Lithium bromide circulating water aeration device

By designing a lithium bromide circulating water aeration device, the problems of low efficiency, poor scalability, and the need for manual loading and unloading of existing equipment when used in parallel have been solved, achieving automated processing and improved ease of use.

CN224172629UActive Publication Date: 2026-04-28HENAN JINDADI CHEM IND CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HENAN JINDADI CHEM IND CO LTD
Filing Date
2025-05-19
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

Existing water treatment aeration equipment has low efficiency, poor scalability, requires manual loading and unloading, and is difficult to use when used in parallel in groups.

Method used

A lithium bromide circulating water aeration device was designed, comprising a holding device, a conveying device, an aeration device, a control device, a filtration and adsorption device, and a bromide ion sensor. This device enables automatic loading and unloading and continuous processing, improving the efficiency and scalability of the machine in parallel operation.

Benefits of technology

It improves the efficiency of using machines in parallel groups, enhances the scalability of the machines, and realizes automated loading and unloading and continuous processing, thereby improving the ease of use of the machines.

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Abstract

The utility model relates to the technical field of water treatment aeration equipment, in particular to a lithium bromide circulating water aeration device, which is provided with a containing device, a conveying device and an aeration device to improve the use efficiency of machines in parallel in groups and improve the expansibility of the machines, and is provided with the containing device and the conveying device to automatically feed and discharge materials to the machines, so that the production efficiency is improved, and the production cost is reduced. Raw materials can be conveniently and continuously treated, and the usability of the machine is improved; comprising a containing device; the system further comprises a conveying device, an aeration device, a control device, a filtration and adsorption device and a plurality of bromide ion sensors, the conveying device, the aeration device, the filtration and adsorption device and the bromide ion sensors are all installed on the containing device, and the control device is installed on the conveying device and the aeration device.
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Description

Technical Field

[0001] This utility model relates to the technical field of water treatment aeration equipment, and in particular to a lithium bromide circulating water aeration device. Background Technology

[0002] Lithium bromide chillers are a type of refrigeration unit that can effectively utilize waste heat. The circulating water used in these chillers may carry out small amounts of bromide ions, copper ions, organic impurities, and some solid waste during operation. In order to improve the operating efficiency of the unit and reduce the corrosion of the unit, it is necessary to aerate the circulating water to remove impurities.

[0003] Existing water treatment aeration equipment, such as the Chinese utility model patent CN222821385U, which describes an aeration tank with sludge removal function, represents a class of prior art. Its main structure includes a tank body, an aeration component, and a sludge removal component. The tank body holds biological sludge and sewage, the aeration component aerates the sewage, and the sludge removal component cleans excess sludge from the tank body.

[0004] However, the existing technology and equipment still have the following problems when in use: the existing machines are inefficient when used in parallel in groups, the machines have poor scalability, and the existing machines require workers to manually load and unload materials, lack continuous processing capabilities, and are not easy to use. Utility Model Content

[0005] To solve the above-mentioned technical problems, this utility model provides a lithium bromide circulating water aeration device that improves the efficiency of parallel use of machines by setting 01, 02 and 03, enhances the machine's expandability, and automatically loads and unloads materials by setting 01 and 02, facilitating continuous processing of raw materials and improving the machine's usability.

[0006] This utility model discloses a lithium bromide circulating water aeration device, including a holding device; it also includes a conveying device, an aeration device, a control device, a filtration and adsorption device, and multiple bromide ion sensors. The conveying device, aeration device, filtration and adsorption device, and multiple bromide ion sensors are all installed on the holding device, and the control device is installed on the conveying device and the aeration device. The holding device holds sewage and biological sludge and automatically discharges purified water. The conveying device transports sewage and biological sludge. The aeration device aerates the sewage in the holding device. The control device automatically controls the conveying device and the aeration device. The filtration and adsorption device prevents sludge from rising and adsorbs various impurities and wastes in the purified water. The bromide ion sensors detect bromide ions in the purified water.

[0007] Preferably, the holding device includes multiple aeration tanks and a baffle plate. The multiple aeration tanks are connected and fixed together in sequence. Multiple sewage passage holes and multiple aeration holes are respectively provided on the left and right sides of the aeration tank. The baffle plate is installed at the rear end of the last aeration tank. The aeration tank holds sewage and biological sludge and automatically discharges clean water from the top. The baffle plate guides the clean water in the aeration tank.

[0008] Preferably, the conveying device includes multiple pipes, baffles, and multiple sets of pipes. The multiple pipes are installed in the middle of multiple aeration tanks, the baffles are installed at the rear end of the pipes, and the multiple sets of pipes are installed in multiple sets of sludge passages in the multiple pipes and the multiple aeration tanks. The pipes and pipes work together to convey sewage into the aeration tanks and discharge biological sludge when there is excess biological sludge in the aeration tanks.

[0009] Preferably, the aeration device includes multiple sets of pipes three, two baffles three, multiple sets of pipes four, multiple sets of pipes five, and multiple sets of nozzles. The multiple sets of pipes three are connected to multiple sets of aeration holes in multiple aeration tanks through multiple sets of pipes four. The two baffles three are respectively installed at the rear end of the last set of pipes three. The multiple sets of pipes five are respectively installed on the multiple sets of pipes four. The multiple sets of nozzles are respectively installed at the bottom end of the multiple sets of pipes five. Pipes three and four transmit air, and pipes five and nozzles cooperate to perform aeration treatment inside the aeration tank.

[0010] Preferably, the control device includes multiple sets of electric valve one, multiple sets of flow valve one, multiple sets of electric valve two, and multiple sets of flow valve two. The multiple sets of electric valve one and multiple sets of flow valve one are respectively installed on multiple sets of pipe two, and the multiple sets of electric valve two and multiple sets of flow valve two are respectively installed on multiple sets of pipe four. The electric valve one closes pipe two, the flow valve one restricts the flow of sewage and biological sludge, the electric valve two closes pipe four, and the flow valve two restricts the flow of air.

[0011] Preferably, the filtration and adsorption device includes multiple sets of filter plates and multiple sets of activated carbon filter boxes. The multiple sets of filter plates are respectively installed on multiple aeration tanks, and the multiple sets of activated carbon filter boxes are respectively installed on the top of the multiple sets of filter plates. Each set of activated carbon filter boxes is also provided with a handle on its top. The small-volume activated carbon filter boxes with handles are easy to replace. The filter plates can prevent biological sludge from floating into the purified water, and the activated carbon filter boxes can adsorb various impurities and wastes in the purified water.

[0012] Preferably, the multiple bromide ion sensors are respectively installed on the top of multiple aeration tanks; the bromide ion sensors measure the bromide ion concentration in the purified water to prevent high-bromine wastewater from being directly recycled and to extend the service life of the machine.

[0013] Compared with the prior art, the advantages of this utility model are: it improves the efficiency of using machines in parallel, has good machine expandability, can automatically load and unload materials, facilitates continuous processing of raw materials, and has good machine usability. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the isometric structure of this utility model;

[0015] Figure 2 This is an isometric structural diagram of the holding device;

[0016] Figure 3 This is a schematic diagram of the isometric cross-sectional structure of the conveying device;

[0017] Figure 4 This is a schematic diagram of the isometric cross-sectional structure of the aeration device;

[0018] Figure 5 This is an isometric structural diagram of the control device;

[0019] Figure 6 This is a schematic diagram of the isometric cross-sectional structure of the filtration and adsorption device;

[0020] Figure 7 This is a schematic diagram of the isometric cross-sectional structure of the bromide ion sensor.

[0021] The attached diagram is labeled as follows: 01, holding device; 11, aeration tank; 12, baffle one; 02, conveying device; 21, pipe one; 22, baffle two; 23, pipe two; 03, aeration device; 31, pipe three; 32, baffle three; 33, pipe four; 34, pipe five; 35, nozzle; 04, control device; 41, electric valve one; 42, flow valve one; 43, electric valve two; 44, flow valve two; 05, filtration and adsorption device; 51, filter plate; 52, activated carbon filter box; 06, bromide ion sensor. Detailed Implementation

[0022] To facilitate understanding of this utility model, a more complete description will be given below with reference to the accompanying drawings. This utility model can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to make the disclosure of this utility model more thorough and complete.

[0023] Example 1

[0024] like Figure 1As shown, the system includes a holding device 01; it also includes a conveying device 02, an aeration device 03, a control device 04, a filtration and adsorption device 05, and multiple bromide ion sensors 06. The conveying device 02, aeration device 03, filtration and adsorption device 05, and multiple bromide ion sensors 06 are all installed on the holding device 01, and the control device 04 is installed on the conveying device 02 and the aeration device 03. The holding device 01 holds sewage and biological sludge and automatically discharges clean water. The conveying device 02 transports sewage and biological sludge. The aeration device 03 aerates the sewage in the holding device 01. The control device 04 automatically controls the conveying device 02 and the aeration device 03. The filtration and adsorption device 05 prevents sludge from rising and adsorbs various impurities and wastes in the clean water. The bromide ion sensors 06 detect bromide ions in the clean water.

[0025] like Figure 2 As shown, the holding device 01 includes multiple aeration tanks 11 and baffle 12. The multiple aeration tanks 11 are connected and fixed together in sequence. Multiple sewage passage holes and multiple aeration holes are respectively provided on the left and right sides of the aeration tank 11. The baffle 12 is installed at the rear end of the last aeration tank 11.

[0026] like Figure 3 As shown, the conveying device 02 includes multiple pipes 21, baffles 22 and multiple sets of pipes 23. The multiple pipes 21 are installed in the middle of multiple aeration tanks 11, the baffles 22 are installed at the rear end of the pipes 21, and the multiple sets of pipes 23 are installed in the multiple pipes 21 and multiple sets of sludge passage holes of the multiple aeration tanks 11.

[0027] like Figure 4 As shown, the aeration device 03 includes multiple sets of pipes 31, two baffles 32, multiple sets of pipes 43, multiple sets of pipes 534, and multiple sets of nozzles 35. The multiple sets of pipes 31 are connected and installed in multiple sets of aeration holes in multiple aeration tanks 11 through multiple sets of pipes 43. The two baffles 32 are installed at the rear end of the last set of pipes 31. The multiple sets of pipes 534 are installed on the multiple sets of pipes 433. The multiple sets of nozzles 35 are installed at the bottom end of the multiple sets of pipes 534.

[0028] like Figure 5 As shown, the control device 04 includes multiple sets of electric valve 1 41, multiple sets of flow valve 1 42, multiple sets of electric valve 2 43 and multiple sets of flow valve 2 44. The multiple sets of electric valve 1 41 and multiple sets of flow valve 1 42 are respectively installed on multiple sets of pipe 2 23, and the multiple sets of electric valve 2 43 and multiple sets of flow valve 2 44 are respectively installed on multiple sets of pipe 4 33.

[0029] like Figure 6As shown, the filtration and adsorption device 05 includes multiple sets of filter plates 51 and multiple sets of activated carbon filter boxes 52. The multiple sets of filter plates 51 are respectively installed on multiple aeration tanks 11, and the multiple sets of activated carbon filter boxes 52 are respectively installed on the top of the multiple sets of filter plates 51. Each set of activated carbon filter boxes 52 is also provided with a handle at the top.

[0030] First, biological sludge is poured into aeration tank 11. Then, wastewater is introduced into pipe 21. Electric valve 41 closes pipe 23. Flow valve 42 restricts the flow of wastewater and biological sludge. Pipes 21 and 23 work together to transport the wastewater into aeration tank 11, which holds the wastewater. Simultaneously, air is introduced into pipe 31. Pipes 31 and 43 transmit air. Electric valve 43 closes pipe 33. Valve 2 44 restricts the flow of air. Pipe 5 34 and nozzle 35 work together to aerate the inside of aeration tank 11. The treated water floats to the top. Filter plate 51 prevents biological sludge from floating into the water. Activated carbon filter box 52 adsorbs various impurities and wastes in the water. The small-volume activated carbon filter box 52 with a handle is easy to replace. When the biological sludge inside aeration tank 11 is excessive, disconnecting the input to pipe 1 21 will allow the biological sludge to be automatically discharged from pipe 1 21.

[0031] Example 2

[0032] In addition to Example 1, it also includes:

[0033] like Figure 7 As shown, the plurality of bromide ion sensors 06 are respectively installed on the top of the plurality of aeration tanks 11;

[0034] First, biological sludge is poured into aeration tank 11. Then, wastewater is introduced into pipe 21. Electric valve 41 closes pipe 23. Flow valve 42 restricts the flow of wastewater and biological sludge. Pipes 21 and 23 work together to transport the wastewater into aeration tank 11, which holds the wastewater. Simultaneously, air is introduced into pipe 31. Pipes 31 and 43 transmit air. Electric valve 43 closes pipe 43. Flow valve 44 restricts the flow of air. Pipe 34... In conjunction with nozzle 35, the aeration tank 11 is aerated, and the treated water floats to the top. Filter plate 51 prevents biological sludge from floating into the water. Activated carbon filter box 52 adsorbs various impurities and wastes in the water. The small-sized activated carbon filter box 52 with a handle is easy to replace. When the biological sludge inside the aeration tank 11 is excessive, disconnecting the input to pipe 21 will allow the biological sludge to be automatically discharged from pipe 21. Bromine ion sensor 06 measures the bromide ion concentration in the water to prevent high-bromine wastewater from being directly recycled, thus extending the machine's service life.

[0035] like Figures 1 to 7 As shown, this utility model discloses a lithium bromide circulating water aeration device. During operation, biological sludge is first poured into the aeration tank 11. Then, wastewater is introduced into pipe 21. Electric valve 41 closes pipe 23, and flow valve 42 restricts the flow of wastewater and biological sludge. Pipes 21 and 23 work together to transport the wastewater into the aeration tank 11, which holds the wastewater. Simultaneously, air is introduced into pipe 31. Pipes 31 and 43 transmit the air. Electric valve 43 closes pipe 33, and flow valve 44 restricts the flow of air. The air flow is limited, and the pipe 34 and nozzle 35 work together to aerate the inside of the aeration tank 11. The treated water floats to the top. The filter plate 51 can prevent biological sludge from floating into the water. The activated carbon filter box 52 can adsorb various impurities and wastes in the water. The small-volume activated carbon filter box 52 with a handle is easy to replace. When the biological sludge inside the aeration tank 11 is excessive, the input to the pipe 21 is disconnected, and the biological sludge can be automatically discharged from the pipe 21. The bromide ion sensor 06 measures the bromide ion concentration in the water to prevent high-bromine wastewater from being directly recycled and to extend the service life of the machine.

[0036] The multiple sets of electric valves 41, 42, 43, 44, and 06 of this utility model are commercially available. Technical personnel in this industry only need to install and operate them according to the accompanying instruction manuals, without requiring any creative work from those skilled in the art.

[0037] The main functions achieved by this utility model are: by setting up a holding device 01, a conveying device 02, and an aeration device 03, the efficiency of the machines used in parallel in groups is improved, the scalability of the machines is enhanced, and by setting up a holding device 01 and a conveying device 02, the machines are automatically loaded and unloaded, facilitating continuous processing of raw materials and improving the ease of use of the machines; it solves the existing technical problems of low efficiency and poor scalability of existing machines when used in parallel in groups, and the existing machines require manual loading and unloading by workers, lacking continuous processing capabilities and having poor ease of use.

[0038] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.

Claims

1. A lithium bromide circulating water aeration device, comprising a holding device (01); characterized in that, It also includes a conveying device (02), an aeration device (03), a control device (04), a filtration and adsorption device (05), and multiple bromide ion sensors (06). The conveying device (02), the aeration device (03), the filtration and adsorption device (05), and the multiple bromide ion sensors (06) are all installed on the holding device (01), and the control device (04) is installed on the conveying device (02) and the aeration device (03). The holding device (01) holds the sewage and biological sludge and automatically discharges the purified water. The conveying device (02) transports the sewage and biological sludge. The aeration device (03) aerates the sewage in the holding device (01). The control device (04) automatically controls the conveying device (02) and the aeration device (03). The filtration and adsorption device (05) prevents the sludge from rising and adsorbs various impurities and wastes in the purified water. The bromide ion sensors (06) detect the bromide ions in the purified water.

2. The lithium bromide circulating water aeration device as described in claim 1, characterized in that, The holding device (01) includes multiple aeration tanks (11) and baffle one (12). The multiple aeration tanks (11) are connected and fixed together in sequence. Multiple sewage holes and multiple aeration holes are respectively provided on the left and right sides inside the aeration tank (11). Baffle one (12) is installed at the rear end of the last aeration tank (11).

3. The lithium bromide circulating water aeration device as described in claim 2, characterized in that, The conveying device (02) includes multiple pipes (21), baffles (22) and multiple sets of pipes (23). The multiple pipes (21) are installed in the middle of multiple aeration tanks (11), the baffles (22) are installed at the rear end of the pipes (21), and the multiple sets of pipes (23) are installed in multiple sets of sewage passage holes of the multiple pipes (21) and multiple aeration tanks (11).

4. The lithium bromide circulating water aeration device as described in claim 2, characterized in that, The aeration device (03) includes multiple sets of pipes three (31), two baffles three (32), multiple sets of pipes four (33), multiple sets of pipes five (34), and multiple sets of nozzles (35). The multiple sets of pipes three (31) are connected to multiple sets of aeration holes in multiple aeration tanks (11) through multiple sets of pipes four (33). The two baffles three (32) are installed at the rear end of the last set of pipes three (31). The multiple sets of pipes five (34) are installed on the multiple sets of pipes four (33). The multiple sets of nozzles (35) are installed at the bottom end of the multiple sets of pipes five (34).

5. The lithium bromide circulating water aeration device as described in claim 4, characterized in that, The control device (04) includes multiple sets of electric valve one (41), multiple sets of flow valve one (42), multiple sets of electric valve two (43) and multiple sets of flow valve two (44). Multiple sets of electric valve one (41) and multiple sets of flow valve one (42) are respectively installed on multiple sets of pipe two (23), and multiple sets of electric valve two (43) and multiple sets of flow valve two (44) are respectively installed on multiple sets of pipe four (33).

6. The lithium bromide circulating water aeration device as described in claim 2, characterized in that, The filtration and adsorption device (05) includes multiple sets of filter plates (51) and multiple sets of activated carbon filter boxes (52). The multiple sets of filter plates (51) are respectively installed on multiple aeration tanks (11), and the multiple sets of activated carbon filter boxes (52) are respectively installed on the top of the multiple sets of filter plates (51). The top of the multiple sets of activated carbon filter boxes (52) is also provided with handles.

7. The lithium bromide circulating water aeration device as described in claim 2, characterized in that, The multiple bromide ion sensors (06) are respectively installed on the top of multiple aeration tanks (11).

Citation Information

Patent Citations

  • Aeration tank with desilting function

    CN222821385U