A waste liquid treatment system

By using ultrasonic vibration and a sunlight tracking device inside the serpentine guide tube, the wastewater and titanium dioxide are mixed evenly. Combined with photocatalytic oxidation, the problems of uneven titanium dioxide mixing and low ultraviolet utilization efficiency are solved, achieving efficient wastewater purification and energy harvesting.

CN118026338BActive Publication Date: 2026-01-13SUZHOU DONGFANG ENVIRONMENTAL ENG CO LTD
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Patent Information

Application Number
CN202311839755.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-12-29
Publication Date
2026-01-13
Estimated Expiration
2043-12-29

AI Technical Summary

Technical Problem

In existing wastewater treatment processes, insufficient mixing of titanium dioxide with wastewater results in poor ultraviolet catalysis, leading to ineffective treatment and low utilization efficiency of ultraviolet light.

Method used

The system employs a serpentine guide tube combined with an ultrasonic transducer and a solar tracking device. The ultrasonic vibration within the serpentine guide tube promotes fluid mixing, while the concentrator plate enhances solar energy collection efficiency. Under ultraviolet light, titanium dioxide is activated to generate reactive oxygen molecules for photocatalytic oxidation.

Benefits of technology

It improves the uniformity and mass transfer efficiency of wastewater treatment, enhances the photocatalytic degradation effect, and improves wastewater purification capacity and energy utilization efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a waste liquid treatment system, which comprises a serpentine flow guide pipe, a plurality of reaction mechanisms arranged on the top of the serpentine flow guide pipe, a plurality of light collecting mechanisms arranged on the two sides of the serpentine flow guide pipe, and the serpentine flow guide pipe is a transparent organic glass serpentine pipeline with polymethyl methacrylate as a component, the reaction mechanism comprises a storage tank, a catalyst arranged in the storage tank, and a plurality of connecting pipes arranged on the circumferential outer wall of the storage tank. Since the serpentine flow guide pipe is a transparent circular pipeline, when the pipeline is irradiated by sunlight, the transparent organic glass material can make the sunlight penetrate and generate a greenhouse effect in the serpentine flow guide pipe, so that the temperature in the pipeline is increased, the ultraviolet rays in the sunlight can have a sterilization and disinfection effect, so that the sunlight irradiated on the pipeline can help reduce the microorganisms in the wastewater, and under the action of the sunlight, the surface of the organic glass pipeline can generate a photocatalysis effect, which can help degrade the organic matters in the wastewater.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of wastewater treatment, and in particular to a waste liquid treatment system. BACKGROUND

[0002] Wastewater treatment is to use physical, chemical and biological methods to treat wastewater, purify wastewater, reduce pollution, and achieve wastewater recycling and reuse to fully utilize water resources.

[0003] In the treatment of wastewater, wastewater treatment can remove organic matter, suspended solids, heavy metals and other pollutants in wastewater, thereby purifying water quality to meet discharge standards or reuse requirements; untreated wastewater may contain a large amount of pollutants, which, if directly discharged into natural water bodies, can have a serious impact on the water ecosystem, disrupt the water ecological balance, and affect the sustainable use of water resources; prevent the spread of diseases: untreated wastewater may contain pathogens such as bacteria and viruses, which can be effectively killed by wastewater treatment to reduce the risk of disease transmission; resource reuse: treated wastewater can be reused; in the prior art, a catalyst, titanium dioxide, is added to the wastewater to react with the wastewater, but the large impurity particles in the wastewater make the titanium dioxide not fully mixed with the wastewater, and the use of ultraviolet light during the treatment of titanium dioxide and wastewater produces a photocatalytic effect, but the catalytic effect of ultraviolet light is poor, thereby reducing the wastewater treatment effect.

[0004] Therefore, in order to solve the above problems, a waste liquid treatment system is provided. SUMMARY

[0005] The present application overcomes the shortcomings of the prior art and provides a waste liquid treatment system.

[0006] To achieve the above purpose, the technical solution adopted by the present application is as follows: a waste liquid treatment system, comprising: a serpentine flow guide pipe, a plurality of reaction mechanisms arranged at the top of the serpentine flow guide pipe, and a plurality of light collecting mechanisms arranged on both sides of the serpentine flow guide pipe;

[0007] The serpentine flow guide pipe is a transparent organic glass serpentine pipe with polymethyl methacrylate as a component, the reaction mechanism comprises: a storage tank, a catalyst arranged in the storage tank, a plurality of connecting pipes arranged on the circumferential outer wall of the storage tank, and a plurality of micro-holes arranged through the bottom of the connecting pipes;

[0008] The light collecting mechanism comprises: two mounting brackets, a light collecting plate arranged between the two mounting brackets, a connecting plate arranged at the bottom of the light collecting plate, connecting shafts arranged on both sides of the connecting plate, and a sunlight tracking device arranged on one side of one of the mounting brackets.

[0009] In a preferred embodiment of the present application, one end of the plurality of connecting pipes is connected to the circumferential outer wall of the receiving tank, and the other end of the plurality of connecting pipes is connected to the circumferential outer wall of the serpentine flow guide pipe.

[0010] In a preferred embodiment of the present application, two mounting frames are fixedly connected to the two sides of the serpentine flow guide pipe, the connecting plate is fixedly connected to the bottom of the light condensing plate, two connecting shafts are fixedly connected to the two sides of the connecting plate, and the two connecting shafts are rotatably connected to the circumferential outer wall of the two mounting frames.

[0011] In a preferred embodiment of the present application, the sunlight tracking device is fixedly installed on the circumferential outer wall of one of the mounting frames.

[0012] In a preferred embodiment of the present application, one end of the rotating shaft of the sunlight tracking device penetrates the mounting frame and is fixedly connected to one end of the connecting shaft.

[0013] In a preferred embodiment of the present application, the catalyst is powdered titanium dioxide.

[0014] In a preferred embodiment of the present application, an ultrasonic transducer is connected to the water inlet end of the serpentine flow guide pipe.

[0015] In a preferred embodiment of the present application, the ultraviolet radiation refracted by the light condensing plate is controlled to be 20W / m^2-40W / m^2.

[0016] In a preferred embodiment of the present application, the sunlight refracted by the light condensing plate falls on the bottom of the serpentine flow guide pipe.

[0017] The present application solves the defects in the background art and has the following beneficial effects:

[0018] In the present application, an ultrasonic transducer is provided at the water inlet end of the serpentine flow guide pipe. When ultrasonic waves propagate in the fluid, cavitation effect and mechanical vibration are generated, which can promote the mixing and uniform distribution of the fluid, and also can break and disperse particles and sediments in the fluid. The mechanical vibration of the ultrasonic waves can promote the mixing of the fluid and make the reaction between the fluid and titanium dioxide more uniform. The strong vibration and micro-flow generated by the ultrasonic waves in the waste liquid help to increase the contact area between the components in the waste liquid, thereby improving the mass transfer efficiency.

[0019] The application provides a waste liquid treatment system, which is a transparent serpentine pipeline made of organic glass with polymethyl methacrylate as a component. When the serpentine pipeline is transparent and is irradiated by sunlight, the transparent organic glass material can make the sunlight penetrate and generate a greenhouse effect in the serpentine pipeline, so that the temperature in the pipeline is increased, and the ultraviolet rays in the sunlight can have a sterilization and disinfection effect, so that the sunlight irradiated on the pipeline can help to reduce microorganisms in the waste water. Under the action of sunlight, the surface of the organic glass pipeline can generate a photocatalytic effect, which helps to degrade organic substances in the waste water.

[0020] The application provides a waste liquid treatment system, which is a transparent serpentine pipeline made of organic glass with polymethyl methacrylate as a component. When the serpentine pipeline is transparent and is irradiated by sunlight, the transparent organic glass material can make the sunlight penetrate and generate a greenhouse effect in the serpentine pipeline, so that the temperature in the pipeline is increased, and the ultraviolet rays in the sunlight can have a sterilization and disinfection effect, so that the sunlight irradiated on the pipeline can help to reduce microorganisms in the waste water. Under the action of sunlight, the surface of the organic glass pipeline can generate a photocatalytic effect, which helps to degrade organic substances in the waste water.

[0021] The application provides a waste liquid treatment system, which is a transparent serpentine pipeline made of organic glass with polymethyl methacrylate as a component. When the serpentine pipeline is transparent and is irradiated by sunlight, the transparent organic glass material can make the sunlight penetrate and generate a greenhouse effect in the serpentine pipeline, so that the temperature in the pipeline is increased, and the ultraviolet rays in the sunlight can have a sterilization and disinfection effect, so that the sunlight irradiated on the pipeline can help to reduce microorganisms in the waste water. Under the action of sunlight, the surface of the organic glass pipeline can generate a photocatalytic effect, which helps to degrade organic substances in the waste water. BRIEF DESCRIPTION OF DRAWINGS

[0022] The application will be further described below in combination with the drawings and examples.

[0023] Figure 1 It is a perspective structural view of a preferred embodiment of the application.

[0024] Figure 2 It is a partial sectional view of a device body of a preferred embodiment of the application.

[0025] Figure 3 It is a reaction mechanism structural view of a preferred embodiment of the application.

[0026] In the drawings: 1, serpentine pipeline; 2, mounting frame; 3, sunlight tracking device; 4, light collecting plate; 5, connecting plate; 6, connecting shaft; 7, reaction mechanism; 701, storage tank; 702, connecting pipe; 703, micropore. DETAILED DESCRIPTION

[0027] The present invention will now be described in further detail with reference to the accompanying drawings and embodiments. These drawings are simplified schematic diagrams, which are only used to illustrate the basic structure of the present invention and therefore only show the components relevant to the present invention.

[0028] like Figure 1 As shown, a waste liquid treatment system includes: a serpentine guide pipe 1, a plurality of reaction mechanisms 7 disposed at the top of the serpentine guide pipe 1, and a plurality of focusing mechanisms disposed on both sides of the serpentine guide pipe 1.

[0029] like Figure 3 As shown, the serpentine guide tube 1 is a transparent serpentine tube made of polymethyl methacrylate. The reaction mechanism 7 includes: a storage tank 701, a catalyst disposed in the storage tank 701, a plurality of connecting tubes 702 disposed on the outer circumference of the storage tank 701, and micropores 703 penetrating through the bottom of the plurality of connecting tubes 702.

[0030] like Figure 2 As shown, the focusing mechanism includes: two mounting frames 2, a focusing plate 4 disposed between the two mounting frames 2, a connecting plate 5 disposed at the bottom of the focusing plate 4, a connecting shaft 6 disposed on both sides of the connecting plate 5, and a sunlight tracking device 3 disposed on one side of one of the mounting frames 2.

[0031] One end of several connecting pipes 702 is connected to the outer circumferential wall pipe of the storage tank 701, and the other end of several connecting pipes 702 is connected to the outer circumferential wall pipe of the serpentine guide pipe 1.

[0032] It should be noted that when the wastewater flows into the serpentine guide pipe 1, the wastewater passes through an ultrasonic transducer beforehand. When ultrasound propagates in the fluid, it generates cavitation and mechanical vibration, which can promote the mixing and uniform distribution of the fluid, and also break down and disperse particles and sediments in the fluid. The mechanical vibration of ultrasound can promote the mixing of the fluid and make the reaction between the fluid and titanium dioxide more uniform. The strong vibration and microflow generated by ultrasound in the waste liquid help to increase the contact area between the components in the waste liquid, thereby improving the mass transfer efficiency. When the wastewater passes through the serpentine guide pipe 1, the catalyst titanium dioxide in the collection tank 701 is introduced into the serpentine guide pipe 1 through the micropores 703, so that the titanium dioxide mixes with the wastewater. When titanium dioxide is exposed to ultraviolet light, titanium dioxide generates active oxygen. The active oxygen molecules generated by titanium dioxide can oxidize and decompose organic matter and pollutants in the wastewater, thereby forming photocatalysis. The photocatalytic oxidation process can effectively degrade organic matter in the wastewater, thereby purifying the wastewater.

[0033] like Figures 1-2As shown, two mounting racks 2 are respectively fixedly connected on both sides of the serpentine flow guide pipe 1, the connecting plate 5 is fixedly connected with the bottom of the light condensing plate 4, two connecting shafts 6 are respectively fixedly connected with both sides of the connecting plate 5, the two connecting shafts 6 are respectively rotatably connected with the circumferential outer wall of the two mounting racks 2, the sunlight tracking device 3 is fixedly installed with the circumferential outer wall of one of the mounting racks 2, one end of the rotating shaft of the sunlight tracking device 3 penetrates through the mounting rack 2 and is fixedly connected with one end of the connecting shaft 6, the catalyst is powdered titanium dioxide, the serpentine flow guide pipe 1 is provided with an ultrasonic transducer at the water inlet end, the refraction of the ultraviolet radiation of the light condensing plate 4 is controlled within 20W / m^2-40W / m^2, and the sunlight refracted by the light condensing plate 4 falls on the bottom of the serpentine flow guide pipe 1.

[0034] It should be noted that when the wastewater and the mixture in the serpentine flow guide pipe 1, through the setting of the sunlight tracking device 3, the sunlight tracking device 3 drives the light condensing plate 4 to rotate with the sunlight, when the sunlight tracking device 3 helps the light condensing plate 4 to track the position of the sun, it can ensure that the sunlight can be maximally irradiated on the light condensing plate 4, so that the light condensing plate 4 can project the sunlight on the bottom of the serpentine flow guide pipe 1, which can increase the ability of the light condensing plate 4 to absorb solar energy, thereby improving the energy collection efficiency.

[0035] The application uses when the wastewater is guided into the serpentine flow guide pipe 1, the wastewater passes through the ultrasonic transducer in advance, the ultrasonic wave produces cavitation effect and mechanical vibration when propagating in the fluid, which can promote the mixing and uniform distribution of the fluid, and can also break and disperse the particles and sediments in the fluid; the mechanical vibration of the ultrasonic wave can promote the mixing of the fluid and make the reaction of the fluid and titanium dioxide more uniform; the ultrasonic wave produces strong vibration and micro-flow in the waste liquid, which helps to increase the contact area between the components in the waste liquid, thereby improving the mass transfer efficiency; when the wastewater passes through the serpentine flow guide pipe 1, the serpentine flow guide pipe 1 is a transparent organic glass serpentine pipeline composed of polymethyl methacrylate; since the serpentine flow guide pipe 1 is a transparent circular pipeline, when sunlight shines on it, the transparent organic glass material can make the sunlight pass through and produce a greenhouse effect in the serpentine flow guide pipe 1, causing the temperature in the pipeline to rise, and the ultraviolet rays in the sunlight can have a sterilization and disinfection effect, so sunlight shining on the pipeline may help reduce microorganisms in the wastewater; under the action of sunlight, the surface of the organic glass pipeline may produce a photocatalytic effect, which helps to degrade organic matter in the wastewater; the catalyst titanium dioxide in the receiving tank 701 is introduced into the serpentine flow guide pipe 1 through the micropore 703, so that the titanium dioxide is mixed with the wastewater; when the titanium dioxide is exposed to ultraviolet light, the titanium dioxide will produce active oxygen, and the active oxygen molecules produced by the titanium dioxide can oxidize and decompose organic matter and pollutants in the wastewater, thereby forming photocatalysis, and the photocatalytic oxidation process can effectively degrade organic matter in the wastewater, thereby purifying the wastewater; when the wastewater in the serpentine flow guide pipe 1 is mixed, the sunlight tracking device 3 is provided, the sunlight tracking device 3 drives the light collecting plate 4 to rotate with the sunlight, when the sunlight tracking device 3 helps the light collecting plate 4 to track the position of the sun, it can ensure that the sunlight can be maximally irradiated on the light collecting plate 4, so that the light collecting plate 4 can project the sunlight on the bottom of the serpentine flow guide pipe 1, which can increase the ability of the light collecting plate 4 to absorb solar energy, thereby improving the energy collection efficiency.

[0036] The above is based on the ideal embodiment of the application, through the above description, relevant personnel can make various changes and modifications without deviating from the technical idea of the application. The technical scope of the application is not limited to the content of the specification, and the technical scope must be determined according to the scope of claims.

Claims

1. A spent liquor treatment system, comprising: The utility model provides a kind of serpentine duct (1), several reaction mechanisms (7) are arranged in the top of the serpentine duct (1), and several light-collecting mechanisms are arranged in the both sides of the serpentine duct (1), it is characterized by; The serpentine duct (1) is: organic glass transparent serpentine pipeline with polymethyl methacrylate as component, the reaction mechanism (7) includes: receiving tank (701), catalyst arranged in the receiving tank (701), several connecting pipes (702) arranged in the circumferential outer wall of the receiving tank, and micro-pore (703) arranged in the bottom of several connecting pipes (702) and penetrates, one end of several connecting pipes (702) is connected with the circumferential outer wall pipeline of receiving tank (701), the other end of several connecting pipes (702) is connected with the circumferential outer wall pipeline of serpentine duct (1); The light-collecting mechanism includes: two mounting frames (2), light-collecting plate (4) arranged between two mounting frames (2), connecting plate (5) arranged at the bottom of light-collecting plate (4), connecting shaft (6) arranged at the both sides of connecting plate (5), and sunlight tracking device (3) arranged at one side of one of mounting frames (2); The serpentine duct (1) is connected with ultrasonic transducer at water inlet end pipeline, the ultraviolet radiation of light-collecting plate (4) refraction is controlled in 20W / m^2-40W / m^2, and the sunlight of light-collecting plate (4) refraction falls at the bottom of serpentine duct (1).

2. The waste fluid treatment system of claim 1, wherein: Two mounting frames (2) are fixedly connected at the both sides of serpentine duct (1) respectively, the bottom of connecting plate (5) is fixedly connected with light-collecting plate (4), two connecting shafts (6) are fixedly connected with the both sides of connecting plate (5) respectively, and two connecting shafts (6) are rotatably connected with the circumferential outer wall of two mounting frames (2) respectively.

3. The waste treatment system of claim 1, wherein: The sunlight tracking device (3) is fixedly installed with the circumferential outer wall of one of mounting frames (2).

4. The waste treatment system of claim 1, wherein: One end of the rotating shaft of sunlight tracking device (3) penetrates mounting frame (2) and is fixedly connected with one end of connecting shaft (6).

5. The waste treatment system of claim 1, wherein: The catalyst is powder titanium dioxide.

Citation Information

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