Boiler wastewater treatment equipment and use method thereof

By introducing a combination of an electric motor-driven transmission rod and a permanent magnet into boiler wastewater treatment equipment, the problem of existing equipment being unable to absorb fine iron filings was solved. This enabled efficient recovery of metal debris and multiple filtration and purification of wastewater, improving the treatment effect and user experience of the equipment.

CN120647056APending Publication Date: 2025-09-16FUZHOU ZHUONENG TECH CO LTD
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Patent Information

Application Number
CN202510797499.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-16
Publication Date
2025-09-16

AI Technical Summary

Technical Problem

Existing boiler wastewater treatment equipment lacks adsorption auxiliary components and cannot effectively adsorb small iron filings in the wastewater, affecting the recovery and treatment of metal substances.

Method used

A transmission rod driven by a first motor and a permanent magnet combination are used to magnetically absorb metal debris in the wastewater; a waterproof ultraviolet lamp is used for disinfection, and multiple filtration and purification are carried out through the use of multiple filter layers and water purifiers.

Benefits of technology

It achieves efficient recovery and purification of metal debris in wastewater, improves the effect of wastewater treatment, and ensures the subsequent water quality and equipment usage experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides boiler wastewater treatment equipment and a using method thereof, and belongs to the technical field of boiler wastewater treatment.The boiler wastewater treatment equipment comprises a first treatment shell and a second treatment shell, the bottom of the first treatment shell is in bolted connection with the second treatment shell, and the bottom of the second treatment shell is in bolted connection with a third treatment shell; a first filter layer is fixedly connected to the inner side of the first treatment shell, a second filter layer is fixedly connected to the inner side of the second treatment shell, and a third filter layer is fixedly connected to the inner side of the third treatment shell. According to the shielding cover, the first motor, the transmission rod and the permanent magnet are additionally arranged, the first motor transmits rotating force into the transmission rod through the electromagnetic effect, at the moment, the transmission rod drives the permanent magnet to rotate, the contact face of the permanent magnet and waste water is increased, and metal scraps in the waste water are adsorbed through magnetic force; and subsequent recovery of the metal scraps is facilitated.
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Description

Technical Field

[0001] The present invention belongs to the technical field of boiler wastewater treatment, and in particular relates to boiler wastewater treatment equipment and a use method thereof. Background Art

[0002] As a commonly used heating component in modern times, boilers often have a large amount of pollutants deposited in the wastewater after being used for a period of time, which leads to a decrease in the thermal conductivity of the boiler water, thereby affecting the subsequent use of the boiler. At this time, the boiler water needs to be replaced. In order to reduce the pollution to the external environment, the replaced boiler wastewater needs to be treated. However, the existing boiler wastewater treatment equipment lacks adsorption auxiliary components. During the use of the wastewater treatment equipment, it is unable to adsorb the fine iron filings in the wastewater, affecting the subsequent recovery of metal substances in the wastewater, and thus affecting the user experience of the wastewater treatment equipment. Summary of the Invention

[0003] In order to achieve the above object, the present invention adopts the following technical solutions:

[0004] A boiler wastewater treatment device and a method for using the same include a first treatment shell and a second treatment shell, the bottom of the first treatment shell being bolted to the second treatment shell, the bottom of the second treatment shell being bolted to the third treatment shell, the inner side of the first treatment shell being fixedly connected to a first filter layer, the inner side of the second treatment shell being fixedly connected to a second filter layer, the inner side of the third treatment shell being fixedly connected to a third filter layer, the bottom of the first treatment shell being penetrated by a first flow guide pipe, the outer surface of the first flow guide pipe being penetrated by a first electric throttle valve, the bottom of the second treatment shell being penetrated by a second flow guide pipe, the outer surface of the second guide pipe being penetrated by a second electric throttle valve, the bottom of the third treatment shell being fixedly connected to a first delivery pump, the output end of the first delivery pump being fixedly connected to an output pipe, the top of the output pipe being penetrated by a manual throttle valve, the top of the first treatment shell being threadedly connected to a shielding cover, the top of the shielding cover being penetrated by a feed pipe.

[0005] Preferably, a first motor is fixedly connected to the top of the shielding cover, and the first motor is located on the inner side of the feed pipe. The output end of the first motor is fixedly connected to a transmission rod, and the tail end of the transmission rod is bolted to a permanent magnet, and four permanent magnets are provided.

[0006] Preferably, a pressure relief head is connected through the top of the shielding cover, four pressure relief heads are provided, and the pressure relief heads are located on the outside of the feed pipe.

[0007] Preferably, a viewing window is embedded in the front of the first processing shell.

[0008] Preferably, a pH detector is connected through the front of the second processing shell, a second motor is fixedly connected to both sides of the second processing shell, and the output end of the second motor extends to the inner side of the second processing shell, and a stirring head is fixedly connected to the output end of the second motor.

[0009] Preferably, a storage box is fixedly connected to the back of the second processing shell, a liquid inlet pipe is connected through the top of the storage box, a second delivery pump is provided on the back of the storage box, and the output end of the second delivery pump extends to the inner side of the second processing shell, and a timing reversing switch is fixedly connected to the back of the storage box, and the timing reversing switch is located above the second delivery pump.

[0010] Preferably, the bottom of the third processing shell is fixed with supporting feet, four supporting feet are provided, and the supporting feet are located outside the first delivery pump.

[0011] Preferably, a waterproof ultraviolet lamp is fixedly connected to the inner side of the third processing shell, four waterproof ultraviolet lamps are provided, and the waterproof ultraviolet lamps are located above the third filter layer.

[0012] Preferably, a method for using a boiler wastewater treatment device comprises the following steps:

[0013] First, external bolts are inserted into the interior of the support legs and then into the interior of the external fixing plane to complete the fixation of the wastewater treatment equipment. Then, the shielding cover is rotated by external force to fix the shielding cover to the top of the first treatment shell;

[0014] Furthermore, the external pipe is connected to the feed pipe through external force to transport the water into the interior of the first processing shell, and the electric energy is transported to the interior of the first motor through the external control component;

[0015] Furthermore, the electric energy is delivered to the interior of the first electric throttle valve via the external control component, the water body is delivered to the interior of the second treatment shell, and the electric energy is delivered to the interior of the pH value detector, the second motor and the timing reversing switch via the external control component respectively;

[0016] Further, the electric energy is delivered to the interior of the second electric throttle valve via the external control component, the water body is delivered to the interior of the third treatment shell, and the electric energy is delivered to the interior of the waterproof ultraviolet lamp via the external control component;

[0017] Furthermore, electric energy is delivered to the interior of the first delivery pump via an external control component, and the manual throttle valve is rotated by external force.

[0018] Compared with the prior art, the present invention has the following advantages:

[0019] The present invention adds a first motor, a transmission rod and a permanent magnet. The first motor transmits the rotational force to the inside of the transmission rod through the electromagnetic effect. At this time, the transmission rod drives the permanent magnet to rotate, thereby increasing the contact surface between the permanent magnet and the wastewater, and adsorbing metal debris in the wastewater through magnetic force for subsequent recovery of the metal debris.

[0020] The present invention adds a storage box, a second delivery pump and a timing reversing switch. The timing reversing switch delivers electrical energy to the interior of the second delivery pump according to the need for water purification dosage. At this time, the second delivery pump generates suction on the water purification agent inside the storage box and delivers the water purification agent to the interior of the second treatment shell, completing the quantitative delivery of the water purification agent and completing the purification of the wastewater.

[0021] The present invention adds a waterproof ultraviolet lamp. When the treated wastewater needs to be disinfected, electrical energy can be transmitted to the inside of the waterproof ultraviolet lamp through an external control component. At this time, the waterproof ultraviolet lamp scatters ultraviolet light to the inside of the third treatment shell, and disinfects the water body through the good bactericidal property of ultraviolet rays. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 This is a structural schematic diagram of a boiler wastewater treatment device proposed by the present invention;

[0023] Figure 2 This is a schematic diagram of the back structure of a boiler wastewater treatment device proposed by the present invention;

[0024] Figure 3 This is a schematic structural diagram of a cross-sectional connection portion of a first processing shell proposed in the present invention;

[0025] Figure 4 This is a schematic structural diagram of a cross-sectional connection portion of a second processing shell proposed by the present invention;

[0026] Figure 5 This is a schematic structural diagram of a cross-sectional connection portion of a third processing shell proposed by the present invention;

[0027] Figure 6 This is a schematic structural diagram of the storage box connection part proposed by the present invention.

[0028] In the figure: 1. first processing shell; 2. second processing shell; 3. third processing shell; 4. first filter layer; 5. second filter layer; 6. third filter layer; 7. first guide tube; 8. first electric throttle valve; 9. second guide tube; 10. second electric throttle valve; 11. first delivery pump; 12. output pipe; 13. manual throttle valve; 14. shielding cover; 15. feed pipe; 16. first motor; 17. transmission rod; 18. permanent magnet; 19. pressure relief head; 20. inspection window; 21. pH value detector; 22. second motor; 23. stirring head; 24. storage box; 25. liquid inlet pipe; 26. second delivery pump; 27. timing reversing switch; 28. supporting foot; 29. ​​waterproof ultraviolet lamp. DETAILED DESCRIPTION

[0029] The technical solution of the present invention is further described below with reference to the accompanying drawings and embodiments.

[0030] Reference Figure 1-Figure 5, a boiler wastewater treatment equipment and its use method, including a first treatment shell 1 and a second treatment shell 2, the bottom of the first treatment shell 1 is bolted to the second treatment shell 2, the first treatment shell 1 provides a fixing point for the second treatment shell 2, the first filter layer 4, the first guide pipe 7, the shielding cover 14 and the viewing window 20 fixedly connected to its outer surface and interior, and at the same time performs preliminary filtration for the wastewater injected into its interior, the second treatment shell 2 is fixedly connected to the bottom of the first treatment shell 1, and provides a fixing point for the second filter layer 5, the second guide pipe 9, the pH value detector 21, the second motor 22 and the storage box 24 fixedly connected to its outer surface and interior, and at the same time performs secondary filtration for the wastewater injected into its interior, the bottom of the second treatment shell 2 is bolted to the third treatment shell 3, the first treatment shell 1 is bolted to the third treatment shell 3, ... The three-process shell 3 provides fixing points for the third filter layer 6, the first delivery pump 11, the support foot 28 and the waterproof ultraviolet lamp 29 fixedly connected to its outer surface and interior, and performs three filtrations for the wastewater injected into it. The inner side of the first process shell 1 is fixedly connected with the first filter layer 4, and the first filter layer 4 is made of a metal woven mesh. When the wastewater is injected into the interior of the first process shell 1, the large particles of impurities in the wastewater are preliminarily intercepted under the action of gravity. The inner side of the second process shell 2 is fixedly connected with the second filter layer 5, and the second filter layer 5 is made of multiple layers of filter cloth. When the wastewater is injected into the interior of the second process shell 2, the small particles of impurities in the wastewater are further intercepted under the action of gravity. The inner side of the third process shell 3 is fixedly connected with the third filter layer 6. The third filter layer 6 is made of activated carbon wrapped with filter cloth. When wastewater is injected into the interior of the third treatment shell 3, fine pollutants in the wastewater are filtered and adsorbed under the action of gravity. The bottom of the first treatment shell 1 is connected through a first guide pipe 7. When the first guide pipe 7 is connected, the water body after the initial filtration is transported to the interior of the second treatment shell 2 under the action of gravity. The outer surface of the first guide pipe 7 is connected through a first electric throttle valve 8. When it is necessary to transport the water body after the initial filtration to the interior of the second treatment shell 2, electric energy can be transported to the interior of the first electric throttle valve 8 through an external control component. At this time, the first electric throttle valve 8 opens to drive the first guide pipe 7 to be connected. The bottom of the second treatment shell 2 is connected through a second guide pipe 9. When the second guide pipe 9 is connected, the water after the secondary filtration is transported to the interior of the third treatment shell 3 under the action of gravity. The outer surface of the second guide pipe 9 is connected with a second electric throttle valve 10. When the water after the secondary filtration needs to be transported to the interior of the third treatment shell 3, electric energy can be transported to the interior of the second electric throttle valve 10 through an external control component. At this time, the second electric throttle valve 10 opens to drive the second guide pipe 9 to be connected. The bottom of the third treatment shell 3 is fixedly connected to a first delivery pump 11. When the water inside the third treatment shell 3 needs to be output, electric energy can be transported to the interior of the first delivery pump 11 through an external control component. At this time, the first delivery pump 11 generates suction on the water inside the third treatment shell 3 and transports the water to the interior of the output pipe 12.The output end of the first delivery pump 11 is fixedly connected to an output pipe 12. When the water is delivered to the inside of the output pipe 12, the output pipe 12 delivers the water to the inside of the external receiving component to complete the output of the water. A manual throttle valve 13 is connected to the top of the output pipe 12. When the purified water needs to be output, the manual throttle valve 13 can be rotated by external force to drive the manual throttle valve 13 to open, driving the internal communication of the output pipe 12. The top of the first treatment shell 1 is threadedly connected to a shielding cover 14. The shielding cover 14 is threadedly connected to the top of the first treatment shell 1 to provide shielding for the top of the first treatment shell 1 and provide a fixing point for the feed pipe 15, the first motor 16 and the pressure relief head 19 fixed to the top thereof. The top of the shielding cover 14 is connected to the feed pipe 15. The feed pipe 15 is connected to the top of the shielding cover 14 and is connected to the external input pipeline to deliver the wastewater to the first treatment shell 1, a pressure relief head 19 is connected to the top of the shielding cover 14 to balance the air pressure inside the equipment and the external environment. Four pressure relief heads 19 are provided, and the pressure relief heads 19 are located on the outside of the feed pipe 15. A viewing window 20 is inlaid on the front of the first treatment shell 1, and the viewing window 20 is inlaid on the front of the first treatment shell 1 to provide space for the user to view the sewage treatment status inside the first treatment shell 1. The bottom of the third treatment shell 3 is fixed with support feet 28, and the support feet 28 are fixedly connected to the bottom of the third treatment shell 3. The supporting force transmitted to the inside thereof through the ground provides support for the wastewater treatment equipment as a whole. When the wastewater treatment equipment needs to be fixed, the external bolts can be inserted into the inside of the external fixing plane by external force to complete the fixation of the wastewater treatment equipment as a whole. Four support feet 28 are provided, and the support feet 28 are located on the outside of the first delivery pump 11;

[0031] A method for using a boiler wastewater treatment device comprises the following steps:

[0032] First, externally insert the external bolts into the support legs 28 and then insert the external bolts into the external fixing plane to complete the fixation of the wastewater treatment equipment. Then, externally rotate the shielding cover 14 to fix it to the top of the first treatment shell 1.

[0033] Furthermore, the external pipe is connected to the feed pipe 15 by external force, the water is transported to the interior of the first processing shell 1, and the electric energy is transported to the interior of the first motor 16 via the external control component;

[0034] Furthermore, the electric energy is delivered to the interior of the first electric throttle valve 8 via the external control component, the water body is delivered to the interior of the second treatment shell 2, and the electric energy is delivered to the interior of the pH value detector 21, the second motor 22 and the timing reversing switch 27 via the external control component respectively;

[0035] Further, the electric energy is delivered to the interior of the second electric throttle valve 10 via the external control component, the water body is delivered to the interior of the third processing shell 3, and the electric energy is delivered to the interior of the waterproof ultraviolet lamp 29 via the external control component;

[0036] Furthermore, electric energy is delivered to the interior of the first delivery pump 11 via an external control component, and the manual throttle valve 13 is rotated by an external force.

[0037] Reference Figure 1-Figure 3 , a first motor 16 is fixedly connected to the top of the shielding cover 14. When it is necessary to improve the adsorption efficiency of wastewater metals, electric energy can be transmitted to the inside of the first motor 16 through an external control component. At this time, the first motor 16 transmits the rotational force to the inside of the transmission rod 17 through the electromagnetic effect, and the first motor 16 is located on the inner side of the feed pipe 15. The output end of the first motor 16 is fixedly connected to the transmission rod 17. The transmission rod 17 rotates under the drive of the first motor 16, driving the permanent magnet 18 fixedly connected to its outer surface to rotate. The tail end of the transmission rod 17 is bolted with the permanent magnet 18. The permanent magnet 18 rotates under the drive of the transmission rod 17, fully contacts the wastewater inside the first treatment shell 1, and completes the adsorption of metal debris under the action of magnetic force, so as to facilitate the subsequent recovery of metal debris in the wastewater, and there are four permanent magnets 18.

[0038] Reference Figure 1 、 Figure 2 and Figure 6, a pH detector 21 is connected to the front of the second processing shell 2, and the pH detector 21 is connected to the front of the second processing shell 2 to detect the pH value of the water inside the second processing shell 2, and the detection data is displayed to assist the staff to confirm the state of the wastewater after the initial treatment. The second processing shell 2 is fixedly connected to both sides of the second processing shell 2. The second motor 22 is fixedly connected to both sides of the second processing shell 2. When it is necessary to drive the water purifier to fully mix with the water, the electric energy can be transmitted to the inside of the second motor 22 through the external control component. At this time, the second motor 22 transmits the rotational force to the inside of the stirring head 23 through the electromagnetic effect, and the output end of the second motor 22 extends to the inner side of the second processing shell 2. The output end of the second motor 22 is fixedly connected to the stirring head 23. The stirring head 23 rotates under the drive of the second motor 22, stirring the wastewater inside the second processing shell 2, driving the water purifier and the wastewater to be fully mixed, and the back of the second processing shell 2 is fixedly connected to the storage box 24, and the storage box 24 is fixedly connected to the back of the second processing shell 2 , providing a fixed point for the liquid inlet pipe 25, the second delivery pump 26 and the timing reversing switch 27 fixedly connected to its outer surface, and providing a storage space for the water purifier stored inside it. The top of the storage box 24 is connected with the liquid inlet pipe 25, which is connected to the top of the storage box 24, providing space for the user to deliver the water purifier to the inside of the storage box 24. The second delivery pump 26 on the back of the storage box 24, when the electric energy is delivered to the inside of the second delivery pump 26 through the timing reversing switch 27, the second delivery pump 26 energizes the inside of the storage box 24. The water purifier in the interior generates suction and transports the water purifier to the interior of the second treatment shell 2, and the wastewater in the secondary filtration is purified by the water purifier, and the output end of the second delivery pump 26 extends to the inner side of the second treatment shell 2, and a timing reversing switch 27 is fixedly connected to the back of the storage box 24. When the water purifier needs to be quantitatively output, the reversing time of the timing reversing switch 27 can be set by external force. At this time, the timing reversing switch 27 delivers electrical energy to the interior of the second delivery pump 26, and the timing reversing switch 27 is located above the second delivery pump 26.

[0039] Reference Figure 5 A waterproof ultraviolet lamp 29 is fixedly connected to the inner side of the third treatment shell 3. When the treated wastewater needs to be disinfected, the electrical energy can be transmitted to the inside of the waterproof ultraviolet lamp 29 through the external control component. At this time, the waterproof ultraviolet lamp 29 scatters the ultraviolet light to the inner side of the third treatment shell 3, and disinfects the water body through the good bactericidal property of ultraviolet rays. Four waterproof ultraviolet lamps 29 are provided, and the waterproof ultraviolet lamps 29 are located above the third filter layer 6.

[0040] The functional principle of the present invention can be explained through the following operation mode: first, the external bolts are inserted into the interior of the external fixing plane through external force to complete the fixation of the entire wastewater treatment equipment, and then the feed pipe 15 is connected to the external input pipe to transport the wastewater to the interior of the first treatment shell 1. At this time, the first filter layer 4 performs preliminary interception of large particles of impurities in the wastewater under the action of gravity. At the same time, the first motor 16 transmits the rotational force to the interior of the transmission rod 17 through the electromagnetic effect. The transmission rod 17 rotates under the drive of the first motor 16, driving the permanent magnet 18 fixed to its outer surface to rotate. The permanent magnet 18 Driven by the transmission rod 17, it rotates, fully contacts the wastewater inside the first treatment shell 1, and completes the adsorption of metal debris under the action of magnetism, so as to facilitate the subsequent recovery of metal debris in the wastewater. After the preliminary filtration of the water body is completed, the electric energy is transmitted to the interior of the first electric throttle valve 8 through the external control component. At this time, the first electric throttle valve 8 opens to drive the first guide pipe 7 to connect. When the first guide pipe 7 is connected, the water body after the initial filtration is transported to the interior of the second treatment shell 2 under the action of gravity. At this time, the second filter layer 5 further intercepts the small particle impurities in the wastewater under the action of gravity. At the same time, it can be filtered out through the external filter layer 5. The reversing time of the timing reversing switch 27 is set by force. At this time, the timing reversing switch 27 transmits electric energy to the inside of the second delivery pump 26. When the electric energy is transmitted to the inside of the second delivery pump 26 via the timing reversing switch 27, the second delivery pump 26 generates suction on the water purifier inside the storage tank 24 and transmits the water purifier to the inside of the second treatment shell 2. The wastewater in the secondary filtration is purified by the water purifier. When the water body after the secondary filtration needs to be transmitted to the inside of the third treatment shell 3, the electric energy can be transmitted to the inside of the second electric throttle valve 10 via the external control component. At this time, the second electric throttle valve 10 opens to drive the second The guide pipe 9 is connected. When the second guide pipe 9 is connected, the water after the secondary filtration is transported to the inside of the third treatment shell 3 under the action of gravity. At this time, the third filter layer 6 filters and adsorbs the fine pollutants in the wastewater under the action of gravity. When the water needs to be output, the manual throttle valve 13 can be rotated by external force to drive the manual throttle valve 13 to open, driving the internal connection of the output pipe 12, and the first delivery pump 11 generates suction on the water inside the third treatment shell 3, and transports the water to the inside of the output pipe 12. The output pipe 12 transports the water to the inside of the external receiving component to complete the output of the water.

[0041] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not limiting. Although the present invention has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present invention may be modified or replaced by equivalents without departing from the purpose and scope of the technical solutions of the present invention, which should all be included in the scope of the claims of the present invention.

Claims

1. A boiler wastewater treatment device and a method of using the same, comprising a first treatment shell (1) and a second treatment shell (2), characterized in that: The bottom of the first processing shell (1) is bolted to the second processing shell (2), the bottom of the second processing shell (2) is bolted to the third processing shell (3), the inner side of the first processing shell (1) is fixedly connected to the first filter layer (4), the inner side of the second processing shell (2) is fixedly connected to the second filter layer (5), the inner side of the third processing shell (3) is fixedly connected to the third filter layer (6), the bottom of the first processing shell (1) is connected to the first guide pipe (7), and the outer surface of the first guide pipe (7) is connected to the first electric throttle valve (8), The bottom of the second processing shell (2) is connected to a second guide pipe (9), the outer surface of the second guide pipe (9) is connected to a second electric throttle valve (10), the bottom of the third processing shell (3) is fixedly connected to a first delivery pump (11), the output end of the first delivery pump (11) is fixedly connected to an output pipe (12), the top of the output pipe (12) is connected to a manual throttle valve (13), the top of the first processing shell (1) is threadedly connected to a shielding cover (14), and the top of the shielding cover (14) is connected to a feed pipe (15).

2. A boiler wastewater treatment device and a method for using the same according to claim 1, characterized in that: A first motor (16) is fixedly connected to the top of the shielding cover (14), and the first motor (16) is located on the inner side of the feeding pipe (15). The output end of the first motor (16) is fixedly connected to a transmission rod (17), and the tail end of the transmission rod (17) is bolted to a permanent magnet (18), and four permanent magnets (18) are provided.

3. A boiler wastewater treatment equipment and method of using the same according to claim 1, characterized in that: A pressure relief head (19) is connected through the top of the shielding cover (14), four pressure relief heads (19) are provided, and the pressure relief heads (19) are located outside the feed pipe (15).

4. A boiler wastewater treatment device and a method of using the same according to claim 3, characterized in that: A viewing window (20) is embedded and connected to the front surface of the first processing shell (1).

5. The boiler wastewater treatment equipment and the method of using the same according to claim 1, characterized in that: A pH value detector (21) is connected through the front of the second processing shell (2), and a second motor (22) is fixedly connected to both sides of the second processing shell (2), and the output end of the second motor (22) extends to the inner side of the second processing shell (2), and a stirring head (23) is fixedly connected to the output end of the second motor (22).

6. The boiler wastewater treatment equipment and the method of using the same according to claim 1, characterized in that: The back of the second processing shell (2) is fixedly connected to a storage box (24), the top of the storage box (24) is connected to a liquid inlet pipe (25), the back of the storage box (24) is provided with a second delivery pump (26), and the output end of the second delivery pump (26) extends to the inner side of the second processing shell (2), the back of the storage box (24) is fixedly connected to a timing reversing switch (27), and the timing reversing switch (27) is located above the second delivery pump (26).

7. The boiler wastewater treatment equipment and the method of using the same according to claim 5, characterized in that: The bottom of the third processing shell (3) is fixed with supporting feet (28), four supporting feet (28) are provided, and the supporting feet (28) are located outside the first delivery pump (11).

8. The boiler wastewater treatment equipment and the method of using the same according to claim 5, characterized in that: The inner side of the third processing shell (3) is fixedly connected with a waterproof ultraviolet lamp (29), four waterproof ultraviolet lamps (29) are provided, and the waterproof ultraviolet lamps (29) are located above the third filter layer (6).

9. A method for using the boiler wastewater treatment equipment according to any one of claims 1 to 8, characterized in that: The following steps are involved: First, external bolts are inserted into the interior of the support legs (28) by external force, and the external bolts are inserted into the interior of the external fixing plane to complete the fixation of the wastewater treatment equipment, and then the shielding cover (14) is rotated by external force to fix the shielding cover (14) to the top of the first treatment shell (1); Furthermore, the external pipe is connected to the feed pipe (15) by external force, the water is transported to the interior of the first treatment shell (1), and the electric energy is transported to the interior of the first motor (16) via the external control component; Furthermore, the electric energy is transmitted to the interior of the first electric throttle valve (8) via the external control component, the water body is transmitted to the interior of the second treatment shell (2), and the electric energy is respectively transmitted to the interior of the pH value detector (21), the second motor (22) and the timing reversing switch (27) via the external control component; Furthermore, the electric energy is delivered to the interior of the second electric throttle valve (10) via the external control component, the water body is delivered to the interior of the third treatment shell (3), and the electric energy is delivered to the interior of the waterproof ultraviolet lamp (29) via the external control component; Furthermore, electric energy is delivered to the interior of the first delivery pump (11) via an external control component, and the manual throttle valve (13) is rotated by external force.

Citation Information

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