Formula, preparation process and device of disinfection hydrogen peroxide capable of being stored for long time
By providing a disinfected hydrogen peroxide formula containing specified concentrations of hydrogen peroxide, clean water and stabilizer, and using an automatic feeding device, the difficulty of manually determining the solution ratio in the prior art is solved, and efficient automation of the hydrogen peroxide preparation process is achieved.
Patent Information
- Application Number
- CN202510645336.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-20
- Publication Date
- 2025-06-17
AI Technical Summary
During the preparation of existing hydrogen peroxide, the ratio of clean water and hydrogen peroxide solution needs to be manually determined, which makes it difficult to quickly and accurately obtain the specific mass and proportion of the solution during large volume mixing, affecting the preparation efficiency.
It provides a long-term storage disinfection hydrogen peroxide formula, including 40%-50% hydrogen peroxide at a specified concentration, 20%-30% clean water and 30%-40% stabilizer. It adopts an automatic feeding device to realize the automatic extraction and feed of liquid raw materials through induction members and extrusion members to ensure that the specified dose of solution is automatically fed.
The mixing and preparation efficiency of disinfection hydrogen peroxide is improved, the steps of manual measurement and planning are reduced, and the rapid and accurate solution feed is achieved, and the overall preparation and processing efficiency is improved.
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Figure CN120154019A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of disinfectant water preparation, and particularly to a formula, preparation process and device for disinfectant hydrogen peroxide that can be stored for a long time. Background Art
[0002] An aqueous solution of hydrogen peroxide, commonly known as hydrogen peroxide water, is a strong oxidizing agent and has functions such as disinfection, sterilization and bleaching. In the medical field, hydrogen peroxide water is commonly used for wound disinfection, such as treating abrasions or burns, because it can kill bacteria and reduce the risk of infection. In addition, low-concentration hydrogen peroxide water may also be used as a mouthwash in oral care to help treat gingivitis or oral ulcers. In industrial applications, hydrogen peroxide water can be used for the disinfection of food packaging and equipment to ensure hygienic safety during the food processing process. In the field of environmental disinfection, it can also be used for water treatment and air purification to decompose harmful substances. At home, hydrogen peroxide water can be used to clean the surfaces of the kitchen and bathroom to remove mold and bacteria. At the same time, it can also bleach clothes and remove stains, but attention should be paid to the concentration and usage method to avoid damaging clothes or irritating the skin.
[0003] When preparing existing hydrogen peroxide water, it is usually prepared by mixing clear water with a corresponding concentration of hydrogen peroxide solution in a specified mass ratio. When mixing, it is usually necessary for workers to manually determine the ratio of the added clear water and hydrogen peroxide solution. When mixing a large volume of hydrogen peroxide water, it is impossible to quickly and accurately obtain the specific mass and ratio of the added solutions, and it is necessary for processing personnel to measure and plan the dosage in advance, resulting in a more cumbersome whole processing and preparation process, which greatly affects the overall preparation and processing efficiency. Summary of the Invention
[0004] The purpose of the present invention is to provide a formula, preparation process and device for disinfectant hydrogen peroxide that can be stored for a long time, which can directly and automatically extract a specified dose of solution for automatic feeding, making the mixing and preparation efficiency of the whole disinfectant hydrogen peroxide higher.
[0005] To achieve the above purpose, the present invention provides a formula for disinfectant hydrogen peroxide that can be stored for a long time. The disinfectant hydrogen peroxide that can be stored for a long time includes the following components by mass fraction: 40%-50% of hydrogen peroxide water with a specified concentration, 20%-30% of clear water and 30%-40% of a stabilizer, wherein the stabilizer can be sodium silicate, and the hydrogen peroxide water with a specified concentration is hydrogen peroxide water with a concentration of 30%.
[0006] Among them, a device for preparing the disinfectant hydrogen peroxide that can be stored for a long time is used to prepare the disinfectant hydrogen peroxide that can be stored for a long time, and includes a mixing device and a feeding table. The feeding table is fixedly installed on the mixing device and further includes a feeding assembly. The feeding assembly includes a feeding box, a connecting frame, a material preparation box, a material extraction pipe, an extrusion component and a sensing component. The feeding box is connected to the feeding platform and fixedly installed on one side of the mixing device. The two connecting frames are fixedly installed on the feeding box. The two connecting frames are arranged on the upper and lower sides of the same side of the feeding box. The material preparation box is fixedly installed on one side of the two connecting frames. The material extraction pipe is installed on the material preparation box. The extrusion component is connected to the feeding box for squeezing out the liquid in the feeding box. The sensing component is connected to the material preparation box for sensing and monitoring the liquid volume in the material preparation box.
[0007] Among them, the extrusion component includes an extrusion piece, a push rod, a driving bracket, a screw driving mechanism, a conducting component and a blocking component, the extrusion piece is slidably installed in the feed box; the push rod is slidably installed at the bottom of the extrusion piece, and the push rod is slidably connected to the feed box; the driving bracket is fixedly installed on the push rod; the screw driving mechanism is connected to the driving bracket, and is used to drive the driving bracket to slide on the feed box; the conducting component is connected to the connecting frame, and is used to control the connection relationship between the feed box and the preparation box; the blocking component is connected to the feed box, and is used to control the connection relationship between the feed box and the feeding table.
[0008] Wherein, the sensing component includes a suction cylinder and a water level sensor, wherein the suction cylinder is fixedly mounted on the top of the material preparation box; the water level sensor is mounted on the suction cylinder and is used to sense the water level in the suction cylinder.
[0009] Among them, the conductive component includes a shielding plate, a connecting rod, a fixed frame and a sliding frame, and the shielding plate is slidably installed on each of the connecting frames; one side of the connecting rod is rotatably installed on the shielding plate, and the other side of the connecting rod is rotatably installed on the sliding frame; the fixed frame is fixedly installed on one side of the material preparation box; the sliding frame is slidably installed on the fixed frame.
[0010] Among them, the blocking component includes a guide rod, a blocking folding frame and a lifting spring, the guide rod is slidably installed on the top of the feed box; the blocking folding frame is fixedly connected to the guide rod and slidably installed in the feed box; the two sides of the lifting spring are respectively connected to the guide rod and the feed box.
[0011] Among them, the conducting component also includes a compression spring, a guide wheel shaft and a ramp rail plate, and the two sides of the compression spring are respectively connected to the sliding frame and the fixed frame; the guide wheel shaft is installed on one side of the sliding frame; the ramp rail plate is fixedly installed on the side of the driving bracket close to the guide wheel shaft.
[0012] Among them, the extrusion component also includes a discharge valve, an air guide frame, an air pump and an air control component, the discharge valve is installed on one side of the feed box; the air guide frame is fixedly installed on the suction tube; the air pump is connected to the air guide frame through the air control component, and the air pump is fixedly installed on one side of the preparation box; the air control component is connected to the air guide frame for regulating the gas discharged by the air pump.
[0013] Among them, the air control component includes a four-way frame, a rotating guide plate and a control motor. The four-way frame is connected to the air guide frame and is connected to the air inlet and outlet ends of the air pump; the rotating guide plate is rotatably installed in the four-way frame; the output shaft of the control motor is connected to the rotating guide plate, and the control motor is fixedly installed on one side of the four-way frame.
[0014] Among them, a preparation process of a long-term storable disinfectant hydrogen peroxide solution is applied to the long-term storable disinfectant hydrogen peroxide solution formulation, comprising the following steps: Connect the container filled with the corresponding liquid to the material extraction pipe, and then pump the liquid into the material preparation box and the material input box through the corresponding liquid introduction mechanism; The liquid raw material is squeezed from the feed box into the feed table by an extrusion member, and finally the liquid raw material is fed through the feed table; Add a specified volume of clean water and hydrogen peroxide of corresponding concentration into the corresponding preparation container; The added clean water and the hydrogen peroxide of the specified concentration are stirred and mixed by the stirring mechanism in the container; Dissolve the specified weight of sodium silicate in the hydrogen peroxide solution and continue stirring until it is completely dissolved.
[0015] The present invention provides a long-term storage disinfectant hydrogen peroxide preparation device. During actual operation, the user first connects a container containing a corresponding liquid to the extraction pipe, and then extracts the liquid into the preparation box and the feeding box through the corresponding liquid introduction mechanism. Since the preparation box and the feeding box are connected at the upper and lower ends through the connecting frame, the liquid levels of the feeding box and the preparation box are the same under normal circumstances. Therefore, the liquid level of the introduced liquid can be judged by the sensing component arranged in the preparation box. After the liquid is introduced, the extrusion component can squeeze the liquid raw material from the feeding box into the feeding table, and finally the feeding of the liquid raw material is completed through the feeding table. The liquid dosage of the entering liquid can be regulated and judged by controlling the liquid inlet volume in the feeding box, so that the specified dosage of solution can be directly and automatically extracted for automatic feeding, so that the mixing preparation efficiency of the entire disinfectant hydrogen peroxide is higher. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] To more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the accompanying drawings required for the description of the embodiments or the prior art.
[0017] Figure 1 It is a schematic structural diagram of the overall device for preparing disinfected hydrogen peroxide that can be stored for a long time according to the present invention.
[0018] Figure 2 It is a schematic installation structure diagram of the air pump according to the present invention.
[0019] Figure 3 It is a schematic installation structure diagram of the guide wheel shaft according to the present invention.
[0020] Figure 4 It is a schematic structural diagram of the feed box and the driving bracket after being cut open according to the present invention.
[0021] Figure 5 It is a schematic structural diagram of the extrusion part after being cut open according to the present invention.
[0022] Figure 6 It is a schematic structural diagram of the stock preparation box after being cut open according to the present invention.
[0023] Figure 7 It is according to the present invention Figure 6 Enlarged view of part A.
[0024] Figure 8 It is a schematic structural diagram of the four-way frame after being cut open according to the present invention.
[0025] Figure 9 It is a flow chart of the process for preparing disinfected hydrogen peroxide that can be stored for a long time according to the present invention.
[0026] In the figure: 101 - mixing equipment, 102 - feeding platform, 103 - feed box, 104 - connecting frame, 105 - stock preparation box, 106 - pumping connection pipe, 201 - extrusion part, 202 - push rod, 203 - driving bracket, 204 - screw driving mechanism, 301 - suction cylinder, 302 - water level sensor, 401 - shielding plate, 402 - connecting rod, 403 - fixing frame, 404 - sliding frame, 405 - compression spring, 406 - guide wheel shaft, 407 - inclined track plate, 501 - guide rod, 502 - blocking folding frame, 503 - jacking spring, 601 - discharge valve, 602 - air guiding frame, 603 - air pump, 701 - four-way frame, 702 - rotating guide plate, 703 - control motor. Detailed implementation manners
[0027] Embodiments of the present invention will be described in detail below. Examples of the embodiments are shown in the accompanying drawings, where the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to explain the present invention and should not be construed as limiting the present invention.
[0028] In the description of the present invention, it should be understood that the meaning of "a plurality of" is two or more unless otherwise specifically defined.
[0029] A formula for sterilizing hydrogen peroxide that can be stored for a long time. The sterilizing hydrogen peroxide that can be stored for a long time includes the following components by mass fraction: 40%-50% of hydrogen peroxide with a specified concentration, 20%-30% of water, and 30%-40% of a stabilizer. The stabilizer can be sodium silicate, and the hydrogen peroxide with the specified concentration is hydrogen peroxide with a concentration of 30%. The formula can still maintain more than 90% of its initial potency after being stored at room temperature for at least 12 months.
[0030] The stabilizer can be selected from one or more of phosphates, sulfites, citrates, etc.
[0031] By adding specific stabilizers and other auxiliary components, the shelf life of the sterilizing hydrogen peroxide can be significantly extended, ensuring its effectiveness after long-term storage.
[0032] The optimized formula and high-quality storage containers effectively prevent the decomposition of hydrogen peroxide and maintain its sterilization ability.
[0033] The entire preparation process is operated in a sterile environment to avoid external contamination and ensure the safety of the product.
[0034] The pH regulator keeps the pH value of the final product between 5 and 8 to ensure the best stability.
[0035] Please refer to Figures 1 to 8The present invention provides a long-term storage disinfection hydrogen peroxide preparation device: comprising a mixing device 101, a feeding table 102 and a feeding assembly, wherein the feeding assembly comprises a feeding box 103, a connecting frame 104, a material preparation box 105, a material extraction pipe 106, an extrusion component and a sensing component, wherein the extrusion component comprises an extrusion piece 201, a push rod 202, a driving bracket 203, a screw driving mechanism 204, a conducting component and a blocking component, wherein the sensing component comprises a suction cylinder 301 and a water level sensor 302, wherein the conducting component comprises a shielding plate 401, a connecting rod 402, a fixing frame 403 and a sliding frame 404, wherein the blocking component comprises a guide rod 501, a blocking folding frame 50 2 and a lifting spring 503, the conducting component also includes a compression spring 405, a guide wheel shaft 406 and a ramp rail plate 407. The above-mentioned solution solves the problem that in the preparation of existing hydrogen peroxide, clean water of a specified mass ratio and a hydrogen peroxide solution of a corresponding concentration are usually mixed, and when mixing, the ratio of the added clean water and the hydrogen peroxide solution usually needs to be manually determined. When mixing a large volume of hydrogen peroxide, the specific mass and ratio of the added solution cannot be quickly and accurately obtained, and the processing personnel need to measure and plan the dosage in advance, which makes the entire processing and preparation process more cumbersome and greatly affects the overall preparation and processing efficiency.
[0036] Furthermore, the feed table 102 is fixedly installed on the mixing device 101, the feed box 103 is connected to the feed table 102 and fixedly installed on one side of the mixing device 101, the two connecting frames 104 are fixedly installed on the feed box 103, and the two connecting frames 104 are arranged on the upper and lower sides of the same side of the feed box 103, the preparation box 105 is fixedly installed on one side of the two connecting frames 104, the extraction pipe 106 is installed on the preparation box 105, the extrusion component is connected to the feed box 103, and is used to squeeze out the liquid in the feed box 103, and the sensing component is connected to the preparation box 105, and is used to sense and monitor the liquid volume in the preparation box 105.
[0037] Specifically, the mixing device 101 is composed of a corresponding box body and an internal stirring and mixing mechanism. The mixing device 101 is provided with a corresponding control system and a discharging structure. The feeding platform 102 is fixedly provided on the top of the mixing device 101, and the feeding of liquid raw materials can be completed through the feeding platform 102. At the same time, the top of the mixing device 101 is also provided with a feeding platform 102 for feeding solid raw materials.
[0038] Multiple sets of the feeding components can be installed on the mixing device 101 to facilitate the synchronous quantitative introduction of various types of liquid raw materials. Meanwhile, multiple feeding platforms 102 can also be installed on the mixing device 101 corresponding to the multiple sets of feeding components to facilitate the synchronous feeding of the multiple sets of feeding components.
[0039] The discharge port provided at the top of the feeding box 103 is communicated with the feeding port of the feeding platform 102. The side of the feeding box 103 is communicated with the preparation box 105 through the connecting frame 104. A pumping connecting pipe 106 is provided at the top of the preparation box 105. Through the pumping connecting pipe 106, the user can pump and introduce the liquid filled in the corresponding container. The pumping connecting pipe 106 has a certain length, enabling the user to directly complete the installation connection between the liquid container and the pumping connecting pipe 106 on the ground, so as to facilitate the user to complete the assembly easily and quickly during actual operation.
[0040] During actual operation, the user first connects the container filled with the corresponding liquid to the pumping connecting pipe 106, and then pumps the liquid into the preparation box 105 and the feeding box 103 through the corresponding liquid introduction mechanism. Since the upper and lower ends of the preparation box 105 and the feeding box 103 are communicated through the connecting frame 104, the liquid levels in the feeding box 103 and the preparation box 105 are the same under normal circumstances. Therefore, the liquid level of the introduced liquid can be judged by the sensing component provided in the preparation box 105. After the liquid is introduced, the extrusion component can squeeze the liquid raw material from the feeding box 103 into the feeding platform 102, and finally complete the feeding of the liquid raw material through the feeding platform 102. By controlling the liquid inlet volume in the feeding box 103, the dosage of the incoming liquid can be regulated and judged, realizing the ability to directly and automatically extract a specified dosage of solution for automatic feeding, making the mixing and preparation efficiency of the entire disinfected hydrogen peroxide higher.
[0041] Furthermore, the extrusion member 201 is slidably installed in the feeding box 103; the push rod 202 is slidably installed at the bottom of the extrusion member 201, and the push rod 202 is slidably connected to the feeding box 103; the driving bracket 203 is fixedly installed on the push rod 202; the screw driving mechanism 204 is connected to the driving bracket 203 for driving the driving bracket 203 to slide on the feeding box 103; the conduction component is connected to the connecting frame 104 for controlling the communication relationship between the feeding box 103 and the preparation box 105; the blocking component is connected to the feeding box 103 for controlling the communication relationship between the feeding box 103 and the feeding platform 102.
[0042] When this embodiment is in use, the shape and size of the extrusion member 201 match those of the internal structure of the feeding box 103. A push rod 202 is provided at the bottom of the extrusion member 201. The frustum provided at the top of the push rod 202 matches the guide groove provided at the bottom of the extrusion member 201. The push rod 202 is fixed to the driving bracket 203, and the driving bracket 203 is driven by the screw driving mechanism 204.
[0043] The screw driving mechanism 204 is composed of a corresponding screw and a motor for driving the screw to rotate. By setting the motor to drive the corresponding screw to rotate, the driving of the corresponding plate member is realized, so that the user can drive the push rod 202 and the extrusion member 201 through the movement of the driving bracket 203, and then extrude the liquid raw material in the feeding box 103 through the movement of the extrusion member 201 in the feeding box 103.
[0044] The extrusion member 201 is provided with a closing baffle. By setting the closing baffle, the interface position connected to the feeding box 103 is blocked, so as to prevent excess liquid from flowing into the bottom of the feeding box 103 when the extrusion member 201 moves upward for extrusion.
[0045] Furthermore, the suction cylinder 301 is fixedly installed on the top of the preparation box 105; the water level sensor 302 is installed on the suction cylinder 301 and is used to sense the water level in the suction cylinder 301.
[0046] When this embodiment is in use, the suction cylinder 301 is fixedly arranged on the top of the preparation box 105. The water level sensor 302 is provided on the preparation box 105. The water level sensor 302 is used to sense the liquid level height inside the suction cylinder 301, so as to determine the liquid volume inside the preparation box 105 and the feeding box 103. At the same time, through the water level information feedback of the water level sensor 302, the subsequent pumping equipment can also be correspondingly controlled to complete the automatic extraction and quantitative detection of the raw materials.
[0047] It should be noted that the water level height sensed by the water level sensor 302 is lower than the height of the outlet connecting the feeding box 103 and the feeding table 102, so as to prevent excess liquid from overflowing during subsequent liquid feeding.
[0048] Furthermore, a shielding plate 401 is slidably installed on each connecting frame 104; one side of the connecting rod 402 is rotatably installed on the shielding plate 401, and the other side of the connecting rod 402 is rotatably installed on the sliding frame 404; the fixing frame 403 is fixedly installed on one side of the preparation box 105; the sliding frame 404 is slidably installed on the fixing frame 403.
[0049] Further, both sides of the compression spring 405 are respectively connected to the sliding frame 404 and the fixed frame 403; the guide wheel shaft 406 is installed on one side of the sliding frame 404; the inclined platform track plate 407 is fixedly installed on one side of the driving support 203 close to the guide wheel shaft 406.
[0050] When in use in this embodiment, each connecting frame 104 is provided with the shielding plate 401, and the two connecting frames 104 arranged between each feeding box 103 and the stock preparation box 105 are provided with corresponding shielding plates 401. By moving the shielding plate 401 on the connecting frame 104, the two sides of the corresponding connecting frame 104 can be partitioned.
[0051] Both sides of the shielding plate 401 corresponding to the two connecting frames 104 are provided with the connecting rods 402. Two groups of connecting pieces connected to the two shielding plates 401 are respectively connected to the sliding frames 404 arranged on both sides of the feeding box 103. The sliding frames 404 are slidably arranged on the fixed frames 403, and a compression spring 405 is installed between the guide grooves where the sliding frames 404 are connected to the fixed frames 403.
[0052] The guide wheel shaft 406 is installed inside the sliding frame 404. The guide wheel shaft 406 is composed of a corresponding shaft rod and a guide wheel at the end. Corresponding inclined platform track plates 407 are arranged on both sides of the driving support 203 for cooperating with the guide wheel shafts 406 of the two sliding frames 404. When the driving support 203 moves upward, the inclined platform track plates 407 on both sides of the driving support 203 will move upward following the driving support 203. Under the extrusion of the inclined platform track plates 407, the guide wheel shaft 406 will drive the sliding frame 404 to move on the fixed frame 403.
[0053] By the movement of the sliding frame 404, the corresponding connecting rod 402 can be driven to drive the shielding plate 401 arranged on the connecting frame 104 to move, so as to partition and separate the two sides of the connecting frame 104, making it impossible for the feeding box 103 and the stock preparation box 105 to be normally connected through the connecting frame 104. At this time, the driving support 203 will still move upward, and then drive the extrusion member 201 to extrude the liquid raw material in the feeding box 103; There is a certain range of movement in the cooperation between the push rod 202 and the extrusion part 201. When both the extrusion part 201 and the push rod 202 are at the lowest position and move upward, due to the certain range of movement between the push rod 202 and the extrusion part 201, the extrusion part 201 will not immediately follow the push rod 202 to move upward. Only when the push rod 202 moves upward a certain distance, the extrusion part 201 will move under the drive of the push rod 202 and the driving bracket 203. In this way, when the extrusion part 201 is about to move upward, the shielding plate 401 on the connecting frame 104 will complete the partition, so that no interference will occur during the whole process, and the extrusion of the extrusion part 201 will not affect the liquid inside the stock preparation tank 105; By controlling the extrusion distance of the extrusion part 201, the volume of the extruded liquid can be quantitatively controlled. Using the stock preparation tank 105 can avoid the situation of large quantitative errors caused by continuous feeding of liquid. Through the water level sensor 302 arranged in the stock preparation tank 105, users can pre-fill the corresponding volume of liquid, and then can quickly and accurately complete the subsequent quantitative introduction of liquid.
[0054] Further, the guide rod 501 is slidably installed on the top of the feeding tank 103; the blocking folding frame 502 is fixedly connected to the guide rod 501 and is slidably installed in the feeding tank 103; both sides of the jacking spring 503 are connected to the guide rod 501 and the feeding tank 103 respectively.
[0055] During the use of this embodiment, the guide rod 501 matches the guiding groove arranged on the top of the feeding tank 103. The bottom of the guide rod 501 is fixedly provided with the blocking folding frame 502. The blocking folding frame 502 blocks the export for connecting the feeding tank 103 and the feeding platform 102. There is the jacking spring 503 between the guide rod 501 and the top surface of the feeding tank 103.
[0056] When the driving bracket 203 is at the bottommost position, the inner wall of the top of the driving bracket 203 will squeeze the guide rod 501, so that the guide rod 501 squeezes the jacking spring 503, and then by squeezing the guide rod 501, the blocking folding frame 502 blocks the export for connecting the feeding tank 103 and the feeding platform 102, so as to prevent gas leakage when pumping liquid by air pressure later. When the driving bracket 203 moves upward, the guide rod 501 will drive the blocking folding frame 502 to move upward under the action of the jacking spring 503, so that the feeding tank 103 and the feeding platform 102 are connected, and the liquid in the feeding tank 103 can be normally squeezed into the feeding platform 102 to complete the feeding.
[0057] Preferably, the extrusion member provided by the present invention further includes a discharge valve 601, a gas guide frame 602, a gas pump 603, and a gas control component. The gas control component includes a four-way frame 701, a rotating guide plate 702, and a control motor 703.
[0058] Specifically, the discharge valve 601 is installed on one side of the feeding box 103; the gas guide frame 602 is fixedly installed on the suction cylinder 301; the gas pump 603 is connected to the gas guide frame 602 through the gas control component, and the gas pump 603 is fixedly installed on one side of the stock preparation box 105; the gas control component is connected to the gas guide frame 602 for regulating the gas exported by the gas pump 603.
[0059] Further, the four-way frame 701 is connected to the gas guide frame 602 and is connected to the intake end and the outlet end of the gas pump 603; the rotating guide plate 702 is rotatably installed in the four-way frame 701; the output shaft of the control motor 703 is connected to the rotating guide plate 702, and the control motor 703 is fixedly installed on one side of the four-way frame 701.
[0060] During the use of this embodiment, the discharge valve 601 is arranged at the bottom of the feeding box 103. The discharge valve 601 is an electronic valve, and the opening and closing of the valve body can be controlled by setting a corresponding control circuit. The discharge valve 601 is used to discharge the excess liquid inside the feeding box 103 and the stock preparation box 105 to avoid the retention of excess liquid in the feeding box 103 and the stock preparation box 105.
[0061] The gas guide frame 602 is arranged on the top of the stock preparation box 105. The gas guide frame 602 is communicated with the interface at the top of the four-way frame 701. The interfaces on the left and right sides of the four-way frame 701 are respectively communicated with the intake end and the outlet end of the gas pump 603. The interface below the four-way frame 701 remains open. The rotating guide plate 702 is arranged inside the four-way frame 701, and the rotating guide plate 702 is driven by the control motor 703.
[0062] By rotating the rotating guide plate 702 inside the four-way frame 701, the communication relationship of the four interfaces of the four-way frame 701 can be changed. When the top of the rotating guide plate 702 inclines towards the intake end of the gas pump 603, the outlet end of the gas pump 603 is communicated with the top interface of the four-way frame 701. At this time, the gas pump 603 will inflate the stock preparation box 105 through the gas guide frame 602, and then cooperate with the discharge valve 601 to blow out the excess liquid in the stock preparation box 105 and the feeding box 103.
[0063] When the top end of the rotating guide plate 702 inclines towards the air outlet end of the air pump 603, the air inlet end of the air pump 603 will communicate with the interface at the top of the four-way frame 701. At this time, the airflows in the stock preparation tank 105 and the feeding tank 103 will be guided by the air pump 603 and discharged through the air outlet end of the air pump 603 and the outlet at the bottom of the four-way frame 701. At this time, the air pressures inside the stock preparation tank 105 and the feeding tank 103 will continuously decrease, and then the air pressure is used to cooperate with the material suction connecting pipe 106 to suck the liquid in the bottom placement container. When the liquid level of the sucked liquid is sensed by the water level sensor 302, the air pump 603 can stop working, thereby realizing the introduction of a specified volume of liquid.
[0064] Please refer to Figure 9 , a formula, preparation process and device for disinfecting hydrogen peroxide that can be stored for a long time. Using the formula, preparation process and device for disinfecting hydrogen peroxide that can be stored for a long time, the following steps are included: S1: Connect the container filled with the corresponding liquid to the material suction connecting pipe 106, and then suck the liquid into the stock preparation tank 105 and the feeding tank 103 through the corresponding liquid introduction mechanism; S2: Squeeze the liquid raw material from the feeding tank 103 into the feeding table 102 through the extrusion member, and finally complete the feeding of the liquid raw material through the feeding table 102; S3: Add a specified volume of clear water and hydrogen peroxide with a corresponding concentration into the corresponding preparation container; S4: Stir and mix the added clear water and hydrogen peroxide with a specified concentration through the stirring mechanism in the container; S5: Dissolve a specified weight of sodium silicate and add it to the hydrogen peroxide solution, and continue to stir until it is completely dissolved.
[0065] The above-disclosed are only one or more preferred embodiments of the present application, and the scope of rights of the present application cannot be limited by this. Those of ordinary skill in the art can understand all or part of the processes of implementing the above embodiments, and the equivalent changes made according to the claims of the present application still fall within the scope covered by the present application.
Claims
1. A device for preparing disinfected hydrogen peroxide solution that can be stored for a long time, comprising a mixing device and a feeding table, wherein the feeding table is fixedly mounted on the mixing device, characterized in that: Also includes a feed assembly, The feeding assembly includes a feeding box, a connecting frame, a material preparation box, a material extraction pipe, an extrusion component and a sensing component. The feeding box is connected to the feeding platform and fixedly installed on one side of the mixing device. The two connecting frames are fixedly installed on the feeding box. The two connecting frames are arranged on the upper and lower sides of the same side of the feeding box. The material preparation box is fixedly installed on one side of the two connecting frames. The material extraction pipe is installed on the material preparation box. The extrusion component is connected to the feeding box for squeezing out the liquid in the feeding box. The sensing component is connected to the material preparation box for sensing and monitoring the liquid volume in the material preparation box.
2. The long-term storable sterile hydrogen peroxide preparation device according to claim 1, characterized in that: The extrusion component includes an extrusion piece, a push rod, a driving bracket, a screw driving mechanism, a conducting component and a blocking component. The extrusion piece is slidably installed in the feed box; the push rod is slidably installed at the bottom of the extrusion piece, and the push rod is slidably connected to the feed box; the driving bracket is fixedly installed on the push rod; the screw driving mechanism is connected to the driving bracket, and is used to drive the driving bracket to slide on the feed box; the conducting component is connected to the connecting frame, and is used to control the connection relationship between the feed box and the preparation box; the blocking component is connected to the feed box, and is used to control the connection relationship between the feed box and the feeding table.
3. The long-term storable disinfection hydrogen peroxide preparation device according to claim 1, characterized in that: The sensing component comprises a suction cylinder and a water level sensor. The suction cylinder is fixedly mounted on the top of the material preparation box. The water level sensor is mounted on the suction cylinder and is used to sense the water level in the suction cylinder.
4. The long-term storable sterile hydrogen peroxide preparation device according to claim 2, characterized in that: The conducting component includes a shielding plate, a connecting rod, a fixed frame and a sliding frame, and the shielding plate is slidably installed on each of the connecting frames; one side of the connecting rod is rotatably installed on the shielding plate, and the other side of the connecting rod is rotatably installed on the sliding frame; the fixed frame is fixedly installed on one side of the material preparation box; the sliding frame is slidably installed on the fixed frame.
5. The long-term storable sterile hydrogen peroxide preparation device according to claim 2, characterized in that: The blocking component includes a guide rod, a blocking folding frame and a lifting spring. The guide rod is slidably installed on the top of the feed box; the blocking folding frame is fixedly connected to the guide rod and slidably installed in the feed box; the two sides of the lifting spring are respectively connected to the guide rod and the feed box.
6. The long-term storable sterile hydrogen peroxide preparation device according to claim 4, characterized in that: The conducting component also includes a compression spring, a guide wheel shaft and a ramp rail plate, the two sides of the compression spring are respectively connected to the sliding frame and the fixed frame; the guide wheel shaft is installed on one side of the sliding frame; the ramp rail plate is fixedly installed on one side of the driving bracket close to the guide wheel shaft.
7. The long-term storable sterile hydrogen peroxide preparation device according to claim 3, characterized in that: The extrusion component also includes a discharge valve, an air guide frame, an air pump and an air control component, the discharge valve is installed on one side of the feed box; the air guide frame is fixedly installed on the suction tube; the air pump is connected to the air guide frame through the air control component, and the air pump is fixedly installed on one side of the preparation box; the air control component is connected to the air guide frame for regulating the gas discharged by the air pump.
8. The long-term storable sterilizing hydrogen peroxide preparation device according to claim 7, characterized in that: The air control component includes a four-way frame, a rotating guide plate and a control motor. The four-way frame is connected to the air guide frame and is connected to the air inlet and outlet ends of the air pump; the rotating guide plate is rotatably installed in the four-way frame; the output shaft of the control motor is connected to the rotating guide plate, and the control motor is fixedly installed on one side of the four-way frame.
9. A process for preparing disinfected hydrogen peroxide solution that can be stored for a long time, applied to a device for preparing disinfected hydrogen peroxide solution that can be stored for a long time as claimed in claim 1, characterized in that: The following steps are included: Connect the container filled with the corresponding liquid to the extraction pipe, and then pump the liquid into the preparation box and the feeding box through the corresponding liquid introduction mechanism; The liquid raw material is squeezed from the feed box into the feed table by an extrusion member, and finally the liquid raw material is fed through the feed table; Add a specified volume of clean water and hydrogen peroxide of corresponding concentration into the corresponding preparation container; The added clean water and the hydrogen peroxide of the specified concentration are stirred and mixed by the stirring mechanism in the container; Dissolve the specified weight of sodium silicate in the hydrogen peroxide solution and continue stirring until it is completely dissolved.
10. A long-term storable disinfectant hydrogen peroxide formulation, characterized in that: The method is prepared by the process for preparing a long-term storable disinfected hydrogen peroxide solution as described in claim 9.
Citation Information
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