Spiral plastic biochemical felt for culturing microorganisms in water

By designing the attachment filament structure of the spiral plastic bio-mat, the problems of small surface area and poor flowability of microbial culture equipment in water were solved, achieving a more efficient microbial culture effect.

CN223804967UActive Publication Date: 2026-01-16熊月新
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Patent Information

Application Number
CN202520238287.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-14
Publication Date
2026-01-16
Estimated Expiration
2035-02-14

AI Technical Summary

Technical Problem

Existing underwater microbial culture equipment has a limited surface area and is not easy to fully contact and circulate with water, resulting in unsatisfactory microbial culture effects.

Method used

Design a spiral plastic biochemical felt with cross-bonded attachment filaments inside. The attachment filaments have an inner attachment mechanism and water passage holes, and the outer side has connecting filaments to increase the surface area and water flow.

Benefits of technology

By increasing the surface area for microbial attachment and improving water circulation, the efficiency and quality of microbial cultivation were improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a spiral plastic biochemical felt for culturing microorganisms in water, which comprises a felt body, a plurality of attached filaments are arranged in the felt body, and the attached filaments are mutually crossed and bonded in the felt body; the attachment filament is arranged in a spiral shape, and an inner attachment mechanism is mounted on the inner side of the attachment filament; and water through holes penetrating through the interiors of the attachment filaments are formed in the outer sides of the attachment filaments. Compared with the prior art, the application at least has the following beneficial effects: the hollow interior of the attachment filament is utilized, the interior of the attachment filament can also be utilized, so that the microorganism culture area in the attachment filament is greatly increased, and the water through holes penetrate through the interior of the attachment filament, so that a plurality of water through holes are formed in the attachment filament and are used for water to enter; the phenomenon that water cannot enter the attached filaments is avoided, and it is ensured that the internal structures of the attached filaments can be completely utilized.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of plastic felt, in particular to a spiral plastic biochemical felt for culturing microorganisms in water. BACKGROUND

[0002] Biochemical felt is a filter material with a wide range of applications, mainly playing a biochemical filtering effect, suitable for ornamental aquariums such as seawater tanks, freshwater tanks and aquatic plant tanks. It can cultivate beneficial bacteria, improve water quality and improve fish survival rate.

[0003] Although the prior art provides a surface for microorganism attachment to a certain extent, the structure is often simple, the surface area is limited, and the water body is not easy to fully contact and circulate, resulting in unsatisfactory microorganism culture effect. Therefore, a new spiral plastic biochemical felt for culturing microorganisms in water is needed to increase the attachment area of microorganisms, promote the circulation and exchange of water body, and thus improve the culture efficiency and quality of microorganisms. CONTENT OF THE INVENTION

[0004] Therefore, the present application provides a spiral plastic biochemical felt for culturing microorganisms in water to solve the problem of limited surface area and difficulty in fully contacting and circulating the water body in the prior art.

[0005] In order to achieve the above-mentioned purpose, the present application provides the following technical scheme:

[0006] A spiral plastic biochemical felt for culturing microorganisms in water comprises:

[0007] A felt body, the inside of the felt body has a plurality of attachment filaments, the attachment filaments are in a mutually cross-bonded state inside the felt body;

[0008] An inner attachment mechanism is installed on the inner side of the attachment filaments, wherein the inner attachment mechanism comprises a mounting core, the mounting core is fixedly installed inside the attachment filaments, and a plurality of slot structures are formed in the inside of the mounting core;

[0009] A water passage hole is formed in the outer side of the attachment filaments and penetrates the inside of the attachment filaments;

[0010] An attachment filament is also installed at the adjacent quadrant points on the outer side of the attachment filaments.

[0011] Optionally, a plurality of outer grooves are formed in the attachment filaments on the outer side of the mounting core, and a communication groove is connected between the outer grooves.

[0012] Optionally, a plurality of grooves are formed on the outer side of the outer grooves.

[0013] Optionally, the attachment filament comprises a filament body, a plurality of attachment strips are installed at equal angles on the outer end of the filament body, and the outer end of the attachment strip is circular.

[0014] Optionally, the inner side of the filament body is provided with an attachment inner groove, and the attachment inner groove comprises a hollow groove, and an outer end of the hollow groove is provided with a culture groove corresponding to the attachment strip.

[0015] Optionally, the attachment filament is arranged in a spiral shape.

[0016] Optionally, the attachment filament is arranged in an S shape.

[0017] Compared with the prior art, the present application has at least the following beneficial effects:

[0018] 1. The hollow interior of the attachment filament is utilized, so that the interior of the attachment filament can also be utilized, thereby greatly increasing the microbial culture area in the interior of the attachment filament, and the water passage hole penetrates the interior of the attachment filament, so that a plurality of water passage holes are provided in the attachment filament for water to enter, avoiding the phenomenon that the interior of the attachment filament cannot be entered by water, and ensuring that the internal structure of the attachment filament can be fully utilized.

[0019] 2. A plurality of attachment strips are arranged at the outer end of the filament body at equal angles, so that the outer surface of the attachment filament has a large surface area as a whole, facilitating microbial culture, and the interior of the filament body and the attachment strip is provided with an attachment inner groove, so that the inner side of the filament body and the attachment strip is hollow, further increasing the microbial culture area in the interior of the attachment filament. BRIEF DESCRIPTION OF DRAWINGS

[0020] In order to more intuitively illustrate the prior art and the present application, exemplary drawings are given below. It should be understood that the specific shapes, structures shown in the drawings should not be regarded as limiting conditions in the implementation of the present application; for example, based on the technical concepts disclosed in the present application and the exemplary drawings, those skilled in the art can easily make routine adjustments or further optimization of the increase / decrease / assignment of certain units (components), specific shapes, positional relationships, connection modes, size ratio relationships, etc.

[0021] Figure 1 A schematic diagram of the overall structure of a spiral plastic biochemical felt for culturing microorganisms in water is provided for Embodiment One of the present application;

[0022] Figure 2 A schematic diagram of the overall structure of an inner attachment mechanism of a spiral plastic biochemical felt for culturing microorganisms in water connected with an attachment filament is provided for Embodiment One of the present application;

[0023] Figure 3 A schematic diagram of the overall structure of an inner attachment mechanism of a spiral plastic biochemical felt for culturing microorganisms in water connected with an attachment filament is provided for Embodiment One of the present application;

[0024] Figure 4A schematic diagram of the whole structure of the connection between the attached inner groove and the attached filament of the spiral plastic biochemical felt for cultivating microorganisms in water is provided for the second embodiment of the present application.

[0025] Figure 5 A schematic diagram of the front view cross-sectional structure of the connection between the attached inner groove and the attached filament of the spiral plastic biochemical felt for cultivating microorganisms in water is provided for the second embodiment of the present application.

[0026] Figure 6 A schematic diagram of the whole structure of the attached filament of the spiral plastic biochemical felt for cultivating microorganisms in water is provided for the third embodiment of the present application.

[0027] Explanation of reference signs:

[0028] 1, felt body; 2, connecting filament; 3, attached filament; 301, filament body; 302, attached strip; 4, inner attachment mechanism; 401, mounting core; 402, outer groove; 403, communication groove; 404, groove; 5, attached inner groove; 501, hollow groove; 502, culture groove; 6, water hole. DETAILED DESCRIPTION

[0029] The present application will be further described in detail below with specific embodiments in combination with the accompanying drawings.

[0030] Embodiment I

[0031] The spiral plastic biochemical felt for cultivating microorganisms in water provided by the present application comprises a felt body 1, and the inside of the felt body 1 has a plurality of attached filaments 3. Figure 1 - Figure 3 The attached filaments 3 are cross-bonded in the inside of the felt body 1.

[0032] The attached filaments 3 are spirally arranged, the longitudinal section of the attached filaments 3 is circular, and the inside of the attached filaments 3 is provided with an inner attachment mechanism 4, so that the inside of the attached filaments 3 is hollow, and the surface area of the inside of the attached filaments 3 is increased.

[0033] The outside of the mounting core 401 is further provided with a plurality of outer grooves 402 formed in the attached filaments 3, and the outer grooves 402 are connected with communication grooves 403, so that the adjacent outer grooves 402 can be communicated.

[0034] The outer side of the attachment filament 3 is also provided with water through holes 6 penetrating the interior of the attachment filament 3, so that several water through holes 6 are provided in the attachment filament 3 for water to enter, avoiding the phenomenon that the interior of the attachment filament 3 cannot be accessed by water, and ensuring that the internal structure of the attachment filament 3 can be fully utilized.

[0035] The outer side of the attachment filament 3 is also provided with water through holes 6 penetrating the interior of the attachment filament 3, so that several water through holes 6 are provided in the attachment filament 3 for water to enter, avoiding the phenomenon that the interior of the attachment filament 3 cannot be accessed by water, and ensuring that the internal structure of the attachment filament 3 can be fully utilized.

[0036] Embodiment two

[0037] As shown in Figure 4 and Figure 5 , the attachment filament 3 comprises a filament body 301, and a plurality of attachment strips 302 are arranged at the outer end of the filament body 301 at equal angles, and the outer end of the attachment strip 302 is circular, so that the outer surface of the attachment filament 3 has a large surface area as a whole, facilitating microbial culture.

[0038] The inner side of the filament body 301 is provided with an attachment inner groove 5, and the attachment inner groove 5 comprises a hollow groove 501, and the outer end of the hollow groove 501 is provided with a culture groove 502 corresponding to the attachment strip 302, so that the inner side of the filament body 301 and the attachment strip 302 is hollow, further increasing the microbial culture area inside the attachment filament 3.

[0039] Embodiment three

[0040] As shown in Figure 6 , the attachment filament 3 is S-shaped, facilitating production.

[0041] The technical features of the above embodiments can be combined arbitrarily as long as the combination of the technical features does not exist contradictions. In order to make the description simple, not all possible combinations of the technical features in the above embodiments are described; these embodiments which are not explicitly written should also be considered as the scope of the present disclosure.

Claims

1. A spiral plastic biochemical felt for cultivating microorganisms in water, characterized in that, Include: The felt (1) has several attached filaments (3) inside, which are cross-bonded inside the felt (1); The inner side of the attached filament (3) is provided with an inner attachment mechanism (4), wherein the inner attachment mechanism (4) comprises a mounting core (401) fixedly installed inside the attached filament (3), and a plurality of slot structures are formed in the inside of the mounting core (401); The outer side of the attached filament (3) is provided with a water hole (6) penetrating through the inside of the attached filament (3); The outer side of the attached filament (3) is also provided with a connecting filament (2) at the adjacent quadrant points.

2. The spiral plastic biochemical felt for cultivating microorganism in water according to claim 1, characterized in that, The outer side of the mounting core (401) is also provided with a plurality of outer grooves (402) formed in the attached filament (3), and the outer grooves (402) are connected by communication grooves (403).

3. The spiral plastic bio-chemical felt for cultivating microorganism in water according to claim 2, characterized in that, The outer side of the outer groove (402) is also provided with a plurality of grooves (404).

4. The spiral plastic bio-chemical felt for cultivating microorganism in water according to claim 1, characterized in that, The attached filament (3) comprises a filament body (301), a plurality of attached strips (302) are installed at equal angles at the outer end of the filament body (301), and the outer end of the attached strip (302) is circular.

5. The spiral plastic bio-chemical felt for cultivating microorganism in water according to claim 4, characterized in that, The inner side of the filament body (301) is provided with an attached inner groove (5), and the attached inner groove (5) comprises a hollow groove (501), and the outer end of the hollow groove (501) is provided with a culture groove (502) corresponding to the attached strip (302).

6. The spiral plastic bio-chemical felt for cultivating microorganism in water according to claim 1, characterized in that, The attached filament (3) is spirally arranged.

7. The spiral plastic bio-chemical felt for cultivating microorganism in water according to claim 1, characterized in that, The attached filament (3) is S-shaped.