Integrated gas-liquid separation device

By integrating the separation and blowing mechanisms of the gas-liquid separation device, the problem of tiny particles and droplets in the gas is solved, achieving efficient gas separation and cleaning of the adsorption plate, ensuring gas purity and separation efficiency.

CN224056910UActive Publication Date: 2026-03-31YUNNAN ZHONGBEI BIOTECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-14
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

In existing technologies, gas separation devices still contain tiny particles or droplets after separation, affecting the purity and quality of the gas, and the adsorption plates are prone to clogging and cannot be effectively cleaned.

Method used

An integrated gas-liquid separation device is adopted, which includes a separation mechanism and an air blowing mechanism. The gas-liquid mixture is separated by baffles, the gas is adsorbed by an adsorption plate, the adsorption plate is cleaned by a cleaning brush, and an air pump provides inert gas to accelerate the separation. The gas-liquid separation is also accelerated by an atomizing nozzle.

Benefits of technology

It ensures that the gas purity meets the requirements, the adsorption plate is easy to clean, the separation efficiency is high, the adsorption plate is not blocked, and the gas quality is improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of gas-liquid separation, and discloses an integrated gas-liquid separation device which comprises a separation box, a sliding groove is formed in the front side face of the separation box, a feeding opening is formed in the top face of the separation box in a communicating mode, and a gas pipe is arranged on the right side face of the separation box in a communicating mode. By means of the separation mechanism and a baffle in a separation part, when a gas-liquid mixture enters the baffle through a feeding port, separation is conducted, liquid falls into a water collecting tank, gas enters an adsorption box through a gas pipe, adsorption is conducted through an adsorption plate in the adsorption box, and after adsorption, the gas is discharged through a gas outlet pipe; the bottom plate drives the cleaning brush, so that the cleaning brush slides on the surface of the sliding rod under the action of the side plate and the sliding block, the adsorption plate is cleaned, the cleaned dust falls into the dust collecting box to be collected, small particles and liquid drops in the gas are removed, it can be ensured that the exhausted gas meets the specific purity degree requirement, and the adsorption plate is convenient to clean.
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Description

TECHNICAL FIELD

[0001] The utility model relates to gas -liquid separation technical field, concretely is a kind of integrated gas -liquid separation device. BACKGROUND

[0002] In the process of oil exploitation and processing, the free water and oil in the oil and gas mixture need to be separated to improve the quality and yield of oil products, and in the chemical reaction process, gas and liquid also need to be separated to ensure the efficiency of chemical reaction and the quality of products.

[0003] Compared with prior art: in some application occasions, the purity of gas has strict requirements Due to the lack of filtering link, the separated gas may still contain tiny particles or droplets, and the existence of these impurities will directly affect the purity and quality of gas and cannot be cleaned, leading to the problem of adsorption plate blockage.

[0004] Therefore, an integrated gas-liquid separation device is proposed. UTILITY MODEL CONTENT

[0005] The utility model aims at providing an integrated gas-liquid separation device, which solves the technical problem that the existence of impurities directly affects the purity and quality of gas and achieves the purpose of adsorption purification.

[0006] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: an integrated gas-liquid separation device, comprising a separation tank, a chute is formed in the front side of the separation tank, a feed inlet is communicatively arranged on the top surface of the separation tank, a gas pipe is communicatively arranged on the right side of the separation tank, a separation mechanism is arranged on the right side of the separation tank, and a gas blowing mechanism is arranged on the rear side of the separation tank.

[0007] The separation mechanism comprises a separation part and an adsorption part.

[0008] The adsorption part is located on the inner side of the separation part.

[0009] The gas blowing mechanism comprises a gas blowing part and a supply part.

[0010] The supply part is located on the bottom surface of the gas blowing part.

[0011] Preferably, the separation part comprises a baffle, the baffle is located on the inner side of the separation tank, the baffle is fixedly connected with the separation tank, a water collecting tank is arranged below the baffle, the water collecting tank is slidably connected with the chute, a support plate is arranged on the right side of the water collecting tank, and the left side surface of the support plate is fixedly connected with the right side surface of the separation tank.

[0012] Preferably, the top surface of the support plate is provided with an adsorption box, the adsorption box is fixedly connected with the support plate, the inner side of the adsorption box is provided with a placing groove, the inner side of the adsorption box is provided with a through groove, the adsorption box is communicated with the air pipe, and the right side of the adsorption box is communicated with the air outlet pipe.

[0013] Preferably, the adsorption part includes an ash collecting box, the ash collecting box is located on the inner side of the placing groove, the ash collecting box is slidably connected with the placing groove, the ash collecting box extends through to the right side of the adsorption box, adsorption plates are arranged above the ash collecting box, the adsorption plates are fixedly connected with the inner side of the adsorption box, air cylinders are arranged above the adsorption plates, the air cylinders extend through to the inner side of the adsorption box, bottom plates are arranged on the output ends of the air cylinders, and the bottom plates are fixedly connected with the air cylinders.

[0014] Preferably, the outer side of the bottom plate is provided with a cleaning brush, the cleaning brush is fixedly connected with the bottom plate, the inner side of the cleaning brush is provided with a side plate, the side plate is fixedly connected with the cleaning brush, the outer side of the side plate is provided with a sliding block, the sliding block is fixedly connected with the side plate, sliding rods are arranged in the inner walls of the sliding blocks and extend through, the sliding rods are slidably connected with the sliding blocks, and the sliding rods are fixedly connected with the inner side of the through groove. Through the separation part and the adsorption part in the separation mechanism, the separation and filtration effects are achieved.

[0015] Preferably, the blowing part includes an atomizing nozzle, the top surface of the atomizing nozzle is communicated with a retention pipe, and the top surface of the retention pipe is communicated with a branch pipe.

[0016] Preferably, the supply part includes an air pump, the air pump is communicated with the branch pipe, the bottom end surface of the air pump is communicated with a connecting pipe, the bottom surface of the connecting pipe is communicated with an inert gas tank, and the front side of the inert gas tank is fixedly connected with the rear side of the separation box. Through the blowing part and the supply part in the blowing mechanism, the separation speed is increased.

[0017] Compared with the prior art, the integrated gas-liquid separation device has the advantages that

[0018] 1. Through the separation mechanism, when the gas-liquid mixture enters the baffle through the feeding port, separation is performed, so that the liquid falls into the water collecting tank, the gas enters the adsorption box through the air pipe, and the adsorption plate in the adsorption box is used for adsorption. After adsorption, the gas is discharged through the air outlet pipe. When the adsorption plate is blocked, the air cylinder is started, the air cylinder drives the bottom plate, the bottom plate drives the cleaning brush, and the cleaning brush slides on the surface of the sliding rod under the action of the side plate and the sliding block, so that the adsorption plate is cleaned. The dust after cleaning falls into the ash collecting box for collection, so that the small particles and liquid drops in the gas are removed, which can ensure that the discharged gas meets the specific purity requirement and facilitates cleaning of the adsorption plate.

[0019] 2), by blowing mechanism, using the air pump in the supply part, when the separation mechanism separates, the air pump extracts inert gas from the inert gas tank, so that it enters the retention pipe through the branch pipe, and finally sprays from the atomizing nozzle, so that the separation process of gas and liquid can be accelerated, and the separation efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 It is a structure schematic diagram of the utility model;

[0021] Figure 2 It is a structure overall section schematic diagram of the utility model;

[0022] Figure 3 It is a separation structure overall section schematic diagram of the utility model;

[0023] Figure 4 It is a separation structure adsorption plate out schematic diagram of the utility model;

[0024] Figure 5 It is a blowing structure schematic diagram of the utility model.

[0025] In the drawing: 1 separation tank, 2 separation mechanism, 21 separation part, 22 adsorption part, 211 baffle, 212 water collecting tank, 213 supporting plate, 214 adsorption tank, 215 air outlet pipe, 221 dust collecting box, 222 adsorption plate, 223 air cylinder, 224 bottom plate, 225 cleaning brush, 226 side plate, 227 sliding block, 228 sliding rod, 3 blowing mechanism, 31 blowing part, 32 supply part, 311 atomizing nozzle, 312 retention pipe, 313 branch pipe, 321 air pump, 322 connecting pipe, 323 inert gas tank. DETAILED DESCRIPTION

[0026] The technical scheme in the embodiments of the utility model will be described clearly and completely below in conjunction with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor belong to the scope of protection of the utility model.

[0027] Embodiment one:

[0028] Based on the problem that the existence of impurities can directly affect the purity and quality of gas, please refer to Figures 1-4 The utility model provides a kind of integrated gas-liquid separation device, including separation tank 1, chute is opened in the front side of separation tank 1, feed inlet is communicated and arranged on the top surface of separation tank 1, gas pipe is communicated and arranged on the right side of separation tank 1, separation mechanism 2 is arranged on the right side of separation tank 1, blowing mechanism 3 is arranged on the rear side of separation tank 1;

[0029] The separating mechanism 2 comprises a separating part 21 and an adsorbing part 22;

[0030] The adsorbing part 22 is located on the inner side of the separating part 21;

[0031] The blowing mechanism 3 comprises a blowing part 31 and a supply part 32;

[0032] The supply part 32 is located on the bottom surface of the blowing part 31.

[0033] The separating part 21 comprises a baffle 211 located on the inner side of the separating box 1, the baffle 211 is fixedly connected with the separating box 1, a water collecting box 212 is arranged below the baffle 211, the water collecting box 212 is slidingly connected with the chute, a supporting plate 213 is arranged on the right side of the water collecting box 212, and the left side surface of the supporting plate 213 is fixedly connected with the right side surface of the separating box 1.

[0034] A suction box 214 is arranged on the top surface of the supporting plate 213, the suction box 214 is fixedly connected with the supporting plate 213, a placing groove is formed in the inner side surface of the suction box 214, a through groove is formed in the inner side surface of the suction box 214, the suction box 214 is communicated with the air pipe, and an air outlet pipe 215 is communicated on the right side surface of the suction box 214.

[0035] The adsorbing part 22 comprises a dust collecting box 221 located on the inner side of the placing groove, the dust collecting box 221 is slidingly connected with the placing groove, the dust collecting box 221 extends through to the right side of the suction box 214, adsorbing plates 222 are arranged above the dust collecting box 221, the adsorbing plates 222 are fixedly connected with the inner side surface of the suction box 214, air cylinders 223 are arranged above the adsorbing plates 222, the air cylinders 223 extend through to the inner side surface of the suction box 214, bottom plates 224 are arranged on the output end surfaces of the air cylinders 223, and the bottom plates 224 are fixedly connected with the air cylinders 223.

[0036] Cleaning brushes 225 are arranged on the outer side surfaces of the bottom plates 224, the cleaning brushes 225 are fixedly connected with the bottom plates 224, side plates 226 are arranged on the inner side surfaces of the cleaning brushes 225, the side plates 226 are fixedly connected with the cleaning brushes 225, sliding blocks 227 are arranged on the outer side surfaces of the side plates 226, the sliding blocks 227 are fixedly connected with the side plates 226, sliding rods 228 are arranged in the inner walls of the sliding blocks 227, the sliding rods 228 are slidingly connected with the sliding blocks 227, and the sliding rods 228 are fixedly connected with the inner side surfaces of the through grooves.

[0037] Further, the embodiment separates the gas-liquid mixture by the separating mechanism 2, and the baffle 211 in the separating part 21 collides with the gas-liquid mixture and separates the mixture, and the liquid falls into the water collecting tank 212 due to gravity, so that the liquid is collected and preliminarily separated, and the separated gas component enters the adsorption tank 214 through the gas pipe, and in the adsorption tank 214, the gas is adsorbed by the adsorption plate 222, so that the gas reaches the specific purity requirement, and then the pure gas is discharged through the gas outlet pipe 215, and over time, the adsorption plate 222 surface may accumulate too much impurities, causing blockage, at this time, the air cylinder 223 is started, the air cylinder 223 generates power and drives the bottom plate 224 to move, the bottom plate 224 further drives the cleaning brush 225 to slide along the surface of the slide rod 228 under the guidance of the side plate 226 and the sliding block 227, the sliding action of the cleaning brush 225 effectively cleans the impurities and dust on the surface of the adsorption plate 222, and the cleaned dust and impurities fall into the dust collecting box 221, so that the dust is collected and treated;

[0038] Further, the embodiment separates the gas-liquid mixture by the separating mechanism 2, and the baffle 211 in the separating part 21 collides with the gas-liquid mixture and separates the mixture, and the liquid falls into the water collecting tank 212 due to gravity, so that the liquid is collected and preliminarily separated, and the separated gas component enters the adsorption tank 214 through the gas pipe, and in the adsorption tank 214, the gas is adsorbed by the adsorption plate 222, so that the gas reaches the specific purity requirement, and then the pure gas is discharged through the gas outlet pipe 215, and over time, the adsorption plate 222 surface may accumulate too much impurities, causing blockage, at this time, the air cylinder 223 is started, the air cylinder 223 generates power and drives the bottom plate 224 to move, the bottom plate 224 further drives the cleaning brush 225 to slide along the surface of the slide rod 228 under the guidance of the side plate 226 and the sliding block 227, the sliding action of the cleaning brush 225 effectively cleans the impurities and dust on the surface of the adsorption plate 222, and the cleaned dust and impurities fall into the dust collecting box 221, so that the dust is collected and treated;

[0039] Embodiment two:

[0040] Please refer to Figure 1 、 Figure 2 、 Figure 5 , and on the basis of embodiment one, further obtained: the air blowing part 31 comprises an atomizing nozzle 311, the top surface of the atomizing nozzle 311 is communicated and provided with a retention pipe 312, the top surface of the retention pipe 312 is communicated and provided with a branch pipe 313, and the branch pipe 313 extends through to the outside of the separating tank 1.

[0041] The supply part 32 comprises an air pump 321, the air pump 321 is communicated with the branch pipe 313, the bottom end surface of the air pump 321 is communicated and provided with a connecting pipe 322, the bottom surface of the connecting pipe 322 is communicated and provided with an inert gas tank 323, and the front side of the inert gas tank 323 is fixedly connected with the rear side of the separating tank 1.

[0042] Further, the embodiment is provided with the blowing mechanism 3, the air pump 321 in the supply part 32 is used, when the separating mechanism 2 starts to carry out the gas-liquid separation operation, the air pump 321 starts to work, the inert gas is extracted from the inert gas tank 323, after the inert gas is extracted, the inert gas is transmitted through the branch pipe 313, after the inert gas passes through the branch pipe 313, enters the retention pipe 312, the atomizing nozzle 311 is arranged at the end of the retention pipe 312, the inert gas is sprayed from the nozzle, the inert gas sprayed forms a gas flow, which can accelerate the separation process of the gas and the liquid;

[0043] Further, the embodiment is provided with the blowing mechanism 3, the air pump 321 in the supply part 32 is used, when the separating mechanism 2 starts to carry out the gas-liquid separation operation, the air pump 321 starts to work, the inert gas is extracted from the inert gas tank 323, after the inert gas is extracted, the inert gas is transmitted through the branch pipe 313, after the inert gas passes through the branch pipe 313, enters the retention pipe 312, the atomizing nozzle 311 is arranged at the end of the retention pipe 312, the inert gas is sprayed from the nozzle, the inert gas sprayed forms a gas flow, which can accelerate the separation process of the gas and the liquid;

[0044] In use, the separating mechanism 2 is used, the baffle 211 in the separating part 21 is used, the baffle 211 makes the gas-liquid mixture collide and separate, the liquid falls into the water collecting tank 212 due to the action of gravity, the liquid is collected and preliminarily separated, the separated gas component enters the adsorption tank 214 through the gas pipe, in the adsorption tank 214, the gas is subjected to the adsorption treatment of the adsorption plate 222, the gas reaches the specific purity requirement, the pure gas is then discharged through the gas outlet pipe 215, the blowing mechanism 3 is used, the air pump 321 in the supply part 32 is used, when the separating mechanism 2 starts to carry out the gas-liquid separation operation, the air pump 321 starts to work, the inert gas is extracted from the inert gas tank 323, after the inert gas is extracted, the inert gas is transmitted through the branch pipe 313, after the inert gas passes through the branch pipe 313, enters the retention pipe 312, the atomizing nozzle 311 is arranged at the end of the retention pipe 312, the inert gas is sprayed from the nozzle, the inert gas sprayed forms a gas flow, which can accelerate the separation process of the gas and the liquid, with the lapse of time, the surface of the adsorption plate 222 can accumulate too much impurities, which causes blockage, at this time, the air cylinder 223 is started, the air cylinder 223 generates power and drives the bottom plate 224 to move, the bottom plate 224 further drives the cleaning brush 225 to slide along the surface of the slide rod 228 under the guidance of the side plate 226 and the sliding block 227, the sliding action of the cleaning brush 225 effectively cleans the impurities and dust on the surface of the adsorption plate 222, the cleaned dust and impurities fall into the dust collecting box 221, the dust is centrally collected and treated.

[0045] Although the embodiments of the present application have been shown and described, it should be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and spirit of the present application, the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. An integrated gas-liquid separation device comprising a separation tank (1), characterized in that: The separation tank (1) is provided with a chute on the front side, a feed inlet is communicated on the top surface of the separation tank (1), an air pipe is communicated on the right side of the separation tank (1), a separation mechanism (2) is arranged on the right side of the separation tank (1), and a blowing mechanism (3) is arranged on the rear side of the separation tank (1); The separation mechanism (2) comprises a separation part (21) and an adsorption part (22); The adsorption part (22) is located on the inner side of the separation part (21); The blowing mechanism (3) comprises a blowing part (31) and a supply part (32); The supply part (32) is located on the bottom surface of the blowing part (31).

2. An integrated gas-liquid separation device according to claim 1, wherein: The separation part (21) comprises a baffle (211), the baffle (211) is located on the inner side of the separation tank (1), the baffle (211) is fixedly connected with the separation tank (1), a water collecting tank (212) is arranged below the baffle (211), the water collecting tank (212) is slidably connected with the chute, a supporting plate (213) is arranged on the right side of the water collecting tank (212), and the left side surface of the supporting plate (213) is fixedly connected with the right side surface of the separation tank (1).

3. An integrated gas-liquid separation device according to claim 2, wherein: A adsorption tank (214) is arranged on the top surface of the supporting plate (213), the adsorption tank (214) is fixedly connected with the supporting plate (213), a placing groove is formed in the inner side of the adsorption tank (214), a through groove is formed in the inner side of the adsorption tank (214), the adsorption tank (214) is communicated with the air pipe, and an air outlet pipe (215) is communicated on the right side surface of the adsorption tank (214).

4. An integrated gas-liquid separation device according to claim 3, wherein: The adsorption part (22) comprises a dust collecting box (221), the dust collecting box (221) is located on the inner side of the placing groove, the dust collecting box (221) is slidably connected with the placing groove, the dust collecting box (221) extends through to the right side of the adsorption tank (214), adsorption plates (222) are arranged above the dust collecting box (221), the adsorption plates (222) are fixedly connected with the inner side of the adsorption tank (214), air cylinders (223) are arranged above the adsorption plates (222), the air cylinders (223) extend through to the inner side of the adsorption tank (214), bottom plates (224) are arranged on the output end surfaces of the air cylinders (223), and the bottom plates (224) are fixedly connected with the air cylinders (223).

5. An integrated gas-liquid separation device according to claim 4, wherein: Clean brushes (225) are arranged on the outer side surfaces of the bottom plates (224), the clean brushes (225) are fixedly connected with the bottom plates (224), side plates (226) are arranged on the inner side surfaces of the clean brushes (225), the side plates (226) are fixedly connected with the clean brushes (225), sliding blocks (227) are arranged on the outer side surfaces of the side plates (226), the sliding blocks (227) are fixedly connected with the side plates (226), sliding rods (228) are arranged in the inner walls of the sliding blocks (227), the sliding rods (228) are slidably connected with the sliding blocks (227), and the sliding rods (228) are fixedly connected with the inner side surfaces of the through grooves.

6. The integrated gas-liquid separation device of claim 1, wherein: The blowing part (31) includes atomizing nozzles (311), the top surface of the atomizing nozzles (311) is communicated with retention pipes (312), the top surface of the retention pipes (312) is communicated with branch pipes (313), and the branch pipes (313) extend to the outside of the separation box (1).

7. An integrated gas-liquid separation device according to claim 6, wherein: The supply part (32) includes an air pump (321) communicated with the branch pipes (313), the bottom end surface of the air pump (321) is communicated with a connecting pipe (322), the bottom surface of the connecting pipe (322) is communicated with an inert gas tank (323), and the front side of the inert gas tank (323) is fixedly connected with the rear side of the separation box (1).