A multi-purpose recovery column

CN224656383UActive Publication Date: 2026-08-21CHONGQING NAIDESAISI ENVIRONMENTAL PROTECTION ENG EQUIP CO LTD +1
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Patent Information

Application Number
CN202521670333.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-07
Publication Date
2026-08-21
Estimated Expiration
2035-08-07

AI Technical Summary

Technical Problem

[0004]本实用新型的目的在于提供一种多用途回收塔,旨在解决现有的用于油气回收装置的回收塔大多仅仅具有基本功能,不具备油品储存功能,同时现场不能提供供油气回收装置喷淋油储罐的问题

Benefits of technology

[0013]本实用新型的一种多用途回收塔,通过在回收塔本体下端的存液部上分别设置有液位变送器、温度变送器、液位开关对存储的柴油进行实时监控,并在上侧设置进油组件,下端设置有循环输出组件,从而使得回收塔本体在使用时能够实现功能增加,除具备油气回收装置回收塔基本功能外,直接增加了油品储存功能,通过设置的循环输出组件和循环管路,油液可通过回收塔本体上端喷洒而下,对进入的高浓度油气进行吸收处理,并与回收塔本体下端的柴油混合,进而能够解决现有的用于油气回收装置的回收塔大多仅仅具有基本功能,不具备油品储存功能,同时现场不能提供供油气回收装置喷淋油储罐的问题。

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Abstract

The utility model relates to the technical field of recovery tower, specifically relates to a multipurpose recovery tower, including recovery tower body, liquid level transmitter, temperature transmitter, liquid level switch, oil inlet subassembly, circulating output subassembly and circulating pipeline, through setting up liquid level transmitter, temperature transmitter, liquid level switch respectively on the liquid storage part of recovery tower body lower extreme, real -time monitoring is carried out to the storage diesel oil, thereby make recovery tower body can realize function increase when using, in addition to possessing oil gas recovery device recovery tower basic function, directly increased oil product storage function, through setting up circulating output subassembly and circulating pipeline, oil liquid can be sprayed down through recovery tower body upper end, carry on the absorption treatment to the high concentration oil gas of entering, and mix with recovery tower body lower end diesel oil, and can solve the problem that the existing recovery tower for oil gas recovery device mostly only has basic function, does not have oil product storage function, and the on -the -spot oil gas recovery device spray oil storage tank cannot be provided simultaneously.
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Description

Technical Field

[0001] This utility model relates to the field of recycling tower technology, and in particular to a multi-purpose recycling tower. Background Technology

[0002] Oil and gas recovery is an energy-saving and environmentally friendly new technology. It recovers oil and gas emitted during storage, transportation, and loading / unloading, preventing air pollution caused by oil and gas volatilization, eliminating safety hazards, and improving energy utilization efficiency to reduce economic losses, thus yielding considerable economic benefits. Common methods include adsorption, absorption, condensation, and membrane separation systems.

[0003] Currently, most recovery towers used in oil and gas recovery devices only have basic functions and do not have oil storage functions. At the same time, there is a problem that on-site oil spraying oil storage tanks cannot be provided for oil and gas recovery devices. Utility Model Content

[0004] The purpose of this utility model is to provide a multi-purpose recovery tower, which aims to solve the problem that most existing recovery towers used in oil and gas recovery devices only have basic functions and do not have oil storage functions, and at the same time, the site cannot provide a storage tank for sprayed oil of the oil and gas recovery device.

[0005] To achieve the above objectives, this utility model provides a multi-purpose recovery tower, including a recovery tower body. A liquid level transmitter, a temperature transmitter, and a liquid level switch are respectively installed on the liquid storage section at the lower end of the recovery tower body to monitor the stored diesel fuel in real time.

[0006] The upper end of the recovery tower body is provided with an oil inlet assembly, and the lower end is provided with a circulation output assembly;

[0007] The oil inlet assembly is used to input diesel fuel into the body of the recovery tower.

[0008] The circulation output component is used for diesel output and circulation, and the oil circulation is achieved through a circulation pipeline provided between the oil inlet component and the circulation output component.

[0009] The upper lower side of the recovery tower body is also connected to a vacuum pump delivery assembly. The vacuum pump delivery assembly includes a delivery pipe and a vacuum pump. The delivery pipe is connected to the upper lower side connecting pipe of the recovery tower body and the vacuum pump, respectively.

[0010] The upper side of the upper end of the recovery tower body is also provided with a gas return assembly, which includes a gas return pipe and a sampling quick connector. The gas return pipe is located at the top of the upper end of the recovery tower body, and the sampling quick connector is located at the sampling port of the gas return pipe.

[0011] The level transmitter is equipped with a data display screen.

[0012] Pressure gauges are installed on the delivery pipes of the oil inlet assembly and the circulation output assembly, respectively.

[0013] This utility model discloses a multi-purpose recovery tower. By installing a level transmitter, a temperature transmitter, and a level switch on the liquid storage section at the lower end of the recovery tower body, the stored diesel fuel can be monitored in real time. An oil inlet component is installed on the upper side, and a circulation output component is installed at the lower end. This allows the recovery tower body to increase its functionality during use. In addition to the basic functions of an oil and gas recovery tower, it directly adds an oil storage function. Through the set circulation output component and circulation pipeline, the oil can be sprayed down from the upper end of the recovery tower body to absorb and treat the high-concentration oil and gas entering the tower body and mix with the diesel fuel at the lower end of the recovery tower body. This solves the problem that most existing recovery towers used for oil and gas recovery devices only have basic functions and do not have oil storage functions, and that on-site oil spray tanks for oil and gas recovery devices cannot be provided. Attached Figure Description

[0014] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.

[0015] Figure 1 This is a schematic diagram illustrating the working principle of the multi-purpose recycling tower of this utility model.

[0016] Figure 2 This is a schematic diagram of the installation position of the sampling quick connector of this utility model.

[0017] In the diagram: 101-Recovery tower body, 102-Level transmitter, 103-Temperature transmitter, 104-Level switch, 105-Oil inlet assembly, 106-Circulation output assembly, 107-Circulation pipeline, 108-Transfer pipeline, 109-Vacuum pump, 110-Return gas pipeline, 111-Sampling quick connector, 112-Pressure gauge. Detailed Implementation

[0018] The embodiments of the present invention are described in detail below. Examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, but should not be construed as limiting the present invention.

[0019] like Figure 1 and Figure 2 As shown, where Figure 1 This is a schematic diagram illustrating the working principle of a multi-purpose recycling tower. Figure 2This is a schematic diagram of the installation position of the sampling quick connector 111. This utility model provides a multi-purpose recovery tower: including a recovery tower body 101, a level transmitter 102, a temperature transmitter 103, a level switch 104, an oil inlet assembly 105, a circulation output assembly 106, a circulation pipeline 107, a vacuum pump delivery assembly, and a return gas assembly. The vacuum pump delivery assembly includes a delivery pipeline 108 and a vacuum pump 109. The return gas assembly includes a return gas pipeline 110 and the sampling quick connector 111. This solution addresses the problem that most existing recovery towers used in oil and gas recovery devices only have basic functions and lack oil storage capabilities, and that on-site supply of spray oil storage tanks for oil and gas recovery devices is often unavailable. It is understood that this solution allows the recovery tower body 101 to not only possess the basic functions of an oil and gas recovery tower but also to add oil storage functionality and solve the problem of on-site supply of spray oil storage tanks for oil and gas recovery devices.

[0020] In this embodiment, the upper cylindrical portion of the recovery tower body 101, constrained by its internal functional structure, weighs approximately 10 tons. To ensure the strength of the lower portion is not affected, lug supports are added to the upper portion. Simultaneously, a steel structure support is installed to transfer the weight to the foundation, reducing pressure on the liquid storage section. The lug supports are oblique triangular and symmetrically arranged. A mating plate is welded to the side of the lug supports closest to the recovery tower body 101, and the mating plate is welded to the recovery tower body 101. The other side is welded to the top of the steel structure support, and the bottom of the steel structure support rests against the ground for support. A rectangular frame support is used. Meanwhile, the corresponding auxiliary markings in the accompanying drawings are the English abbreviations of standard components such as valves and pipes in the prior art. The corresponding Chinese codes can be directly retrieved from the prior art and will not be described in detail here.

[0021] The recovery tower body 101 has a liquid storage section at its lower end equipped with a level transmitter 102, a temperature transmitter 103, and a level switch 104 for real-time monitoring of the stored diesel fuel. The level transmitter 102 is a precision instrument that accurately converts liquid level into an electrical signal output, often employing pressure or ultrasonic measurement technologies to ensure high accuracy and reliability. The level switch 104 detects the liquid level using a microswitch and controls the switching action based on the contact status signal. Together, these two devices form a dual-level monitoring structure, improving the accuracy of the monitoring data. The temperature transmitter 103 is used for temperature monitoring.

[0022] The upper end of the recovery tower body 101 is provided with an oil inlet assembly 105, and the lower end is provided with a circulation output assembly 106.

[0023] The oil inlet assembly 105 is used to input diesel fuel into the recovery tower body 101; from the attached... Figure 1As can be seen from the above, the oil injection path of the recovery tower body 101 is as follows: oil tanker transported to the equipment site → A2V1 → A2ST1 → P-1 diesel transfer pump → HCV-9 → FIT-2 → A2V2 → enters the interior of the recovery tower body 101, and is finally stored in the lower part of the recovery tower body 101 (approximately 35 cubic meters of diesel fuel injected).

[0024] The circulation output assembly 106 is used for diesel fuel output and circulation, and the oil circulation is achieved through a circulation pipeline 107 provided between the oil inlet assembly 105 and the circulation output assembly 106. (See attached...) Figure 1 The diesel circulation path within the recovery tower body 101 is as follows: diesel at the bottom of the recovery tower → A2V3 → A2ST2 → P-2 diesel circulation and output pump → HCV-10 → FIT-2 → A2V2 → sprayed down from the top of the recovery tower body 101, absorbing and treating the high-concentration oil and gas entering from A1C2, and mixing with the diesel at the bottom of the recovery tower body 101. Finally, the oil discharge path of the recovery tower body 101 is as follows: the oil and gas recovery device operates for a long time until the diesel storage reaches 45 cubic meters → A2V3 → A2ST2 → P-2 diesel circulation and output pump → A2V4 → transported to the on-site tanker truck, and oil discharge stops when the storage drops to 15 cubic meters; new oil is then injected back into the recovery tower body 101 according to the oil injection path.

[0025] Secondly, the conveying pipe 108 is connected to the upper lower side connecting pipe of the recovery tower body 101 and the vacuum pump 109. The vacuum pump 109 works in conjunction with the conveying pipe 108 to input oil and gas into the recovery tower body 101.

[0026] Then, the gas return assembly includes a gas return pipe 110 and a sampling quick connector 111. The gas return pipe 110 is located at the top of the upper end of the recovery tower body 101; the sampling quick connector 111 is located at the sampling port of the gas return pipe 110. The gas return pipe 110 and the sampling quick connector 111 are used for sampling.

[0027] Furthermore, the level transmitter 102 is equipped with a data display screen. The data display screen will facilitate data observation.

[0028] Finally, pressure gauges 112 are respectively installed on the delivery pipes of the oil inlet assembly 105 and the circulation output assembly 106. This structure facilitates the monitoring of pipeline pressure at all times, ensuring safety.

[0029] When using this utility model to address the problem that most existing oil and gas recovery towers only have basic functions and lack oil storage capabilities, and that on-site supply tanks for spray oil from oil and gas recovery devices are unavailable, this application firstly addresses the issue by installing a level transmitter 102, a temperature transmitter 103, and a level switch 104 on the liquid storage section at the lower end of the recovery tower body 101 to monitor the stored diesel fuel in real time. Furthermore, an oil inlet assembly 105 is installed at the upper side for oil intake, and a circulation output assembly 106 is installed at the lower end for oil output and circulation, thereby enabling the recovery tower to achieve... When in use, the main body 101 can achieve functional expansion. In addition to the basic functions of the oil and gas recovery tower, it directly adds an oil storage function. Through the circulation output component 106 and the circulation pipeline 107, the oil can be sprayed down from the upper end of the recovery tower body 101 to absorb and treat the high-concentration oil and gas entering, and mix with the diesel at the lower end of the recovery tower body 101. This solves the problem that most existing recovery towers used for oil and gas recovery devices only have basic functions and do not have oil storage functions, and that on-site oil spray tanks cannot be provided for the oil and gas recovery device.

[0030] The above-disclosed embodiments are merely one or more preferred embodiments of this application and should not be construed as limiting the scope of this application. Those skilled in the art can understand that all or part of the processes for implementing the above embodiments and equivalent changes made in accordance with the claims of this application still fall within the scope of this application.

Claims

1. A multi-purpose recycling tower, comprising a recycling tower body, characterized in that: The liquid storage section at the lower end of the recovery tower body is equipped with a level transmitter, a temperature transmitter, and a level switch to monitor the stored diesel fuel in real time. The upper end of the recovery tower body is provided with an oil inlet assembly, and the lower end is provided with a circulation output assembly; The oil inlet assembly is used to input diesel fuel into the body of the recovery tower. The circulation output component is used for diesel output and circulation, and the oil circulation is achieved through a circulation pipeline provided between the oil inlet component and the circulation output component.

2. The multi-purpose recovery tower as described in claim 1, characterized in that: The upper lower side of the recovery tower body is also connected to a vacuum pump delivery assembly. The vacuum pump delivery assembly includes a delivery pipe and a vacuum pump. The delivery pipe is connected to the upper lower side connecting pipe of the recovery tower body and the vacuum pump, respectively.

3. The multi-purpose recovery tower as described in claim 1, characterized in that: A gas return assembly is also provided on the upper side of the upper end of the recovery tower body. The gas return assembly includes a gas return pipe and a sampling quick connector. The gas return pipe is located at the top of the upper end of the recovery tower body. The sampling quick connector is located at the sampling port of the gas return pipe.

4. The multi-purpose recovery tower as described in claim 1, characterized in that: The level transmitter is equipped with a data display screen.

5. The multi-purpose recovery tower as described in claim 1, characterized in that... : Pressure gauges are installed on the delivery pipes of the oil inlet assembly and the circulation output assembly, respectively.