Ozone generation sewage treatment device
Through the design of ozone separation components and tail gas protection components, the problems of ozone waste and excessive tail gas humidity in ozone sewage treatment equipment are solved, and the sewage purity is improved and the equipment is automatically controlled and maintained.
Patent Information
- Application Number
- CN202511234204.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-01
- Publication Date
- 2025-09-30
- Estimated Expiration
- 2045-09-01
AI Technical Summary
Existing ozone-generating sewage treatment devices tend to waste ozone when discharging sewage, and are difficult to automatically control the purity of the drainage and prevent the exhaust gas humidity from exceeding the standard, which affects the service life of subsequent treatment equipment.
Ozone separation components and tail gas protection components are used to separate and recover ozone bubbles and detect tail gas humidity respectively. Combined with sealed conveying components, continuous emission and automatic control are achieved. A transparent observation window is equipped to monitor the status of the float to determine aeration disturbance.
Effectively reduce ozone waste, improve sewage effluent purity, realize ozone reuse, reduce preparation costs, prevent exhaust gas humidity from exceeding standards, extend equipment life, and facilitate timely maintenance.
Smart Images

Figure CN120717601A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of sewage treatment, and in particular to an ozone generating sewage treatment device. Background Art
[0002] In actual sewage treatment work, ozone catalysis is widely used. Through ozone aeration of sewage, organic matter, inorganic matter and other pollutants in the water can be directly oxidized and decomposed, significantly reducing COD and chroma. The current ozone-generating sewage treatment equipment usually adopts the method of continuously discharging ozone-treated sewage. In order to ensure the quality of discharged sewage, the lower layer water is usually discharged. However, when discharging the lower layer water, a large amount of sewage rich in high-concentration ozone bubbles will be discharged together. Further ozone elimination is required later, which will also increase ozone waste. It is not convenient to automatically control the reuse of ozone to improve the purity of drainage, and it is not convenient to automatically control the prevention of exhaust humidity exceeding the standard. It is easy to cause water vapor to increase due to factors such as ambient temperature difference or high sewage temperature, affecting the service life of subsequent exhaust catalysts. Summary of the Invention
[0003] The disclosed embodiments relate to an ozone-generating sewage treatment device to solve the problem that current ozone-generating sewage treatment devices are not convenient for automatically controlling the reuse of ozone to improve the purity of wastewater.
[0004] In a first aspect of the present disclosure, an ozone-generating sewage treatment device is provided, which specifically includes a treatment installation component, wherein an ozone aeration component is installed inside the treatment installation component; the treatment installation component is used to treat sewage with ozone; an ozone separation component is installed inside the treatment installation component; the ozone separation component is used to improve the purity of the purified sewage; a sealed conveying component is installed on the ozone separation component; the sealed conveying component is used for continuous drainage; a water supply device is installed on the ozone separation component; an exhaust gas protection component is installed on the treatment installation component; the exhaust gas protection component is used to prevent the exhaust gas humidity from exceeding the standard; the treatment installation component includes: a protection cabinet and a treatment tank, the protection cabinet is connected to a cabinet door by a hinge; the protection cabinet has a treatment tank fixedly installed inside by a bracket.
[0005] In at least some embodiments, the treatment installation also includes: a water supply pipe and a water supply pipe, the water supply pipe is fixedly sleeved inside the protection cabinet; a circle of water outlet holes is provided at the bottom of the water supply pipe; a water supply pipe is fixedly installed on the water supply pipe; the water supply pipe passes through the protection cabinet and the treatment tank; the water supply pipe is fixedly installed on the treatment tank; the water supply pipe is externally connected to the sewage supply pipe.
[0006] In at least some embodiments, the processing installation also includes: a traction rope and a float, the traction rope is fixedly installed inside the processing tank through a bracket; a float is fixedly installed on the top of the traction rope; the float is located in the middle of the processing tank; and a transparent observation window is provided on the processing tank.
[0007] In at least some embodiments, the ozone aeration component includes: an ozone supply pipe and an aeration disc body, wherein the ozone supply pipe is fixedly mounted on the treatment tank; the ozone supply pipe passes through a protective cabinet; a flange is provided at the end of the ozone supply pipe; the ozone supply pipe is externally connected to an ozone generator; an aeration disc body is fixedly mounted at the end of the ozone supply pipe, and microholes are provided on the top of the aeration disc body; the aeration disc body is located inside the treatment tank; and a solenoid valve is provided on the ozone supply pipe.
[0008] In at least some embodiments, the ozone separation component includes: a separation mounting shell, a collecting shell, a negative pressure suction pipe, a drain pipe and a suction pump, the separation mounting shell is fixedly mounted in the middle of the water supply pipe, and a gap is provided between the water supply pipe and the separation mounting shell; a water inlet hole is provided on the top of the separation mounting shell, a drain hole is provided on the bottom of the separation mounting shell, and the water inlet hole and the drain hole on the separation mounting shell are staggered; a collecting shell is fixedly mounted on the bottom of the separation mounting shell; a negative pressure suction pipe is fixedly mounted on the top of the separation mounting shell, and the end of the negative pressure suction pipe is located between the water inlet hole and the drain hole on the separation mounting shell; a one-way valve is provided on the negative pressure suction pipe; the other end of the negative pressure suction pipe is fixedly connected to the side of the ozone supply pipe; the ozone supply pipe is connected to the negative pressure suction pipe; a drain pipe is fixedly mounted on the side of the collection shell, and the drain pipe is fixedly mounted on the treatment tank; the drain pipe passes through the protection cabinet; and a suction pump is installed on the negative pressure suction pipe.
[0009] In at least some embodiments, the sealed conveying member includes: a conveying disc, a water suction trough and a driving motor, the conveying disc is rotatably sleeved inside the separation mounting shell; the top shaft end of the conveying disc passes through the separation mounting shell; a water suction trough is provided on the conveying disc; two rubber rings are fixedly embedded on the conveying disc; the water suction trough is set through; a driving motor is fixedly mounted on the separation mounting shell, and the output shaft of the driving motor is connected to the conveying disc; the water suction trough corresponds to the water inlet hole and the drainage hole on the separation mounting shell.
[0010] In at least some embodiments, the water supply device includes: a guide pipe and a submersible pump, the guide pipe is fixedly installed on the side of the separate mounting shell, and the top of the guide pipe is located above the water inlet hole on the separate mounting shell; the submersible pump is fixedly installed on the bottom end of the guide pipe; the submersible pump is located below the inside of the treatment tank.
[0011] In at least some embodiments, the exhaust protection component includes: an exhaust gas emission pipe and an electrical connection pole, the exhaust gas emission pipe is fixedly installed on the top of the treatment tank; the exhaust gas emission pipe passes through the protection cabinet; a flange is provided at the end of the exhaust gas emission pipe; the end of the exhaust gas emission pipe is used for external exhaust gas catalytic equipment; two electrical connection poles are slidably plugged into the exhaust gas emission pipe; and a solenoid valve is provided on the exhaust gas emission pipe.
[0012] In at least some embodiments, the exhaust protection component also includes: an electric heating plate and an adsorption sponge block, the electric heating plate is fixedly installed inside the exhaust pipe; the electric heating plate is externally connected to a control power supply; an adsorption sponge block is fixedly installed between the two power poles; the adsorption sponge block is used to adsorb water vapor.
[0013] In at least some embodiments, the exhaust protection component also includes: an insulating block, an insulating block is fixedly installed on the end of the two connecting posts, and the insulating block is used for hand-kneading and squeezing the adsorption sponge block; a spring is respectively sleeved on the two connecting posts, and the springs on the connecting posts are respectively connected between the two insulating blocks and the exhaust pipe; the two connecting posts, the solenoid valve on the exhaust pipe and the ozone supply pipe are provided with a solenoid valve series power supply.
[0014] The present invention provides an ozone generating sewage treatment device, which has the following beneficial effects:
[0015] The ozone separation element used in the present invention can effectively reduce ozone waste, avoid the discharge of a large amount of ozone-rich sewage together with ozone when sewage is discharged, and also reduce the difficulty of subsequent water purification, improve the purity of sewage effluent, realize ozone reuse, reduce ozone preparation costs, and be more energy-saving and environmentally friendly. Especially for sewage discharge in the lower layer, although the treatment time is longer and the treatment effect is better, because it is closer to the aeration disk body, its ozone concentration is also higher. At the same time, it can realize continuous sewage discharge in conjunction with the sealed conveying element, ensure the continuity of sewage discharge, have a more reasonable structure, and will not block the ozone sewage treatment.
[0016] In addition, the use of exhaust gas protection parts can automatically detect whether the exhaust humidity exceeds the standard. Once the water vapor content in the exhaust gas exceeds the standard after the actual ozone treatment is completed, it will directly affect the service life of the subsequent exhaust gas treatment equipment. The exhaust steam can be detected, and when the humidity exceeds the standard, the exhaust can be automatically stopped to reduce damage.
[0017] In addition, the treatment tank used is equipped with a transparent observation window, which can be used to observe the status of the float. The status of the float can be used to judge the disturbance of sewage aeration inside the treatment tank. Once the aeration angle of the aeration disc body deviates greatly or is damaged, the sewage above will be excessively disturbed, causing the float to shake arbitrarily, which can intuitively remind the staff of the internal sewage situation. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings of the embodiments are briefly introduced below.
[0019] The drawings described below only relate to some embodiments of the present invention, but are not intended to limit the present invention.
[0020] In the attached figure:
[0021] Figure 1 A schematic diagram showing the external structure of an ozone generating sewage treatment device of the present application;
[0022] Figure 2 A cross-sectional view showing the internal structure of an ozone generating sewage treatment device of the present application;
[0023] Figure 3 A schematic diagram showing the outer structure of the treatment tank of the present application is shown;
[0024] Figure 4 A schematic diagram showing the overall structure of the processing mounting member of the present application;
[0025] Figure 5 A schematic diagram showing the overall structure of the ozone aerator of the present application;
[0026] Figure 6 A schematic diagram showing the overall structure of the ozone separation element of the present application;
[0027] Figure 7 A schematic diagram showing the overall structure of the sealing conveying member of the present application is shown;
[0028] Figure 8 A schematic diagram showing the bottom structure of the separate mounting shell of the present application is shown;
[0029] Figure 9 A schematic diagram showing the overall structure of the exhaust protection component of the present application;
[0030] Figure 10 Shows the application Figure 2 A magnified view of the structure of region D in the middle.
[0031] List of reference numerals:
[0032] 1. Treatment installation parts; 101. Protection cabinet; 102. Treatment tank; 103. Water supply pipe; 104. Water supply pipe; 105. Towing rope; 106. Float; 2. Ozone aeration parts; 201. Ozone supply pipe; 202. Aeration plate body; 3. Ozone separation parts; 301. Separation installation shell; 3011. Collection shell; 302. Negative pressure suction pipe; 303. Drain pipe; 304. Suction pump; 4. Sealed conveying parts; 401. Conveyor plate; 4011. Water suction trough; 402. Drive motor; 5. Water supply device; 501. Diversion pipe; 502. Submersible pump; 6. Exhaust protection parts; 601. Exhaust discharge pipe; 602. Power connection column; 603. Electric heating plate; 604. Adsorption sponge block; 605. Insulation block. DETAILED DESCRIPTION
[0033] To make the purpose, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions of the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the described embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0034] Example 1: Please refer to Figures 1 to 10 :
[0035] The present invention proposes an ozone-generating sewage treatment device, comprising a treatment installation component 1, wherein an ozone aeration component 2 is installed inside the treatment installation component 1; the treatment installation component 1 is used for ozone treatment of sewage; an ozone separation component 3 is installed inside the treatment installation component 1; the ozone separation component 3 is used to improve the purity of the purified sewage; a sealing conveying component 4 is installed on the ozone separation component 3; the sealing conveying component 4 is used for continuous drainage; a water supply device 5 is installed on the ozone separation component 3; an exhaust gas protection component 6 is installed on the treatment installation component 1; the exhaust gas protection component 6 is used to prevent the exhaust gas humidity from exceeding the standard; the treatment installation component 1 comprises: a protection cabinet 101 and a treatment tank 102, a cabinet door is connected to the protection cabinet 101 by a hinge; the treatment tank 102 is fixedly installed inside the protection cabinet 101 by a bracket.
[0036] In the embodiment of the present disclosure, the treatment installation part 1 also includes: a water supply pipe 103 and a water supply pipe 104. The protection cabinet 101 is fixedly sleeved with the water supply pipe 103; a circle of water outlet holes is provided at the bottom of the water supply pipe 103; a water supply pipe 104 is fixedly installed on the water supply pipe 103; the water supply pipe 104 passes through the protection cabinet 101 and the treatment tank 102; the water supply pipe 104 is fixedly installed on the treatment tank 102; the water supply pipe 104 is externally connected to the sewage supply pipe; the treatment installation part 1 also includes: a traction rope 105 and a float 106. The traction rope 105 is fixedly installed inside the treatment tank 102 through a bracket; the traction rope 105 is fixedly installed on the top of the treatment tank 102. A float 106 is fixedly installed at the end; the float 106 is located in the middle of the treatment tank 102; a transparent observation window is provided on the treatment tank 102; the ozone aerator 2 includes: an ozone supply pipe 201 and an aeration disc body 202, the ozone supply pipe 201 is fixedly installed on the treatment tank 102; the ozone supply pipe 201 passes through the protection cabinet 101; a flange is provided at the end of the ozone supply pipe 201; the ozone supply pipe 201 is externally connected to an ozone generator; an aeration disc body 202 is fixedly installed at the end of the ozone supply pipe 201, and micropores are provided on the top of the aeration disc body 202; the aeration disc body 202 is located inside the treatment tank 102 ; An electromagnetic valve is provided on the ozone supply pipe 201, and the ozone aerator 2 can be used to achieve high-concentration ozone auxiliary aeration supply to ensure the actual sewage treatment quality. At the same time, this structure adopts a high-concentration ozone supply method without the need for additional catalysts to ensure smooth aeration bubbles. At the same time, a transparent observation window is provided on the treatment tank 102 to observe the state of the float 106. The state of the float 106 can be used to judge the disturbance of the sewage aeration inside the treatment tank 102. Once the aeration angle deviation of the aeration disc main body 202 is large or damaged, the sewage above will be excessively disturbed, causing the float 10 6. Any shaking can intuitively remind the staff of the internal sewage situation. If the water flow disturbance speed is too fast, it is easy to cause the upper sewage to mix quickly with the lower sewage, affecting the treatment quality of the lower sewage. If the sewage disturbance is serious, the float 106 will be disturbed by the liquid surface and cause the shaking speed to be too fast, making observation more intuitive. It can prevent the sewage from being rich in bubbles and it is difficult for humans to judge the water flow disturbance. The float 106 can be used to intuitively understand the vortex of sewage, etc., and it will not be difficult to observe the damage or partial blockage of the aeration plate body 202 due to the obstruction of bubbles, so it is convenient to timely repair the aeration plate body 202, and the structure is simple.
[0037] In the embodiment of the present disclosure, the ozone separator 3 includes: a separation installation shell 301, a collection shell 3011, a negative pressure suction pipe 302, a drain pipe 303 and a suction pump 304. The separation installation shell 301 is fixedly installed in the middle of the water supply pipe 103, and a gap is provided between the water supply pipe 103 and the separation installation shell 301; a water inlet hole is provided on the top of the separation installation shell 301, a drain hole is provided on the bottom of the separation installation shell 301, and the water inlet hole and the drain hole on the separation installation shell 301 are staggered; the separation installation shell 301 A collection shell 3011 is fixedly installed at the bottom; a negative pressure suction pipe 302 is fixedly installed on the top of the separation installation shell 301, and the end of the negative pressure suction pipe 302 is located between the water inlet and the drain hole on the separation installation shell 301; a one-way valve is provided on the negative pressure suction pipe 302; the other end of the negative pressure suction pipe 302 is fixedly connected to the side of the ozone supply pipe 201; the ozone supply pipe 201 is connected to the negative pressure suction pipe 302; a drain pipe 303 is fixedly installed on the side of the collection shell 3011, and the drain pipe 303 is fixedly installed On the processing tank 102; the drainage pipe 303 passes through the protection cabinet 101; a suction pump 304 is installed on the negative pressure suction pipe 302; the sealed conveying member 4 includes: a conveying plate 401, a water suction groove 4011 and a drive motor 402, the conveying plate 401 is rotatably sleeved inside the separation installation shell 301; the top shaft end of the conveying plate 401 passes through the separation installation shell 301; a water suction groove 4011 is opened on the conveying plate 401; two rubber rings are fixedly embedded on the conveying plate 401; the water suction groove 4011 is set through A drive motor 402 is fixedly mounted on the separate mounting shell 301, and the output shaft of the drive motor 402 is connected to the conveying plate 401; the water suction groove 4011 corresponds to the water inlet hole and the drainage hole on the separate mounting shell 301; the water supply device 5 includes: a guide pipe 501 and a submersible pump 502, the guide pipe 501 is fixedly mounted on the side of the separate mounting shell 301, and the top of the guide pipe 501 is located above the water inlet hole on the separate mounting shell 301; the submersible pump 502 is fixedly mounted on the bottom end of the guide pipe 501;The submersible pump 502 is located at the bottom of the treatment tank 102. The ozone separation element 3 can effectively reduce ozone waste and avoid a large amount of ozone-rich sewage being discharged together with ozone when sewage is discharged. At the same time, it also reduces the difficulty of subsequent water purification and improves the purity of sewage effluent. It can realize ozone reuse, reduce ozone preparation costs, and be more energy-saving and environmentally friendly. Especially for sewage discharge in the lower layer, although its treatment time is longer and the treatment effect is better, because it is closer to the aeration disk main body 202, its ozone concentration is also higher. At the same time, it can realize continuous sewage discharge with the sealing conveying element 4 to ensure the continuity of sewage discharge. The structure is more reasonable and will not block the ozone sewage treatment. During the actual aeration treatment of the aeration disk main body 202, the ozone-treated sewage located below the treatment tank 102 can be extracted in real time by the submersible pump 502. The sewage is discharged to the suction trough 4011 through the guide pipe 501, and the conveying disc 401 is driven by the driving motor 402 to rotate until it is aligned with the negative pressure suction pipe 30 2, the outer rubber ring of the conveying plate 401 is used for sealing. At this time, the suction pump 304 is sucking in real time. The bubbles in the sewage inside the suction tank 4011 will quickly burst and be sucked by the suction pump 304. At this time, the sewage inside the suction tank 4011 has been treated with ozone and meets the post-treatment standards. The ozone in the sewage extracted by the suction pump 304 can be discharged to the ozone supply pipe 201 through the negative pressure suction pipe 302, and then exhausted through the aeration plate body 202. At the same time, as the conveying plate 40 When the conveyor disc 401 continues to rotate, driving the water trough 4011 to align with the drainage hole at the bottom of the separation installation shell 301, the sewage inside the water trough 4011 can be discharged into the collection shell 3011 for collection and discharge through the drainage pipe 303. In this way, the conveyor disc 401 continues to rotate, separating the ozone bubbles from the ozone-treated sewage for reuse. When the conveyor disc 401 drives the water trough 4011 to rotate, the water inlet hole on the separation installation shell 301 has an upper edge, which can temporarily store the sewage discharged by the diversion pipe 501.
[0038] Example 2, based on Example 1, the exhaust protection member 6 includes: an exhaust pipe 601 and an electric pole 602, the exhaust pipe 601 is fixedly installed on the top of the treatment tank 102; the exhaust pipe 601 passes through the protection cabinet 101; the end of the exhaust pipe 601 is provided with a flange; the end of the exhaust pipe 601 is used to connect the exhaust catalytic device externally; two electric poles 602 are slidably plugged on the exhaust pipe 601; the exhaust pipe 601 is provided with a solenoid valve; the exhaust protection member 6 also includes: an electric heating plate 603 and an adsorption sponge block 604, the exhaust An electric heating plate 603 is fixedly installed inside the discharge tube 601; the electric heating plate 603 is externally connected to the control power supply; an adsorption sponge block 604 is fixedly installed between the two connecting posts 602; the adsorption sponge block 604 is used to adsorb water vapor; the exhaust protection member 6 also includes: an insulating block 605, and the ends of the two connecting posts 602 are respectively fixedly installed with insulating blocks 605, and the insulating blocks 605 are used to pinch and squeeze the adsorption sponge block 604 by hand; the two connecting posts 602 are respectively sleeved with springs, and the springs on the connecting posts 602 are respectively connected to the two insulating blocks 605 and the exhaust Between the exhaust pipe 601; the two connecting poles 602, the solenoid valve on the exhaust pipe 601 and the ozone supply pipe 201 are provided with a solenoid valve series power supply, and the exhaust protection part 6 can be used to automatically detect that the exhaust humidity exceeds the standard. Once the water vapor content in the exhaust after the actual ozone treatment is completed exceeds the standard, it will directly affect the service life of the subsequent exhaust treatment equipment. This structure can detect the exhaust steam and automatically control the exhaust to stop when the humidity exceeds the standard, reducing damage. The structure is simple and reasonable, and can directly prompt the staff to deal with it in time to avoid continuous emission damage Subsequent exhaust gas treatment equipment, at the same time, this structure uses the adsorption sponge block 604 to absorb water, which can be convenient for subsequent dehydration and reuse. It is simple to operate and does not require disassembly and replacement. Once the water vapor exceeds the standard due to factors such as poor cooling effect of sewage in the cooling tower in the early stage, the water vapor will adhere to and penetrate the adsorption sponge block 604. Because it is sewage water vapor, it is rich in impurities and has strong conductivity. At this time, the two power poles 602 are turned on to control the solenoid valve on the exhaust pipe 601 and the solenoid valve on the ozone supply pipe 201 to be closed, stop exhausting, and perform protection.
[0039] The working principle of this embodiment is as follows: first, sewage is supplied through the sewage supply pipe connected to the water supply pipe 104 and discharged from the water supply pipe 103. At the same time, ozone is supplied by the ozone generator connected to the ozone supply pipe 201 and aerated through the aeration plate body 202 to keep the sewage liquid surface close to the float 106. At this time, if the sewage is seriously disturbed, the float 106 will be disturbed by the liquid surface and the shaking speed is too fast, which can be directly observed; when the aeration plate body 202 is aerating, the ozone in the treatment tank can be extracted in real time by the submersible pump 502. The ozone-treated sewage below 102 is discharged to the water suction trough 4011 through the guide pipe 501. The conveyor disc 401 is driven by the driving motor 402 to rotate. When it is aligned with the bottom of the negative pressure suction pipe 302, it is sealed with the rubber ring outside the conveyor disc 401. At this time, the suction pump 304 is sucking in real time. The bubbles in the sewage inside the water suction trough 4011 will quickly burst and be sucked by the suction pump 304. At this time, the sewage inside the water suction trough 4011 has already been treated with ozone and meets the post-treatment standards. The ozone in the sewage extracted by the suction pump 304 can be discharged to the ozone supply pipe 201 through the negative pressure suction pipe 302, and then exhausted and reused through the aeration disk main body 202; once the water vapor exceeds the standard due to factors such as poor cooling effect of the sewage in the cooling tower in the early stage, the water vapor will directly adhere to and soak the adsorption sponge block 604, and because it is sewage water vapor, it is rich in impurities and has strong conductivity. At this time, the two connecting posts 602 are turned on to control the solenoid valve on the exhaust pipe 601 and the solenoid valve on the ozone supply pipe 201 to be closed, and the exhaust is stopped. The staff needs to deal with it in time to avoid continuous exhaust emission when the humidity is too high, and to avoid continuous ozone supply. Later, after the sewage water temperature drops or the ambient temperature is adjusted to normal, the two connecting posts 602 can be pressed inward to squeeze the adsorption sponge block 604 to drain water, and at the same time, the electric heating plate 603 can be controlled to heat and dehydrate the adsorption sponge block 604, which is convenient for subsequent reuse. The structure detection is simple, avoiding the traditional sensor detection method where water droplets are easily attached and cause sensor abnormalities.
[0040] In this article, there are several points to note:
[0041] 1. The drawings of the embodiments of the present disclosure only relate to the structures related to the embodiments of the present disclosure. Other structures may refer to conventional designs.
[0042] 2. In the absence of conflict, the embodiments of the present disclosure and the features therein may be combined with each other to form new embodiments.
[0043] The above are only specific embodiments of the present disclosure, but the scope of protection of the present disclosure is not limited thereto. Any changes or substitutions that can be easily conceived by a person skilled in the art within the technical scope disclosed in this disclosure should be included in the scope of protection of the present disclosure. Therefore, the scope of protection of the present disclosure should be based on the scope of protection of the claims.
Claims
1. An ozone generating sewage treatment device, comprising a treatment installation component (1), wherein an ozone aeration component (2) is installed inside the treatment installation component (1); characterized in that: The treatment installation component (1) is used for ozone treatment of sewage; an ozone separation component (3) is installed inside the treatment installation component (1); the ozone separation component (3) is used to improve the purity of the purified sewage; A sealing conveying member (4) is installed on the ozone separation member (3); the sealing conveying member (4) is used for continuous drainage; a water supply device (5) is installed on the ozone separation member (3); An exhaust gas protection component (6) is installed on the processing installation component (1); the exhaust gas protection component (6) is used to prevent the exhaust gas humidity from exceeding the standard; The processing installation component (1) comprises: a protection cabinet (101) and a processing tank (102); the protection cabinet (101) is connected to a cabinet door via a hinge; the processing tank (102) is fixedly installed inside the protection cabinet (101) via a bracket; The exhaust protection component (6) comprises: an exhaust emission pipe (601) and an electrical connection post (602); the exhaust emission pipe (601) is fixedly mounted on the top of the treatment tank (102); the exhaust emission pipe (601) passes through the protection cabinet (101); a flange is provided at the end of the exhaust emission pipe (601); the end of the exhaust emission pipe (601) is used for external connection to an exhaust catalytic device; two electrical connection posts (602) are slidably plugged onto the exhaust emission pipe (601); and a solenoid valve is provided on the exhaust emission pipe (601).
2. The ozone generating sewage treatment device according to claim 1, characterized in that: The treatment installation component (1) further comprises: a water supply pipe (103) and a water supply pipe (104); the protection cabinet (101) is internally fixedly sleeved with the water supply pipe (103); a circle of water outlet holes is provided at the bottom of the water supply pipe (103); a water supply pipe (104) is fixedly mounted on the water supply pipe (103); the water supply pipe (104) passes through the protection cabinet (101) and the treatment tank (102); the water supply pipe (104) is fixedly mounted on the treatment tank (102); and the water supply pipe (104) is externally connected to a sewage supply pipe.
3. An ozone generating sewage treatment device according to claim 2, characterized in that: The processing installation part (1) further comprises: a traction rope (105) and a float (106); the traction rope (105) is fixedly mounted inside the processing tank (102) via a bracket; a float (106) is fixedly mounted on the top of the traction rope (105); the float (106) is located in the middle of the processing tank (102); and a transparent observation window is provided on the processing tank (102).
4. The ozone generating sewage treatment device according to claim 2, characterized in that: The ozone aeration component (2) comprises: an ozone supply pipe (201) and an aeration disc body (202); the ozone supply pipe (201) is fixedly mounted on the treatment tank (102); the ozone supply pipe (201) passes through the protection cabinet (101); a flange is provided at the end of the ozone supply pipe (201); the ozone supply pipe (201) is externally connected to an ozone generator; the aeration disc body (202) is fixedly mounted at the end of the ozone supply pipe (201), and microholes are provided on the top of the aeration disc body (202); the aeration disc body (202) is located inside the treatment tank (102); and a solenoid valve is provided on the ozone supply pipe (201).
5. The ozone generating sewage treatment device according to claim 4, characterized in that: The ozone separator (3) comprises: a separation installation shell (301), a collection shell (3011), a negative pressure suction pipe (302), a drainage pipe (303) and a suction pump (304); the separation installation shell (301) is fixedly installed in the middle of the water supply pipe (103), and a gap is provided between the water supply pipe (103) and the separation installation shell (301); a water inlet hole is provided at the top of the separation installation shell (301), a drainage hole is provided at the bottom of the separation installation shell (301), and the water inlet hole and the drainage hole on the separation installation shell (301) are staggered; a collection shell (3011) is fixedly installed at the bottom of the separation installation shell (301); the top of the separation installation shell (301) is fixedly installed. A negative pressure suction pipe (302) is fixedly installed, and the end of the negative pressure suction pipe (302) is located between the water inlet and the drain hole on the separation installation shell (301); a one-way valve is provided on the negative pressure suction pipe (302); the other end of the negative pressure suction pipe (302) is fixedly connected to the side of the ozone supply pipe (201); the ozone supply pipe (201) is connected to the negative pressure suction pipe (302); a drain pipe (303) is fixedly installed on the side of the collection shell (3011), and the drain pipe (303) is fixedly installed on the processing tank (102); the drain pipe (303) passes through the protection cabinet (101); and a suction pump (304) is installed on the negative pressure suction pipe (302).
6. The ozone generating sewage treatment device according to claim 5, characterized in that: The sealed conveying member (4) comprises: a conveying disc (401), a water absorption groove (4011) and a driving motor (402); the conveying disc (401) is rotatably sleeved inside the separation mounting shell (301); the top shaft end of the conveying disc (401) passes through the separation mounting shell (301); the conveying disc (401) is provided with a water absorption groove (4011); two rubber rings are fixedly embedded in the conveying disc (401); the water absorption groove (4011) is provided through-through; the driving motor (402) is fixedly mounted on the separation mounting shell (301), and the output shaft of the driving motor (402) is connected to the conveying disc (401); the water absorption groove (4011) corresponds to the water inlet hole and the drain hole on the separation mounting shell (301).
7. The ozone generating sewage treatment device according to claim 5, characterized in that: The water supply device (5) comprises: a flow guide pipe (501) and a submersible pump (502); the flow guide pipe (501) is fixedly mounted on the side of the separation installation shell (301), and the top end of the flow guide pipe (501) is located above the water inlet hole on the separation installation shell (301); the submersible pump (502) is fixedly mounted on the bottom end of the flow guide pipe (501); and the submersible pump (502) is located below the interior of the treatment tank (102).
8. The ozone generating sewage treatment device according to claim 4, characterized in that: The exhaust protection element (6) further comprises: an electric heating plate (603) and an adsorption sponge block (604); the electric heating plate (603) is fixedly installed inside the exhaust pipe (601); the electric heating plate (603) is externally connected to a control power supply; an adsorption sponge block (604) is fixedly installed between the two power connection posts (602); the adsorption sponge block (604) is used to adsorb water vapor.
9. The ozone generating sewage treatment device according to claim 8, characterized in that: The exhaust protection component (6) further comprises: an insulating block (605), the ends of the two connecting posts (602) are respectively fixedly mounted with insulating blocks (605), and the insulating blocks (605) are used for manually kneading and squeezing the adsorption sponge block (604); the two connecting posts (602) are respectively sleeved with springs, and the springs on the connecting posts (602) are respectively connected between the two insulating blocks (605) and the exhaust pipe (601); and the two connecting posts (602), the solenoid valve on the exhaust pipe (601), and the ozone supply pipe (201) are provided with a solenoid valve series power supply.
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