Automatic oxygen generation device for fish transportation or oxygen deficit emergency treatment and use method thereof

By using an automatic oxygen generator to produce and stably release oxygen through a chemical reaction, the problem of insufficient oxygen supply during fish transportation has been solved, thereby improving the survival rate and safety of fish during transport.

CN120937807APending Publication Date: 2025-11-14朱桂勇
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Patent Information

Application Number
CN202511264197.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-05
Publication Date
2025-11-14

AI Technical Summary

Technical Problem

In existing technologies, there is a lack of stable and continuous oxygen supply equipment during fish transportation, which leads to fish dying from lack of oxygen. Traditional oxygen bags dissolve oxygen at a slower rate than the fish consume it, and cannot effectively solve the problem of fish survival rate during transportation.

Method used

An automatic oxygen generator is used, including a reagent generating bottle, a catalyst, and a gas atomizer. Oxygen is generated and released stably through a chemical reaction. The device is kept afloat on the water surface by a rubber float, and the oxygen is delivered into the water through a hose to achieve continuous oxygen supply.

Benefits of technology

It improved the survival rate of fish during transportation, ensured the safety and continuity of oxygen supply, and reduced fish mortality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides an automatic oxygen generation device for fish transportation or oxygen deficit first aid and a using method thereof, and relates to the technical field of fish transportation or first aid, the automatic oxygen generation device comprises a bottle body assembly, the bottle body assembly comprises a reagent generation bottle, a bottle sealing film, a catalyst and a bottle cap, the bottle sealing film is sealed above the reagent generation bottle, and the catalyst is arranged in the bottle cap; a catalyst is placed above the bottle sealing film, a bottle cap is arranged outside the catalyst, the exterior of the bottle body assembly is connected with a floating assembly, the upper portion of the bottle body assembly is connected with a hose, the end, away from the bottle body assembly, of the hose is connected with a gas refining assembly, and the floating assembly comprises a rubber floating mat and a traction rope; and the inner side of the rubber floating mat is connected with a traction rope, the gas refining assembly comprises a connector, a gas refining device and a protective jacket, and the gas refining device is installed on the right side of the connector. The method has the advantages that the product safety, sustainability and stability in live fish express transportation are achieved, and the transportation survival rate is greatly increased.
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Description

Technical Field

[0001] This invention relates to the field of fish transportation or emergency rescue technology, and in particular to an automatic oxygen generator for fish transportation or emergency rescue in case of oxygen deficiency and its method of use. Background Technology

[0002] With the development of the fishery industry, the demand for express delivery of fish fry, ornamental fish, and live edible fish is increasing. However, the low survival rate of fish during express delivery has been a persistent problem that has hindered and limited the industry's development. The main reason for this is the lack of small-scale oxygen supply equipment that can provide stable and continuous oxygen during transportation. Traditional oxygen bags are used for transportation, but the rate at which oxygen dissolves in the water is lower than the rate at which fish consume oxygen, leading to oxygen deprivation and death. Currently, there is no safe, healthy, and power-free continuous oxygen supply product to solve this problem. Summary of the Invention

[0003] The purpose of this invention is to overcome the shortcomings of existing technologies by proposing an automatic oxygen generator and its usage method for fish transportation or emergency oxygen deprivation. The technical solution adopted by this invention is as follows:

[0004] An automatic oxygen generator for fish transport or emergency oxygen deprivation and its method of use include a bottle assembly. The bottle assembly includes a reagent generating bottle, a bottle sealing film, a catalyst, and a bottle cap. The top of the reagent generating bottle is sealed with the bottle sealing film. The catalyst is placed on top of the bottle sealing film, and the bottle cap is provided on the outside of the catalyst. A floating component is connected to the outside of the bottle assembly, and a hose is connected to the top of the bottle assembly. A gas atomizing component is connected to the end of the hose away from the bottle assembly.

[0005] As an improvement, the floating assembly includes a rubber float and a traction rope, with the traction rope connected to the inner side of the rubber float.

[0006] As an improvement, the gas atomizing assembly includes a connector, a gas atomizer, and a protective jacket, with the gas atomizer mounted on the right side of the connector and the protective jacket connected to the outside of the gas atomizer.

[0007] A method for using an automatic oxygen generator for fish transportation or emergency oxygenation, the method comprising the following steps: first step, feeding preparation; second step, operation.

[0008] As an improvement, the first step, material preparation, involves opening the bottle cap, removing the catalyst, tearing off the bottle's sealing film, and placing the catalyst into the reagent generating bottle to contact the hydrogen peroxide solution inside the reagent generating bottle for oxygen production.

[0009] As an improvement, the second step, the operation, is as follows: the prepared equipment is placed in the water, and the buoyancy of the rubber float on the water surface makes the reagent generating bottle float. The oxygen generated inside the equipment is delivered to the gas atomizer through the hose, and then the oxygen is delivered into the water.

[0010] The beneficial effects of this invention are as follows:

[0011] This invention relates to an automatic oxygen generator and its method of use for fish transportation or emergency treatment of oxygen deficiency, which solves the problems of product safety, sustainability, and stability in the express delivery of live fish, and greatly improves the survival rate during transportation.

[0012] The rubber float of this invention is connected to the reagent generating bottle by a traction rope. When it moves on the water surface, the rubber float will only move, thus minimizing the impact of the rubber float on the reagent generating bottle and reducing the impact on the chemical reaction in the equipment in a fluctuating water environment. Attached Figure Description

[0013] Figure 1 This is a front view structural diagram of the present invention.

[0014] Figure 2 This is an enlarged cross-sectional view of the bottle assembly of the present invention.

[0015] Figure 3 This is an enlarged cross-sectional view of the gas refining component of the present invention.

[0016] In the diagram: 1. Bottle assembly; 101. Reagent generating bottle; 102. Bottle sealing film; 103. Catalyst; 104. Bottle cap; 2. Floating assembly; 201. Rubber float; 202. Traction rope; 3. Hose; 4. Gas atomizing assembly; 401. Connector; 402. Gas atomizer; 403. Protective jacket. Detailed Implementation

[0017] To make the content of this invention easier to understand, the technical solutions of the embodiments of this invention will be clearly and completely described below with reference to the accompanying drawings. Identical components are represented by the same reference numerals. It should be noted that the terms "front," "rear," "left," "right," "up," and "down" used in the following description refer to directions in the accompanying drawings, while the terms "inner" and "outer" refer to directions toward or away from the geometric center of a specific component, respectively.

[0018] like Figure 1 , Figure 2 and Figure 3As shown, the device includes a bottle assembly 1, which includes a reagent generating bottle 101, a bottle sealing film 102, a catalyst 103, and a bottle cap 104. The bottle sealing film 102 is sealed above the reagent generating bottle 101, the catalyst 103 is placed above the bottle sealing film 102, and the bottle cap 104 is provided on the outside of the catalyst 103. A floating component 2 is connected to the outside of the bottle assembly 1, and a hose 3 is connected to the top of the bottle assembly 1. A gas atomizing component 4 is connected to the end of the hose 3 away from the bottle assembly 1.

[0019] It solves the problems of product safety, sustainability, and stability in the express delivery of live fish, and greatly improves the survival rate during transportation.

[0020] like Figure 2 As shown, the floating assembly 2 includes a rubber float 201 and a traction rope 202, and the traction rope 202 is connected to the inner side of the rubber float 201.

[0021] The rubber float 201 is connected to the reagent generating bottle 101 via a traction rope 202. When the water surface is fluctuated by a flexible connection, the rubber float 201 will only sway. This minimizes the impact of the rubber float 201 on the reagent generating bottle 101 when it sways, thereby reducing the impact on the chemical reaction in the equipment in a fluctuating water environment.

[0022] like Figure 3 As shown, the gas atomizing assembly 4 includes a connector 401, a gas atomizer 402, and a protective sleeve 403. The gas atomizer 402 is installed on the right side of the connector 401, and the protective sleeve 403 is connected to the outside of the gas atomizer 402.

[0023] Depending on the required length of the protective jacket 403 that needs to be pulled out, the longer the protective jacket 403 is pulled out, the stronger the oxygen supply effect of the equipment.

[0024] A method of using an automatic oxygen generator for fish transportation or emergency oxygenation, characterized in that the method of using the automatic oxygen generator for fish transportation or emergency oxygenation includes the following steps:

[0025] Step 1, Feeding preparation: Open the bottle cap 104, take out the catalyst 103, tear off the bottle sealing film 102, put the catalyst 103 into the reagent generating bottle 101, and contact it with the hydrogen peroxide solution inside the reagent generating bottle 101 to carry out oxygen production.

[0026] Step 2, Operation: Place the prepared equipment into the water. The buoyancy of the rubber float 201 on the water surface will float the reagent generating bottle 101. The oxygen generated inside the equipment will be delivered to the gas refiner 402 through the hose 3, thus delivering the oxygen into the water.

[0027] During use, the cap 104 is opened via the threaded connection between the cap 104 and the reagent generating bottle 101. The catalyst 103 is then removed, and the bottle sealing film 102 on the reagent generating bottle 101 is peeled off. The catalyst 103 is then placed into the reagent generating bottle 101, coming into contact with the hydrogen peroxide solution inside, thus generating oxygen. When the hydrogen peroxide solution and the catalyst 103 undergo a chemical decomposition reaction in the bottle, oxygen is stably released. After approximately 5 minutes, when the pressure in the delivery tube reaches the outlet pressure of the refiner, oxygen is released. Simultaneously... The length of the protective jacket 403 can be adjusted according to the required length. The longer the protective jacket 403 is pulled out, the stronger the oxygen supply effect of the equipment. Then, the prepared equipment is placed in the water. The buoyancy of the rubber float 201 on the water surface makes the reagent generating bottle 101 float. At the same time, the connector 401 will automatically sink to the bottom when it falls into the water. The oxygen generated inside the equipment will be delivered to the gas aerator 402 through the hose 3 and then delivered into the water to oxygenate the water. This can supplement oxygen during fish transportation or emergency rescue, which is conducive to fish farming.

[0028] The oxygen production principle of this application is based on the decomposition of hydrogen peroxide into water and oxygen at room temperature under the action of a catalyst. This process does not produce any pollutants, only water and the required oxygen, and does not cause any harm to fish.

[0029] The catalyst 103 of this application uses manganese dioxide as raw material. The manganese dioxide powder is pressed into 8mm cylindrical particles by a pressure of 10-20 tons and a small amount of thickener, so that the catalyst 103 does not disperse or disintegrate, and can be used continuously.

[0030] The gas refiner 402 of this application utilizes the porosity principle of precision ceramics to cast an oxygen refiner, refining oxygen to the nanoscale, which allows oxygen to dissolve more fully in water and increases the dissolved oxygen concentration in water.

[0031] The reagent generating bottle 101 of this application is prone to tipping over when placed in water. By adding a rubber float 201 to the bottle mouth, the bottle can float on the water surface, and the air outlet can be kept facing upwards to prevent blockage and prevent the solution from flowing out.

[0032] The reagent generating bottle 101 of this application is a plastic bottle with a volume of 100 ml and a cap 104 with a 6 mm tubing.

[0033] This application can be used for express delivery of live fish, ornamental fish, and fish fry, which can greatly reduce fish mortality, provide oxygen for temporary holding in fishing tanks, provide emergency care when fish tanks are short of oxygen due to power outages, and provide pure oxygen for fish.

[0034] The above are merely preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention should be included within the scope of protection of the present invention.

Claims

1. An automatic oxygen generator for fish transportation or emergency oxygen deprivation, characterized in that, The device includes a bottle assembly (1), which includes a reagent generating bottle (101), a bottle sealing film (102), a catalyst (103), and a bottle cap (104). The top of the reagent generating bottle (101) is sealed with a bottle sealing film (102), the catalyst (103) is placed on top of the bottle sealing film (102), and the bottle cap (104) is provided on the outside of the catalyst (103). A floating component (2) is connected to the outside of the bottle assembly (1), and a hose (3) is connected to the top of the bottle assembly (1). A gas atomizing component (4) is connected to the end of the hose (3) away from the bottle assembly (1).

2. An automatic oxygen generator for fish transportation or emergency oxygen deprivation according to claim 1, characterized in that, The floating assembly (2) includes a rubber float (201) and a traction rope (202), and the traction rope (202) is connected to the inner side of the rubber float (201).

3. An automatic oxygen generator for fish transportation or emergency oxygen deprivation according to claim 1, characterized in that, The gas atomizing assembly (4) includes a connector (401), a gas atomizer (402), and a protective jacket (403), with the gas atomizer (402) installed on the right side of the connector (401) and the protective jacket (403) connected to the outside of the gas atomizer (402).

4. A method of using an automatic oxygen generator for fish transportation or emergency oxygenation treatment, as described in any one of claims 1-9, characterized in that, The steps for using the automatic oxygen generator for fish transportation or emergency oxygenation include: Step 1, feeding preparation; Step 2, operation.

5. The method of using the automatic oxygen generator for fish transportation or emergency oxygenation according to claim 4, characterized in that, The first step, material preparation: open the bottle cap (104), take out the catalyst (103), tear off the bottle sealing film (102), put the catalyst (103) into the reagent generating bottle (101), and contact it with the hydrogen peroxide solution inside the reagent generating bottle (101) to carry out oxygen production.

6. The method of using the automatic oxygen generator for fish transportation or emergency oxygenation according to claim 4, characterized in that, The second step, operation: put the prepared equipment into the water. The buoyancy of the rubber float (201) on the water surface will float the reagent generating bottle (101). The oxygen generated inside the equipment will be transported to the gas refiner (402) through the hose (3) and then transported into the water.