Household intelligent health hydrolat humidifying device

By combining hydrosol extraction components and humidification atomization components, the cleaning difficulties and low humidification efficiency of small aromatherapy humidifiers have been solved, achieving a healthy and safe humidification experience and convenient cleaning, thus promoting the innovative development of humidifiers.

CN119617548BActive Publication Date: 2026-04-10NANJING FORESTRY UNIV
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
NANJING FORESTRY UNIV
Filing Date
2024-12-18
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Existing aromatherapy humidifiers suffer from problems such as water and oil mixing making them difficult to clean, low humidification efficiency, and inability to cover small spaces due to their miniaturized design. Furthermore, traditional humidifiers cannot guarantee a healthy and safe user experience.

Method used

It adopts a design that combines hydrosol extraction components and humidification atomization components. It extracts aromatic plant essential oils through heating distillation, separates hydrosol water using condenser tubes and cooling plates, and converts it into mist through atomization plates to achieve humidification and aroma diffusion. It is equipped with APP control and a convenient cleaning structure.

Benefits of technology

It achieves a healthy and safe humidification effect, provides a multi-functional user experience for making your own hydrosol, is easy to clean, and is miniaturized, energy-saving and environmentally friendly.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a kind of household intelligent health hydrolat humidifying device, including shell, hydrolat extraction component and humidifying atomization component;Hydrolat extraction component includes heating bucket, steaming tray, hydrolat cup, heating element and refrigeration element, heating bucket is heated by heating element located at the bottom of heating bin, and aromatic plant essential oil is carried out using water vapor;Carry aromatic plant essential oil water vapor from the inside of heating bucket is collected by collecting port, and the water vapor in condenser tube is condensed into liquid using temperature difference, and hydrolat water is separated out and transported to the inside of hydrolat cup, and the extraction of hydrolat is completed;The extracted hydrolat is absorbed by water-absorbing cotton stick in humidifying atomization component, and is converted into mist by atomizing sheet located at the upper end of spray support, and is discharged by the mist outlet on the surface of lid.The application can be humidified according to the needs of different smell of hydrolat itself, and is easy to install, can realize the effect of miniaturization, energy saving and environmental protection.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of humidifiers, in particular to a household intelligent health hydrolat humidifying device. BACKGROUND

[0002] Humidifiers are generally used more frequently in autumn and winter when the temperature is low, rainfall is less and the climate is dry. However, with the continuous improvement of people's quality of life and the development of the technology era, more and more people use air conditioners for a long time in summer, and the air is relatively drier. Humidifiers are also increasingly used in summer and have become a necessary household appliance for many people. Hydrolat is a product in the process of essential oil extraction. Oil and water are separated by distillation. The water in it is hydrolat. Therefore, hydrolat, also known as "water essential oil", is a by-product of essential oil refining. It has a natural light odor and healthy natural ingredients.

[0003] The design of the aromatherapy humidifier equipped with an independent aromatherapy box avoids the pain point that the water tank is not easy to clean due to the mixing of water and essential oil. The humidifier with an independent aromatherapy box generally has a larger atomization amount and water tank capacity. Although there is a gear adjustment, the mist output is still too large for use in a bedroom area. However, a small mist output cannot fully drive the aromatic molecules to diffuse, which is also the reason why small water-oil mixed aromatherapy humidifiers generally do not use independent aromatherapy. Water-oil mixed aromatherapy humidifiers generally have oil attached to the inside of the water tank, which is difficult to clean. They focus too much on creating an atmosphere and ignore the humidifying efficiency, which cannot provide users with the most comfortable and safest experience.

[0004] Currently, the size of the aromatherapy humidifier equipped with an independent aromatherapy box is mostly medium to large. Although it is safer compared to other types, it cannot cover mini-sized aromatherapy humidifiers due to space constraints. There is a lack of a way to make both healthy and safe. SUMMARY

[0005] In view of the deficiencies of the prior art, the present application discloses a household intelligent health hydrolat humidifying device to solve the problems in the background art.

[0006] To achieve the above purpose, the present application provides the following technical scheme: a household intelligent health hydrolat humidifying device, comprising a shell, a hydrolat extraction assembly and a humidifying atomization assembly; the hydrolat extraction assembly is located on one side of the inside of the shell, and the humidifying atomization assembly is located on the other side of the shell.

[0007] The essence extraction assembly comprises a heating barrel, a steaming tray, an essence cup, a heating element and a refrigeration element, the shell is internally provided with a heating bin, the heating barrel is located inside the heating bin, the essence cup is located outside one side of the shell, the heating element is located at the bottom of the heating bin, the steaming tray is located inside the heating barrel, and the steaming tray is placed inside the heating barrel through the support legs provided at the lower end, the aromatic plants are placed on the steaming tray, and pure water is added into the heating barrel, the heating barrel is heated through the heating element at the bottom of the heating bin, and the water vapor is used to carry out the aromatic plant essential oil.

[0008] The upper end of the shell is provided with a cooling groove, the upper end of the cooling groove is provided with a cover, the upper end of the heating bin is in communication with the cooling groove, the upper end of the essence cup is connected with the threaded interface provided on the lower side wall of the other end of the shell, the upper end of the essence cup is in communication with the cooling groove, the outer wall of the essence cup is provided with a scale mark, and the refrigeration element is located inside the cooling groove. The refrigeration element comprises a condenser pipe, a heat-conducting sheet and a refrigeration sheet, the condenser pipe is located inside the cooling groove, one end of the condenser pipe is in communication with the heating bin at the lower end through the collection port, the water vapor carrying the aromatic plant essential oil from the inside of the heating barrel is collected through the collection port, the upper end of the condenser pipe is sequentially provided with the heat-conducting sheet and the refrigeration sheet, respectively, the heat-conducting sheet and the refrigeration sheet are matched with each other to generate a thermoelectric effect and thus absorb heat, the water vapor inside the condenser pipe is condensed into a liquid state by using the temperature difference, and thus the essence water is separated out and flows to the other end of the condenser pipe and is delivered into the essence cup through the discharge port, and the extraction of the essence is completed.

[0009] The humidifying and atomizing assembly comprises an atomizing sheet, a spraying support and a water-absorbing cotton stick, the spraying support is installed at one side of the cooling groove, the lower end of the spraying support extends into the essence cup, the water-absorbing cotton stick is located inside the spraying support, the extracted essence is absorbed through the water-absorbing cotton stick at the lower end, is converted into mist by the atomizing sheet at the upper end of the spraying support, and is discharged through the mist outlet provided on one side surface of the cover.

[0010] Preferably, the heating element comprises a microcrystalline plate, a heating wire and a heating disc, the microcrystalline plate is located at the bottom of the heating bin, the heating disc is located at the lower end of the microcrystalline plate, and the heating wire is located between the microcrystalline plate and the heating disc, the heating wire is electrified to generate heat, and the heating barrel at the upper end is heated through the microcrystalline plate.

[0011] Preferably, the lower end of the heating disc is provided with a first fan, and the bottom of the shell is provided with a first heat dissipation opening corresponding to the position of the first fan, the first fan discharges heat through the first heat dissipation opening, and thus the heat dissipation operation of the heating element is realized.

[0012] Preferably, the condensing pipe is S-shaped distributed at the lower end of the heat-conducting sheet, thereby increasing the contact area of the condensing pipe and the heat-conducting sheet, prolonging the condensing path, reducing the temperature of the refrigeration sheet, and prolonging the service life of the refrigeration sheet.

[0013] Preferably, the upper end of the condensing pipe is provided with a heat dissipation element, the heat dissipation element comprises a second fan, a heat dissipation fin and heat insulation cotton, the heat dissipation fin is located at the upper end of the condensing pipe, the second fan is located at the upper end of the heat dissipation fin, and the lower end of the heat dissipation fin is provided with heat insulation cotton, the cover is located at the upper end of the second fan and is provided with a second heat dissipation opening, heat is discharged through the second heat dissipation opening, thereby realizing the heat dissipation operation of the inside of the cooling tank.

[0014] Preferably, one side of the shell is provided with a water accumulation box, the water accumulation box stores the water accumulated by the refrigeration sheet in the inside of the cooling tank through pulling.

[0015] Preferably, the bottom of the heating barrel is provided with a sliding groove on each side, and the bottom of the heating bin is provided with a sliding rail corresponding to each side, the sliding groove and the sliding rail are matched with each other, thereby enabling the heating barrel to enter and exit the inside of the heating bin through a push-pull mode.

[0016] Preferably, the upper end surface of the cover is provided with a control screen, the device operation is controlled through the control screen, the control screen can be adapted with an online APP, and the switch, timing, extraction mode, mist output, community exchange, proportion query and aromatic plant purchase can be remotely controlled through a mobile phone.

[0017] Compared with the prior art, the application has the following beneficial effects:

[0018] 1. In the application, pure distillate is used to replace traditional water for humidification, one-step realization of fragrance expansion, humidification, bacteria inhibition and aromatherapy meets people's demand for safe and healthy life, and the APP is used for online control, pure distillate extraction proportion checking, aromatic plant purchase, community exchange and other functions to promote better use; pure distillate with different odors can be self-made for humidification according to the demand, the knowledge of the effects of different pure distillates can be understood, the production process is transparent and safe, the pure distillate humidification can not only stimulate the interest of consumers in pure distillate but also deepen the experience of green and healthy life, which is of great significance for the development and innovation of the humidifier.

[0019] 2. In the application, the heating barrel is taken out in a push-pull mode, the maintenance and cleaning are more convenient, the stability is high, there is a fixing structure between the heating barrel and the heating bin, the stability is increased, the space utilization rate is high, the compact hidden design makes the model more integrated, no extra space is occupied, the operation is more convenient, the push-pull design is similar to the use mode of a drawer, the force degree is reduced, and the use experience is more relaxed.

[0020] 3. This invention utilizes the rapid cooling characteristics of semiconductor cooling chips in combination with condenser tubes to achieve the goal of accelerating condensation and reducing condensation temperature. The cooling speed is fast, and the cooling temperature can reach -130℃. This invention has no moving parts, does not require refrigerant, operates without vibration, and is easy to install. Therefore, it can achieve miniaturization, energy saving, and environmental protection. Attached Figure Description

[0021] The accompanying drawings are provided to further illustrate the invention and form part of the specification. They are used together with the embodiments of the invention to explain the invention and do not constitute a limitation thereof.

[0022] In the attached diagram:

[0023] Figure 1 This is an exploded view of the hydrosol humidification device of the present invention;

[0024] Figure 2 This is a structural framework diagram of an APP adapted to the hydrosol humidification device of the present invention;

[0025] The diagram is labeled as follows: 1. Outer shell; 101. Heating chamber; 102. Cooling tank; 103. Cover; 104. First heat dissipation vent; 105. Second heat dissipation vent; 106. Water collection box; 107. Slide rail; 108. Control panel; 201. Heating barrel; 202. Steaming tray; 203. Hydrosol cup; 204. Slide rail; 301. Atomizing plate; 302. Spray bracket; 303. Water-absorbing cotton swab; 304. Mist outlet; 401. Microcrystalline plate; 402. Heating wire; 403. Heating plate; 404. First fan; 501. Condenser tube; 502. Cooling element; 503. Heat-conducting element; 504. Collection port; 505. Exhaust port; 601. Second fan; 602. Heat sink; 603. Insulation cotton. Detailed Implementation

[0026] The preferred embodiments of the present invention will be described below with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are for illustration and explanation only and are not intended to limit the present invention.

[0027] Example: Figure 1 As shown, a smart home health hydrosol humidifier includes a shell 1, a hydrosol extraction component, and a humidifying atomizing component; the hydrosol extraction component is located inside one side of the shell 1, and the humidifying atomizing component is located on the other side of the shell 1.

[0028] The hydrolate extraction assembly includes a heating barrel 201, a steaming tray 202, a hydrolate cup 203, a heating element, and a refrigeration element. The shell 1 is internally provided with a heating bin 101. The heating barrel 201 is located inside the heating bin 101 and moves in the heating bin 101 by a push-pull type. The heating barrel 201 is provided with a sliding groove 204 on both sides of the bottom. The heating bin 101 is provided with a sliding rail 107 on both sides of the bottom. The sliding groove 204 and the sliding rail 107 are matched with each other, so that the heating barrel 201 enters or exits the heating bin 101 by a push-pull type. The hydrolate cup 203 is located outside one side of the shell 1. The heating element is located at the bottom of the heating bin 101. The steaming tray 202 is located inside the heating barrel 201. The steaming tray 202 is placed in the heating barrel 201 by a supporting leg at the lower end. The aromatic plants are placed on the steaming tray 202, and pure water is added to the heating barrel 201. The heating element at the bottom of the heating bin 101 heats the heating barrel 201. The water vapor carries out the essential oil of the aromatic plants. The heating element includes a microcrystalline plate 401, a heating wire 402, and a heating disc 403. The microcrystalline plate 401 is located at the bottom of the heating bin 101. The heating disc 403 is located at the lower end of the microcrystalline plate 401. The heating wire 402 is located between the microcrystalline plate 401 and the heating disc 403. The heating wire 402 is heated by power supply, and the heating barrel 201 at the upper end is heated by the microcrystalline plate 401. The first fan 404 is arranged at the lower end of the heating disc 403. The first heat dissipation port 104 is arranged at the bottom of the shell 1 corresponding to the position of the first fan 404. The first fan 404 discharges heat through the first heat dissipation port 104, thereby achieving heat dissipation of the heating element.

[0029] The upper end of the shell 1 is provided with a cooling groove 102, the upper end of the cooling groove 102 is provided with a cover 103, the upper end surface of the cover 103 is provided with a control screen 108, the operation of the device is controlled through the control screen 108, the upper end of the heating bin 101 is in communication with the cooling groove 102, the upper end of the distillate cup 203 is connected with the threaded interface provided on the lower side wall surface of the other end of the shell 1, which is convenient for disassembly and cleaning, and the distillate cup 203 is in communication with the cooling groove 102, and the outer wall of the distillate cup 203 is provided with a scale mark, which is convenient for observing the extraction condition and the extraction capacity; The refrigeration element is located in the cooling groove 102, the refrigeration element includes a condenser pipe 501, a heat conducting sheet 503 and a refrigeration sheet 502, the condenser pipe 501 is located in the cooling groove 102, and the condenser pipe 501 is S-shaped distributed at the lower end of the heat conducting sheet 503, the S-shaped distribution can increase the contact area of the condenser pipe 501 and the heat conducting sheet 503, and at the same time, the condensation path is lengthened, the temperature is reduced, and the service life of the refrigeration sheet 502 is increased after flowing through the covered area of the refrigeration sheet 502, one end of the condenser pipe 501 is in communication with the lower end of the heating bin 101 through the collection port 504, the water vapor carrying aromatic plant essential oil from the inside of the heating barrel 201 is collected through the collection port 504, the upper end of the condenser pipe 501 is provided with a heat conducting sheet 503 and a refrigeration sheet 502 in sequence, the heat conducting sheet 503 and the refrigeration sheet 502 cooperate with each other to produce a thermoelectric effect and absorb heat, and the water vapor in the condenser pipe 501 is condensed into a liquid state by utilizing the temperature difference, and then the distillate water is separated out, the condenser pipe 501 is inclined from the collection port 504 to the discharge port 505 side, the condensate flows to the other end of the condenser pipe 501 and is delivered to the inside of the distillate cup 203 through the discharge port 505, the extraction of the distillate is completed, and a heat dissipation element is provided at the upper end of the condenser pipe 501, the heat dissipation element includes a second fan 601, a heat dissipation sheet 602 and a heat insulation cotton 603, the heat dissipation sheet 602 is located at the upper end of the condenser pipe 501, the second fan 601 is located at the upper end of the heat dissipation sheet 602, and the heat dissipation sheet 602 is provided with a heat insulation cotton 603 at the lower end, the cover 103 is provided with a second heat dissipation port 105 at the upper end region of the second fan 601, heat is discharged through the second heat dissipation port 105, and then the heat dissipation operation of the inside of the cooling groove 102 is realized.

[0030] The humidifying atomization assembly comprises an atomization sheet 301, a spray support 302, and a water-absorbing cotton stick 303. The upper end of the spray support 302 is mounted on one side of the cooling groove 102, and the lower end of the spray support 302 extends into the interior of the pure water cup 203. The water-absorbing cotton stick 303 is located in the interior of the spray support 302. The extracted pure water is absorbed by the water-absorbing cotton stick 303 at the lower end, and is converted into mist by the atomization sheet 301 at the upper end of the spray support 302, and is discharged through the mist outlet 304 provided on the side surface of the cover 103.

[0031] Further, a water accumulation box 106 is provided on one side of the shell 1. The water accumulation box 106 stores the accumulated water left by the refrigeration sheet 502 in the interior of the cooling groove 102 through a pulling type.

[0032] Further, in the embodiment, the heat-conducting sheet 503 is made of a silicon grease material for computer heat dissipation, for increasing the contact area. The semiconductor refrigeration sheet 502 is used, i.e. the thermoelectric refrigeration sheet 502 belongs to a refrigeration technology using the thermoelectric effect. When an electric current passes through the contact interface of two different materials, the direct thermoelectric effect occurs, so that the heat is transferred from one material to another material. Through the thermoelectric array composed of the continuous thermoelectric modules in series, a refrigeration process of continuously absorbing heat can be formed.

[0033] Further, as shown in Figure 2 The device can be adapted with an online APP. The device can be remotely controlled by a mobile phone, and the intelligent control includes extraction mode, switch timing, mist discharge amount adjustment, humidity trend, extraction temperature, extraction / humidification state. The device can also be used for community communication, extraction recommendation, proportion query, and purchase of aromatic plants through the adapted APP.

[0034] Specific use steps are as follows:

[0035] Firstly, the required ratio of hydrolat extraction can be checked through the mobile phone APP, then the steaming tray 202 is placed in the heating barrel 201, the hydrolat cup 203 is connected to the lower end of one side of the shell 1 through the threaded interface at the upper end, the heating barrel 201 is pulled out from the inside of the heating bin 101, the aromatic plants and pure water are placed in turn, then the heating barrel 201 is pushed into the inside of the heating bin 101, the distillation mode and timing are set through the control screen 108 at the upper end of the cover 103, waiting for hydrolat extraction, the heating barrel 201 is heated by the heating element, the aromatic plant essential oil is carried out by water vapor, the water vapor carrying the aromatic plant essential oil from the inside of the heating barrel 201 enters the inside of the condenser tube 501 through the collection port 504, the heat dissipation sheet 503 and the semiconductor refrigeration sheet 502 cooperate with each other to produce thermoelectric effect and then absorb heat, the water vapor in the inside of the condenser tube 501 is condensed into liquid by using temperature difference, then the hydrolat water is separated out and flows to the other end of the condenser tube 501 and is transported to the inside of the hydrolat cup 203 through the discharge port 505 arranged, the extraction of hydrolat is completed, at the same time, the extracted hydrolat is absorbed by the water absorption cotton stick 303 in the humidifying and atomizing assembly, is converted into mist by the atomizing sheet 301 at the upper end of the atomizing support 302, and is discharged through the mist outlet 304 on the surface of one side of the cover 103, so as to realize the humidifying function, at the same time, the mist amount and timing can be set through the control screen 108, after the humidifying is completed, the hydrolat cup 203 on one side can be unscrewed, the water accumulation box 106 on one side of the shell 1 and the heating barrel 201 in the heating bin 101 can be pulled out, and they are cleaned, after cleaning, they are installed and restored.

[0036] Finally, it should be noted that: the above only for the preferred examples of the present application, and not for limiting the present application, although the present application is described in detail with reference to the foregoing examples, for those skilled in the art, the technical solutions recorded in the foregoing embodiments can be modified, or some technical features can be replaced. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.

Claims

1. A smart home health hydrosol humidifier, characterized in that: Including shell, pure extract component and humidification atomization component, the pure extract component is located in one side of the shell, and the humidification atomization component is located in the other side of the shell; The pure extract component includes heating barrel, evaporation tray, pure cup, heating element and refrigeration element, the shell is internally provided with a heating bin, the heating barrel is located in the heating bin, the pure cup is located on one side of the shell, the heating element is located at the bottom of the heating bin, the evaporation tray is located in the heating barrel, and the evaporation tray is placed in the heating barrel through the support legs arranged at the lower end, the aromatic plants are placed on the evaporation tray, and pure water is added into the heating barrel, the heating barrel is heated through the heating element arranged at the bottom of the heating bin, and the aromatic plant essential oil is carried out by water vapor. The upper end of the shell is provided with a cooling groove, the upper end of the cooling groove is provided with a cover, the upper end of the heating bin is communicated with the cooling groove, the upper end of the pure cup is connected with the interface arranged on the lower side wall of the other end of the shell, and the pure cup is communicated with the cooling groove, the refrigeration element is located in the cooling groove, the refrigeration element includes a condenser pipe, a heat conducting sheet and a refrigeration sheet, the condenser pipe is located in the cooling groove, one end of the condenser pipe is communicated with the heating bin through the collecting port, the water vapor carrying the aromatic plant essential oil from the heating barrel is collected through the collecting port, the upper end of the condenser pipe is sequentially provided with the heat conducting sheet and the refrigeration sheet, the heat conducting sheet and the refrigeration sheet are matched to generate thermoelectric effect and absorb heat, the water vapor in the condenser pipe is condensed into liquid state by using temperature difference, and then the pure water is separated out and flows to the other end of the condenser pipe and is delivered to the pure cup through the discharge port, so as to complete the extraction of the pure water. The humidification atomization component includes an atomization sheet, a spray support and a water absorbing cotton stick, the upper end of the spray support is installed on one side of the cooling groove, the lower end of the spray support extends into the pure cup, the water absorbing cotton stick is located in the spray support, the extracted pure water is absorbed through the water absorbing cotton stick at the lower end, and is converted into mist through the atomization sheet at the upper end of the spray support, and is discharged through the mist outlet arranged on one side of the cover.

2. The home intelligent health hydrolat humidifying device according to claim 1, characterized in that: The heating element includes a microcrystalline plate, a heating wire and a heating disc, the microcrystalline plate is located at the bottom of the heating bin, the heating disc is located at the lower end of the microcrystalline plate, and the heating wire is located between the microcrystalline plate and the heating disc, the heating wire is electrified to heat, and then the heating barrel at the upper end is heated through the microcrystalline plate.

3. The home intelligent health hydrolat humidifying device according to claim 2, characterized in that: The lower end of the heating disc is provided with a first fan, and the bottom of the shell is provided with a first heat dissipation port corresponding to the position of the first fan, the first fan discharges heat through the first heat dissipation port, thereby realizing the heat dissipation operation of the heating element.

4. The home intelligent health hydrolat humidifying device according to claim 1, characterized in that: The condenser pipe is distributed in the form of S at the lower end of the heat conducting sheet, thereby increasing the contact area of the condenser pipe and the heat conducting sheet.

5. The home smart health hydrosol humidifying device according to claim 1, characterized in that: The upper end of the condenser pipe is provided with a heat dissipation element, the heat dissipation element comprises a second fan, a heat dissipation fin and heat insulation cotton, the heat dissipation fin is located at the upper end of the condenser pipe, the second fan is located at the upper end of the heat dissipation fin, and the lower end of the heat dissipation fin is provided with heat insulation cotton, the upper end area of the second fan is provided with a second heat dissipation opening, and heat is discharged through the second heat dissipation opening, thereby realizing the heat dissipation operation inside the cooling tank.

6. The home smart health hydrosol humidifying device according to claim 1, characterized in that: One side of the shell is provided with a water accumulation box, the water accumulation box is used for storing the water accumulated by the refrigerating fin in the cooling tank through pulling.

7. The home smart health hydrosol humidifying device according to claim 1, characterized in that: The bottom of the heating barrel is provided with a sliding groove on both sides, and the bottom of the heating bin is provided with a sliding rail on both sides correspondingly, the sliding groove and the sliding rail are matched with each other, and then the heating barrel enters or exits the inside of the heating bin through the push-pull mode.

8. The home smart health hydrosol humidifying device according to claim 7, characterized in that: The upper end surface of the cover is provided with a control screen, and the operation of the device is controlled through the control screen.

Citation Information

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