CN221192358U - Device for preparing hydrogen peroxide - Google Patents

Device for preparing hydrogen peroxide Download PDF

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Publication number
CN221192358U
CN221192358U CN202321695577.XU CN202321695577U CN221192358U CN 221192358 U CN221192358 U CN 221192358U CN 202321695577 U CN202321695577 U CN 202321695577U CN 221192358 U CN221192358 U CN 221192358U
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hydrogen peroxide
reaction
electrode
power supply
storage tank
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CN202321695577.XU
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郭子威
张原�
陈伟东
张心予
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Aopu Intelligent Technology Co ltd
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Aupu Home Style Corp Ltd
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Abstract

The utility model relates to the technical field of devices for preparing hydrogen peroxide, and provides a device for preparing hydrogen peroxide, which at least comprises: the reaction cabin is provided with an air inlet and an air outlet; the condensation humidifier is arranged in the reaction cabin and comprises a condensation part and a humidification part, the condensation part can condense moisture contained in air entering the reaction cabin into condensed water, and the humidification part can gasify the condensed water into water vapor and is filled in the reaction cabin when the amount of the condensed water reaches a set value; and the plasma reaction assembly is arranged in the reaction chamber and can utilize the humid air in the reaction chamber to perform plasma discharge reaction so as to synthesize hydrogen peroxide. Compared with the hydrogen and oxygen used as synthesis reaction gas to prepare hydrogen peroxide, the device for preparing hydrogen peroxide has lower cost and stronger applicability.

Description

Device for preparing hydrogen peroxide
Technical Field
The utility model relates to the technical field of devices for preparing hydrogen peroxide, in particular to a device for preparing hydrogen peroxide.
Background
Hydrogen peroxide is a common bactericide with good effect on killing air and surface bacteria such as escherichia coli and staphylococcus.
In the patent CN1546367a, plasma discharge is adopted, a coaxial sleeve device is adopted, external circulating water is used as a grounding electrode and simultaneously used as a cooling part for exothermic reaction, a central metal wire is used as a high-voltage discharge electrode, and hydrogen and oxygen are introduced to directly synthesize hydrogen peroxide. However, the hydrogen peroxide preparing device takes hydrogen and oxygen as synthesis reaction gas, has high cost and has certain limitation.
Disclosure of utility model
Therefore, the technical problem to be solved by the utility model is that the device for preparing hydrogen peroxide in the prior art takes hydrogen and oxygen as synthesis reaction gas, has higher cost and certain limitation, thereby providing the device for preparing hydrogen peroxide.
In order to solve the technical problems, the technical scheme of the utility model is as follows:
The utility model provides a device for preparing hydrogen peroxide, which at least comprises: the reaction cabin is provided with an air inlet and an air outlet; the condensation humidifier is arranged in the reaction cabin and comprises a condensation part and a humidification part, the condensation part can condense moisture contained in air entering the reaction cabin into condensed water, and the humidification part can gasify the condensed water into water vapor and is filled in the reaction cabin when the amount of the condensed water reaches a set value; and the plasma reaction assembly is arranged in the reaction chamber and can utilize the humid air in the reaction chamber to perform plasma discharge reaction so as to synthesize hydrogen peroxide.
Further, the condensing humidifier also comprises a water storage tank, the condensing part is arranged on the water storage tank, and condensed water condensed by the condensing part is stored in the water storage tank; the humidifying part is arranged in the water storage tank so as to gasify condensed water in the water storage tank into water vapor and flow out through an opening of the water storage tank.
Further, the water storage tank is positioned downstream of the air inlet and upstream of the plasma reaction assembly, so that air entering the reaction chamber from the air inlet can carry water vapor flowing out of the water storage tank to the plasma reaction assembly.
Further, the plasma reaction assembly comprises a discharge electrode, a ground electrode and a power supply; the power supply is electrically connected with the discharge electrode; a preset interval is reserved between the grounding electrode and the discharge electrode to form a discharge area, and the grounding electrode is conducted to the ground; the discharge electrode can synthesize hydrogen peroxide by using the wet air in the discharge area after being electrified.
Further, the power supply is a pulse power supply, an alternating current power supply or a direct current power supply.
Further, the power supply is a pulse power supply, and the discharge electrode adopts positive pulse discharge.
Further, the discharge electrode comprises one or more of a plate-shaped metal electrode, a wire-shaped metal electrode and a needle-shaped metal electrode; the ground electrode includes one or more of a plate-shaped metal electrode, a wire-shaped metal electrode, and a needle-shaped metal electrode.
Further, the device for preparing hydrogen peroxide also comprises a humidity sensor and a logic control switch; the probe of the humidity sensor is positioned in the reaction cabin, and the humidity sensor is electrically connected with the power supply through the logic control switch; the logic control switch can receive the humidity information fed back by the humidity sensor, and the power supply is started when the humidity in the reaction cabin is larger than a preset value.
Further, the grounding electrode adopts two plate-shaped metal electrodes which are arranged in parallel at intervals; the discharge electrode is a wire-shaped metal electrode with a plurality of needle bodies at two sides, and the discharge electrode extends into the space between the two plate-shaped metal electrodes of the grounding electrode.
The technical scheme of the utility model has the following advantages:
The device for preparing hydrogen peroxide provided by the utility model takes the wet air in the reaction chamber as a raw material, and adopts a plasma discharge means to directly synthesize the hydrogen peroxide. Compared with the method for preparing hydrogen peroxide by using hydrogen and oxygen as synthesis reaction gas, the method has lower cost and stronger applicability. In addition, the water in the air is obtained through the condensation humidifier and used for preparing hydrogen peroxide, an external water source is not needed to provide water, the use is more convenient, and the application occasions are wider. In addition, the prepared hydrogen peroxide can be directly discharged through the air outlet of the reaction chamber, so that a good sterilizing effect is generated on germs in the air and surface germs.
Drawings
In order to more clearly illustrate the embodiments of the present utility model or the technical solutions in the prior art, the drawings that are needed in the description of the embodiments or the prior art will be briefly described, and it is obvious that the drawings in the description below are some embodiments of the present utility model, and other drawings can be obtained according to the drawings without inventive effort for a person skilled in the art.
FIG. 1 is a schematic view of an apparatus for producing hydrogen peroxide according to an embodiment of the present utility model.
1. An air outlet; 2. a reaction chamber; 3. a humidity sensor; 4. a logic control switch; 5. a high voltage power supply; 6. a discharge electrode; 7. a ground electrode; 8. a humidifying unit; 9. a water storage tank; 10. a condensing unit; 11. an air inlet.
Detailed Description
The following description of the embodiments of the present utility model will be made apparent and fully in view of the accompanying drawings, in which some, but not all embodiments of the utility model are shown. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
In the description of the present utility model, it should be noted that the directions or positional relationships indicated by the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. are based on the directions or positional relationships shown in the drawings, are merely for convenience of describing the present utility model and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a specific orientation, be configured and operated in a specific orientation, and thus should not be construed as limiting the present utility model. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
In the description of the present utility model, it should be noted that, unless explicitly specified and limited otherwise, the terms "mounted," "connected," and "connected" are to be construed broadly, and may be either fixedly connected, detachably connected, or integrally connected, for example; can be mechanically or electrically connected; can be directly connected or indirectly connected through an intermediate medium, and can be communication between two elements. The specific meaning of the above terms in the present utility model will be understood in specific cases by those of ordinary skill in the art.
In addition, the technical features of the different embodiments of the present utility model described below may be combined with each other as long as they do not collide with each other.
As shown in fig. 1, the present embodiment provides an apparatus for preparing hydrogen peroxide, at least comprising: the reaction cabin 2 can be of a cabin body structure with a large middle part and two small ends, the air outlet 1 and the air inlet 11 of the reaction cabin 2 are respectively positioned at the left end and the right end of the reaction cabin 2, and air in the external environment can enter the reaction cabin 2 through the air inlet 11 and flow out of the reaction cabin 2 through the air outlet 1. The condensation humidifier is arranged in the reaction cabin 2, the condensation humidifier comprises a condensation part 10 and a humidification part 8, the condensation part 10 can condense moisture contained in air entering the reaction cabin 2 into condensed water, and the humidification part 8 can gasify the condensed water into water vapor and fill the reaction cabin 2 when the amount of the condensed water reaches a set value. And a plasma reaction assembly disposed in the reaction chamber 2, the plasma reaction assembly being capable of performing a plasma discharge reaction using humid air in the reaction chamber 2 to synthesize hydrogen peroxide.
The device for preparing hydrogen peroxide provided in this embodiment uses the wet air in the reaction chamber 2 as a raw material, and adopts a plasma discharge means to directly synthesize hydrogen peroxide. Compared with the method for preparing hydrogen peroxide by using hydrogen and oxygen as synthesis reaction gas, the method has lower cost and stronger applicability. In addition, the water in the air is obtained through the condensation humidifier and used for preparing hydrogen peroxide, an external water source is not needed to provide water, the use is more convenient, and the application occasions are wider. In addition, the prepared hydrogen peroxide can be directly discharged through the air outlet 1 of the reaction chamber 2, so that a good sterilizing effect is generated on germs in the air and surface germs.
Wherein the condensing humidifier further comprises a water storage tank 9, the condensing part 10 is arranged on the water storage tank 9, for example, the condensing part 10 can be arranged at the bottom or at the side part of the water storage tank 9, and condensed water condensed by the condensing part 10 is stored in the water storage tank 9; the humidifying part 8 is arranged in the water storage tank 9 to gasify the condensed water in the water storage tank 9 into water vapor and flow out through the opening of the water storage tank 9. For example, the water storage tank 9 may be an open-topped tank body, and the condensation section 10 may be located on the outer bottom wall of the water storage tank 9. For example, the condensation unit 10 may be a semiconductor refrigeration sheet and a refrigeration power source electrically connected, and for example, the semiconductor refrigeration sheet and the refrigeration power source may be connected by a wire; the semiconductor refrigerating sheets can be attached to the bottom of the water storage tank 9 or perpendicular to the bottom of the water storage tank 9, and when the semiconductor refrigerating sheets are perpendicular to the bottom of the water storage tank 9, a plurality of semiconductor refrigerating sheets can be arranged at intervals in parallel. After the refrigeration power supply is switched on, the semiconductor refrigeration piece works, the temperature of the cold end of the semiconductor refrigeration piece is low, the temperature of the water storage tank 9 is reduced through temperature conduction, and moisture in the air in the water storage tank 9 is condensed into the water storage tank 9. For example, the humidifying part 8 may be provided on the inner bottom wall of the water storage tank 9, for example, the humidifying part 8 may be a humidifier for the purpose of turning the water in the water storage tank 9 into water vapor. Preferably, the humidification section 8 may be activated when the volume of water in the reservoir 9 exceeds half.
For example, the water reservoir 9 may be located downstream of the air inlet 11 and the water reservoir 9 located upstream of the plasma reaction assembly so that air entering the reaction chamber 2 from the air inlet 11 can carry water vapour exiting the water reservoir 9 to the plasma reaction assembly.
Specifically, the plasma reaction component comprises a discharge electrode 6, a grounding electrode 7 and a power supply; the power supply and the discharge electrode 6 can be electrically connected through a wire; a preset interval is reserved between the grounding electrode 7 and the discharge electrode 6 to form a discharge area, and the grounding electrode 7 is conducted to the ground; the discharge electrode 6 can synthesize hydrogen peroxide by using the humid air in the discharge region after being energized.
The power source may be a high-voltage power source 5, for example, the high-voltage power source 5 may be a high-voltage pulse power source, a high-voltage ac power source, or a high-voltage dc power source.
For example, the discharge electrode 6 includes one or more of a plate-shaped metal electrode, a wire-shaped metal electrode, and a needle-shaped metal electrode; the ground electrode 7 includes one or more of a plate-shaped metal electrode, a wire-shaped metal electrode, and a needle-shaped metal electrode.
Preferably, the high voltage power supply 5 is a high voltage pulse power supply, and the discharge electrode 6 adopts positive high voltage pulse discharge. Preferably, the ground electrode 7 is formed by two plate-shaped metal electrodes, such as plate-shaped stainless steel electrodes, which are arranged in parallel at intervals; the discharge electrode 6 is a wire-shaped metal electrode with a plurality of needle bodies on two sides, such as a wire-shaped stainless steel electrode, the discharge electrode 6 extends between two plate-shaped metal electrodes of the ground electrode 7, and the needle bodies on the surface of the discharge electrode 6 are arranged towards the surface of the ground electrode 7. For example, the high-voltage power supply 5 adopts 7kV pulse positive high voltage with pulse width of 1s, and works normally for ten minutes under the condition that the humidity in the reaction chamber 2 reaches 85%, and the hydrogen peroxide concentration in the reaction chamber 2 can reach 0.458ppm. So set up, compared with adopting the discharge of negative high-voltage pulse, the discharge electrode 6 adopts the discharge of positive high-voltage pulse, because the migration rate of positive ions is slower, the energy that the discharge of positive high-voltage pulse provides in the same space is higher, more favorable to ionization of the water molecule in the discharge area, produce OH free radical and synthesize hydrogen peroxide directly; and compared with direct current discharge, the ozone amount generated in the pulse discharge process is less, and the direct synthesis of hydrogen peroxide is facilitated.
Wherein the device for preparing hydrogen peroxide also comprises a humidity sensor 3 and a logic control switch 4, for example, the humidity sensor 3 can be arranged on the inner top wall of the reaction chamber 2 or at other positions; the probe of the humidity sensor 3 is arranged downwards, and the humidity sensor 3 can be electrically connected with the high-voltage power supply 5 through the logic control switch 4 by utilizing a lead; the logic control switch 4 can receive the humidity information fed back by the humidity sensor 3, and turn on the high-voltage power supply 5 when the humidity in the reaction chamber 2 is greater than a preset value. For example, the preset value may be 70%. Since the generation of ozone by the plasma discharge and the generation of hydrogen peroxide reaction are suppressed from each other, the generation of a large amount of ozone in the plasma discharge reaction can be suppressed by controlling the humidity and the water partial pressure in the reaction chamber 2, so that the progress of the hydrogen peroxide synthesis reaction can be promoted when the humidity in the reaction chamber 2 is more than 70%.
When the humidifier is used, the humidifier is used for providing water vapor to the reaction chamber 2, air is carried with the water vapor and is continuously conveyed to the downstream after entering from the air inlet 11 of the reaction chamber 2, when the humidity sensor 3 shows that the humidity in the reaction chamber 2 is higher than 70%, the logic control switch 4 is used for switching on the high-voltage power supply 5 to provide high voltage for the grounding electrode 7 and the discharge electrode 6, the plasma discharge reaction is carried out in the wet air, the hydrogen peroxide is directly synthesized, the synthesized hydrogen peroxide is discharged through the air outlet 1 of the reaction chamber 2 under the driving of the air flow, and the air is killed in a gaseous state or a fog state.
In summary, the hydrogen peroxide preparing apparatus of the present application synthesizes hydrogen peroxide directly with moist air under high humidity condition by means of high pressure plasma reaction through regulating proper electrode structure and reaction parameters. Compared with the device for preparing hydrogen peroxide in the prior art, the device reduces the whole volume of the device, and can prepare hydrogen peroxide without using other raw materials or introducing specific reaction gases, catalysts and catalytic electrodes. Meanwhile, the ozone amount can be controlled within a reasonable range, the efficiency and the yield of hydrogen peroxide synthesis are ensured, and germs are effectively killed within a concentration range which does not harm human health.
It is apparent that the above examples are given by way of illustration only and are not limiting of the embodiments. Other variations or modifications of the above teachings will be apparent to those of ordinary skill in the art. It is not necessary here nor is it exhaustive of all embodiments. While still being apparent from variations or modifications that may be made by those skilled in the art are within the scope of the utility model.

Claims (9)

1. An apparatus for producing hydrogen peroxide, comprising at least:
The reaction cabin is provided with an air inlet and an air outlet;
The condensation humidifier is arranged in the reaction cabin and comprises a condensation part and a humidification part, the condensation part can condense moisture contained in air entering the reaction cabin into condensed water, and the humidification part can gasify the condensed water into water vapor and is filled in the reaction cabin when the amount of the condensed water reaches a set value;
And the plasma reaction assembly is arranged in the reaction chamber and can utilize the humid air in the reaction chamber to perform plasma discharge reaction so as to synthesize hydrogen peroxide.
2. The apparatus for producing hydrogen peroxide according to claim 1, wherein,
The condensing humidifier also comprises a water storage tank, the condensing part is arranged on the water storage tank, and condensed water condensed by the condensing part is stored in the water storage tank;
The humidifying part is arranged in the water storage tank so as to gasify condensed water in the water storage tank into water vapor and flow out through an opening of the water storage tank.
3. The apparatus for producing hydrogen peroxide according to claim 2, wherein,
The water storage tank is positioned downstream of the air inlet and upstream of the plasma reaction assembly, so that air entering the reaction chamber from the air inlet can carry water vapor flowing out of the water storage tank to the plasma reaction assembly.
4. The apparatus for producing hydrogen peroxide according to claim 1, wherein,
The plasma reaction assembly comprises a discharge electrode, a grounding electrode and a power supply;
the power supply is electrically connected with the discharge electrode;
A preset interval is reserved between the grounding electrode and the discharge electrode to form a discharge area, and the grounding electrode is conducted to the ground;
The discharge electrode can synthesize hydrogen peroxide by using the wet air in the discharge area after being electrified.
5. The apparatus for producing hydrogen peroxide according to claim 4, wherein,
The power supply is a pulse power supply, an alternating current power supply or a direct current power supply.
6. The apparatus for producing hydrogen peroxide according to claim 5, wherein,
The power supply is a pulse power supply, and the discharge electrode adopts positive pulse discharge.
7. The apparatus for producing hydrogen peroxide according to claim 4, wherein,
The discharge electrode comprises one or more of a plate-shaped metal electrode, a wire-shaped metal electrode and a needle-shaped metal electrode;
The ground electrode includes one or more of a plate-shaped metal electrode, a wire-shaped metal electrode, and a needle-shaped metal electrode.
8. The apparatus for producing hydrogen peroxide according to claim 4, wherein,
The device also comprises a humidity sensor and a logic control switch;
the probe of the humidity sensor is positioned in the reaction cabin, and the humidity sensor is electrically connected with the power supply through the logic control switch;
The logic control switch can receive the humidity information fed back by the humidity sensor, and the power supply is started when the humidity in the reaction cabin is larger than a preset value.
9. The apparatus for producing hydrogen peroxide according to claim 7, wherein,
The grounding electrode adopts two plate-shaped metal electrodes which are arranged in parallel at intervals;
The discharge electrode is a wire-shaped metal electrode with a plurality of needle bodies at two sides, and the discharge electrode extends into the space between the two plate-shaped metal electrodes of the grounding electrode.
CN202321695577.XU 2023-06-29 2023-06-29 Device for preparing hydrogen peroxide Active CN221192358U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321695577.XU CN221192358U (en) 2023-06-29 2023-06-29 Device for preparing hydrogen peroxide

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321695577.XU CN221192358U (en) 2023-06-29 2023-06-29 Device for preparing hydrogen peroxide

Publications (1)

Publication Number Publication Date
CN221192358U true CN221192358U (en) 2024-06-21

Family

ID=91487070

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321695577.XU Active CN221192358U (en) 2023-06-29 2023-06-29 Device for preparing hydrogen peroxide

Country Status (1)

Country Link
CN (1) CN221192358U (en)

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Address after: 310018 No.210, 21st Street, Hangzhou Economic and Technological Development Zone, Hangzhou City, Zhejiang Province

Patentee after: Aopu Intelligent Technology Co.,Ltd.

Country or region after: China

Address before: 310020 No. 210, 21st Street, Xiasha economic and Technological Development Zone, Qiantang new area, Hangzhou, Zhejiang

Patentee before: AUPU Home Style Corp.,Ltd.

Country or region before: China