Algae purification collector for aquarium

By designing an aquarium algae purifier and collector, and utilizing a suspended filtration structure and intelligent cruise technology, the problems of chemical methods causing harm and physical methods being costly in aquarium algae treatment have been solved, achieving efficient and harmless algae filtration and visual teaching.

CN223600651UActive Publication Date: 2025-11-28BEIJING INST OF CLOTHING TECH
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Patent Information

Application Number
CN202423138189.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-18
Publication Date
2025-11-28
Estimated Expiration
2034-12-18

AI Technical Summary

Technical Problem

When dealing with algae problems in aquariums, existing technologies are limited by the fact that chemical methods are harmful to aquatic organisms, biological methods are inefficient and time-consuming, while physical methods involve expensive equipment with limited functionality.

Method used

An aquarium algae purifier and collector was designed, including control and power components and filtration and detection components. It is suspended on the water surface using an airbag structure and equipped with multiple filtration structures and turbidity sensors to achieve multiple filtrations and intelligent cruise purification.

Benefits of technology

It achieves efficient and harmless algae filtration, features easy filter cartridge replacement, and has a transparent appearance for easy instruction, making it suitable for the physical purification needs of aquariums.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an aquarium algae purification collector which comprises a control and power assembly, the control and power assembly is located on the upper portion of the purification collector, the control and power assembly is provided with an air bag structure providing buoyancy, and the purification collector enables the control and power assembly to suspend on the water surface through the air bag structure. The filtering and detecting assembly is connected with the control and power assembly; the filtering and detecting assembly is provided with a plurality of groups of filtering structures, and the plurality of groups of filtering structures are communicated through a filtering water pipe so as to filter water entering the purification collector for multiple times. The purification collector disclosed by the utility model solves the problem of algae filtration in the aquarium by a physical method, realizes more targeted cruise type filtration, effectively purifies water in an algae enrichment area, adopts a simple and effective filter structure, is convenient to replace and clean, and is suitable for popularization and application. The full-transparent appearance can increase the science popularization teaching significance of algae visualization while the life of aquatic organisms is not affected.
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Description

TECHNICAL FIELD

[0001] The utility model relates to water purifying device technical field especially relates to a water algae purification collector of aquarium. BACKGROUND

[0002] At present, the common processing method of algae in the water containing algae has chemical method, physical method and biological method. Among them, the chemical method has higher algae removal efficiency, but the toxic and side effects on the water environment limit its application in aquarium. The chemical composition of the algae removal agent is mainly soluble copper compound or integrated copper substance. This kind of compound can cause certain damage to fish, aquatic plants and other aquatic organisms, even lead to death, and also has carcinogenic effect, and can produce some unpredictable adverse sequelae, and inevitably cause environmental pollution or destroy the ecological balance.

[0003] Secondly, although the biological method can control the growth of algae by introducing algae-eating aquatic organisms, the action period is longer, and the balance of the water ecosystem needs to be strictly controlled to achieve better results, and the original aquatic organisms may be affected.

[0004] Finally, although the physical method has low efficiency, it has the advantages of direct performance, no secondary pollution, less environmental impact, and is very suitable for the application scene of aquarium with limited range and water volume, and high requirements for the survival environment of aquatic organisms.

[0005] Therefore, based on the above technical problems, the technical personnel in the art need to develop a water algae purification collector for aquarium. UTILITY MODEL CONTENT

[0006] The utility model aims at providing a water algae purification collector for aquarium, which solves the problem of algae that cannot be completely solved or properly solved by the existing methods of reducing light and adding drugs, and the problem of high cost and single function of large equipment of the existing physical filtration means.

[0007] In order to achieve the above purpose, the utility model provides the following technical scheme:

[0008] The utility model relates to a water algae purification collector for aquarium, which comprises:

[0009] A control and power assembly is located at the upper part of the purification collector, and the control and power assembly has a gas bag structure providing buoyancy, and the purification collector suspends the control and power assembly on the water surface through the gas bag structure; and

[0010] A filter and detection assembly connected with the control and power assembly;

[0011] The filtering and detecting assembly is provided with multiple filtering structures, and the multiple filtering structures are communicated through filtering water pipes to filter water entering the purification collector for multiple times.

[0012] Further, the control and power assembly comprises:

[0013] Multiple air bag structures are arranged circumferentially on the control and power assembly, the air bag structures are full transparent air bags, and multiple full transparent air bags are annularly arranged;

[0014] A waterproof mainboard cabin is connected to the inner side of the multiple air bag structures through connecting rods, and a control mainboard and a battery pack are integrated in the waterproof mainboard cabin;

[0015] A fan integrated cylinder is arranged at the bottom of the waterproof mainboard cabin, a fan passage is formed on one side of the fan integrated cylinder, and a rudder and a fan are arranged in the fan passage.

[0016] Further, a top display screen is integrated at the top of the waterproof mainboard cabin, and the top display screen is electrically connected with the control mainboard in the waterproof mainboard cabin.

[0017] Further, the control and power assembly is connected with the filtering and detecting assembly through multiple hoses, and the filtering and detecting assembly is hung below the control and power assembly through the multiple hoses. Internal wires of the hoses are used to connect the integrated control mainboard in the waterproof mainboard cabin with a submersible pump in the first opaque waterproof element groove and detecting elements in the second opaque waterproof element groove.

[0018] Further, the filtering and detecting assembly comprises:

[0019] An arc-shaped acrylic water cabin is arranged at the top of the filtering and detecting assembly, an outer ring is connected to the lower end of the arc-shaped acrylic water cabin, and an outer ring circular groove is arranged circumferentially on the outer ring to assemble and fix the arc-shaped acrylic water cabin through the outer ring circular groove.

[0020] A secondary water filtering net is fixed in the inner ring of the outer ring.

[0021] An intermediate water cabin is connected to the lower part of the arc-shaped acrylic water cabin through the outer ring, a first opaque waterproof element groove is connected to the lower end of the intermediate water cabin, a U-shaped filtering bin is connected to the first opaque waterproof element groove, and the U-shaped filtering bin is matched with the shape of the inner side of the first opaque waterproof element groove.

[0022] A second opaque waterproof element groove is connected to the lower end of the first opaque waterproof element groove through a water pipe, a bottom coarse filtering net is arranged at the lower end of the second waterproof element groove, a transparent protection cylinder is arranged outside the water pipe, and the transparent protection cylinder is connected with the first opaque waterproof element groove.

[0023] The upper end of the water pipe is provided with a submersible pump, and the submersible pump is arranged in the first opaque waterproof element groove;

[0024] Water enters the bottom coarse filter screen by the power of the submersible pump, and then enters the intermediate water tank through the secondary filter screen, and is discharged by the U-shaped filter bin.

[0025] Further, one side of the second opaque waterproof element groove is provided with a detection element, and the detection element is a turbidity sensor with a model of TSW-30.

[0026] Further, a plurality of soft PVC pipe fixing grooves are fixed on the circumference of the outer ring, and a plurality of lower ends of the soft pipes are connected to the corresponding soft PVC pipe fixing grooves and pass through the intermediate water tank to the first opaque waterproof element groove, and the upper ends of the soft pipes pass around the corresponding connecting rods and are connected to the intermediate waterproof main plate tank.

[0027] In the above technical solution, the aquarium algae purification collector has the following beneficial effects:

[0028] The purification collector solves the aquarium algae filtration problem by a physical method, and has more targeted cruise type filtration, effectively purifies the water body in the algae enrichment area, has a simple and effective filtration structure and a filter box convenient to replace and clean, and a fully transparent appearance can increase the popular science teaching significance of algae visualization while not affecting the life of aquatic organisms. BRIEF DESCRIPTION OF DRAWINGS

[0029] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed in the embodiments will be briefly introduced as follows. Obviously, the drawings in the following description are only some embodiments described in the present application, and other drawings can also be obtained by those skilled in the art according to these drawings.

[0030] Fig. 1 The structure diagram of the aquarium algae purification collector disclosed by the embodiments of the present application is shown in the drawings.

[0031] Fig. 2 The structure diagram of the inside of the filtration and detection assembly of the aquarium algae purification collector disclosed by the embodiments of the present application is shown in the drawings.

[0032] EXPLANATION OF REFERENCE NUMERALS:

[0033] 1, control and power assembly; 2, filtration and detection assembly; 3, soft pipe;

[0034] 101, air bag structure; 102, waterproof mainboard cabin; 103, fan integrated cylinder; 104, fan; 105, top display screen; 106, connecting rod; 107, control mainboard; 108, battery pack;

[0035] 201, arc-shaped acrylic water tank; 202, middle water tank; 203, first opaque waterproof element groove; 204, transparent protection cylinder; 205, bottom coarse filter screen; 206, secondary filter screen; 207, U-shaped filter bin; 208, outer ring; 209, second opaque waterproof element groove; 210, water pipe; 211, detection element;

[0036] 301, soft PVC fixing groove. DETAILED DESCRIPTION

[0037] In order to make the technical personnel in the art better understand the technical scheme of the utility model, the utility model will be further described in detail below with reference to the drawings.

[0038] Referring to Figs. 1-2 as shown in the figure;

[0039] The embodiment discloses an aquarium algae purification collector, which comprises:

[0040] A control and power assembly 1 is located at the upper part of the purification collector, and the control and power assembly 1 has an air bag structure 101 for providing buoyancy, and the purification collector suspends the control and power assembly 1 on the water surface through the air bag structure 101; and

[0041] A filter and detection assembly 2 connected with the control and power assembly 1;

[0042] The filter and detection assembly 2 is provided with a plurality of filter structures, and the plurality of filter structures are communicated through filter water pipes to filter the water entering the purification collector multiple times.

[0043] Specifically, the embodiment discloses an aquarium algae purification collector, which is divided into an upper control and power assembly 1 and a lower filter and detection assembly 2, wherein the control and power assembly 1 uses the air bag structure 101 to float the device on the water surface, and the lower filter and detection assembly 2 is immersed in water to extract water and impurities and filter through a plurality of filter structures. The control assembly of the embodiment is further provided with a rudder, a motor and a fan 104, which can provide a floating force and enable the device to move on the water surface to filter and purify water in different areas. The lower filter and detection assembly 2 is provided with a quick-release filter structure, a visual water tank and a water pump, which can extract water from the bottom of the device to the upper part and finally discharge it from the side. The water is filtered three times in the filter and detection assembly 2, realizing the collection and recycling of algae.

[0044] Preferably, the control and power assembly 1 of the embodiment comprises a plurality of air bag structures 101 arranged circumferentially along the control and power assembly 1, the air bag structures 101 being full-transparent air bags, the plurality of full-transparent air bags being annularly arranged; a waterproof mainboard cabin 102 connected to the inner side of the plurality of air bag structures 101 through a connecting rod 106, the waterproof mainboard cabin 102 being internally integrated with a control mainboard 107 and a battery pack 108; and a fan blade integrated cylinder 103 arranged at the bottom of the waterproof mainboard cabin 102, and a fan blade passage being formed on one side of the fan blade integrated cylinder 103, and a rudder and fan blades 104 being arranged in the fan blade passage.

[0045] Secondly, the top of the waterproof mainboard cabin 102 of the embodiment is integrated with a top display screen 105, and the top display screen 105 is electrically connected with the control mainboard 107 in the waterproof mainboard cabin 102.

[0046] The embodiment further limits the structural composition of the control and power assembly 1. First, the plurality of air bag structures 101 are used to form the outer frame of the assembly, and after being filled with air, the device can float. Meanwhile, the control and power assembly 1 of the embodiment is also provided with a control mainboard 107 for controlling the operation of the device, and a rudder, a motor and fan blades 104 are integrated at the lower part of the control mainboard 107, and the necessary battery pack 108 and top display screen 105 for data display are also provided. The control mainboard 107 of the embodiment adopts an Arduino UNO board. When it is necessary to move, the rudder drives the fan blades 104 and the motor to turn, and the rotation of the fan blades 104 can realize the movement of the device on the water surface.

[0047] Preferably, the control and power assembly 1 of the embodiment is connected with the filtering and detecting assembly 2 through a plurality of hoses 3, and the filtering and detecting assembly 2 is hung below the control and power assembly 1 through the plurality of hoses 3.

[0048] Preferably, the filtering and detecting assembly 2 of the embodiment comprises:

[0049] an arc-shaped acrylic water cabin 201 arranged at the top thereof, the arc-shaped acrylic water cabin 201 being connected with an outer ring 208 at the lower end thereof, and the outer ring 208 being circumferentially provided with an outer ring circular groove for assembling and fixing the arc-shaped acrylic water cabin 201 through the outer ring circular groove;

[0050] the outer ring 208 being fixed with a secondary water filtering net 206 at the inner ring thereof;

[0051] the lower part of the arc-shaped acrylic water cabin 201 being connected with an intermediate water cabin 202 through the outer ring 208, and the lower end of the intermediate water cabin 202 being connected with a first opaque waterproof element groove 203, and the first opaque waterproof element groove 203 being connected with a U-shaped filter bin 207, and the U-shaped filter bin 207 being matched with the shape of the inner side of the first opaque waterproof element groove 203;

[0052] The lower end of the first opaque waterproof element groove 203 is connected with a second opaque waterproof element groove 209 through a water pipe 210, and the lower end of the second opaque waterproof element groove 209 is provided with a bottom coarse filter screen 205.

[0053] The upper end of the water pipe 210 is provided with a submersible pump, and the submersible pump is arranged in the first opaque waterproof element groove 203.

[0054] Water enters the bottom coarse filter screen 205 through the power of the submersible pump, passes through a secondary filter screen 206, enters the intermediate water tank 202, and is discharged by the U-shaped filter bin 207.

[0055] In the embodiment, the second opaque waterproof element groove 209 is provided with a detection element 211 on one side.

[0056] A plurality of soft PVC pipe fixing grooves 301 are fixed on the circumference of the outer ring 208, and a plurality of soft pipes 3 are connected to the corresponding soft PVC pipe fixing grooves 301 at the lower ends.

[0057] The detection assembly of the embodiment adopts a turbidity sensor of TSW-30 type, outputs an analog signal through an AOUT port, and uses a uno micro-quiet submersible pump DC3-5V to absorb water and detect turbidity.

[0058] In the above technical solution, the aquarium algae purification collector has the following beneficial effects:

[0059] The purification collector solves the aquarium algae filtration problem by a physical method, and has a more targeted cruise type filter, effectively purifies the water body in the algae enrichment area, and has a simple and effective filter structure and a filter box convenient to replace and clean.

[0060] The above has only described certain exemplary embodiments of the present application by way of illustration, and it is needless to say that the described embodiments can be modified in various ways without departing from the spirit and scope of the present application for those skilled in the art. Therefore, the above drawings and descriptions are illustrative in nature, and should not be understood as limiting the scope of protection of the claims of the present application.

Claims

1. An aquarium water algae purifying collector, characterized by, The purification collector comprises: a control and power assembly (1) located at the upper part of the purification collector, and having a gas bag structure (101) providing buoyancy, by which the control and power assembly (1) is suspended on the water surface; and a filtering and detecting assembly (2) connected with the control and power assembly (1); The filtering and detecting assembly (2) is provided with a plurality of filtering structures, and the filtering structures are communicated through filtering water pipes to filter the water entering the purification collector for multiple times.

2. An aquarium algae purifying collector according to claim 1, characterized in that, The control and power assembly (1) comprises: a plurality of gas bag structures (101) arranged circumferentially on the control and power assembly (1), the gas bag structures (101) being full-transparent gas bags, and the gas bag structures (101) being annularly arranged; a waterproof mainboard cabin (102) connected to the inner side of the plurality of gas bag structures (101) through a connecting rod (106), and having a control mainboard (107) and a battery pack (108) integrated therein; The waterproof mainboard cabin (102) is provided with a fan integrated cylinder (103) at the bottom, and a fan passage is formed on one side of the fan integrated cylinder (103), and a steering engine and a fan (104) are installed in the fan passage.

3. An aquarium algae purifying collector according to claim 2, characterized in that, The top of the waterproof mainboard cabin (102) is integrated with a top display screen (105) which is electrically connected with the control mainboard (107) in the waterproof mainboard cabin (102).

4. An aquarium algae purifying collector according to claim 2, characterized in that, The control and power assembly (1) and the filtering and detecting assembly (2) are connected through a plurality of hoses (3), and the filtering and detecting assembly (2) is suspended below the control and power assembly (1) through the plurality of hoses (3).

5. An aquarium algae purifying collector according to claim 4, characterized in that, The filtering and detecting assembly (2) comprises: an arc-shaped acrylic water cabin (201) located at the top thereof, and having an outer ring (208) connected at the lower end thereof, and an outer ring circular groove being circumferentially arranged on the outer ring (208) to assemble and fix the arc-shaped acrylic water cabin (201); a secondary water filtering net (206) fixed on the inner ring of the outer ring (208); The lower part of the arc-shaped acrylic water cabin (201) is connected with an intermediate water cabin (202) through the outer ring (208), and the lower end of the intermediate water cabin (202) is connected with a first opaque waterproof element groove (203), the first opaque waterproof element groove (203) is connected with a U-shaped filtering bin (207) which is matched with the inner side of the first opaque waterproof element groove (203) in shape; The lower end of the first opaque waterproof element groove (203) is connected with a second opaque waterproof element groove (209) through a water pipe (210), and the lower end of the second opaque waterproof element groove (209) is installed with a bottom coarse filtering net (205), and the water pipe (210) is externally provided with a transparent protection cylinder (204) which is connected with the first opaque waterproof element groove (203); The upper end of the water pipe (210) is provided with a submersible pump, and the submersible pump is arranged in the first opaque waterproof element groove (203); Water enters the bottom coarse filter screen (205) by the power of the submersible pump, passes through the secondary filter screen (206), enters the intermediate water tank (202), and is discharged by the U-shaped filter bin (207).

6. An aquarium algae purifying collector according to claim 5, wherein A detection element (211) is arranged on one side of the second opaque waterproof element groove (209), and the detection element (211) is a turbidity sensor with a model of TSW-30.

7. An aquarium algae purifying collector according to claim 5, characterized in that, A plurality of soft PVC pipe fixing grooves (301) are fixed on the circumference of the outer ring (208) at intervals, and the lower ends of a plurality of soft pipes (3) are connected to the corresponding soft PVC pipe fixing grooves (301), and the upper ends of the soft pipes (3) pass around the corresponding connecting rods (106) and are connected to the intermediate waterproof main board tank (102).