cartridge 6, a barrel cover 8 is arranged at the top of the processing barrel 1, a support frame 9 is arranged at the top of the barrel cover 8, a motor 10 is installed in the inside of the support frame 9, a connecting plate 11 is connected to the power driving end of the motor 10, a cleaning brush 12 is installed at the bottom end of the connecting plate 11, the cleaning brush 12 is used for cleaning the solid-liquid separation filter cartridge 6, a rotating plate 13 is installed at the top of the connecting plate 11, a rotating groove 14 is formed at the bottom of the barrel cover 8, and the rotating plate 13 is connected in the inside of the rotating groove 14;

[0044] A weight loss blend oil is prepared by blending the following raw materials in parts by weight:

[0045] 32-48 parts of grape seed oil, 22-38 parts of safflower seed oil, 22-38 parts of medlar seed oil, 12-18 parts of olive oil, 12-18 parts of conjugated linoleic acid, 12-18 parts of hawthorn seed oil, 7-13 parts of flaxseed oil, 4-9 parts of phytosterol, 1.5-4.5 parts of lycopene, and 2.5-5.5 parts of grape polyphenol;

[0046] The blend oil is prepared by blending the following raw materials in parts by weight:

[0047] Grape seed oil 42 parts, safflower seed oil 28 parts, medlar seed oil 28 parts, olive oil 16 parts, conjugated linoleic acid 16 parts, hawthorn seed oil 16 parts, flaxseed oil 9 parts, phytosterol 6 parts, lycopene 2.5 parts, grape polyphenol 3.5 parts;

[0048] A method for preparing a weight loss blend oil, comprising the following steps:

[0049] Step one, raw material dissolution: in a suitable container, dissolve safflower seed oil in 1,3-propanediol solution, ensure that the safflower seed oil is fully dissolved, and form a uniform mixed solution;

[0050] Isomerization reaction: place the above mixed solution in a 300W microwave condition, add potassium hydroxide as a basic catalyst, start the microwave equipment, and make the reaction system undergo isomerization reaction under the action of microwave, and the reaction time is controlled at 15min;

[0051] Post-processing: after the reaction is completed, the reaction system is cooled to room temperature; then acid washing is carried out in sequence, using citric acid aqueous solution to adjust the pH value, removing the basic substances; then organic solvent extraction is carried out with ethyl acetate, and conjugated linoleic acid is separated out; finally, multiple water washing is carried out to remove residual organic solvents and impurities, and relatively pure conjugated linoleic acid is obtained;

[0052] Step two: base oil mixing

[0053] Weighing raw materials: according to the selected ratio, for example, grape seed oil 42 parts, safflower seed oil 28 parts, medlar seed oil 28 parts, olive oil 16 parts, hawthorn seed oil 16 parts, flaxseed oil 9 parts, use an accurate electronic balance to accurately weigh various oil raw materials;

[0054] Preliminary mixing: pour the weighed grape seed oil, safflower seed oil, medlar seed oil, olive oil, hawthorn seed oil, flaxseed oil and conjugated linoleic acid prepared in step one into a clean and dry stirring container if step one is not skipped;

[0055] High-speed stirring: start the stirring equipment, set the stirring rate to 3000-4000r / min, and stir for 5min-10min, so that various oils are fully mixed and uniform, forming a base mixed oil;

[0056] Step three: adding active ingredients

[0057] Adding active substances: accurately weighed phytosterol, lycopene and grape polyphenol are added to the base mixed oil in sequence;

[0058] Low-speed stirring: adjust the stirring rate to 200-500r / min, continue stirring for 10min-15min, and ensure that the phytosterol, lycopene and grape polyphenol are uniformly dispersed in the base mixed oil to obtain a preliminary blend oil;

[0059] Step four: filtration treatment

[0060] Prepare the filter device: choose the appropriate filter equipment and filter material, ensure that the pore size of the filter material can effectively filter out the impurities and unsolved particles in the blended oil;

[0061] Filtering operation: slowly pour the preliminary blended oil into the filter device and filter at room temperature; pay attention to control the flow rate during the filtering process to avoid incomplete filtering due to too fast filtering;

[0062] Collect the filtrate: collect the filtrate after filtering;

[0063] The detection assembly 4 comprises a connecting pipe one 41 installed at the bottom of the liquid inlet pipe 2 and a connecting pipe two 42 installed at the top of the liquid outlet pipe 3, and the interiors of the connecting pipe one 41 and the connecting pipe two 42 are respectively provided with a floating plate one 43 and a floating plate two 44, and the interiors of the connecting pipe one 41 and the connecting pipe two 42 are respectively provided with a sealing ring 45, one end of the floating plate one 43 and the floating plate two 44 is provided with a connecting rod 46, one side of the outer portion of the processing barrel 1 is provided with a fixing frame 47, one end of the two connecting rods 46 is connected with a balance frame 48, one end of the fixing frame 47 is connected to the middle of the balance frame 48, the top and bottom of the fixing frame 47 are provided with a supporting plate 49, one side of the two supporting plates 49 is respectively provided with a pressure sensor 410, one end of the pressure sensor 410 is provided with a spring 411, and one end of the two springs 411 is respectively connected with the two ends of the balance frame 48.

[0064] When the device is not started or there is no liquid flow, there is no liquid flow in the liquid inlet pipe 2 and the liquid outlet pipe 3, and the floating plate one 43 and the floating plate two 44 in the connecting pipe one 41 and the connecting pipe two 42 are in the initial position. Since the floating plate has no displacement, the connecting rod 46 is static, the balance frame 48 is in a horizontal balance state, the spring 411 is in a natural stretching state, and the pressure sensor 410 has no pressure signal output; while the motor 10 is in a stopped state, the connecting plate 11, the cleaning brush 12 and the rotating plate 13 are all static, the cleaning brush 12 is not in contact with the solid-liquid separation filter drum 6, and the cleaning operation is not performed; the control device 5 is also in a standby state, waiting to receive the signal transmitted by the detection assembly 4 to control the operation of the motor 10 and other components;

[0065] When the liquid starts to flow into the processing barrel 1 through the liquid inlet pipe 2, the liquid first enters the connecting pipe 41, and as the liquid continues to flow in, the liquid level in the connecting pipe 41 gradually rises, and the floating plate 43 drives the connecting rod 46 to move under the action of buoyancy. Since the two connecting rods 46 are jointly connected to the balance frame 48, the movement of the connecting rod 46 in the connecting pipe 41 will cause one end of the balance frame 48 to tilt, which causes the spring 411 at one end to be stretched and the spring 411 at the other end to be compressed, and the pressure sensor 410 starts to detect the pressure change signal. At the same time, the filtered liquid in the processing barrel 1 flows out through the liquid outlet pipe 3, and the liquid enters the connecting pipe 42, and the liquid level in the connecting pipe 42 gradually rises, and the floating plate 44 drives the connecting rod 46 to move under the action of buoyancy. As the floating plate 44 moves upward, the force acting on the balance frame 48 changes. If the amount of liquid flowing in is equal to the amount of liquid flowing out, the balance frame 48 will gradually return to a horizontal balanced state. If the amount of liquid flowing in is greater than the amount of liquid flowing out, the balance frame 48 will still maintain a certain tilt angle. During the liquid flow process, the pressure sensor 410 continuously detects the pressure signal transmitted by the spring 411 and transmits the signal to the control device 5.

[0066] The control device 5 analyzes and processes the signal transmitted by the pressure sensor 410. When it is detected that there is a large difference between the amount of liquid flowing in and the amount of liquid flowing out (for example, the amount of liquid flowing in is much greater than the amount of liquid flowing out, which may cause the solid-liquid separation filter cartridge 6 to be blocked), the control device 5 determines that the cleaning device needs to be started. The control device 5 sends a start signal to the motor 10, and the motor 10 starts to operate. The power driving end of the motor 10 drives the connecting plate 11 to rotate, and the connecting plate 11 drives the cleaning brush 12 and the rotating plate 13 to rotate together. At the same time, since the rotating plate 13 is connected in the rotating groove 14 at the bottom of the barrel cover 8, during the rotation process, the cleaning brush 12 will perform circular motion along the inner wall of the solid-liquid separation filter cartridge 6 to clean the solid-liquid separation filter cartridge 6. The cleaning brush 12 continuously cleans the solid-liquid separation filter cartridge 6 until the control device 5 determines that the cleaning is complete according to the preset program or the pressure signal detected again, and then sends a stop signal to the motor 10. The motor 10 stops operating, and the cleaning device stops working.

[0067] The liquid enters the solid-liquid separation filter cartridge 6 through the liquid inlet pipe 2, and then the impurities in the liquid are filtered and separated by the solid-liquid separation filter cartridge 6. The filtered liquid is discharged from the liquid outlet pipe 3. The filtered impurities can finally be discharged by opening the control valve of the liquid discharge pipe 7.

[0068] Example 1

[0069] Preparation of conjugated linoleic acid

[0070] Raw material dissolution: Dissolve safflower seed oil in 1,3-propanediol solution. The good solubility of 1,3-propanediol allows safflower seed oil to be fully dispersed in the solution, forming a uniform mixed solution, providing a stable and uniform reaction system for subsequent reactions.

[0071] Isomerization reaction: Under the condition of 300W microwave, potassium hydroxide is added as an alkaline catalyst. Microwave action can make the molecules in the reaction system vibrate and rub quickly, generating heat and accelerating molecular motion, thereby increasing the reaction rate. As an alkaline catalyst, potassium hydroxide can provide an alkaline environment to promote the isomerization reaction of unsaturated fatty acids in safflower seed oil to generate conjugated linoleic acid. The reaction time is controlled at 15 minutes to ensure that the reaction proceeds fully while avoiding excessive reaction to produce byproducts.

[0072] Post-processing: After the reaction is completed, the reaction system is cooled to room temperature to prevent high temperature from affecting subsequent processing steps. Citric acid aqueous solution is used for acid washing. Citric acid reacts with alkaline substances (such as potassium hydroxide) in the system to adjust the pH value and remove alkaline substances, avoiding the adverse effects of alkaline substances on the quality of the blended oil prepared subsequently. Then, ethyl acetate is used for organic solvent extraction. Conjugated linoleic acid is separated from the reaction system due to its high solubility in ethyl acetate. Finally, multiple water washes are performed to remove residual organic solvents and impurities through the mutual insolubility of water and organic solvents such as ethyl acetate, obtaining relatively pure conjugated linoleic acid as high-quality raw material for the preparation of blended oil.

[0073] Base oil mixing

[0074] Weighing raw materials: According to the selected ratio (42 parts of grape seed oil, 28 parts of safflower seed oil, 28 parts of medlar seed oil, 16 parts of olive oil, 16 parts of hawthorn seed oil, 9 parts of flaxseed oil, and 16 parts of conjugated linoleic acid prepared in step one), accurately weigh each oil and fat raw material using a precise electronic balance. Accurate weighing ensures that each raw material is mixed according to the specified ratio, thereby ensuring the stability of the blended oil quality and the consistency of the efficacy.

[0075] Initial mixing: Pour the weighed oil and fat raw materials into a clean and dry stirring container to provide a suitable place for subsequent stirring and mixing.

[0076] High-speed stirring: Start the stirring equipment and set the stirring rate to 3000-4000r / min. The stirring time is 5-10 minutes. High-speed stirring can quickly disperse and mix various oil molecules under strong shearing force and stirring force, breaking the aggregation state of oil molecules and forming a uniform base mixed oil, which provides a uniform carrier for the addition of active ingredients in the subsequent step.

[0077] Adding active ingredients

[0078] Adding active substances: add accurately weighed phytosterol 6 parts, lycopene 2.5 parts and grape polyphenol 3.5 parts into the base mixed oil in turn. These active ingredients have different physiological effects, such as phytosterol helps to reduce cholesterol absorption, lycopene has antioxidant effect, grape polyphenol also has antioxidant and health care effect, their addition can endow the blended oil with weight loss and various health care functions.

[0079] Low-speed stirring: adjust the stirring speed to 200-500 r / min, and continue stirring for 10-15 min. Low-speed stirring can avoid the damage of high-speed stirring to the active ingredients, and at the same time, make the phytosterol, lycopene and grape polyphenol slowly and uniformly disperse in the base mixed oil, ensure that they are in full contact with the base oil and uniformly distributed in the blended oil, so as to ensure the stable exertion of the effects of each component in the blended oil.

[0080] Filtering treatment

[0081] Preparation of filtering device: select appropriate filtering and separating equipment and filter material to ensure that the pore size of the filter material can effectively filter out impurities and unsolved particles in the blended oil. Appropriate filtering and separating equipment and filter material are the key to ensure the filtering effect, which can select appropriate filtering precision according to the properties and impurity characteristics of the blended oil to remove impurities affecting the quality of the blended oil.

[0082] Filtering operation: slowly pour the preliminary blended oil into the filtering and separating device, and filter at room temperature. Slow pouring and room temperature can avoid the change of the properties of the blended oil caused by too fast flow rate or temperature change, and at the same time, ensure that the blended oil can be fully contacted with the filter material during the filtering process, so that the impurities can be effectively separated. Control the flow rate during the filtering process to prevent incomplete filtering caused by too fast filtering, and ensure the purity of the blended oil.

[0083] Collecting filtrate: collect the filtered filtrate to obtain the final weight loss blended oil with excellent quality and purity, which meets the use requirements.

[0084] Example two

[0085] Preparation of conjugated linoleic acid

[0086] Dissolution of raw materials: put safflower seed oil into 1,3-propanediol solution. With the good solubility of 1,3-propanediol to safflower seed oil, the safflower seed oil is uniformly dispersed in the solution to build a stable initial reaction system, which creates conditions for the smooth progress of the subsequent isomerization reaction.

[0087] Isomerization reaction: Under the microwave irradiation of 300 W, potassium hydroxide is added as a basic catalyst. The energy generated by the microwave makes the molecules in the reaction system move violently, and the collision frequency between molecules increases significantly, thereby accelerating the reaction rate. Potassium hydroxide provides an alkaline environment, which promotes the change of the molecular structure of unsaturated fatty acids in safflower oil and generates conjugated linoleic acid through isomerization reaction. The reaction time is strictly controlled for 15 min to ensure that the reaction reaches an appropriate degree, which can generate sufficient conjugated linoleic acid and reduce the generation of by-products.

[0088] Post-treatment: After the reaction is completed, the reaction system is first cooled to room temperature to prevent interference with subsequent processing steps caused by high temperature; then, the reaction system is washed with an aqueous citric acid solution, which reacts with the basic substances in the system to neutralize the alkalinity and adjust the pH value to an appropriate range, thereby removing the basic impurities; then, the reaction system is extracted with ethyl acetate, which separates the conjugated linoleic acid from the reaction mixture by taking advantage of the property that the conjugated linoleic acid has high solubility in ethyl acetate and low solubility in water; finally, the reaction system is washed with water multiple times to remove the residual organic solvents and impurities through the separation of water and ethyl acetate, thereby obtaining high-purity conjugated linoleic acid as a high-quality raw material for the preparation of blended oil.

[0089] Basic oil mixing

[0090] Weighing raw materials: According to the selected ratio (38 parts of grape seed oil, 32 parts of safflower oil, 24 parts of medlar seed oil, 14 parts of olive oil, 14 parts of hawthorn seed oil, 11 parts of flaxseed oil, and 14 parts of conjugated linoleic acid prepared in step one), accurately weigh each oil and fat raw material using an accurate electronic balance; accurate weighing is the basis for ensuring the stability of the quality of blended oil, which ensures that each raw material is mixed according to a scientific ratio to play its own advantages and achieve the effects of weight loss and health care together.

[0091] Preliminary mixing: Pour the weighed oil and fat raw materials into a clean and dry stirring container to provide a suitable space and environment for subsequent stirring and mixing.

[0092] High-speed stirring: Start the stirring equipment and set the stirring rate to 3500 r / min, and the stirring time to 8 min; the strong shear force and stirring force generated by high-speed stirring can rapidly disperse and fuse various oil molecules, break the agglomerated structure between molecules, and form a uniform and consistent basic mixed oil, which provides a uniform matrix for the subsequent addition of active ingredients.

[0093] Adding active ingredients

[0094] Add active substances: Add accurately weighed 7 parts of plant sterols, 3 parts of lycopene and 4 parts of grape polyphenols to the base mixed oil in sequence. These active ingredients have unique physiological activities. Plant sterols can competitively inhibit the absorption of cholesterol in the intestine. Lycopene and grape polyphenols have strong antioxidant capacity and can scavenge free radicals in the body. Their addition gives the blended oil the dual effects of weight loss and health care.

[0095] Low-speed stirring: Adjust the stirring rate to 300r / min and continue stirring for 12 minutes. Low-speed stirring can avoid the destruction of the structure of active ingredients by high-speed stirring, so that the plant sterols, lycopene and grape polyphenols are slowly and evenly dispersed in the base mixed oil, and fully combined with the base oil, ensuring the stability and durability of the efficacy of each ingredient in the blended oil.

[0096] Filtration

[0097] Prepare the filtering device: According to the viscosity and impurity characteristics of the blending oil, select appropriate filtering equipment and filter materials with appropriate pore size; the appropriate filter material pore size can effectively intercept impurities and undissolved particles in the blending oil, while ensuring that the blending oil can pass smoothly, thereby improving filtration efficiency and quality.

[0098] Filtration operation: Slowly pour the preliminary blended oil into the filtration separation device and filter it at room temperature. Slow pouring can avoid bubbles in the blended oil, which will affect the filtration effect. Room temperature can maintain the stability of the blended oil and prevent changes in composition due to temperature changes. Control the filtration flow rate to ensure that the blended oil is in full contact with the filter material to ensure that impurities are completely intercepted and pure blended oil is obtained.

[0099] Collecting the filtrate: collecting the filtered filtrate to obtain the weight loss blending oil that meets the quality standards, which can be used in the production of related products or used directly.

[0100] Finally, a few points should be explained: First, in the description of the present invention, it should be noted that, unless otherwise specified or limited, the terms "mounted", "connected", and "connected" should be understood in a broad sense, and may refer to mechanical or electrical connections, internal communication between two components, or direct connection. "Up", "down", "left", "right", etc. are only used to indicate relative positional relationships. When the absolute position of the described object changes, the relative positional relationship may change.

[0101] Secondly: The drawings of the embodiments disclosed in the present invention only involve structures related to the embodiments disclosed in the present invention. Other structures may refer to conventional designs. The same embodiment and different embodiments of the present invention may be combined with each other without conflict.

[0102] Finally: the above only for the preferred embodiments of the present application, and not for limiting the present application, any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application, should be included in the scope of protection of the present application.

Claims

1. A processing equipment for weight loss blended oil, characterized in that: The invention comprises a processing barrel (1), wherein a liquid inlet pipe (2) and a liquid outlet pipe (3) are respectively provided at the top and bottom of one side of the processing barrel (1), the liquid inlet pipe (2) and the liquid outlet pipe (3) are jointly provided with a detection component (4), a control device (5) is provided at the front side of the processing barrel (1), a solid-liquid separation filter cylinder (6) is provided inside the processing barrel (1), a liquid discharge pipe (7) with a control valve is provided at the bottom of the processing barrel (1) and inside the solid-liquid separation filter cylinder (6), and a barrel cover (8) is provided at the top of the processing barrel (1). A support frame (9) is provided on the top of the barrel cover (8), a motor (10) is installed inside the support frame (9), a power drive end of the motor (10) is connected to a connecting plate (11), a cleaning brush (12) is installed at one end of the bottom of the connecting plate (11), and the cleaning brush (12) is used to clean the solid-liquid separation filter cylinder (6), a rotating plate (13) is installed on the top of the connecting plate (11), a rotating groove (14) is opened at the bottom of the barrel cover (8), and the rotating plate (13) is connected to the inside of the rotating groove (14).

2. The processing equipment for a weight loss blended oil according to claim 1, characterized in that: The detection assembly (4) comprises a connecting pipe 1 (41) installed at the bottom of the liquid inlet pipe (2) and a connecting pipe 2 (42) installed at the top of the liquid outlet pipe (3), wherein a floating plate 1 (43) and a floating plate 2 (44) are respectively provided inside the connecting pipe 1 (41) and the connecting pipe 2 (42).

3. The processing equipment for a weight loss blended oil according to claim 2, characterized in that: The interiors of the connecting pipe 1 (41) and the connecting pipe 2 (42) are both provided with sealing rings (45), and one end of the floating plate 1 (43) and the floating plate 2 (44) are both provided with connecting rods (46).

4. The processing equipment for a weight loss blended oil according to claim 3, characterized in that: A fixing frame (47) is installed on one side of the exterior of the processing barrel (1), and one end of the two connecting rods (46) is commonly connected to a balancing frame (48).

5. The processing equipment for a weight loss blended oil according to claim 4, characterized in that: One end of the fixing frame (47) is connected to the middle of the balancing frame (48), and support plates (49) are installed on the top and bottom of the fixing frame (47).

6. The processing equipment for a weight loss blended oil according to claim 5, characterized in that: A pressure sensor (410) is installed on one side of each of the two support plates (49), and a spring (411) is installed on one end of the pressure sensor (410).

7. The processing equipment for a weight-loss blended oil according to claim 6, characterized in that: One end of the two springs (411) is connected to two ends of the balance frame (48) respectively.

8. A weight loss blended oil, characterized in that: It is prepared by mixing the following raw materials in parts by weight: 32-48 parts of grape seed oil, 22-38 parts of safflower seed oil, 22-38 parts of wolfberry seed oil, 12-18 parts of olive oil, 12-18 parts of conjugated linoleic acid, 12-18 parts of hawthorn seed oil, 7-13 parts of linseed oil, 4-9 parts of phytosterols, 1.5-4.5 parts of lycopene, and 2.5-5.5 parts of grape polyphenols; The blended oil is prepared by blending the following raw materials in parts by weight: 42 parts of grape seed oil, 28 parts of safflower seed oil, 28 parts of wolfberry seed oil, 16 parts of olive oil, 16 parts of conjugated linoleic acid, 16 parts of hawthorn seed oil, 9 parts of linseed oil, 6 parts of phytosterols, 2.5 parts of lycopene, and 3.5 parts of grape polyphenols.

9. A method for preparing a weight-loss blended oil as claimed in any one of claim 8, characterized in that: The following steps are involved: Step 1: Dissolve the raw materials: Dissolve safflower oil in 1,3-propylene glycol solution in a suitable container to ensure that the safflower oil is fully dissolved to form a uniform mixed solution; Isomerization reaction: The mixed solution was placed under microwave conditions at 300W, potassium hydroxide was added as an alkaline catalyst, and the microwave equipment was started to allow the reaction system to undergo isomerization reaction under the action of microwaves. The reaction time was controlled within 15 minutes. Post-treatment: After the reaction is completed, the reaction system is cooled to room temperature; then acid washing is performed in sequence, and the pH value is adjusted with citric acid aqueous solution to remove alkaline substances; then organic solvent extraction is performed with ethyl acetate to separate conjugated linoleic acid; finally, multiple water washings are performed to remove residual organic solvents and impurities to obtain relatively pure conjugated linoleic acid; Step 2: Base oil mixing Weighing raw materials: according to the selected ratio, use a precise electronic balance to accurately weigh various oil raw materials; Preliminary mixing: Pour the weighed grapeseed oil, safflower seed oil, wolfberry seed oil, olive oil, hawthorn seed oil, linseed oil, and conjugated linoleic acid prepared in step 1 into a clean, dry mixing container; High-speed stirring: Start the stirring equipment, set the stirring rate to 3000-4000r / min, and the stirring time to 5min-10min, so that the various oils are fully mixed and evenly mixed to form a basic mixed oil; Step 3: Add active ingredients Add active ingredients: add accurately weighed phytosterols, lycopene and grape polyphenols to the base mixed oil in sequence; Low-speed stirring: Adjust the stirring rate to 200-500 r / min and continue stirring for 10-15 minutes to ensure that the phytosterols, lycopene and grape polyphenols are evenly dispersed in the base mixed oil to obtain a preliminary blended oil; Step 4: Filtering Prepare the filter device: select appropriate filtering equipment and filter media, and ensure that the pore size of the filter media can effectively filter out impurities and undissolved particles in the blended oil; Filtration operation: slowly pour the preliminary blended oil into the filtration device and filter it at room temperature; pay attention to controlling the flow rate during the filtration process to avoid incomplete filtration due to excessive filtration; Collect the filtrate: Collect the filtrate after filtration.