Carbonizing tank device for gas-water separation

By separating the air inlet and exhaust ends in the carbonization tank device, and providing a waterproof plate and a drainage cavity to prevent corrosion by acidic liquids, the problem of acidic liquid corrosion on the inner wall of the tank is solved, and the service life and reaction efficiency of the equipment are improved.

CN223324318UActive Publication Date: 2025-09-12SHANDONG RONGTAI CHEMICAL CO LTD
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Patent Information

Application Number
CN202422421822.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-08
Publication Date
2025-09-12
Estimated Expiration
2034-10-08

AI Technical Summary

Technical Problem

In existing carbonization devices, the acidic liquid generated by the reaction between the material and industrial waste gas will corrode the inner wall and components of the tank, and cannot be discharged in a timely and thorough manner, resulting in a shortened service life of the equipment.

Method used

A carbonization tank device was designed. The air inlet end was separated from the exhaust end, the air inlet pipe was isolated from the inner wall of the tank, and a waterproof plate was installed to prevent corrosion from acidic liquids. A drainage pipe was raised at the bottom of the tank to form a drainage cavity, ensuring that the acidic liquid was gathered and discharged. The bent section and the horizontal section of the air inlet pipe were separated from the inner wall of the tank, and a water retaining plate was installed to separate the internal space of the tank to prevent liquid from entering the fan and gas channel.

Benefits of technology

It effectively prevents acidic liquid from corroding the air inlet and exhaust ports, ensures full reaction between gas and material, and improves the service life and reaction efficiency of the device.

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Abstract

The utility model discloses a carbonization tank device for gas-water separation, which relates to the technical field of waste gas treatment devices and comprises a tank body. The tank body is provided with an air inlet end and an air outlet end which are communicated with the interior of the tank body and are oppositely arranged; the gas inlet end is connected with a gas inlet pipe extending into the tank body, and the gas inlet pipe is provided with a plurality of gas outlets for discharging gas; one side, facing the tank body, of the exhaust end is connected with a waterproof plate which is used for preventing liquid generated by gas through carbonization reaction from entering the exhaust end; according to the application, the corrosion of the acid reaction solution in the tank body to the air inlet end and the air outlet end can be effectively prevented, and the phenomenon that the tank body is corroded by the acid reaction solution accumulated in the tank body due to the fact that water drops are formed when air at the air outlet end is cooled and condensed and are fused with the acid reaction solution is effectively prevented; therefore, the damage of the acidic reaction solution to the tank body is further reduced, and the service life of the tank body is prolonged.
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Description

Technical Field

[0001] The utility model belongs to the technical field of waste gas treatment devices, and particularly relates to a carbonization tank device for gas-water separation. Background Art

[0002] Industrial waste gas refers to the various pollutant-laden gases released into the air during fuel combustion and production processes within industrial plants. Directly releasing pollutant-laden gases into the atmosphere not only pollutes the air but also poses a health risk. Therefore, effective treatment is essential before release.

[0003] In the prior art, a carbonization device is usually used to fully mix industrial waste gas with the material inside the carbonization device. The material absorbs harmful substances in the industrial waste gas, converting the industrial waste gas into pollution-free gas before discharge. However, the existing carbonization device has the following problems: first, after the material reacts with the industrial waste gas, acidic wastewater will be produced. During the flow process, it will cause certain corrosion to the inner wall of the tank body and the internal circulation fan, air inlet and exhaust port, thus affecting the service life; second, if the acidic liquid is not discharged in time or is not discharged thoroughly, the residue will also cause corresponding corrosion; third, due to the influence of the external environment during assembly and long-term use of the tank body, the bottom of the tank body is not absolutely level, so the drain port at the bottom cannot be located at the lowest point of the tank body, and the internal acidic gas cannot be discharged in time and thoroughly.

[0004] For example, in the existing patent publication number CN217247947U, entitled "A Carbonization Device for Treating Carbon Dioxide Waste Gas," the invention discloses that the gas outlet is connected to the other end of the accommodating chamber, the sewage outlet is arranged at the bottom of the tank body, the exhaust port is located at the bottom of the tank body, and the sewage outlet is also located at the bottom of the tank body. The problem with this invention is that, because the sewage outlet is also connected to a pipe and a flange structure, residual acidic liquid corrodes the pipe and flange structure; and, because the bottom of the tank body is not completely horizontal due to the installation and assembly process, if the sewage outlet is not at the lowest point of the tank body, it is easy for the acidic liquid to corrode the inner wall; the gas outlet and sewage outlet are located at the bottom of the tank body, and the acidic liquid flows to the bottom of the tank body under the action of gravity, causing the gas outlet to be saturated with water components, resulting in condensation of water droplets at the gas outlet due to air pre-cooling. Acidic substances are generated during the reaction process, which accumulates in the device, chemically reacts with the device, and thus reduces the service life of the equipment. Utility Model Content

[0005] The utility model provides a carbonization tank device for gas-water separation, which solves the problems that acidic liquid generated after the reaction of materials with industrial waste gas, the air outlet is saturated with water components, resulting in the pre-cooling of air at the air outlet condensing into water droplets, and the acidic liquid accumulates on the inner wall of the tank body, causing corrosion of the tank body; the acidic liquid easily causes corrosion to the inner wall of the tank body and the internal circulation fan, exhaust port and air inlet when flowing inside the tank body; the acidic liquid cannot be discharged in time or is not discharged thoroughly, resulting in corrosion of the inner wall.

[0006] The technical solution adopted by this utility model is:

[0007] A carbonization tank device for gas-water separation comprises a tank body; the tank body has an air inlet end and an air exhaust end which are arranged opposite to each other and communicate with the interior of the tank body; the air inlet end is connected to an air inlet pipe extending into the interior of the tank body, the air inlet pipe having a plurality of air outlets for exhausting gas; the exhaust end is connected to a waterproof plate on the side facing the tank body for preventing liquid generated by the carbonization reaction of the gas from entering the exhaust end.

[0008] The carbonization tank device for gas-water separation of the utility model also has the following additional technical features:

[0009] The bottom of the tank body is connected to a drainage pipe protruding from the outer side of the tank body, and a drainage cavity lower than the bottom surface of the tank body is formed between the drainage pipe and the tank body. A plurality of drainage ports are provided on the side of the drainage cavity facing the tank body to discharge the liquid in the tank body into the drainage cavity through the drainage ports.

[0010] The air inlet pipe is connected to the bottom of the tank body, and has a bent section and a horizontal section connected to each other. The bent section extends to a side outside the tank body and has an air inlet, and the horizontal section extends to a side inside the tank body and has an air outlet.

[0011] The horizontal section extends along the length direction of the tank body, and a plurality of air outlets are arranged at intervals along the extending direction of the horizontal section toward the inner wall of the tank body.

[0012] The air inlet pipe is connected to the top of the tank body, one end of the air inlet pipe extends to the outside of the top of the tank body, and the other end of the air inlet pipe extends into the interior of the tank body and extends along the circumferential direction of the tank body.

[0013] A water baffle is connected to the circumferential inner wall of the tank body to separate the interior of the tank body. A wind cavity for accommodating a circulating fan is formed between the water baffle and one side of the tank body, and a receiving cavity for accommodating gas is formed between the water baffle and the other side of the tank body. The water baffle can prevent the liquid in the receiving cavity from entering the wind cavity.

[0014] The water baffle is provided with a plurality of air holes to allow air in the air cavity and the accommodating cavity to circulate.

[0015] The interior of the tank body is hollow, and one side of the tank body along the length direction has an opening, and a tank cover is connected to the opening to open or close the tank body.

[0016] A material pusher moving along the interior of the tank body is provided inside the tank body, and the material pusher is used to transport the material into the interior of the tank body to undergo carbonization reaction with the gas to absorb harmful substances in the gas.

[0017] The bottom of the tank body is connected with a saddle, and the saddle is used to support the tank body.

[0018] The tank body is connected to a pressure gauge, which is arranged on the top of the tank body and is used to monitor the internal pressure of the tank body.

[0019] The tank body is connected to a thermometer, which is arranged on the top of the tank body and is used to monitor the temperature inside the tank body.

[0020] The tank body is connected to a safety valve, and the safety valve is arranged on the top of the tank body.

[0021] Due to the adoption of the above technical solution, the beneficial effects achieved by the utility model are as follows:

[0022] 1. A carbonization tank device for gas-water separation, comprising a tank body; the tank body having an air inlet end and an air exhaust end that are oppositely arranged and communicate with the interior of the tank body; the air inlet end is connected to an air inlet pipe extending into the interior of the tank body, the air inlet pipe having a plurality of air outlets for exhausting gas; the exhaust end is connected to a waterproof plate on the side facing the tank body for preventing liquid generated by the carbonization reaction of gas from entering the exhaust end. The air inlet end and the exhaust end are separated, and the air inlet end has an air inlet pipe extending to the inside of the tank body, and the gas is transported to the inside of the tank body through multiple air outlets arranged on the air inlet pipe. The air inlet pipe is arranged to isolate the air inlet pipe from the inner bottom wall of the tank body, effectively preventing the acidic reaction solution accumulated on the bottom wall of the tank body from corroding the air inlet; the exhaust end is connected to a waterproof plate on the side facing the tank body, which effectively prevents the acidic reaction solution inside the tank body from splashing into the exhaust end and corroding the exhaust end, and prevents the exhaust end from containing moisture, resulting in water droplets of air condensing at the exhaust end when it is cold, fusing with the acidic reaction solution, resulting in accumulated acidic reaction solution inside the tank body and causing corrosion to the tank body. The present application can effectively prevent the acidic reaction solution inside the tank body from corroding the air inlet end and the exhaust end, and effectively prevent the air condensing at the exhaust end when it is cold, resulting in water droplets fusing with the acidic reaction solution, resulting in accumulated acidic reaction solution inside the tank body and causing corrosion to the tank body, thereby further reducing the damage caused to the tank body by the acidic reaction solution and improving the service life of the tank body.

[0023] 2. As a preferred embodiment of the present invention, the bottom of the tank body is connected to a drain pipe protruding from the outer side of the tank body, a drain cavity lower than the bottom surface of the tank body is formed between the drain pipe and the tank body, and a plurality of drain ports are provided on the side of the drain cavity facing the tank body to discharge the liquid in the tank body into the drain cavity through the drain ports. The drain pipe is provided on the bottom wall of the tank body and protrudes outward, so that the drain pipe is lower than the bottom of the tank body, and a certain space and drain cavity are formed between the drain pipe and the tank body to store a certain amount of liquid in the tank body, so that the acidic reaction solution in the tank body can all be gathered into the drain cavity under the action of gravity; in order to allow the acidic reaction solution in the tank body to smoothly enter the drain cavity, a plurality of drain ports are provided at the bottom of the tank body in the drain cavity to facilitate the acidic reaction solution in the tank body to enter the drain cavity.

[0024] 3. As a preferred embodiment of the present invention, the air inlet pipe is connected to the bottom of the tank body, and the air inlet pipe has a connected bending section and a horizontal section. The side of the bending section extending outside the tank body has an air inlet, and the side of the horizontal section extending inside the tank body has an air outlet. The air inlet pipe has a bending section, and the purpose of the bending section is to extend one end vertically outside the tank body and to connect the other end to the internal horizontal section. The horizontal section can extend along the inside of the tank body so that the air inlet pipe is separated from the inner wall of the tank body by a certain distance. Because the acidic reaction solution accumulates on the bottom wall inside the tank body, with this arrangement, the acidic reaction solution on the bottom wall inside the tank body is completely separated from the gas in the air inlet end due to the arrangement of the horizontal section, and the acidic reaction solution will not enter the air inlet from the air inlet end and corrode the pipe at the air inlet end.

[0025] 4. As a preferred embodiment of the present invention, the horizontal section extends along the length of the tank, and a plurality of gas outlets are spaced apart along the extension direction of the horizontal section toward the inner wall of the tank. The horizontal section can extend along the interior of the tank, along the length of the tank, that is, horizontally, so that the air inlet pipe is separated from the inner wall of the tank by a certain distance, thereby preventing the acidic reaction solution from entering the air inlet from the air inlet end and corroding the pipe at the air inlet end. The multiple gas outlets provided on the horizontal section facilitate rapid and sufficient entry of gas into the interior of the tank through the gas outlets to react with the material inside the tank.

[0026] 5. As a preferred embodiment of the present invention, a water baffle is connected along the circumferential inner wall of the tank body to separate the interior of the tank body. An air cavity for accommodating a circulation fan is formed between the water baffle and one side of the tank body. The water baffle and the other side of the tank body form a accommodating cavity for accommodating gas. The water baffle can prevent the liquid in the accommodating cavity from entering the air cavity. The interior of the tank body is divided into two parts by the water baffle, one side of which is used for mixing and reacting gas and material, and the material absorbs harmful substances in the gas, and the other side is used to accommodate the circulation fan, and the wind output by the circulation fan is input to the side of the tank body with material, so that the material and gas are fully mixed, the stirring and contact between the material and gas are accelerated, and the reaction efficiency is improved. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] The drawings described herein are used to provide a further understanding of the present invention and constitute a part of the present invention. The exemplary embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute an improper limitation of the present invention. In the drawings:

[0028] Figure 1 This is a schematic diagram of the main structure of a carbonization tank device for gas-water separation according to one embodiment of the present utility model;

[0029] Figure 2 This is a left-side structural schematic diagram of a carbonization tank device for gas-water separation according to one embodiment of the present utility model;

[0030] In the figure,

[0031] 1 tank body, 2 air inlet end, 3 exhaust end, 4 water inlet pipe, 5 liquid discharge pipe, 6 waterproof board, 7 water retaining plate, 8 air inlet, 9 air outlet, 10 accommodating cavity, 11 air cavity. DETAILED DESCRIPTION

[0032] In the following description, many specific details are set forth to facilitate a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Therefore, the scope of protection of the present invention is not limited to the specific embodiments disclosed below.

[0033] In addition, in the description of the present invention, it should be understood that the terms "top", "bottom", "inside", "outside", "axial", "radial", "circumferential", etc., indicating the orientation or position relationship, are based on the orientation or position relationship shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present invention.

[0034] In this utility model, unless otherwise expressly specified or limited, the terms "installed," "connected," "connect," "fixed," etc. should be understood in a broad sense. For example, they can refer to fixed connection, detachable connection, or integration; mechanical connection, electrical connection, or communication; direct connection or indirect connection through an intermediate medium; internal communication between two components or interaction between two components. For those skilled in the art, the specific meanings of the above terms in this utility model can be understood according to specific circumstances.

[0035] In the present invention, unless otherwise clearly specified and limited, the first feature "above" or "below" the second feature may be that the first and second features are in direct contact, or the first and second features are in indirect contact through an intermediate medium. In the description of this specification, the description with reference to the terms "implementation method", "embodiment", "one embodiment", "example" or "specific example" means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the present invention. In this specification, the schematic expressions of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described may be combined in an appropriate manner in any one or more embodiments or examples.

[0036] In order to more clearly illustrate the overall concept of the present invention, a detailed description is given below in combination with the accompanying drawings by way of examples.

[0037] The utility model relates to a carbonization tank device for gas-water separation, such as Figure 1-2 As shown, it includes a tank body 1; the tank body 1 has an air inlet end 2 and an exhaust end 3 that are oppositely arranged and connected to the interior of the tank body 1; the air inlet end 2 is connected to an air inlet pipe extending to the interior of the tank body 1, and the air inlet pipe has a plurality of air outlets 9 for exhausting gas; the exhaust end 3 is connected to a waterproof plate 6 on the side facing the tank body 1 for preventing liquid generated by the carbonization reaction of the gas from entering the exhaust end 3.

[0038] When in use, it is necessary to push the pusher described below carrying the material into the interior of the tank body 1. Specifically, a corresponding track can be provided inside the tank body 1 to facilitate the pusher to push the material, so that the pusher can be accurately sent to a specific position inside the tank body 1 along the track. Figure 1 As shown, the air inlet end 2 is arranged at the bottom of the tank body 1, and the exhaust end 3 is arranged at the top of the tank body 1. The gas enters the tank body 1 from the bottom of the tank body 1 and undergoes a carbonization reaction with the material inside the tank body 1. The generated harmless gas is discharged to the outside of the tank body 1 through the exhaust end 3.

[0039] The air inlet end 2 and the exhaust end 3 are separated, and the air inlet end 2 has an air inlet pipe extending to the interior of the tank body 1, and the gas is transported to the interior of the tank body 1 through a plurality of air outlets 9 arranged on the air inlet pipe. The air inlet pipe is arranged to isolate the air inlet pipe from the inner bottom wall of the tank body 1, effectively preventing the acidic reaction solution accumulated on the bottom wall of the tank body 1 from corroding the air inlet 8; the exhaust end 3 is connected to a waterproof plate 6 on the side facing the tank body 1, which effectively prevents the acidic reaction solution inside the tank body 1 from splashing into the interior of the exhaust end 3 and corroding the exhaust end 3, and prevents the exhaust end 3 from containing moisture, resulting in water droplets condensed at the exhaust end 3 when the air is cold, and merging with the acidic reaction solution to cause the acidic reaction solution to accumulate inside the tank body 1 and cause corrosion to the tank body 1. Therefore, it is possible to effectively prevent the acidic reaction solution inside the tank body 1 from corroding the air inlet end 2 and the exhaust end 3, and effectively prevent the air at the exhaust end 3 from condensing when cold and having water droplets that merge with the acidic reaction solution, causing the acidic reaction solution to accumulate in the tank body 1 and corrode the tank body 1, thereby further reducing the damage to the tank body 1 caused by the acidic reaction solution and increasing the service life of the tank body 1.

[0040] As a preferred embodiment, the bottom of the tank body 1 is connected to a drainage pipe 5 protruding from the outer side of the tank body 1, and a drainage cavity lower than the bottom surface of the tank body 1 is formed between the drainage pipe 5 and the tank body 1, and a plurality of drainage ports are opened on the side of the drainage cavity facing the tank body 1 to discharge the liquid in the tank body 1 into the drainage cavity through the drainage ports.

[0041] The drain pipe 5 is arranged on the bottom wall of the tank body 1 and protrudes outward, so that the drain pipe 5 is lower than the bottom of the tank body 1, and a certain space and a drainage cavity are formed between the drain pipe 5 and the tank body 1, which can store a certain amount of liquid inside the tank body 1, so that the acidic reaction solution inside the tank body 1 can all be gathered into the drainage cavity under the action of gravity; in order to allow the acidic reaction solution inside the tank body 1 to smoothly enter the drainage cavity, a plurality of drainage ports are opened at the bottom of the tank body 1 in the drainage cavity to facilitate the entry of the acidic reaction solution inside the tank body 1 into the drainage cavity.

[0042] There are many ways to configure the air intake pipe, which are not limited by the present application. Any of the following ways can be used:

[0043] Implementation method 1: Figure 1 As shown, the air inlet pipe is connected to the bottom of the tank body 1, and the air inlet pipe has a bent section and a horizontal section that are connected to each other. The bent section extends to the side outside the tank body 1 and has an air inlet 8, and the horizontal section extends to the side inside the tank body 1 and has an air outlet 9.

[0044] The air inlet pipe has a bent section. The purpose of the bent section is to extend one end vertically to the outside of the tank body 1 and to connect the other end to the internal horizontal section. The horizontal section can extend along the inside of the tank body 1 so that the air inlet pipe is separated from the inner wall of the tank body 1 by a certain distance. Because the acidic reaction solution accumulates on the bottom wall inside the tank body 1, with this arrangement, the acidic reaction solution on the bottom wall inside the tank body 1 is completely separated from the gas in the air inlet end 2 due to the arrangement of the horizontal section, and the acidic reaction solution will not enter the air inlet 8 from the air inlet end 2 to corrode the pipeline of the air inlet end 2.

[0045] The horizontal section extends along the length direction of the tank body 1 , and a plurality of air outlets 9 are arranged at intervals along the extending direction of the horizontal section toward the inner wall of the tank body 1 .

[0046] The horizontal section can extend along the interior of the tank body 1 along the length direction of the tank body 1, that is, the horizontal direction, so that the air inlet pipe is separated from the inner wall of the tank body 1 by a certain distance, and will not cause the acidic reaction solution to enter the air inlet 8 from the air inlet end 2 to corrode the pipe of the air inlet end 2; multiple air outlets 9 are provided on the horizontal section to facilitate the gas to quickly and fully enter the interior of the tank body 1 through the air outlet 9 and react with the material inside the tank body 1.

[0047] Embodiment 2: The air intake pipe is connected to the top of the tank body 1 , one end of the air intake pipe extends outside the top of the tank body 1 , and the other end of the air intake pipe extends into the interior of the tank body 1 and extends along the circumferential direction of the tank body 1 .

[0048] The air inlet pipe has a connected straight section and an arc section, the straight section is arranged vertically perpendicular to the length direction of the tank body 1, one end of the straight section extends along the top of the tank body 1 to the outside of the tank body 1, and the arc section is connected to the other end of the straight section and extends to the inside of the tank body 1. In order to increase the extension space of the arc section inside the tank body 1 and increase the air intake, the arc section is distributed along the circumferential direction of the inside of the tank body 1; it is worth noting that there can be two arc sections, which extend on both sides of the inner circumference of the tank body 1 with the straight section as the center, forming an exhaust channel in the circumferential direction around the inside of the tank body 1, and the arc section has multiple air outlets 9; when in use, the gas enters the arc section from the straight section at the top, enters the interior of the tank body 1 through the multiple air outlets 9 on the arc section, and undergoes a carbonization reaction with the material on the pusher.

[0049] As a preferred embodiment, a water baffle 7 is connected along the circumferential inner wall of the tank body 1 to separate the interior of the tank body 1, and an air cavity for accommodating a circulating fan is formed between the water baffle 7 and one side of the tank body 1, and a accommodating cavity 10 for accommodating gas is formed between the water baffle 7 and the other side of the tank body 1; the water baffle 7 can prevent the liquid in the accommodating cavity 10 from entering the air cavity.

[0050] like Figure 2 The water baffle 7 is tiltedly arranged inside the tank body 1. The water baffle 7 can be a hollow plate, or a plate with a mesh structure and water-permeable holes. The water baffle 7 divides the tank body 1 into two parts, one part is an air cavity, and the other part is a receiving cavity 10. The circulating fan is rotatably connected to the air cavity inside the tank body 1. The circulating fan is also connected to the motor located on the outside of the tank body 1 to drive the circulating fan to rotate. The interior of the tank body 1 is divided into two parts by the water baffle 7. The receiving cavity 10 on one side is used for mixing and reacting gas and material, and the material absorbs harmful substances in the gas. The air cavity on the other side is used to accommodate the circulating fan, and the wind output by the circulating fan is input to the side of the tank body 1 with material, so that the material and gas are fully mixed, the stirring and contact between the material and gas are accelerated, and the reaction efficiency is improved.

[0051] As a preferred embodiment, the water baffle 7 has a plurality of air holes to allow air to circulate between the air cavity and the accommodating cavity 10 .

[0052] A mesh filter layer may be provided inside the air vents to further prevent the acidic reaction solution inside the tank body 1 from entering the air cavity 11 through the air vents and corroding the circulating fan inside the air cavity 11 .

[0053] As a preferred embodiment, the interior of the can body 1 is hollow, and one side of the can body 1 along the length direction has an opening, and a can cover is connected to the opening to open or close the can body 1.

[0054] The tank cover is used to seal or open the tank body 1. When the tank cover is opened, the pusher described below is pushed into the interior of the tank body 1 through the opening. Then, after the tank cover is closed, the gas is discharged into the interior of the tank body 1 through the air inlet pipe to react with the material in the pusher inside the tank body 1 to produce a carbonization reaction. After the reaction is completed, the tank cover is opened and the pusher is taken out through the opening.

[0055] As a preferred embodiment, a material pusher is provided inside the tank body 1 and moves along the inside of the tank body 1. The material pusher is used to transport materials to the inside of the tank body 1 to undergo carbonization reaction with the gas to absorb harmful substances in the gas.

[0056] The pusher can be a multi-layer structure with multi-layer storage trays. The bottom of the pusher can be provided with a hollow connector to facilitate a forklift to connect the pusher through the connector to transport the pusher to the interior of the tank body 1; a track that cooperates with the pusher can also be set inside the tank body 1, and when the pusher is transported to the opening of the tank body 1 by a forklift, it moves along the track of the tank body 1 to the interior of the tank body 1.

[0057] As a preferred embodiment, a saddle is connected to the bottom of the tank body 1, and the saddle is used to support the tank body 1. The saddle is a fixed structure, which is convenient for fixing the tank body 1 to the ground.

[0058] As a preferred embodiment, the tank body 1 is connected to a pressure gauge, which is arranged on the top of the tank body 1 and is used to monitor the internal pressure of the tank body 1.

[0059] As a preferred embodiment, the tank body 1 is connected to a thermometer, which is arranged on the top of the tank body 1 and is used to monitor the temperature inside the tank body 1.

[0060] The pressure and temperature of the tank body 1 can be monitored in real time by a pressure gauge and a temperature gauge to ensure the normal progress of the carbonization reaction.

[0061] As a preferred embodiment, the tank body 1 is connected to a safety valve, and the safety valve is arranged on the top of the tank body 1.

[0062] The safety valve is provided to adjust the pressure inside the tank body 1 to prevent the pressure inside the tank body 1 from being too high and affecting the life of the tank body 1, and to prevent the pressure inside the tank body 1 from being too low and being detrimental to the carbonization reaction, thereby ensuring the smooth progress of the carbonization reaction.

[0063] Anything not described in this utility model can be achieved by adopting or drawing on existing technologies.

[0064] The various embodiments in this specification are described in a progressive manner, and the same or similar parts between the various embodiments can be referred to each other. Each embodiment focuses on the differences from other embodiments.

[0065] The above description is merely an embodiment of the present invention and is not intended to limit the present invention. Those skilled in the art will readily appreciate that various modifications and variations of the present invention are possible. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present invention are intended to be within the scope of the claims of the present invention.

Claims

1. A carbonization tank device for gas-water separation, characterized in that: It includes a tank body; the tank body has an air inlet end and an air exhaust end that are oppositely arranged and connected to the interior of the tank body; the air inlet end is connected to an air inlet pipe extending to the interior of the tank body, and the air inlet pipe has multiple air outlets for exhausting gas; the exhaust end is connected to a waterproof plate on the side facing the tank body for preventing liquid generated by the carbonization reaction of the gas from entering the exhaust end.

2. A carbonization tank device for gas-water separation according to claim 1, characterized in that: The bottom of the tank body is connected to a drainage pipe protruding from the outer side of the tank body, and a drainage cavity lower than the bottom surface of the tank body is formed between the drainage pipe and the tank body. A plurality of drainage ports are provided on the side of the drainage cavity facing the tank body to discharge the liquid in the tank body into the drainage cavity through the drainage ports.

3. The carbonization tank device for gas-water separation according to claim 1, characterized in that: The air inlet pipe is connected to the bottom of the tank body, and has a bent section and a horizontal section connected to each other. The bent section extends to a side outside the tank body and has an air inlet, and the horizontal section extends to a side inside the tank body and has an air outlet.

4. A carbonization tank device for gas-water separation according to claim 3, characterized in that: The horizontal section extends along the length direction of the tank body, and a plurality of air outlets are arranged at intervals along the extending direction of the horizontal section toward the inner wall of the tank body.

5. The carbonization tank device for gas-water separation according to claim 1, characterized in that: The air inlet pipe is connected to the top of the tank body, one end of the air inlet pipe extends to the outside of the top of the tank body, and the other end of the air inlet pipe extends into the interior of the tank body and extends along the circumferential direction of the tank body.

6. The carbonization tank device for gas-water separation according to claim 1, characterized in that: A water baffle is connected to the circumferential inner wall of the tank body to separate the interior of the tank body. A wind cavity for accommodating a circulating fan is formed between the water baffle and one side of the tank body, and a receiving cavity for accommodating gas is formed between the water baffle and the other side of the tank body. The water baffle can prevent the liquid in the receiving cavity from entering the wind cavity.

7. A carbonization tank device for gas-water separation according to claim 6, characterized in that: The water baffle is provided with a plurality of air holes to allow air in the air cavity and the accommodating cavity to circulate.

8. The carbonization tank device for gas-water separation according to claim 1, characterized in that: The interior of the can body is hollow, and one side of the can body along the length direction is provided with an opening, and a can cover is connected to the opening to open or close the can body.

9. A carbonization tank device for gas-water separation according to claim 8, characterized in that: A material pusher moving along the interior of the tank body is provided inside the tank body, and the material pusher is used to transport the material into the interior of the tank body to undergo carbonization reaction with the gas to absorb harmful substances in the gas.

10. The carbonization tank device for gas-water separation according to claim 1, characterized in that: The tank body is connected to a pressure gauge, which is arranged on the top of the tank body and is used to monitor the internal pressure of the tank body.

Citation Information

Patent Citations

  • Carbonization device for treating carbon dioxide waste gas

    CN217247947U