Gas-liquid separation device

By designing the condenser cylinder and vessel structure, and combining the condenser components and flow guiding components, the problems of uneven condensation and low efficiency in gas-liquid separation were solved, achieving the effects of high-efficiency condensation and reduced equipment costs.

CN223846578UActive Publication Date: 2026-01-30荆门市敏杰机电设备有限公司
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Patent Information

Application Number
CN202422151882.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-02
Publication Date
2026-01-30
Estimated Expiration
2034-09-02

AI Technical Summary

Technical Problem

Existing gas-liquid separation devices suffer from uneven condensation range, low separation efficiency, high equipment cost, and inconvenient maintenance.

Method used

A gas-liquid separation device was designed, including a condenser cylinder, a vessel body, and a filter component. Gas-liquid separation is achieved through a condenser assembly and a flow guiding assembly, and uniform cooling is achieved by using a coolant to improve condensation efficiency.

Benefits of technology

It achieves efficient gas-liquid separation, improves condensation efficiency, and reduces equipment costs and maintenance difficulty.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a gas-liquid separation device, which belongs to the technical field of gas-liquid separation and comprises a condensing cylinder, a condensing component arranged in the condensing cylinder, a kettle body I arranged on the upper side of the condensing cylinder, a particle filtering part arranged in the kettle body I, an exhaust pipe arranged on the upper side of the kettle body I and a kettle body II arranged on the lower side of the condensing cylinder. A flow guide assembly is arranged in the second kettle body, an air inlet pipe is arranged on the outer side of the second kettle body, a liquid discharging pipe is arranged on the lower side of the second kettle body, the particle filtering part comprises a first particle filtering plate, the first particle filtering plate is arranged on the inner side wall of the first kettle body, and a second particle filtering plate is arranged between the condensation barrel and the first kettle body. According to the utility model, the problems of non-uniform condensation range and low separation efficiency of gas-liquid separation are solved.
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Description

TECHNICAL FIELD

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

[0002] In the equipment in the material recovery system, tail gas treatment system of traditional pesticide, pharmaceutical and fine chemical industry, generally by condensation heat exchange device, trapping device and buffer device are composed, the cost is higher, and the maintenance is inconvenient.

[0003] The prior art discloses a kind of pesticide production waste recovery treatment system with the application number CN202022200213.2 in prior art, including data acquisition module, main control module, drive module, waste gas treatment system, steam recycling system, waste water collection and discharge system;Waste gas collection device is connected with condenser pipe, condenser pipe is connected with acidic reaction tank, acidic reaction tank is connected with alkaline reaction tank, alkaline reaction tank is connected with adsorption device, adsorption device is connected with exhaust device, reflux pipe is used to connect adsorption device and condenser pipe;Steam recovery device is connected with water storage tank, water storage tank is connected with condenser tank, condenser tank is connected with water purification device, water purification device is connected with pure water tank, heat storage device is connected with condenser tank;By this design, the waste gas and waste water in the pesticide production process are treated, to avoid the purpose of causing pollution to the environment, while the high-temperature steam generated by the equipment is collected, the heat stored therein is used as raw material for producing pure water, and energy is saved.

[0004] The deficiencies are that the condenser tank and the adsorption device need to be set to separate and condense the waste materials respectively, the equipment cost is high, the maintenance is inconvenient, and the condensation is uneven, so that the condensation effect is low. UTILITY MODEL CONTENT

[0005] Based on the above description, the utility model provides a kind of gas-liquid separation device, which solves the problem of uneven condensation range and low separation efficiency in gas-liquid separation.

[0006] The technical solution to solve the above technical problems is as follows:

[0007] A kind of gas-liquid separation device, including condensing cylinder, condensing assembly is arranged in the condensing cylinder, the upper side of the condensing cylinder is provided with kettle body one, particle filter part is arranged in the kettle body one, the upper side of the kettle body one is provided with inlet pipe, the lower side of the condensing cylinder is provided with kettle body two, flow guide assembly is arranged in the kettle body two, the outer side of the kettle body two is provided with exhaust pipe, the lower side of the kettle body two is provided with liquid discharge pipe.

[0008] Based on the above technical solution, the utility model can also be improved as follows.

[0009] Further, the particle filtering part comprises a particle filtering plate one, which is arranged on the inner side wall of the kettle body one, and a particle filtering plate two is arranged between the condensing cylinder and the kettle body one.

[0010] Further, the condensing assembly comprises a cooling liquid inlet pipe, which is arranged on the outer side of the condensing cylinder, and an end portion of the cooling liquid inlet pipe is provided with a flow guide ring one, the outer side of the flow guide ring one is provided with a plurality of condensing pieces, one side of the condensing piece is provided with a flow guide ring two, and one side of the flow guide ring two is provided with a cooling liquid outlet pipe.

[0011] Further, the flow guide assembly comprises a mounting plate, which is arranged between the kettle body two and the condensing cylinder, a plurality of fins are embedded on one side of the mounting plate, the fins are provided with a plurality of through holes on one side, and a plurality of flow guide holes are arranged on the upper side of the mounting plate.

[0012] Further, the outer side of the kettle body two is provided with a plurality of supporting legs.

[0013] Further, the upper side of the kettle body one is provided with two lifting lugs in parallel and symmetry.

[0014] Compared with the prior art, the technical scheme of the present application has the following beneficial technical effects:

[0015] According to the utility model, the mixture gas enters the condensing cylinder through the gas inlet pipe, is condensed and separated into liquid in the condensing cylinder, and then is filtered in the particle filtering part, the condensing assembly separates the mixture gas into gas and liquid, the flow guide assembly guides the separation to flow into the kettle body two, the gas is discharged through the gas outlet pipe, and the liquid is discharged through the liquid outlet pipe, so that the high-efficiency condensing and gas-liquid separation function is provided.

[0016] In the utility model, the cooling liquid enters the flow guide ring one through the cooling liquid inlet pipe, flows into the condensing piece through the flow guide ring one, the uniform cooling space is formed in the condensing cylinder, the cooling liquid flows into the flow guide ring two after the condensing piece, and is discharged through the cooling liquid outlet pipe, so that the new cooling liquid is kept in the condensing piece at all times, and the condensing efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 It is a structure schematic view of the front side of the utility model;

[0018] Figure 2 It is a structure schematic view of the front side of the utility model;

[0019] Figure 3 It is a structure schematic view of the front side of the utility model;

[0020] Figure 4The explosion type structure schematic diagram of the utility model discloses a kind of;

[0021] In the drawings, the component list represented by each mark is as follows:

[0022] 1, condensing cylinder;2, kettle body one;3, kettle body two;4, exhaust pipe;5, air inlet pipe;6, liquid discharge pipe;7, granular filter plate one;9, granular filter plate two;10, cooling liquid inlet pipe;11, flow guide ring one;12, condensing piece;13, flow guide ring two;14, cooling liquid outlet pipe;15, mounting plate;16, fin;17, flow guide hole;18, support leg;19, lifting lug. DETAILED DESCRIPTION

[0023] In order to facilitate the understanding of the present application, the present application will be described more fully below with reference to the relevant drawings. The embodiments of the present application are shown in the drawings. However, the present application can be implemented in many different forms, and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the disclosure of the present application more thorough and comprehensive.

[0024] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which the present application belongs. The terminology used in the specification of the present application herein is only for the purpose of describing specific embodiments and is not intended to limit the present application.

[0025] It can be understood that spatial relationship terms, such as "under", "below", "lower", "underneath", "on", "upper", etc., can be used herein to describe the relationship of one element or feature to another element or feature as shown in the figures. It should be understood that, in addition to the orientation shown in the figures, the spatial relationship terms also include different orientations of the device in use and operation. For example, if the device in the figure is turned over, the element or feature described as "below" or "under" or "under" the other element will be oriented "on" the other element or feature. Therefore, the exemplary terms "below" and "under" can include both the upper and lower orientations. In addition, the device can also include another orientation (such as 90 degrees or other orientation), and the spatial description used herein is correspondingly interpreted.

[0026] It should be noted that when an element is considered to be "connected" to another element, it can be directly connected to another element, or connected to another element through a central element. In the following embodiments, "connected", if the circuits, modules, units, etc. connected to each other have the transmission of electrical signals or data, it should be understood as "electrically connected", "communication connection" and the like.

[0027] When used herein, the singular forms of “a,” “an,” and “the” may also include the plural forms unless the context clearly indicates otherwise. It should also be understood that the terms “comprising,” “including,” or “having,” etc., specify the presence of the stated feature, whole, step, operation, component, part, or combination thereof, but do not preclude the possibility of the presence or addition of one or more other features, wholes, steps, operations, components, parts, or combinations thereof.

[0028] like Figures 1-4 As shown, a gas-liquid separation device includes a condenser cylinder 1, a condenser assembly inside the condenser cylinder 1, and a coolant inlet pipe 10 located on the outside of the condenser cylinder 1. A guide ring 11 is provided at the end of the coolant inlet pipe 10, and a plurality of condenser elements 12 are provided on the outside of the guide ring 11. The condenser elements 12 are arranged in a spiral tube structure, and there are five of them. They are evenly distributed in a circle on the outside of the guide ring 11. A guide ring 13 is provided on one side of the condenser elements 12, and a coolant outlet pipe 14 is provided on one side of the guide ring 13.

[0029] A vessel body 2 is provided on the upper side of the condenser body 1. A particle filter section is provided inside the vessel body 2. The particle filter section includes a particle filter plate 7, which is located on the inner wall of the vessel body 2. A particle filter plate 9 is provided between the condenser body 1 and the vessel body 2.

[0030] An exhaust pipe 4 is provided on the upper side of the first vessel 2, and a second vessel 3 is provided on the lower side of the condenser cylinder 1. A flow guiding component is provided inside the second vessel 3. The flow guiding component includes a mounting plate 15, which is located between the second vessel 3 and the condenser cylinder 1. Several fins 16 are fitted on one side of the mounting plate 15, and several through holes are provided on one side of the fins 16. Several flow guiding holes 17 are provided on the upper side of the mounting plate 15, and the flow guiding holes 17 are arranged in an arc shape.

[0031] An air inlet pipe 5 is provided on the outer side of the second vessel body 3, a liquid drain pipe 6 is provided on the lower side of the second vessel body 3, several support legs 18 are provided on the outer side of the second vessel body 3, and two lifting lugs 19 are provided parallel and symmetrically on the upper side of the first vessel body 2.

[0032] In this embodiment, gas enters the condenser cylinder 1 through the inlet pipe 5, while coolant enters the guide ring 11 through the coolant inlet pipe 10. After passing through the guide ring 11, the coolant flows into the condenser 12, creating a uniform cooling space inside the condenser cylinder 1. After passing through the condenser 12, the coolant flows into the guide ring 13 and is finally discharged through the coolant outlet pipe 14, ensuring that the condenser 12 always has a constant supply of coolant. The gas in the condenser cylinder 1 is condensed and, with the help of the guide assembly, is guided to flow into the vessel body 3.

[0033] Subsequently, the gas is filtered by the second particle filter 9 for the first time, filtered by the first particle filter 7 for the second time, and finally discharged through the exhaust pipe 5, and the liquid is discharged through the liquid discharge pipe 6.

[0034] The above merely describes the preferred embodiments of the present application and is not intended to limit the present application, and any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A gas-liquid separation device, characterized by, The utility model provides a condensing cylinder is provided with condensing assembly in, the upper side of condensing cylinder is provided with cauldron body one, is provided with particle filter part in cauldron body one, the upper side of cauldron body one is provided with exhaust pipe, the lower side of condensing cylinder is provided with cauldron body two, is provided with flow guide assembly in cauldron body two, the outside of cauldron body two is provided with air inlet pipe, the lower side of cauldron body two is provided with liquid discharge pipe.

2. A gas-liquid separation device according to claim 1, wherein The particle filter part includes a particle filter plate one, which is arranged on the inner side wall of the cauldron body one, and a particle filter plate two is arranged between the condensing cylinder and the cauldron body one.

3. A gas-liquid separation device according to claim 1, wherein The condensing assembly includes a cooling liquid inlet pipe, which is arranged on the outer side of the condensing cylinder, and the end of the cooling liquid inlet pipe is provided with a flow guide ring one, the outer side of the flow guide ring one is provided with a plurality of condensing pieces, one side of the condensing piece is provided with a flow guide ring two, and one side of the flow guide ring two is provided with a cooling liquid outlet pipe.

4. The gas-liquid separation device of claim 1, wherein The flow guide assembly includes a mounting plate, which is arranged between the cauldron and the condensing cylinder, one side of the mounting plate is embedded with a plurality of fins, one side of the fin is provided with a plurality of through holes, and the upper side of the mounting plate is provided with a plurality of flow guide holes.

5. The gas-liquid separation device of claim 1, wherein The outer side of the cauldron body two is provided with a plurality of supporting legs.

6. A gas-liquid separation device according to claim 1, wherein The upper side of the cauldron is provided with two lifting lugs in parallel and symmetry.

Citation Information

Patent Citations

  • Pesticide production waste recovery treatment system

    CN214019269U