Portable anti-gas-lift filter

By designing a transparent PVC main pipe and parallel air outlet in the reverse airlift filter, the water flow impact force generates tiny bubbles, solving the problems of low bubble quantity and low dissolved oxygen in traditional devices. This achieves efficient dissolved oxygenation and intelligent water quality monitoring, enhancing the aesthetics of the aquarium.

CN223792984UActive Publication Date: 2026-01-13钱兆江
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Patent Information

Application Number
CN202520662033.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-09
Publication Date
2026-01-13
Estimated Expiration
2035-04-09

AI Technical Summary

Technical Problem

Existing reverse airlift filters increase oxygen content through oxygenation pumps, but the amount of bubbles is low and the dissolved oxygen content needs to be improved.

Method used

A portable reverse airlift filter was designed, which uses the impact force of water flow to generate fine bubbles. Combined with parallel air outlets and a transparent PVC main pipe, it enhances the dissolved oxygen effect. It is also equipped with intelligent monitoring components and LED lights, which adjust the display color and mode according to water quality parameters.

Benefits of technology

It increases dissolved oxygen levels by miniaturizing bubbles and increasing dissolved oxygen content, while also providing convenient water quality monitoring and enhancing the aquarium atmosphere.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223792984U_ABST
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Abstract

The utility model provides a portable reverse gas lift filter, relates to reverse gas lift filter technical field, including main pipeline, the top of main pipeline is sleeved with the top cover, the inner wall of top cover is provided with internal thread, the inside of internal thread is inserted with the water inlet pipe, the outer surface of the middle section of water inlet pipe is provided with external thread, and the external thread is inserted into the water inlet pipe. The bottom end of the water inlet pipe is connected with a plug, the bottom of the main pipeline is sleeved with a bottom cover, the bottom of the bottom cover is sleeved with a sewer pipe, and the bottom end of the sewer pipe is sleeved with a water outlet. According to the utility model, oxygen in the air is melted into water by bubbles generated by the impact force of water flow, and large bubbles generated by the impact force of the water flow can be dispersed into a plurality of groups of small bubbles through the design of the parallel air outlets, so that the purpose of increasing the dissolved oxygen amount is achieved, and the problems of less bubble amount and lower dissolved oxygen amount of the traditional device are avoided.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of reverse air lift filter, especially to a portable reverse air lift filter. BACKGROUND

[0002] The principle of reverse air lift filter is the convection of water and gas. Specifically, the oxygen head is placed at the bottom, and the water flow comes in from above. The water flows downward, and the oxygen flows upward. The directions of the two are opposite, hence the name "reverse air lift".

[0003] As the publication number: CN214829775U, a gas lift reverse air lift filter, including gas lift device and reverse air lift device, gas lift device includes riser, and the riser is equipped with at least one water inlet pipe, and the water inlet pipe is equipped with a plurality of water inlet holes, and a gas stone is arranged in the riser, and the gas stone is located below the inlet of the water inlet pipe in the riser, and the gas stone is connected with a gas pump outside the riser by an oxygen pipe, and the riser is connected with the reverse air lift device through a cross pipe, and the reverse air lift device includes a plastic bucket, and a second gas stone is arranged in the plastic bucket, and the second gas stone is connected with a second gas pump outside the plastic bucket by an oxygen pipe, and a plurality of filter materials are arranged in the plastic bucket, and the filter materials are uniformly arranged above the second gas stone, and the cross pipe is arranged above the filter materials, and a plurality of water outlet holes are arranged around the bottom of the plastic bucket. The utility model combines the gas lift and reverse air lift filter devices together. The gas stone in the reverse air lift generates a large number of bubbles to slow down the water flow out of the cross pipe, forms gas-liquid convection, and makes the nitrification in the aerobic environment more sufficient.

[0004] The patent combines the gas lift and reverse air lift filter devices together, generates a large number of bubbles to slow down the water flow out of the cross pipe, forms gas-liquid convection, and makes the nitrification in the aerobic environment more sufficient. The traditional reverse air lift filter only uses an oxygen increasing pump to blow air into water, increases the oxygen content, and at the same time, flushes out waste gas such as nitrogen in water and eliminates it by using a filter device. However, the existing device has a small amount of bubbles and needs to improve the oxygen dissolution amount when in use. Therefore, a new type of portable reverse air lift filter is proposed. UTILITY MODEL CONTENTS

[0005] The utility model aims to solve the problem that the traditional reverse air lift filter in the prior art only uses an oxygen increasing pump to blow air into water, increases the oxygen content, and at the same time, flushes out waste gas such as nitrogen in water and eliminates it by using a filter device, but the existing device has a small amount of bubbles and needs to improve the oxygen dissolution amount when in use.

[0006] In order to achieve the above object, the utility model discloses the following technical scheme: A portable anti-gas lift filter, including main pipeline, the top of main pipeline is sleeved with top cover, the inner wall of top cover is opened with internal thread, the inside insertion of internal thread has the water inlet pipe, the middle section outer surface of water inlet pipe is opened with external thread, the bottom of water inlet pipe is connected with the plug, the bottom of main pipeline is sleeved with bottom cover, the bottom of bottom cover is sleeved with sewer pipe, the bottom of sewer pipe is sleeved with water outlet, the inside of water inlet pipe near plug is opened with parallel gas outlet.

[0007] Further, one side surface of the top cover is connected with a connector, and the surface of the connector is connected with a waste gas pipeline.

[0008] Further, one end of the waste gas pipeline is connected with a nitrate water solution bottle, the specifications of the internal thread and the external thread are matched, and the nitrate water solution bottle can collect waste gas.

[0009] Further, the water inlet pipe is connected with the internal thread and the external thread through the thread connection between the external thread and the internal thread, and the shape of the water outlet is an elbow shape.

[0010] Further, the number of the parallel gas outlets is seven, and they are evenly distributed in the inside of the water inlet pipe near the plug.

[0011] Further, the main pipeline is made of transparent PVC material, the model and size of the top cover are matched with the model and size of the bottom cover, the main pipeline made of transparent PVC material has ultraviolet resistance, so as to prevent material aging caused by long-term exposure to sunlight, and the transparent material can also facilitate real-time observation of the bubble amount.

[0012] Further, the nitrate water solution bottle is detachable, the bottle body of the nitrate water solution bottle is provided with a scale mark, and the top cover and the bottom cover are made of corrosion-resistant and high-strength ABS plastic.

[0013] Further, the front end of the bottom cover is connected with an intelligent monitoring assembly, and the intelligent monitoring assembly comprises a processor.

[0014] Further, the inner wall rear end of the main pipeline is provided with a dissolved oxygen sensor, the two side inner walls of the main pipeline close to the dissolved oxygen sensor are respectively connected with a pH value sensor and a temperature sensor, and three different sensors can provide more convenient and efficient water quality monitoring and fish tank atmosphere improvement experience for users.

[0015] Further, the outer surface of the rear end of the main pipeline is connected with an LED lamp, and the dissolved oxygen sensor, the pH value sensor, the dissolved oxygen sensor, the temperature sensor and the LED lamp are all electrically connected.

[0016] Compared with the prior art, the advantages and positive effects of the utility model are that,

[0017] 1、The air bubbles generated by the impact force of the water flow melt the oxygen in the air into the water, the design of the parallel air outlet can disperse the large air bubbles generated when the water flow impacts into multiple small air bubbles, thereby achieving the purpose of increasing the dissolved oxygen content, and avoiding the problems of less bubbles and low dissolved oxygen content of the traditional device.

[0018] 2、The LED lamp can be linked with the internal intelligent sensor in the utility model, and the color and flashing mode can be automatically adjusted according to the water quality parameter change, so that the water quality monitoring function can be realized, and the fish tank atmosphere can be improved. DRAWINGS

[0019] Figure 1 A three-dimensional structural schematic diagram of the portable anti-gas lift filter is provided for the utility model;

[0020] Figure 2 Another angle three-dimensional structural schematic diagram of the portable anti-gas lift filter is provided for the utility model;

[0021] Figure 3 An explosion structural schematic diagram of the portable anti-gas lift filter is provided for the utility model;

[0022] Figure 4 A sectional structure schematic diagram of the portable anti-gas lift filter is provided for the utility model.

[0023] Legend: 1, main pipeline; 2, top cover; 3, internal thread; 4, water inlet pipe; 5, external thread; 6, plug; 7, parallel air outlet; 8, connecting head; 9, waste gas pipeline; 10, nitrate water solution bottle; 11, bottom cover; 12, drain pipe; 13, water outlet; 14, intelligent monitoring assembly; 1401, processor; 1402, pH value sensor; 1403, dissolved oxygen sensor; 1404, temperature sensor; 1405, LED lamp. DETAILED DESCRIPTION

[0024] In order to enable the above-mentioned purposes, features and advantages of the present application to be more clearly understood, the present application will be further described below with reference to the drawings and embodiments. It should be noted that the embodiments of the present application and the features in the embodiments can be combined with each other without conflict.

[0025] In the following description, many specific details are set forth in order to provide a thorough understanding of the present application, but the present application can also be practiced without the specific details, which are different from those described herein, and therefore, the present application is not limited to the specific embodiments disclosed in the following description.

[0026] Embodiment 1, as shown in the Figure 1 - Figure 4 The utility model provides a portable anti -gas lift filter, including main pipeline 1, the top of main pipeline 1 is sleeved with top 2, and the inner wall of top 2 is provided with internal thread 3, and the inside of internal thread 3 is inserted with water inlet pipe 4, and the outer surface of the middle section of water inlet pipe 4 is provided with external thread 5, and the bottom end of water inlet pipe 4 is connected with plug 6, and the bottom of main pipeline 1 is sleeved with bottom cover 11, and the bottom of bottom cover 11 is sleeved with sewer 12, and the bottom end of sewer 12 is sleeved with water outlet 13, and the inside of water inlet pipe 4 near plug 6 is provided with parallel gas outlet 7.

[0027] As shown in the Figure 2 - Figure 3 One side surface of top 2 is connected with connecting head 8, and the surface of connecting head 8 is connected with waste gas pipeline 9, and the connection of waste gas pipeline 9 can conveniently discharge waste gas.

[0028] As shown in the Figure 3 Waste gas pipeline 9 is connected with nitro water solution bottle 10 at one end, the specifications of internal thread 3 and external thread 5 are matched, and nitro water solution bottle 10 can realize the collection of waste gas.

[0029] As shown in the Figure 2 and Figure 3 Water inlet pipe 4 is connected by screw thread connection between external thread 5 and internal thread 3, the shape of water outlet 13 is elbow, and the screw thread adjustment mode can realize the telescopic adjustment of water inlet pipe 4, and improve the applicability.

[0030] As shown in the Figure 3 The number of parallel gas outlets 7 is seven groups, and they are evenly distributed in the inside of water inlet pipe 4 near plug 6, and parallel gas outlets 7 can also be designed as round holes, mainly for dispersing the large air bubbles generated when water flow impacts into multiple small bubbles, and then achieving the purpose of increasing the dissolved oxygen content.

[0031] As shown in the Figure 2 and Figure 3As shown, the main pipe 1 is made of transparent PVC material. The model and size of the top cover 2 match the model and size of the bottom cover 11. The transparent PVC material of the main pipe 1 has UV resistance to prevent long-term exposure to sunlight from causing material aging. At the same time, the transparent material also makes it convenient to observe the amount of bubbles in real time.

[0032] like Figure 1 - Figure 3 As shown, the nitric acid solution bottle 10 is detachable. The bottle body of the nitric acid solution bottle 10 is marked with graduation marks. The top cap 2 and bottom cap 11 are both made of corrosion-resistant, high-strength ABS plastic. The detachable connection method makes it easy for users to replace or replenish the nitric acid solution. At the same time, the graduation marks on the bottle body are provided to accurately control the solution volume.

[0033] like Figure 4 As shown, the front end of the bottom cover 11 is connected to an intelligent monitoring component 14. The intelligent monitoring component 14 includes a processor 1401. The processor 1401 can analyze and process the data obtained from various sensors and turn on the LED lights 1405 with different flashing colors to remind the operator to take action.

[0034] like Figure 4 As shown, a dissolved oxygen sensor 1403 is installed at the rear end of the inner wall of the main pipe 1. A pH sensor 1402 and a temperature sensor 1404 are respectively connected to the inner walls of the main pipe 1 on both sides near the dissolved oxygen sensor 1403. The three different sensors can provide users with a more convenient and efficient experience in water quality monitoring and aquarium atmosphere enhancement.

[0035] like Figure 1 and Figure 4 As shown, an LED light 1405 is connected to the outer surface of the rear end of the main pipe 1. The dissolved oxygen sensor 1403 is electrically connected to the pH sensor 1402, the dissolved oxygen sensor 1403, the temperature sensor 1404, and the LED light 1405.

[0036] The overall effect of Embodiment 1 is that, during use, water flows into the main pipe 1 through the inlet pipe 4, and the air bubbles generated by the impact of the water flow dissolve oxygen from the air into the water. The design of the parallel air outlet 7 disperses the large bubbles generated by the water flow into multiple groups of smaller bubbles, thereby increasing the dissolved oxygen content. The waste gas generated during the process can enter the nitrate solution bottle 10 through the waste gas pipe 9 and be collected by the nitrate solution bottle 10. The inlet pipe 4 is connected by a threaded connection formed by the external thread 5 and the inner wall of the internal thread 3, which can be used to adjust the extension and retraction of the inlet pipe 4, improving the overall applicability. The pH sensor 1402 is used to monitor the acidity and alkalinity of the water. The pH sensor 1402 can monitor the pH value in real time. The pH value of the water is measured and transmitted to the processor 1401. The processor 1401 processes the data to determine whether the acidity or alkalinity of the water is suitable for fish survival and adjusts the color display of the LED light 1405 accordingly. The dissolved oxygen sensor 1403 monitors the dissolved oxygen content in the water. The processor 1401 adjusts the display of the LED light 1405 based on changes in dissolved oxygen content to remind the user to replenish oxygen in time. The temperature sensor 1404 monitors the water temperature to determine whether the water temperature is suitable for fish survival and adjusts the display of the LED light 1405 accordingly. Each sensor has a different color, making it easy for users to identify them and enhancing the aquarium atmosphere.

[0037] Working principle: The bubbles generated by the impact of water flow dissolve oxygen from the air into the water. The design of the parallel air outlet 7 can disperse the large bubbles generated by the water flow into multiple groups of small bubbles, thereby increasing the dissolved oxygen content. This avoids the problem of low dissolved oxygen content and insufficient bubble quantity in traditional devices. The addition of LED light 1405 can be linked with the internal intelligent sensor to automatically adjust the color and flashing mode according to changes in water quality parameters. This not only monitors water quality but also enhances the atmosphere of the aquarium.

[0038] The above are merely preferred embodiments of this utility model and are not intended to limit the utility model in any other way. Any person skilled in the art may make changes or modifications to the above-disclosed technical content to create equivalent embodiments for application in other fields. However, any simple modifications, equivalent changes, and modifications made to the above embodiments based on the technical essence of this utility model without departing from the technical solution of this utility model shall still fall within the protection scope of this utility model.

Claims

1. A portable reverse airlift filter, comprising a main pipe (1), characterized in that: The top of the main pipe (1) is fitted with a top cover (2), and the inner wall of the top cover (2) is provided with an internal thread (3); An inlet pipe (4) is inserted into the internal thread (3). An external thread (5) is provided on the outer surface of the middle section of the inlet pipe (4). A plug (6) is connected to the bottom end of the inlet pipe (4). A bottom cover (11) is fitted onto the bottom of the main pipe (1). A drain pipe (12) is fitted onto the bottom of the bottom cover (11). A water outlet (13) is fitted onto the bottom end of the drain pipe (12). A parallel air outlet (7) is provided through the inlet pipe (4) near the plug (6).

2. The portable reverse airlift filter according to claim 1, characterized in that: A connector (8) is connected to one side surface of the top cover (2), and an exhaust pipe (9) is connected to the surface of the connector (8).

3. The portable reverse airlift filter according to claim 2, characterized in that: One end of the exhaust gas pipe (9) is connected to a nitrate solution bottle (10), and the internal thread (3) and external thread (5) are of the same specification.

4. The portable reverse airlift filter according to claim 3, characterized in that: The inlet pipe (4) is connected by an external thread (5) and an internal thread (3), and the outlet (13) is elbow-shaped.

5. The portable reverse airlift filter according to claim 4, characterized in that: The number of parallel air outlets (7) is seven, and they are evenly distributed inside the water inlet pipe (4) near the plug (6).

6. The portable reverse airlift filter according to claim 1, characterized in that: The main pipe (1) is made of transparent PVC material, and the model and size of the top cover (2) match the model and size of the bottom cover (11).

7. The portable reverse airlift filter according to claim 3, characterized in that: The nitric acid solution bottle (10) is detachable. The bottle body of the nitric acid solution bottle (10) is marked with graduations. The top cap (2) and bottom cap (11) are both made of corrosion-resistant, high-strength ABS plastic.

8. The portable reverse airlift filter according to claim 1, characterized in that: The front end of the bottom cover (11) is connected to an intelligent monitoring component (14), which includes a processor (1401).

9. The portable reverse airlift filter according to claim 8, characterized in that: A dissolved oxygen sensor (1403) is provided at the rear end of the inner wall of the main pipe (1), and a pH sensor (1402) and a temperature sensor (1404) are respectively connected to the inner walls of the main pipe (1) near the dissolved oxygen sensor (1403).

10. The portable reverse airlift filter according to claim 9, characterized in that: An LED light (1405) is connected to the outer surface of the rear end of the main pipe (1). The dissolved oxygen sensor (1403) is electrically connected to the pH sensor (1402), the dissolved oxygen sensor (1403), the temperature sensor (1404), and the LED light (1405).

Citation Information

Patent Citations

  • Gas lift and reverse gas lift filter

    CN214829775U