Ozone generator capable of realizing quantitative and constant-speed delivery
By introducing a controllable discharge device and an inlet filter into the ozone generator, the problems of uncontrollable ozone output and rate and insufficient purity of raw material gas in the existing technology have been solved, realizing quantitative and constant-speed delivery and ensuring purity.
Patent Information
- Application Number
- CN202311609639.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-11-29
- Publication Date
- 2025-11-04
- Estimated Expiration
- 2043-11-29
AI Technical Summary
Existing ozone generators cannot effectively control the amount and rate of ozone output, and lack inlet-side filtration, thus failing to guarantee the purity of the raw gas.
An ozone generator capable of quantitative and speed-controlled delivery was designed. It is equipped with a controllable discharge device and an inlet filter. The ozone flow rate and velocity are controlled by linear stroke driven by a cylinder, and a filter device is installed at the inlet end to filter the raw material gas.
It achieves precise control over the ozone delivery volume and rate, ensuring the purity of the raw material gas and improving the control capability of the ozone generator's delivery process.
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Figure CN117699743B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of ozone generator, in particular to an ozone generator capable of realizing quantitative and constant-speed delivery. BACKGROUND
[0002] The ozone generator is a device for preparing ozone gas (O3), which is widely used in the fields of drinking water, sewage, industrial oxidation, food processing and preservation, medicine synthesis, space sterilization, etc. The ozone gas generated by the ozone generator can be directly utilized or mixed with liquid through a mixing device to participate in reaction. The main principle is to make the system generate oxygen polymerization into ozone molecules through the application of high-voltage electric field or ultraviolet irradiation and positive and negative electrodes.
[0003] At present, a kind of ozone generator is disclosed in Chinese patent CN105253858A, which comprises a main shell, a side shell and an ozone excitation device. The ozone excitation device is arranged in the main shell. The side shell is connected to the main shell through flanges on both sides of the main shell. Oxygen inlet and ozone outlet are arranged on the main shell. High-voltage electrode is arranged on the main shell and connected with the ozone excitation device. Water inlet pipe is arranged at the lower end of the main shell and connected with the inside of the main shell. Water inlet is arranged on the water inlet pipe. Water outlet pipe is arranged at the upper end of the main shell and connected with the inside of the main shell. Water outlet is arranged on the water outlet pipe.
[0004] Although the ozone generator uses cooling water to cool down, the by-products are less and the power consumption is small, but ① the ozone generator cannot effectively control the delivery amount and delivery rate of ozone, and cannot effectively control the delivery link; ② the ozone generator has no filtering function at the inlet side, and cannot guarantee the purity of raw gas. SUMMARY
[0005] In view of the above situation, in order to overcome the defects of the prior art, the purpose of the present application is to provide an ozone generator capable of realizing quantitative and constant-speed delivery, which can control the delivery rate and delivery capacity of ozone, and is equipped with a filter screen at the gas inlet position.
[0006] The above technical purpose of the present application is realized by the following technical scheme:
[0007] The application discloses an ozone generator capable of realizing quantitative and constant-speed conveying, which comprises a shell, an outer electrode layer fixedly arranged in the shell, an inner electrode layer fixedly arranged in the outer electrode layer, an ozone preparation area between the outer electrode layer and the inner electrode layer, an inner cooling area in the inner electrode, an outer cooling area between the shell and the outer electrode layer, four groups of sealing separation strips fixedly arranged along the outer circle of the inner electrode layer, four groups of independent preparation spaces separated by the four groups of sealing separation strips, and four groups of controllable discharging devices arranged at one end of the inner electrode layer and the outer electrode layer.
[0008] Further, the controllable discharging device comprises a discharging sealing plate, a first movable column, a second movable column, a third movable column, a connecting plate, a driving plate and a driving cylinder, the first movable column, the second movable column and the third movable column are fixed on the inner side end face of the connecting plate, the discharging sealing plate is fixed at one end of the inner electrode layer and the outer electrode layer, the first movable column, the second movable column and the third movable column are slidingly arranged in the discharging sealing plate, the driving cylinder is fixed on the outer wall of the shell, one end of the driving plate is connected with the piston rod of the driving cylinder, and the other end of the driving plate is connected with the connecting plate.
[0009] Further, the first movable column, the second movable column and the third movable column are of the same structure, and each of the first movable column, the second movable column and the third movable column comprises a sealing column and a discharging column, the discharging column is arranged at one end of the sealing column and is located at the inner side end closer to the ozone preparation area, the size of the discharging column is smaller than that of the sealing column, and the size of the sealing column is consistent with the size of the hole groove arranged on the discharging sealing plate.
[0010] Further, an air inlet filter screen is arranged at the other end of the inner electrode layer and the outer electrode layer, and the inner end face of the air inlet filter screen is close to the inner electrode layer and the outer electrode layer, and the air inlet filter screen is correspondingly clamped into the four groups of sealing separation strips.
[0011] In summary, the application has the following beneficial effects:
[0012] ①The application is provided with controllable discharging devices, the number of the devices to be started can be selected according to the flow rate and flow of ozone delivery, and the controllable flow rate and flow and the start and stop of the devices can be realized through the simple linear motion driven by the cylinder.
[0013] ②The application is provided with a filtering device at the inlet side, which can filter the raw gas entering the generator and ensure the purity of the raw gas. BRIEF DESCRIPTION OF DRAWINGS
[0014] The accompanying drawings constituting a part of this application are used to provide further understanding of the application, and constitute a part of this application, but do not constitute improper limitation to the application, and in the drawings:
[0015] Figure 1 is a perspective view of the present application;
[0016] Figure 2 is a front view of the present application;
[0017] Figure 3 is a sectional view of the present application in A-A direction; Figure 2
[0018] Figure 4 is a sectional view of the present application in B-B direction; Figure 2
[0019] Figure 5 is a schematic view of the movable column in the present application.
[0020] In the figure, 1 is the shell; 2 is the outer electrode layer; 3 is the inner electrode layer; 4 is the ozone preparation area; 5 is the inner cooling area; 6 is the outer cooling area; 7 is the sealing separation strip; 8 is the discharge closing plate; 9 is the first movable column; 10 is the second movable column; 11 is the third movable column; 12 is the connecting plate; 13 is the driving plate; 14 is the driving cylinder; 15 is the sealing column; 16 is the discharge column; 17 is the air inlet filter screen. DETAILED DESCRIPTION
[0021] The foregoing and other technical contents, features and effects of the present application will be described in detail below with reference to the accompanying drawings. Figure 1 to the accompanying drawings. Figure 5 The detailed description of the embodiments will be clear. The structural contents mentioned in the following embodiments are all referred to the drawings.
[0022] The exemplary embodiments of the present application will be described below with reference to the accompanying drawings.
[0023] Embodiment 1: An ozone generator capable of realizing quantitative and constant-speed delivery, comprising a shell 1, the inside of the shell 1 is fixedly provided with an outer electrode layer 2, the inside of the outer electrode layer 2 is fixedly provided with an inner electrode layer 3, the ozone preparation area 4 is between the outer electrode layer 2 and the inner electrode layer 3, the inside of the inner electrode is the inner cooling area 5, the outer cooling area 6 is between the shell 1 and the outer electrode layer 2, four groups of sealing separation strips 7 are fixedly arranged along the outer circle of the inner electrode layer 3 inside the ozone preparation area 4, the ozone preparation area 4 is divided into four independent preparation spaces by the four groups of sealing separation strips 7, the inner electrode layer 3 and the outer electrode layer 2 are provided with four groups of controllable discharge devices at one end, and the four groups of controllable discharge devices are correspondingly installed at one end of the four independent preparation spaces.
[0024] The controllable discharging device comprises a discharging closing plate 8, a first movable column 9, a second movable column 10, a third movable column 11, a connecting plate 12, a driving plate 13 and a driving cylinder 14, the first movable column 9, the second movable column 10 and the third movable column 11 are all fixed on the inner side end face of the connecting plate 12, the discharging closing plate 8 is fixed on one end of the inner electrode layer 3 and the outer electrode layer 2, the first movable column 9, the second movable column 10 and the third movable column 11 are slidingly assembled in the inside of the discharging closing plate 8, the driving cylinder 14 is fixed on the outer wall position of the shell 1, one end of the driving plate 13 is connected with the piston rod of the driving cylinder 14, and the other end is connected with the connecting plate 12.
[0025] The first movable column 9, the second movable column 10 and the third movable column 11 are the same in structure, and all comprise a sealing column 15 and a discharging column 16, the discharging column 16 is installed on one end of the sealing column 15, and the discharging column 16 is located on the inner side end closer to the space of the ozone preparation area 4, the size of the discharging column 16 is smaller than that of the sealing column 15, and the size of the sealing column 15 is consistent with the size of the hole slot on the discharging closing plate 8 for assembly.
[0026] The other end of the inner electrode layer 3 and the outer electrode layer 2 is provided with an air inlet filter screen 17, the inner end face of the air inlet filter screen 17 is close to the inner electrode layer 3 and the outer electrode layer 2, and the air inlet filter screen 17 is correspondingly clamped into the four groups of sealing separation strips 7.
[0027] In the embodiment of the present application, solid materials for cooling are filled in the outer cooling area 6, cooling water is introduced into the inner cooling area 5, air / oxygen is introduced from one end of the ozone preparation area 4 between the outer electrode layer 2 and the inner electrode layer 3, and the raw gas needs to pass through the air inlet filter screen 17 first when being introduced, the air inlet filter screen 17 can filter the raw gas, block part of impurities and particulate matters, and ensure the purity of the raw gas, during the process of introducing the raw gas into the ozone preparation area 4, the raw gas enters into four groups of independent preparation spaces respectively due to the influence of the sealing separation strips 7, the raw gas is gradually converted into ozone gas through the joint action of the outer electrode layer 2 and the inner electrode layer 3, but at this time, the ozone gas cannot be directly discharged through the other end of the generator.
[0028] When the prepared ozone gas needs to be sent out, according to the flow and rate of the ozone gas to be sent out, the number of the controllable discharging devices to be started is selected, and after the controllable discharging devices of any number in the 1-4 groups are started, the corresponding devices will start to work, the piston rod of the driving mechanism cylinder is pushed forward, and the driving plate 13 is driven to move forward, when the driving plate 13 moves, the first movable column 9, the second movable column 10 and the third movable column 11 are simultaneously driven to move forward by the connecting plate 12, in the original initial state, the sealing column 15 in the device blocks the hole slot on the discharging closed plate 8, and the ozone cannot be normally discharged, but at this time, due to the forward movement of the position of the sealing column 15, the position of the discharging column 16 is also moved forward, the size of the discharging column 16 is smaller than the size of the hole slot on the discharging closed plate 8, at this time, the ozone can be smoothly discharged through the gap between the two.
[0029] The above is a further detailed description of the present application in combination with the specific embodiments, and cannot be regarded as the limitation of the specific embodiments of the present application; for the skilled in the art and the related technical field, the expansion, operation method and data replacement made on the basis of the technical scheme idea of the present application should be within the protection scope of the present application.
Claims
1. An ozone generator capable of implementing quantitative and constant speed delivery, comprising a housing (1), characterized in that: The inside of the shell (1) is fixed with an outer electrode layer (2), the inside of the outer electrode layer (2) is fixed with an inner electrode layer (3), the outer electrode layer (2) and the inner electrode layer (3) are the ozone preparation area (4), the inside of the inner electrode is the inner cooling area (5), the shell (1) and the outer electrode layer (2) are the outer cooling area (6), the inside of the ozone preparation area (4) is fixed with four groups of sealing separation strips (7) along the outer circle of the inner electrode layer (3), the ozone preparation area (4) is divided into four independent preparation spaces by the four groups of sealing separation strips (7), one end of the inner electrode layer (3) and the outer electrode layer (2) is provided with four groups of controllable discharge devices, and the four groups of controllable discharge devices are correspondingly installed at one end of the four independent preparation spaces; the controllable discharge device comprises a discharge sealing plate (8), a first movable column (9), a second movable column (10), a third movable column (11), a connecting plate (12), a driving plate (13) and a driving cylinder (14), the first movable column (9), the second movable column (10) and the third movable column (11) are all fixed on the inner side end face of the connecting plate (12), the discharge sealing plate (8) is fixed at one end of the inner electrode layer (3) and the outer electrode layer (2), the first movable column (9), the second movable column (10) and the third movable column (11) are slidingly assembled in the inside of the discharge sealing plate (8), the driving cylinder (14) is fixed on the outer wall position of the shell (1), one end of the driving plate (13) is connected with the piston rod of the driving cylinder (14), and the other end is connected with the connecting plate (12); the other end of the inner electrode layer (3) and the outer electrode layer (2) is provided with an air inlet filter screen (17), the inner end face of the air inlet filter screen (17) is close to the inner electrode layer (3) and the outer electrode layer (2), and the air inlet filter screen (17) is correspondingly clamped into the four groups of sealing separation strips (7).
2. The ozone generator of claim 1, wherein: The first movable column (9), the second movable column (10) and the third movable column (11) are the same in structure, which comprises a sealing column (15) and a discharge column (16), the discharge column (16) is installed at one end of the sealing column (15), and the discharge column (16) is located at the inner side end closer to the ozone preparation area (4) space, the size of the discharge column (16) is smaller than that of the sealing column (15), and the size of the sealing column (15) is consistent with the size of the hole slot on the discharge sealing plate (8) for assembly.
Citation Information
Patent Citations
Ozone generator
CN105253858A
Controllable ozone generator
CN221344005U