Water treatment equipment combined with ultraviolet sterilization function
By combining ultraviolet sterilization with water treatment equipment, the problem of poor sterilization effect of water treatment equipment against bacteria and viruses is solved. It achieves efficient sterilization and real-time monitoring, ensuring water quality safety, and has the characteristics of multi-functionality and environmental protection.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-14
- Publication Date
- 2026-03-13
AI Technical Summary
Existing water treatment equipment is not very effective against bacteria, viruses and other microorganisms in terms of sterilization and disinfection, and traditional disinfection methods may produce harmful byproducts, posing safety hazards.
A water treatment device combining ultraviolet sterilization function was designed, including ultraviolet lamp group, water quality sensor, PLC controller and alarm device. By monitoring water quality in real time and issuing alarm in abnormal situation, it can achieve efficient sterilization and real-time monitoring in conjunction with mobile structure and solar power supply system.
It achieves highly efficient ultraviolet sterilization treatment of water bodies, and provides real-time monitoring and early warning of water flow status and water quality parameters to ensure water safety, reduce dependence on external power sources, and has multifunctional and environmentally friendly features.
Smart Images

Figure CN223990961U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the technical field of water treatment equipment, specifically a water treatment device that combines ultraviolet sterilization function. Background Technology
[0002] In the field of water treatment, ensuring water safety and cleanliness is paramount. Current water treatment equipment primarily removes impurities and harmful substances from water through physical and chemical methods such as filtration, sedimentation, and adsorption. However, these traditional water treatment methods have limitations in sterilization and disinfection, especially when facing microbial contamination, where their effectiveness is insufficient. While existing water treatment equipment can remove most large particulate impurities and some pollutants, its effectiveness in killing bacteria, viruses, and other microorganisms is poor, potentially leaving safety hazards. Furthermore, traditional disinfection methods such as chlorine disinfection may produce harmful byproducts, adversely affecting the environment and human health. Therefore, developing a water treatment device that combines highly efficient sterilization functions to ensure a safer and more reliable water treatment process has significant practical importance and application value. Utility Model Content
[0003] The purpose of this utility model is to provide a water treatment device that combines ultraviolet sterilization function, solving the technical problem of how to efficiently sterilize and achieve real-time water quality monitoring during the water treatment process, and has comprehensive technical effects. A water treatment device combining ultraviolet sterilization function includes a support frame 1 respectively installed on both sides of the water treatment tank, and a slide rail 1 with its two ends perpendicularly connected to one side of each of the two support frames. A movable structure 2 is slidably installed on the slide rail 1, the movable structure 2 including a movable platform 1 movable on the slide rail 1, an ultraviolet lamp group and a water quality sensor installed on the movable platform 1, the ultraviolet lamp group being connected to a control module, the control module containing an analysis program, the control module being connected to a PLC controller, the PLC controller being connected to an alarm device; the ultraviolet lamp group being connected to a water flow control circuit.
[0004] The mobile platform includes a horizontally set base plate, a drive wheel set at the bottom of the base plate, several supports set on the upper surface of the base plate, a solar panel set horizontally at the top of the supports, and solar panels set vertically at both ends of the solar panels. The solar panels are set between two slide rails, and the drive wheel is set on the slide rail.
[0005] It also includes two support frames respectively installed on both sides of the water treatment tank, two slide rails respectively connected vertically to the sides of the two support frames, and a moving structure installed on the slide rails. The moving structure is equipped with a signal acquisition system, which is connected to the control module or alarm device.
[0006] The signal acquisition system includes a flow rate detector installed on the moving structure. The flow rate detector is connected to the alarm device via a PLC controller and a data cable.
[0007] The signal acquisition system also includes a camera and a wireless transmission module installed on the first mobile structure. The camera is connected to the wireless transmission module, which transmits wireless signals to the wireless receiving module. The wireless receiving module is installed on the second mobile structure and is connected to the control module. Through its internal analysis program, it compares the signal with pre-stored benchmark water quality parameters.
[0008] The movable structure includes a horizontally arranged base plate, a drive wheel at the bottom of the base plate, a support frame at the top of the base plate, and a solar panel at the top of the support frame. The drive wheel is movably mounted on a slide rail.
[0009] The slide rail 1 has a horizontally arranged wire groove 1 on its side, and the slide rail 2 has a horizontally arranged wire groove 2 on its side. Both wire groove 1 and wire groove 2 are groove-shaped structures, and the two ends of the data cable pass through wire groove 1 and wire groove 2 respectively.
[0010] This utility model achieves the following significant effects:
[0011] (1) The ultraviolet lamp group, water quality sensor, control module and PLC controller set in this scheme are used to sterilize the water when the water flows through the water treatment tank. At the same time, the water quality sensor collects water quality data in real time and compares it with the preset parameters in the control module. If the water quality does not meet the standard, the PLC controller will trigger the alarm device to remind the operator to take measures.
[0012] (2) A flow rate detector is installed on the mobile structure. The flow rate detector is connected to the alarm device through the PLC controller. The flow rate detector is connected to the PLC controller through a data cable. The water flow first passes under the mobile structure and the flow rate detector obtains the water flow speed. When the water flow speed exceeds the set value, the PLC controller controls the alarm device to issue an alarm, thereby providing early warning for the water treatment process and avoiding the flow rate from being too fast and affecting the sterilization effect. This plays an important role in improving the efficiency of water treatment.
[0013] (3) It is equipped with a wireless transmission module and a wireless receiving module. The real-time water flow status image captured is sent to the wireless receiving module through the wireless transmission module. The wireless receiving module is connected to the control module. Through its internal analysis program, it compares the water quality with the pre-stored reference water quality parameters. When the detected water quality parameters deviate significantly from the reference parameters, the PLC controller adjusts the movement of the drive wheel two in the moving structure two (at the same time, the PLC controller controls the alarm device to work) and moves the moving structure two to the water quality abnormal area. In this process, it helps to strengthen the monitoring of the water treatment process and ensure water quality safety.
[0014] (4) This scheme designs a water treatment equipment that can not only perform efficient ultraviolet sterilization on water bodies, but also monitor and warn of water flow status and water quality parameters in real time, and has multi-functional technical effects. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the overall structure of the water treatment equipment in this embodiment of the present invention.
[0016] Figure 2 This is a side view of the water treatment equipment in an embodiment of this utility model.
[0017] Figure 3 This is a schematic diagram of the second movable structure in an embodiment of this utility model.
[0018] The attached diagram is labeled as follows: 1. Water treatment tank; 2. Support frame one; 3. Slide rail one; 4. Moving platform one; 41. Base plate two; 42. Drive wheel two; 43. Bracket two; 44. Solar panel two; 45. Solar panel three; 5. Ultraviolet lamp group; 6. Water quality sensor; 7. Control module; 8. PLC controller; 9. Alarm device; 10. Support frame two; 11. Slide rail two; 12. Moving structure one; 121. Base plate one; 122. Drive wheel one; 123. Bracket one; 124. Solar panel one; 13. Flow rate detector; 14. Camera; 15. Wireless transmission module; 16. Wireless receiving module; 17. Cable tray one; 18. Cable tray two. Detailed Implementation
[0019] This utility model provides a water treatment device that combines ultraviolet sterilization function, the structure of which is as follows: Figures 1 to 3As shown, the system includes a water treatment tank 1, a support frame 2, a slide rail 3, a moving structure 2, an ultraviolet lamp group 5, a water quality sensor 6, a control module 7, a PLC controller 8, an alarm device 9, a support frame 2 10, a slide rail 2 11, a moving structure 12, a flow rate detector 13, a camera 14, a wireless transmission module 15, a wireless receiving module 16, a cable tray 17, a cable tray 2 18, and a data cable. The specific embodiments of this utility model will be described in detail below with reference to the accompanying drawings.
[0020] like Figure 1 As shown, water treatment tank 1 is the core area of the entire equipment, used to contain the water to be treated. Support frame 1 (2) and support frame 2 (10) are respectively installed on both sides of water treatment tank 1, with a distance greater than 50 meters between them to ensure the equipment can adapt to large-scale water treatment needs. A slide rail 1 (3) is vertically connected to the side of support frame 1 (2), and a moving structure 2 is slidably mounted on slide rail 1 (3). A slide rail 2 (11) is vertically connected to the side of support frame 2 (10), and a moving structure 12 is slidably mounted on slide rail 2 (11). Both slide rail 1 (3) and slide rail 2 (11) are horizontally arranged elongated guide rails used to guide the movement of moving structures 12 (12) and 2 (11).
[0021] The specific structure of the second moving structure is as follows: Figure 3 As shown, the system includes a mobile platform 4, an ultraviolet lamp assembly 5, a water quality sensor 6, a second solar panel 44, and a third solar panel 45. The mobile platform 4 consists of a base plate 41, drive wheels 42, and supports 43. The base plate 41 is a horizontally positioned rectangular plate with drive wheels 42 mounted at its bottom. The drive wheels 42 contact slide rails 3 and can slide freely on them. Several supports 43 are fixed to the upper surface of the base plate 41. Solar panels 44 are horizontally mounted at the top of each support 43, and third solar panels 45 are vertically mounted at both ends of each solar panel 44. The third solar panels 45 are located between two slide rails 3 and are used to absorb sunlight and convert light energy into electrical energy to power the equipment on the mobile platform. The ultraviolet lamp assembly 5 and the water quality sensor 6 are both mounted on the mobile platform 4. The ultraviolet lamp assembly 5 is connected to the power supply through a water flow control circuit and is used for sterilizing the water. Water quality sensor 6 is connected to control module 7 to collect various parameters in the water body in real time, such as pH value, turbidity, dissolved oxygen concentration, etc., and transmit the collected data to control module 7 for analysis.
[0022] The control module 7 contains an analysis program that stores baseline water quality parameters. When the real-time data collected by the water quality sensor 6 is compared with the baseline parameters, if the water quality is found to be substandard, the control module 7 sends a signal to the PLC controller 8. Upon receiving the signal, the PLC controller 8 triggers the alarm device 9 to issue an alarm, reminding the operator to take appropriate measures. Furthermore, the PLC controller 8 can adjust the movement state of the moving structure 2 according to abnormal water quality conditions, moving the moving platform 4 to the area of abnormal water quality, further enhancing the monitoring of the water treatment process.
[0023] The specific structure of the movable structure 12 is as follows: Figure 2 As shown, the structure includes a base plate 121, a drive wheel 122, a bracket 123, and a solar panel 124. The base plate 121 is a horizontally positioned rectangular plate with the drive wheel 122 mounted at its bottom. The drive wheel 122 contacts the slide rail 11 and can slide freely on it. The bracket 123 is fixed to the upper surface of the base plate 121, and the solar panel 124 is horizontally mounted at the top of the bracket 123 to power the equipment on the mobile structure 12. The mobile structure 12 also includes a signal acquisition system, which comprises a flow rate detector 13, a camera 14, and a wireless transmission module 15. The flow rate detector 13 is connected to the PLC controller 8 via a data cable and is used to detect the water flow velocity. When the water flows under the mobile structure 12, the flow rate detector 13 acquires the water flow velocity information and transmits the information to the PLC controller 8. If the water flow rate exceeds the set value, the PLC controller 8 will trigger the alarm device 9 to issue an alarm, thereby providing early warning for the water treatment process and preventing the sterilization effect from being affected by excessive flow rate. The camera 14 is used to capture real-time images of the water flow status, and the wireless transmission module 15 transmits the captured images to the wireless receiving module 16 via wireless signal. The wireless receiving module 16 is mounted on the mobile structure 2 and connected to the control module 7. The control module 7 compares the received image information with pre-stored benchmark water quality parameters through its internal analysis program. If a large deviation in water quality parameters is found, the PLC controller 8 adjusts the movement state of the mobile structure 2, causing the mobile platform 4 to move to the area of abnormal water quality, and simultaneously triggers the alarm device 9.
[0024] To facilitate the arrangement of data cables, a horizontal cable groove 17 is provided on the side of slide rail 11, and a horizontal cable groove 18 is provided on the side of slide rail 21. Both cable groove 17 and cable groove 18 are groove-shaped structures, and the two ends of the data cable pass through cable groove 17 and cable groove 18 respectively, thereby realizing data transmission between the signal acquisition system and the control module 7.
[0025] In practical applications, the working principle of this invention is as follows: First, the water to be treated flows into the water treatment tank 1, and the water flow first passes under the moving structure 12. At this time, the flow velocity detector 13 detects the water flow velocity and transmits the detection result to the PLC controller 8 via a data cable. If the water flow velocity exceeds the set value, the PLC controller 8 will trigger the alarm device 9 to issue an alarm, reminding the operator to adjust the water flow velocity. At the same time, the camera 14 captures a real-time image of the water flow status, and the wireless transmission module 15 sends the image information to the wireless receiving module 16. The wireless receiving module 16 transmits the received image information to the control module 7, and the control module 7 compares the image information with the pre-stored benchmark water quality parameters through its internal analysis program. If a large deviation in the water quality parameters is found, the PLC controller 8 will adjust the movement state of the moving structure 12, causing the moving platform 4 to move to the water quality abnormality area and triggering the alarm device 9 to work.
[0026] Subsequently, the water continues to flow and passes beneath the second moving structure. At this time, the ultraviolet lamp group 5 sterilizes the water, while the water quality sensor 6 collects various parameters in the water in real time and transmits the collected data to the control module 7. The control module 7 compares the collected data with pre-stored benchmark water quality parameters through its internal analysis program. If the water quality is found to be substandard, the PLC controller 8 will trigger the alarm device 9 to issue an alarm, reminding the operator to take appropriate measures. Furthermore, the PLC controller 8 can also adjust the movement state of the second moving structure according to abnormal water quality conditions, moving the first moving platform 4 to the area of abnormal water quality, further enhancing the monitoring of the water treatment process.
[0027] Throughout the water treatment process, solar panels 124, 44, and 45 provide clean energy for the equipment, reducing dependence on external power sources and improving the equipment's environmental friendliness and economy. Meanwhile, the design of slide rails 3 and 11 allows moving structures 12 and 2 to move freely above the water treatment tank 1, enabling comprehensive monitoring and treatment of the water.
[0028] In summary, this utility model, by incorporating an ultraviolet lamp group 5, a water quality sensor 6, a control module 7, a PLC controller 8, an alarm device 9, a flow rate detector 13, a camera 14, a wireless transmission module 15, and a wireless receiving module 16, not only enables highly efficient ultraviolet sterilization of water bodies but also provides real-time monitoring and early warning of water flow status and water quality parameters, offering multifunctional technical benefits. Furthermore, the equipment is powered by solar energy, making it energy-saving and environmentally friendly, and suitable for water treatment scenarios of various scales.
[0029] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A water treatment device combined with ultraviolet sterilization function, comprising a support frame one (2) arranged on both sides of a water treatment tank (1) respectively, and a slide rail one (3) vertically connected with the side of the two support frames one (2) respectively at both ends, characterized in that, The sliding rail one (3) is provided with a moving structure two, the moving structure two includes a moving platform one (4) movingly arranged on the sliding rail one (3), a ultraviolet lamp group (5) arranged on the moving platform one (4) and a water quality sensor (6), the ultraviolet lamp group (5) is connected with a control module (7), the control module (7) is provided with an analysis program, the control module (7) is connected with a PLC controller (8), the PLC controller (8) is connected with an alarm device (9), and the ultraviolet lamp group (5) is connected with a water flow control circuit.
2. The water treatment apparatus of claim 1, wherein, The moving platform one (4) includes a horizontally arranged bottom plate two (41), a drive wheel two (42) arranged at the bottom end of the bottom plate two (41), a plurality of supports two (43) arranged on the upper end face of the bottom plate two (41), a solar cell panel two (44) horizontally arranged at the top end of the plurality of supports two (43), and a solar cell panel three (45) vertically arranged at the two ends of the solar cell panel two (44) respectively, the solar cell panel three (45) is arranged between the two sliding rails one (3), and the drive wheel two (42) is arranged on the sliding rail one (3).
3. The water treatment device of claim 1, wherein, It also includes a support frame two (10) arranged on the two sides of the water treatment tank (1), a sliding rail two (11) vertically connected with the side portions of the two support frames two (10) at the two ends respectively, and a moving structure one (12) arranged on the sliding rail two (11), wherein the moving structure one (12) is provided with a signal acquisition system, and the signal acquisition system is connected with the control module (7) or the alarm device (9).
4. The water treatment apparatus of claim 3, wherein The signal acquisition system includes a flow rate detector (13) arranged on the moving structure one (12), the flow rate detector (13) is connected with the alarm device (9) through the PLC controller (8), and the flow rate detector (13) is connected with the PLC controller (8) through a data line.
5. The water treatment apparatus of claim 4, wherein, The signal acquisition system also includes a camera (14) and a wireless transmission module (15) arranged on the moving structure one (12), the camera (14) is connected with the wireless transmission module (15), the wireless transmission module (15) emits wireless signals to a wireless receiving module (16), the wireless receiving module (16) is arranged on the moving structure two, and the wireless receiving module (16) is connected with the control module (7).
6. The water treatment device of claim 3, wherein, The moving structure one (12) includes a horizontally arranged bottom plate one (121), a drive wheel one (122) arranged at the bottom end of the bottom plate one (121), a support one (123) vertically arranged on the upper end face of the bottom plate one (121), and a solar cell panel one (124) horizontally arranged at the top end of the support one (123), and the drive wheel one (122) is movably arranged on the sliding rail two (11).
7. The water treatment device of claim 4, wherein, The side of the slide rail one (3) is horizontally provided with a wire slot one (17), and the side of the slide rail two (11) is horizontally provided with a wire slot two (18), both of which are groove structures, and both ends of the data line respectively pass through the wire slot one (17) and the wire slot two (18).
8. The water treatment device of claim 1, wherein, The control module (7) compares the data collected by the water quality sensor (6) with the pre-stored reference water quality parameters through an internal analysis program, and adjusts the motion state of the second moving structure through the PLC controller (8) according to the comparison result.