Microorganism activated ecological restoration system

By designing a microbial activation ecological restoration system, and using primary reaction tanks and microbial propagation boxes for river water treatment, the problem of river water pollution has been solved, achieving the propagation and purification effects of microorganisms and extending the service life of the equipment.

CN223837245UActive Publication Date: 2026-01-27YIRUN (NINGBO) ECOLOGICAL ENVIRONMENTAL PROTECTION TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520324533.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-27
Publication Date
2026-01-27
Estimated Expiration
2035-02-27

AI Technical Summary

Technical Problem

River pollution and eutrophication cause the death of native microorganisms, making it impossible to effectively purify the water. It is necessary to supplement beneficial bacteria and expand their cultivation to achieve a purification effect.

Method used

A microbial activation ecological restoration system is designed, including a primary reaction tank and a microbial propagation box. The system uses a pump assembly to pass river water through tourmaline granular filler and polyurethane filler for reaction and cultivation, thereby activating native microorganisms. Oxygen and temperature support are provided through an aeration system and heating pipes. Finally, the cultivated microorganisms are returned to the river channel.

Benefits of technology

It achieves the purification effect of river water, activates native microorganisms through microbial propagation, improves purification efficiency, extends the service life of pump components, and prevents damage from large particles.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a microbial activation ecological restoration system which comprises a primary reaction tank, a fungus expanding culture box, a first pump assembly and a second pump assembly, river channel water is pumped from the river channel through the second pump assembly, sequentially passes through the primary reaction tank and the fungus expanding culture box and then is sent back to the river channel through the first pump assembly. A heating pipe is arranged in the fungus expanding culture box, and an aeration system is arranged in the fungus expanding culture box; tourmaline particle fillers are arranged in the primary reaction tank and the fungus expanding culture box. A primary reaction tank and a fungus expanding culture box are arranged, tourmaline particle filler and effective microbial communities are added into the primary reaction tank, and river water is pumped into the primary reaction tank through a second pump assembly, preliminarily reacts with the tourmaline particle filler and then enters the fungus expanding culture box for further culture. Finally, the water is sent back to the river through the first pump assembly, microorganisms are propagated, and a large number of microorganisms act on the river water after returning back to the river, so that the water purification effect is achieved.
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Description

Technical Field

[0001] This utility model relates to the technical field of microbial activation ecological restoration systems, and in particular to a microbial activation ecological restoration system. Background Technology

[0002] At present, my country's water conservancy industry has developed rapidly, with a large number of water conservancy projects. However, due to the combined effects of many factors, various problems often arise in the operation of water conservancy projects, resulting in the failure to realize the functions and roles of water conservancy projects. Among these problems, river management is an important part of the operation and management of water conservancy projects.

[0003] River water pollution control technologies mainly involve four basic categories: engineering technology (mechanical technology), physical technology, chemical technology, and biotechnology. Currently, the most common biotechnology method is the use of microbial administration.

[0004] The microorganisms that naturally live in river water can purify the water. However, due to river pollution and eutrophication, the nitrogen and phosphorus content in river water, especially sewage, exceeds standards, and oxygen levels are low, causing the original microorganisms to die and preventing them from purifying the water. Therefore, it is necessary to supplement the number of beneficial bacteria. Before introducing beneficial bacteria into the river, they need to be cultured to increase the bacterial population and enhance the effect, thus achieving the goal of water treatment. Utility Model Content

[0005] (a) Technical problems to be solved

[0006] The problem to be solved by this utility model is to provide a microbial activation ecological restoration system, which adds microbial strains, expands and cultivates microorganisms, activates native microorganisms, and after returning to the river channel, a large number of microorganisms act on the river water to achieve the effect of purifying the water.

[0007] (II) Technical Solution

[0008] To solve the aforementioned technical problem, this utility model provides a microbial activation ecological restoration system, including a primary reaction tank, a fungal culture box, a first pump assembly, and a second pump assembly. The primary reaction tank is connected to the fungal culture box. The second pump assembly is used to draw river water from the river, which passes through the primary reaction tank and the fungal culture box in sequence, and then the first pump assembly is used to return the water to the river.

[0009] The fungal culture chamber is equipped with a heating pipe for heating, and the bottom of the fungal culture chamber is also equipped with an aeration system for oxygen supply; both the primary reaction tank and the fungal culture chamber are equipped with tourmaline particle packing, and the fungal culture chamber is equipped with polyurethane packing.

[0010] In this scheme, a primary reaction tank and a microbial propagation box are set up. Tourmaline granules and beneficial bacteria are added to the primary reaction tank, while tourmaline granules and polyurethane packing are placed in the microbial propagation box. River water is pumped into the primary reaction tank via a second pump assembly, where it initially reacts with the tourmaline granules before entering the microbial propagation box for further cultivation. Finally, the water is pumped back into the river via a first pump assembly, thus propagating and activating the native microorganisms, which then act on the river water. After returning to the river, a large number of microorganisms act on the river water, achieving the effect of water purification.

[0011] Preferably, the system also includes a filter box, in which both the first pump assembly and the second pump assembly are disposed.

[0012] In this solution, the river water can be filtered by setting up a filter screen box to prevent large particles of debris from entering the first pump assembly and the second pump assembly, thereby improving the service life of the first pump assembly and the second pump assembly.

[0013] As a further preferred embodiment, the second pump assembly includes a transport pump and a second pipeline. The transport pump is located inside the filter box, and the second pipeline is provided on the transport pump. The second pipeline is used to transport river water through the filter box and to the primary reaction tank.

[0014] In this scheme, river water can be transported to the primary reaction tank by setting up a transport pump and a second pipeline. The transport pump is set up inside the filter screen box to prevent large particles or garbage from entering the primary reaction tank and to improve the service life of the transport pump.

[0015] As a further preferred embodiment, the fungal culture box has a water outlet at the upper end of one side, and a connecting pipe is provided at the water outlet. The first pump assembly also includes a pumping pump and a first pipe. The pumping pump is located inside the filter screen box, and the pumping pump is connected to the first pipe. The first pipe is connected to the connecting pipe for transporting the mixed river water back into the river.

[0016] In this scheme, the mixed river water in the microbial culture box can be discharged by setting an outlet. A pump is set up and connected to a transport pump. The mixed river water discharged from the outlet enters the transport pump and then enters the pump. The pump pump draws water into the first pipeline. The transport pump delivers the mixed river water into the first pipeline. The reacted river water is mixed with the river water drawn by the pump and then transported back into the river.

[0017] Preferably, the primary reaction vessel is provided with an opening, and a water outlet is provided on one side of the primary reaction vessel. An overflow pipe is provided at the water outlet and communicates with the microbial culture box.

[0018] In this scheme, by setting an opening, it is easier to add tourmaline particle packing and beneficial bacteria into the primary reaction tank, and by setting an overflow pipe, the river water after the reaction in the primary reaction tank can be injected into the bacterial propagation box.

[0019] As a further preferred option, the second pipeline is equipped with an ultraviolet algae removal device, and the transport pump draws river water from the river channel, which then passes through the ultraviolet algae removal device before entering the primary reaction tank.

[0020] In this scheme, an ultraviolet algae removal device can be installed to initially remove algae from the river water, which then flows into the primary reaction tank.

[0021] Preferably, the aeration system includes several aerators installed at the bottom of the microbial culture box, and the ends of the aerators are mechanically connected to an air pump.

[0022] In this scheme, by setting up an aerator connected to an air pump, air and pure oxygen can be supplied to the microbial culture box to accelerate the reaction.

[0023] (III) Beneficial Effects

[0024] The microbial activation and ecological restoration system provided by this utility model has the following beneficial effects:

[0025] (1) By setting up a primary reaction tank and a microbial expansion box, tourmaline particle packing and beneficial bacteria are added to the primary reaction tank, and tourmaline particle packing and polyurethane packing are set in the microbial expansion box; the river water is pumped into the primary reaction tank through the second pump assembly and reacted with the tourmaline particle packing before entering the microbial expansion box for further cultivation, and finally sent back to the river through the first pump assembly to realize the expansion of microorganisms, activate the original microorganisms, and act on the river water; after returning to the river, a large number of microorganisms act on the river water, achieving the effect of purifying the water;

[0026] (2) By setting up a filter screen box, the river water can be filtered to prevent large particles of debris from entering the first pump assembly and the second pump assembly, thereby improving the service life of the first pump assembly and the second pump assembly.

[0027] (3) By setting an outlet, the mixed river water in the bacterial culture box can be discharged. A pumping pump is set up, which is connected to the transport pump. The mixed river water discharged from the outlet enters the transport pump and then enters the pumping pump. The pumping pump draws water into the first pipeline. The transport pump delivers the mixed river water into the first pipeline. The reacted river water is mixed with the river water drawn by the pumping pump and then transported back into the river.

[0028] (4) By setting up a transport pump and a second pipeline, river water can be transported to the primary reaction tank. The transport pump is set inside the filter screen box to prevent large particles or garbage from entering the primary reaction tank and to improve the service life of the transport pump. Attached Figure Description

[0029] To more clearly illustrate the technical solutions of the embodiments of this application, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0030] Figure 1 This is a schematic diagram of a microbial activation ecological restoration system according to the present invention.

[0031] The component names corresponding to the various labels in the diagram are as follows: 1. Primary reaction tank; 11. Opening; 12. Overflow pipe; 2. Microbial culture box; 21. Water outlet; 22. Connecting pipe; 23. Connecting pump; 3. First pump assembly; 31. Pumping pump; 311. First pipe; 32. Second pump assembly; 321. Transport pump; 322. Second pipe; 4. Aeration system; 41. Aerator; 5. Tourmaline granular packing; 6. Filter screen box; 7. Ultraviolet algae removal device; 8. Heating pipe; 9. Polyurethane suspension packing. Detailed Implementation

[0032] The present application will now be described in detail with reference to the accompanying drawings and specific embodiments.

[0033] The following specific examples illustrate the implementation of this application. Those skilled in the art can easily understand other advantages and effects of this application from the content disclosed in this specification. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of them. This application can also be implemented or applied through other different specific embodiments, and the details in this specification can also be modified or changed based on different viewpoints and applications without departing from the spirit of this application. It should be noted that, in the absence of conflict, the following embodiments and features in the embodiments can be combined with each other. Based on the embodiments in this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0034] It should be noted that various aspects of embodiments within the scope of the appended claims are described below. It will be apparent that the aspects described herein can be embodied in a wide variety of forms, and any particular structure and / or function described herein is merely illustrative. Based on this application, those skilled in the art will understand that one aspect described herein can be implemented independently of any other aspect, and two or more of these aspects can be combined in various ways. For example, any number and aspects set forth herein can be used to implement the device and / or practice the method. Additionally, this device and / or method can be implemented using structures and / or functionalities other than one or more of the aspects set forth herein.

[0035] It should also be noted that the illustrations provided in the following embodiments are only schematic representations of the basic concept of this application. The drawings only show the components related to this application and are not drawn according to the actual number, shape and size of the components in the actual implementation. In the actual implementation, the form, quantity and proportion of each component can be arbitrarily changed, and the layout of the components may also be more complex.

[0036] Additionally, specific details are provided in the following description to facilitate a thorough understanding of the examples. However, those skilled in the art will understand that practice can be carried out without these specific details.

[0037] The technical solutions provided by the various embodiments of this application are described below with reference to the accompanying drawings.

[0038] See Figure 1 This utility model provides a microbial activation ecological restoration system, including a primary reaction tank 1, a fungal culture box 2, a first pump assembly 3, and a second pump assembly 32. The primary reaction tank 1 is connected to the fungal culture box 2. The second pump assembly 32 is used to draw water from the river, which passes through the primary reaction tank 1 and the fungal culture box 2 in sequence, and then the first pump assembly 3 is used to return the water to the river.

[0039] Furthermore, as a preferred embodiment, the fungal culture box 2 is equipped with a heating pipe 8 for heating, and the bottom of the fungal culture box 2 is also equipped with an aeration system 4 for oxygen supply; both the primary reaction tank 1 and the fungal culture box 2 are equipped with tourmaline particle packing 5, and the fungal culture box 2 is equipped with polyurethane packing 9.

[0040] Furthermore, as a preferred embodiment, the primary reaction tank 1 is provided with an opening 11, and a water outlet is provided on one side of the primary reaction tank 1. An overflow pipe 12 is provided at the water outlet and communicates with the microbial culture box 2.

[0041] Specifically, in this embodiment, the second pump assembly 32 pumps river water into the primary reaction tank 1. The primary reaction tank 1 is equipped with tourmaline particle packing 5, and an opening 11 is provided at the upper end of the primary reaction tank 1. Beneficial bacteria can be added into the primary reaction tank 1 through the opening 11. The microbial culture box 2 is also equipped with polyurethane suspended packing 9. A water outlet is provided on one side of the primary reaction tank 1, and an overflow pipe 12 is provided at the water outlet. When the water in the primary reaction tank 1 reaches a certain height, it flows out from the water outlet and into the overflow pipe 12. The microbial culture box 2 is equipped with a water inlet, and the overflow pipe 12 connects the water outlet and the water inlet. When the water in the primary reaction tank 1 overflows, it overflows through the overflow pipe. Pipe 12 enters the microbial expansion tank 2, which is connected to the primary reaction tank 1. Tourmaline particle packing material 5 is also installed in the microbial expansion tank 2, and the river water is further expanded in the microbial expansion tank 2. The microbial expansion tank 2 is also equipped with a heating pipe 8 and an aeration system 4. The heating pipe 8 can heat the river water in the microbial expansion tank 2, which can better cultivate nutrients such as microorganisms. The aeration system 4 can supply pure oxygen in the microbial expansion tank 2, which can better provide the oxygen needed for the growth of microorganisms and is conducive to the expansion of microorganisms. The bottom of both the microbial expansion tank 2 and the primary reaction tank 1 are detachably equipped with bottom covers, which can facilitate the maintenance of the microbial expansion tank 2 and the primary reaction tank 1.

[0042] Specifically, in this embodiment, a primary reaction tank 1 and a microbial culture box 2 are set up. Tourmaline particle packing 5 and beneficial bacteria are added to the primary reaction tank 1, and tourmaline particle packing 5 and polyurethane packing 9 are set in the microbial culture box 2. River water is pumped into the primary reaction tank 1 through the second pump assembly 32 and reacts initially with the tourmaline particle packing 5 before entering the microbial culture box 2 for further cultivation. Finally, it is sent back to the river through the first pump assembly 3, realizing the cultivation of microorganisms, activating the original microorganisms, and acting on the river water. After returning to the river, a large number of microorganisms act on the river water, achieving the effect of purifying the water. The opening 11 makes it easier to add tourmaline particle packing 5 and beneficial bacteria to the primary reaction tank 1, and the overflow pipe 12 can inject the reacted river water in the primary reaction tank 1 into the microbial culture box 2.

[0043] Furthermore, as a preferred embodiment, it also includes a filter box 6, in which the first pump assembly 3 and the second pump assembly 32 are both disposed.

[0044] Furthermore, as a preferred embodiment, the second pump assembly 32 includes a transport pump 321 and a second pipe 322. The transport pump 321 is disposed inside the filter box 6, and the second pipe 322 is provided on the transport pump 321. The second pipe 322 is used to transport river water through the filter box 6 and to the primary reaction tank 1.

[0045] Furthermore, as a preferred embodiment, the upper side of the fungal culture box 2 is provided with a water outlet 21, and a connecting pipe 22 is provided at the water outlet 21. The first pump assembly 3 includes a pumping pump 31 and a first pipe 311. The pumping pump 31 is located inside the filter screen box 6, and the pumping pump 31 is connected to the first pipe 311. The first pipe 311 is connected to the connecting pipe 22 for transporting the mixed river water back into the river.

[0046] Specifically, in this embodiment, both the first pump assembly 3 and the second pump assembly 32 are disposed within the filter box 6, which is placed in the river. The first pump assembly 3 is used to draw river water and mix it with the mixed river water before discharging it into the river. The second pump assembly 32 connects the river and the primary reaction tank 1 to transfer the river water into the primary reaction tank 1. The first pump assembly 3 includes a first pipe 311 and a pumping pump 31. The second pump assembly 32 includes a second pipe 322 and a transport pump 321. The pumping pump 31 is connected to the first pipe 311, and the transport pump 321 is connected to the second pipe 322. Both the transport pump 321 and the pumping pump 31 are disposed within the filter box 6. The primary reaction tank 1 is equipped with... The container has an inlet hole, and a second pipe 322 connects the transport pump 321 and the inlet hole. A first pipe 311 connects the pumping pump 31 and the other side of the river. An outlet 21 is provided at the upper end of one side of the fungal culture box 2. A connecting pipe 22 is provided at the outlet 21. A connecting pump 23 can also be provided near the outlet 21 of the connecting pipe 22 to facilitate the flow of the river water after the reaction in the fungal culture box 2. The connecting pump 23 draws water from the fungal culture box 2 into the connecting pipe 22. The connecting pipe 22 is connected to the first pipe 311. After the water in the fungal culture box 2 reaches a certain position, it flows into the connecting pipe 22, mixes with the river water in the pumping pump 31, and then re-enters the river.

[0047] Specifically, in this embodiment, the river water is filtered by the filter screen box 6 to prevent large particles from entering the first pump assembly 3 and the second pump assembly 32, thus improving their service life. The river water is transported to the primary reaction tank 1 by the transport pump 321 and the second pipeline 322. The transport pump 321, located within the filter screen box 6, prevents large particles or debris from entering the primary reaction tank 1 and also improves its service life. The mixed river water in the microbial culture tank 2 is discharged through the outlet 21. A pumping pump 31, connected to the transport pump 321, draws the mixed river water discharged from the outlet 21 into the transport pump 321, which then pumps the water into the first pipeline 311. The transport pump 321 then transports the mixed river water into the first pipeline 311, mixing the reacted river water with the water pumped by the pumping pump 31 before returning it to the river.

[0048] Furthermore, as a preferred embodiment, an ultraviolet algae removal device 7 is installed on the second pipeline 322. After the transport pump 321 draws river water from the river channel, it passes through the ultraviolet algae removal device 7 and then enters the primary reaction tank 1.

[0049] Specifically, in this embodiment, an ultraviolet algae removal device 7 is installed on the second pipeline 322. After the river water enters the second pipeline 322 from the transport pump 321, it first undergoes preliminary algae removal through the ultraviolet algae removal device 7 before entering the primary reaction tank 1 through the water inlet. This facilitates the chemical reaction in the primary reaction tank 1, making the water source cleaner and more effective. The ultraviolet algae removal device 7 is existing technology, so it will not be described in detail here.

[0050] Specifically, in this embodiment, the river water can be initially treated to remove algae by setting up an ultraviolet algae removal device 7, and the treated water flows into the primary reaction tank 1.

[0051] Furthermore, as a preferred embodiment, the aeration system 4 includes a plurality of aerators 41 installed at the bottom of the microbial culture box 2, and the ends of the aerators 41 are mechanically connected to an air pump.

[0052] Specifically, in this embodiment, by setting up an aerator 41 connected to an air pump, air and pure oxygen can be supplied to the fungal culture box 2 to accelerate the reaction.

[0053] The same or similar parts between the various embodiments in this specification can be referred to mutually. Each embodiment focuses on describing the differences from other embodiments.

[0054] The above description is merely a specific embodiment of this application, but the scope of protection of this application is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this application should be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.

Claims

1. A microbial-activated ecological restoration system, characterized in that: It includes a primary reaction tank (1), a fungal culture box (2), a first pump assembly (3) and a second pump assembly (32). The primary reaction tank (1) is connected to the fungal culture box (2). The second pump assembly (32) is used to draw water from the river and pass it through the primary reaction tank (1) and the fungal culture box (2) in sequence, and then the first pump assembly (3) is used to send it back to the river. The fungal culture box (2) is equipped with a heating pipe (8) for heating, and the bottom of the fungal culture box (2) is also equipped with an aeration system (4) for oxygen supply; both the primary reaction tank (1) and the fungal culture box (2) are equipped with tourmaline particle packing (5), and the fungal culture box (2) is equipped with polyurethane packing (9).

2. The microbial activation ecological restoration system as described in claim 1, characterized in that: It also includes a filter box (6), in which the first pump assembly (3) and the second pump assembly (32) are both located.

3. The microbial activation ecological restoration system as described in claim 2, characterized in that: The second pump assembly (32) includes a transport pump (321) and a second pipe (322). The transport pump (321) is located inside the filter box (6). The second pipe (322) is provided on the transport pump (321). The second pipe (322) is used to transport river water through the filter box (6) and deliver it to the primary reaction tank (1).

4. The microbial activation ecological restoration system as described in claim 3, characterized in that: The fungal culture box (2) has an outlet (21) on one side of the upper end, and a connecting pipe (22) is provided at the outlet (21). The first pump assembly (3) includes a pump (31) and a first pipe (311). The pump (31) is located in the filter box (6). The pump (31) is connected to the first pipe (311). The first pipe (311) is connected to the connecting pipe (22) to transport the mixed river water back into the river.

5. The microbial activation ecological restoration system as described in claim 1, characterized in that: The primary reaction tank (1) is provided with an opening (11), and a water outlet is provided on one side of the primary reaction tank (1). An overflow pipe (12) is provided at the water outlet and communicates with the fungal culture box (2).

6. The microbial activation ecological restoration system as described in claim 3, characterized in that: The second pipeline (322) is equipped with an ultraviolet algae removal device (7). The transport pump (321) draws river water from the river channel, passes through the ultraviolet algae removal device (7), and then enters the primary reaction tank (1).

7. The microbial activation ecological restoration system as described in claim 1, characterized in that: The aeration system (4) includes several aerators (41) installed at the bottom of the fungal culture box (2), and the ends of the aerators (41) are mechanically connected to an air pump.