Ozone on-line mixed disinfection system
By designing an online ozone mixing and disinfection system, the problem of inconvenient concentration control within the ozone tank was solved, achieving efficient utilization of ozone and thorough disinfection of water.
Patent Information
- Application Number
- CN202520275309.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-20
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2035-02-20
AI Technical Summary
In existing technologies, it is inconvenient to control the ozone concentration inside the ozone tank, which leads to ozone waste or poor sterilization effect.
Design an online ozone mixing disinfection system, including an ozone chamber, a multi-stage disinfection chamber, and a liquid and gas discharge chamber. The ozone concentration is controlled by a pressure sensor and a one-way valve, and the ozone and water are fully mixed by an ultrasonic generator and a gas-liquid mixing pump.
This achieves efficient utilization of ozone, ensuring the sterilization effect of water while avoiding ozone waste.
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Figure CN223722915U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to disinfection system technical field, specifically relates to ozone online mixed disinfection system technical field. BACKGROUND
[0002] Ozone is a kind of broad-spectrum strong bactericidal disinfectant, can kill bacteria, spores, viruses and fungi etc., can destroy botulinum toxin, also have very strong mould, fishy, pungent etc. Odor removal function, can be widely used in disinfection, water treatment, medicine and health, food preservation etc. Industry. When disinfecting water by ozone, the mixing degree of ozone and water will directly influence the disinfection effect to water, most of the water is currently disinfected by being passed into ozone tank to carry out disinfection operation, although disinfection operation can be carried out, but there is inconvenient to control the concentration of ozone in the interior of ozone tank in the actual use process, concentration is too high to cause the waste of ozone, too low can not guarantee the bactericidal effect to water, in order to solve the above problems, we propose a kind of ozone online mixed disinfection system. CONTENT
[0003] The utility model solves the technical problems of overcoming the defects of the prior art, providing an ozone online mixed disinfection system, to solve the problem of inconvenient control of the concentration of ozone in the interior of the ozone tank, concentration is too high to cause the waste of ozone, too low to guarantee the bactericidal effect to water.
[0004] To achieve the above object, the utility model provides the following technical scheme:
[0005] An ozone online mixed disinfection system, comprising a mounting tank, the inside of the mounting tank is sequentially provided with an ozone bin, a multi-stage disinfection bin and a liquid and gas discharge bin from top to bottom, a liquid inlet pipe is installed on the side surface of the mounting tank, the outlet of the liquid inlet pipe is arranged in the interior of the multi-stage disinfection bin, the interior of the ozone bin is in communication with the interior of the multi-stage disinfection bin, and the interiors of the multi-stage disinfection bin and the liquid and gas discharge bin are in communication.
[0006] As a preferred technical scheme of the utility model, the side surface of the ozone bin is provided with an ozone inlet pipe, a gas pressure sensor is installed at the top end of the ozone bin, and a one-way valve is installed on the ozone inlet pipe.
[0007] As a preferred technical scheme of the utility model, the multi-stage disinfection bin comprises a first-stage mixing bin, a second-stage mixing bin and a third-stage mixing bin arranged in the interior of the mounting tank from top to bottom, the first-stage mixing bin, the second-stage mixing bin and the third-stage mixing bin are in communication with the interior of the ozone bin through a conduit, and a one-way valve is also installed on the conduit.
[0008] As a preferred technical scheme of the utility model, the ultrasonic generator is arranged between the first mixing bin and the second mixing bin and between the second mixing bin and the third mixing bin, the first mixing bin and the second mixing bin are connected through the connecting pipe one, the second mixing bin and the third mixing bin are connected through the connecting pipe two, the inside of the third mixing bin is connected with the liquid and gas discharge bin through the discharge pipe, and the inlet pipe is connected with the inside of the first mixing bin through the shunt pipe.
[0009] As a preferred technical scheme of the utility model, the bottom end of the conduit in the first mixing bin is arranged between the shunt pipe and the connecting pipe one, the bottom end of the conduit in the second mixing bin is arranged between the connecting pipe one and the connecting pipe two, and the bottom end of the conduit in the third mixing bin is arranged between the connecting pipe two and the discharge pipe.
[0010] As a preferred technical scheme of the utility model, the side of the liquid and gas discharge bin is sequentially provided with the gas discharge pipe and the liquid discharge pipe from top to bottom, the gas discharge pipe and the liquid discharge pipe are provided with the one-way valve, the bottom end of the liquid and gas discharge bin is provided with the blowdown pipe, and the blowdown pipe is provided with the electromagnetic valve.
[0011] As a preferred technical scheme of the utility model, the inlet pipe is connected with the S-shaped pipeline, the top end of the S-shaped pipeline is provided with the water supply pump, the side of the position of the S-shaped pipeline close to the water supply pump is provided with the lead-out pipe and the return pipe, the gas-liquid mixing pump is arranged between the lead-out pipe and the return pipe, the auxiliary air inlet pipe is further arranged on the feed end of the gas-liquid mixing pump, and the inside of the S-shaped pipeline is provided with the shunt plate.
[0012] Compared with the prior art, the utility model has the advantages that the water needing to be disinfected is added into the inside of the multistage disinfection bin, the ozone bin can pass ozone into each bin in the inside of the multistage disinfection bin, the corresponding amount of ozone is ensured to pass into each bin in the inside of the multistage disinfection bin by controlling the pressure in the inside of the ozone bin, disinfection operation is carried out, the disinfection effect is ensured, and the waste of ozone is avoided. BRIEF DESCRIPTION OF DRAWINGS
[0013] Figure 1 It is the three-dimensional structure schematic diagram of the utility model;
[0014] Figure 2 It is the first cross section structure schematic diagram of the utility model;
[0015] Figure 3 It is the second cross section structure schematic diagram of the utility model;
[0016] Figure 4 It is the overall structure side view of the utility model;
[0017] Figure 5The utility model discloses a S type pipeline structure inside schematic view;
[0018] 1 - install jar; 2 - ozone warehouse; 21 - ozone inlet pipe; 22 - air pressure sensor; 23 - catheter; 3 - multistage disinfection warehouse; 31 - first -stage mixing warehouse; 32 - second -stage mixing warehouse; 33 - third -stage mixing warehouse; 34 - connecting pipe one; 35 - connecting pipe two; 36 - discharge pipe; 4 - liquid and gas exhaust warehouse; 41 - liquid discharge pipe; 42 - gas exhaust pipe; 43 - sewage pipe; 44 - electromagnetic valve; 6 - liquid inlet pipe; 61 - shunt pipe; 7 - check valve; 81 - water supply pump; 83 - lead -out pipe; 84 - backflow pipe; 85 - gas -liquid mixing pump; 86 - auxiliary air inlet pipe; 87 - S type pipeline; 88 - shunt plate. DETAILED DESCRIPTION
[0019] The utility model discloses an embodiment of the utility model will be below, clear, complete, the technical scheme in the embodiment of the utility model in the embodiment of the utility model is described, obviously, the described embodiment only is a part of embodiment of the utility model, instead of all the embodiment. Based on the embodiment in the utility model, all other embodiments that the ordinary skill in the art obtains without making creative labor belong to the range of protection of the utility model.
[0020] Please refer to Figures 1-5 The utility model provides a technical scheme:
[0021] A kind of ozone online mixing disinfection system, including installation jar 1, the inside of installation jar 1 is sequentially provided with ozone warehouse 2, multistage disinfection warehouse 3 and liquid and gas exhaust warehouse 4 from top to bottom, liquid inlet pipe 6 is installed in the side of installation jar 1, the outlet of liquid inlet pipe 6 is arranged in the inside of multistage disinfection warehouse 3, the inside of ozone warehouse 2 is communicated with the inside of multistage disinfection warehouse 3, the inside of multistage disinfection warehouse 3 and liquid and gas exhaust warehouse 4 is communicated and is arranged, so that the water needing disinfection enters the inside of multistage disinfection warehouse 3 by liquid inlet pipe 6, simultaneously, ozone in the inside of ozone warehouse 2 enters the inside of multistage disinfection warehouse 3, so as to be able to disinfect water operation, and the water after disinfection enters the inside of liquid and gas exhaust warehouse 4.
[0022] Ozone inlet pipe 21 is installed in the side of ozone warehouse 2, air pressure sensor 22 is installed in the top of ozone warehouse 2, check valve 7 is installed on ozone inlet pipe 21, so that the ozone of outside can enter the inside of ozone warehouse 2 by ozone inlet pipe 21.
[0023] The multi-stage disinfection bin 3 comprises a first mixing bin 31, a second mixing bin 32 and a third mixing bin 33 arranged from top to bottom inside the installation tank 1, and the first mixing bin 31, the second mixing bin 32 and the third mixing bin 33 are arranged in communication with the inside of the ozone bin 2 through the conduit 23, and the conduit 23 is also provided with the one-way valve 7, so that the ozone in the inside of the ozone bin 2 can enter the inside of the first mixing bin 31, the second mixing bin 32 and the third mixing bin 33 through the conduit 23, and the one-way valve 7 can prevent the solution or gas from flowing back to the inside of the ozone bin 2, because the ozone is added to the inside of the first mixing bin 31, the second mixing bin 32 and the third mixing bin 33 at the same time, and the water is discharged from the inside of the first mixing bin 31, the second mixing bin 32 and the third mixing bin 33 one by one, so as to ensure the disinfection effect of the ozone on the water, and the bottom end of the conduit 23 and the bottom end of the inside of the first mixing bin 31 are arranged with a gap of 2-5 mm, the bottom end of the conduit 23 and the bottom end of the inside of the second mixing bin 32 are arranged with a gap of 2-5 mm, and the bottom end of the conduit 23 and the bottom end of the inside of the third mixing bin 33 are arranged with a gap of 2-5 mm, so as to ensure that the ozone can directly enter the solution for disinfection.
[0024] The ultrasonic generator 5 is arranged between the first mixing bin 31 and the second mixing bin 32 and between the second mixing bin 32 and the third mixing bin 33, so as to facilitate the stirring of the water, thereby ensuring that the water can be fully mixed with the ozone, the first mixing bin 31 and the second mixing bin 32 are connected through the connecting pipe one 34, the top end of the connecting pipe one 34 and the top end of the inside of the first mixing bin 31 are arranged with a gap of 3-5 mm, the bottom end of the connecting pipe one 34 and the bottom end of the second mixing bin 32 are arranged with a gap of 3-5 mm, the second mixing bin 32 and the third mixing bin 33 are connected through the connecting pipe two 35, the top end of the connecting pipe two 35 and the top end of the inside of the second mixing bin 32 are arranged with a gap of 3-5 mm, the bottom end of the connecting pipe two 35 and the bottom end of the inside of the third mixing bin 33 are arranged with a gap of 3-5 mm, the inside of the third mixing bin 33 is connected with the liquid and gas discharge bin 4 through the discharge pipe 36, the inlet pipe 6 is connected with the inside of the first mixing bin 31 through the shunt pipe 61, the top end of the discharge pipe 36 and the top end of the inside of the third mixing bin 33 are arranged with a gap of 3-5 mm, the bottom end of the discharge pipe 36 and the bottom end of the inside of the liquid and gas discharge bin 4 are arranged with a gap of 8-20 mm, so as to facilitate the solution to flow along the direction of the first mixing bin 31, the second mixing bin 32, the third mixing bin 33 and the liquid and gas discharge bin 4, thereby ensuring that the water can stay in the first mixing bin 31, the second mixing bin 32 and the third mixing bin 33 for a longer time.
[0025] The bottom end of the conduit 23 inside the first mixing bin 31 is arranged between the shunt pipe 61 and the connecting pipe one 34, the bottom end of the conduit 23 inside the second mixing bin 32 is arranged between the connecting pipe one 34 and the connecting pipe two 35, and the bottom end of the conduit 23 inside the third mixing bin 33 is arranged between the connecting pipe two 35 and the discharge pipe 36, thereby ensuring that the water entering the inside of each mixing bin can be quickly contacted with ozone, so as to disinfect the water.
[0026] The side of the liquid and gas discharge bin 4 is sequentially provided with the gas discharge pipe 42 and the liquid discharge pipe 41 from top to bottom, thereby ensuring that the oxygen for generating ozone can be discharged from the inside of the gas discharge pipe 42, and since the ozone can be ensured to be fully contacted with water, the inside of the liquid and gas discharge bin 4 is basically free of ozone, so that the ozone can be more fully used, the gas discharge pipe 42 and the liquid discharge pipe 41 are both provided with the one-way valve 7, and the bottom end of the liquid and gas discharge bin 4 is provided with the blowdown pipe 43, the blowdown pipe 43 is provided with the electromagnetic valve 44, and by opening the electromagnetic valve 44, the sediment inside the liquid and gas discharge bin 4 can be discharged.
[0027] The liquid inlet pipe 6 is connected with the S-shaped pipe 87, the top end of the S-shaped pipe 87 is provided with the water supply pump 81, the side of the S-shaped pipe 87 close to the water supply pump 81 is provided with the outlet pipe 83 and the return pipe 84, the gas-liquid mixing pump 85 is arranged between the outlet pipe 83 and the return pipe 84, the auxiliary air inlet pipe 86 is further arranged on the feeding end of the gas-liquid mixing pump 85, thereby enabling the feeding end of the gas-liquid mixing pump 85 to simultaneously enter ozone and water, and then after being mixed by the gas-liquid mixing pump 85, the water enters the inside of the S-shaped pipe 87 again through the return pipe 84, so as to preliminarily mix the water, thereby achieving the disinfection effect, and the inside of the S-shaped pipe 87 is distributed with the shunt plate 88, the gas and water passing through the S-shaped pipe 87 are shunted by the shunt plate 88, so that the gas and the liquid are more easily mixed, thereby ensuring that the ozone can play a disinfection effect.
[0028] Although the embodiments of the present application have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and spirits of the present application, and the scope of the present application is defined by the appended claims and their equivalents.
Claims
1. An ozone inline mixing disinfection system comprising a mounting tank (1), characterized in that: The inside of the installation tank (1) is sequentially provided with an ozone bin (2), a multi-stage disinfection bin (3) and a liquid and gas discharge bin (4) from top to bottom, a liquid inlet pipe (6) is installed on the side of the installation tank (1), the outlet of the liquid inlet pipe (6) is arranged in the inside of the multi-stage disinfection bin (3), the inside of the ozone bin (2) is in communication with the inside of the multi-stage disinfection bin (3), and the inside of the multi-stage disinfection bin (3) is in communication with the inside of the liquid and gas discharge bin (4).
2. The ozone inline mixing disinfection system of claim 1, wherein: An ozone inlet pipe (21) is installed on the side of the ozone bin (2), an air pressure sensor (22) is installed on the top end of the ozone bin (2), and a one-way valve (7) is installed on the ozone inlet pipe (21).
3. The ozone inline mixing disinfection system of claim 1, wherein: The multi-stage disinfection bin (3) comprises a first-stage mixing bin (31), a second-stage mixing bin (32) and a third-stage mixing bin (33) which are sequentially arranged in the inside of the installation tank (1) from top to bottom, the first-stage mixing bin (31), the second-stage mixing bin (32) and the third-stage mixing bin (33) are in communication with the inside of the ozone bin (2) through a conduit (23), and a one-way valve (7) is also installed on the conduit (23).
4. The ozone inline mixing disinfection system of claim 3, wherein: An ultrasonic generator (5) is arranged between the first-stage mixing bin (31) and the second-stage mixing bin (32) and between the second-stage mixing bin (32) and the third-stage mixing bin (33), the first-stage mixing bin (31) and the second-stage mixing bin (32) are connected through a connecting pipe one (34), the second-stage mixing bin (32) and the third-stage mixing bin (33) are connected through a connecting pipe two (35), the inside of the third-stage mixing bin (33) is connected with the liquid and gas discharge bin (4) through a discharge pipe (36), and the liquid inlet pipe (6) is connected with the inside of the first-stage mixing bin (31) through a shunt pipe (61).
5. The ozone inline mixing disinfection system of claim 3, wherein: The bottom end of the conduit (23) in the first-stage mixing bin (31) is arranged between the shunt pipe (61) and the connecting pipe one (34), the bottom end of the conduit (23) in the second-stage mixing bin (32) is arranged between the connecting pipe one (34) and the connecting pipe two (35), and the bottom end of the conduit (23) in the third-stage mixing bin (33) is arranged between the connecting pipe two (35) and the discharge pipe (36).
6. The ozone inline mixing disinfection system of claim 1, wherein: An exhaust pipe (42) and a liquid discharge pipe (41) are sequentially installed on the side of the liquid and gas discharge bin (4) from top to bottom, one-way valves (7) are installed on the exhaust pipe (42) and the liquid discharge pipe (41), a sewage discharge pipe (43) is installed at the bottom end of the liquid and gas discharge bin (4), and an electromagnetic valve (44) is installed on the sewage discharge pipe (43).
7. The ozone inline mixing disinfection system of claim 1, wherein: An S-shaped pipeline (87) is connected to the liquid inlet pipe (6), a water supply pump (81) is installed at the top end of the S-shaped pipeline (87), a guide-out pipe (83) and a backflow pipe (84) are installed on the side of the S-shaped pipeline (87) close to the water supply pump (81), an air-gas mixing pump (85) is installed between the guide-out pipe (83) and the backflow pipe (84), an auxiliary air inlet pipe (86) is further installed on the feeding end of the air-gas mixing pump (85), and a shunt plate (88) is arranged in the S-shaped pipeline (87).