Equipment for recycling aluminum-silicon material in water

By designing the filter plate and magnetic strip structure in the cabinet and combining with flocculant treatment, the problem of the inability to effectively recover aluminum and silicon materials in water in the prior art is solved, and the complete recovery of aluminum and silicon materials and the effective separation of impurities are achieved.

CN223304287UActive Publication Date: 2025-09-05WATER TSINGHUA (YIXING) ECOLOGICAL TECH CO LTD
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Patent Information

Application Number
CN202422535274.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-21
Publication Date
2025-09-05
Estimated Expiration
2034-10-21

AI Technical Summary

Technical Problem

The existing aluminum-silicon material recycling methods cannot effectively recover larger pieces of impurities and iron and fine particle aluminum-silicon impurities contained in water.

Method used

A device was designed, including a cabinet, water inlet, slide chute, push-pull box, filter plate and magnetic strip structure. Large pieces of impurities are intercepted through the coarse filter plate, fine filter plate and magnetic stripe adsorb iron impurities, flocculant is added to condense aluminum and silicon impurities, and finally separated and recovered aluminum and silicon materials are collected through the push-pull box.

Benefits of technology

Complete recycling of aluminum and silicon materials in water is achieved, and large pieces of impurities and iron impurities are effectively separated and processed, making it convenient for the recycling of aluminum and silicon materials.

✦ Generated by Eureka AI based on patent content.

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Abstract

Equipment for recycling aluminum-silicon materials in water is characterized by comprising a cabinet body, a water inlet is formed in the cabinet body, a first sliding groove is formed in the cabinet body, a first push-pull box is arranged in the first sliding groove, a limiting block is arranged in the first push-pull box, a rough filtering plate is arranged on the limiting block, and a second sliding groove is formed in the cabinet body; fine impurities of aluminum-silicon materials in the sewage are clustered under the action of medicines and stay on a fine filter plate of a third push-pull box, a water outlet is opened, residual sewage is discharged, the third push-pull box is pulled out, the aluminum-silicon materials are recycled, the first push-pull box and the second push-pull box are pulled out from a first sliding groove and a second sliding groove, and the aluminum-silicon materials are recycled. Large impurities and iron impurities are treated, so that the large impurities and the iron impurities in the sewage can be completely separated from aluminum-silicon impurities, and aluminum-silicon materials can be conveniently recycled.
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Description

Technical Field

[0001] The utility model relates to the technical field of aluminum silicon material recovery, in particular to a device for recovering aluminum silicon material from water. Background Art

[0002] During the water treatment process, sewage will contain large impurities and fine impurities such as iron and aluminum-silicon materials. The aluminum-silicon impurities usually exist in the water to be treated in the form of fine particles, and the existing aluminum-silicon material recovery method cannot completely recover them. In order to solve the above problems, a device for recovering aluminum-silicon materials in water is proposed. Utility Model Content

[0003] The invention provides an apparatus for recovering aluminum-silicon materials in water, characterized in that it comprises a cabinet, a water inlet, a first chute, a first push-pull box, a limiting block, a coarse filter plate, a second chute, a second push-pull box, a supporting frame, a placement slot, a magnetic strip, a fine filter plate, a medicine feeding port, a third chute, a third push-pull box, and a drain outlet, wherein the box is provided with a water inlet, the cabinet is provided with a first chute, the first push-pull box is provided in the first chute, the limiting block is provided in the first push-pull box, the coarse filter plate is provided on the limiting block, the cabinet is provided with a second chute, the second push-pull box is provided in the second chute, the supporting frame is provided in the second push-pull box, the supporting frame is provided with a placement slot, the placing slot is provided with a magnetic strip, the fine filter plate is provided on the supporting frame, the cabinet is provided with a medicine feeding port, the cabinet is provided with a third chute, the third push-pull box is provided on the third chute, and the cabinet is provided with a drain outlet;

[0004] Furthermore, the water inlet is located above the cabinet, the first chute is located below the water inlet, a large opening is provided in the first push-pull box, a plurality of limit blocks are fixedly provided on the edge of the opening in the first push-pull box, and a coarse filter plate is placed on the limit blocks;

[0005] Furthermore, the second chute is located below the first chute, and a large opening is provided in the second push-pull box. A plurality of carriers are fixedly provided in the opening of the second push-pull box, and each carrier is provided with a plurality of placement slots. The upper edge of the magnetic strip is flush with the upper edge of the carrier, and the fine filter plate is located above the carrier and the magnetic strip, and the aperture of the fine filter plate is smaller than that of the coarse filter plate.

[0006] Furthermore, the medicine feeding port is located below the second chute, the third chute is located below the medicine feeding port, the third push-pull box has a large opening, and several limit blocks are fixedly set on the edge of the opening in the third push-pull box. A fine filter plate is placed on the limit blocks, and the drain outlet is located below the third chute, and there is a valve on the drain outlet.

[0007] Beneficial effects of the utility model:

[0008] The utility model pours sewage containing larger impurities and fine impurities such as iron and aluminum silicon into the cabinet from the water inlet of the cabinet, the larger impurities are blocked by the coarse filter plate in the first push-pull box, the fine iron impurities are adsorbed by the fine filter plate and the magnetic strip in the second push-pull box, the fine impurities made of aluminum silicon fall to the bottom of the cabinet along with the sewage and are suspended in the sewage, and flocculants and other medicines are added into the cabinet from the medicine feeding port, the fine impurities made of aluminum silicon in the sewage agglomerate under the action of the medicines and stay on the fine filter plate of the third push-pull box, the drain port is opened to discharge the remaining sewage, the third push-pull box is pulled out, the aluminum silicon material is recovered, the first push-pull box and the second push-pull box are pulled out from the first chute and the second chute, and the larger impurities and iron impurities are processed, so that the larger impurities and iron impurities in the sewage can be completely separated from the aluminum silicon impurities, thereby facilitating the recovery of the aluminum silicon material. BRIEF DESCRIPTION OF THE DRAWINGS

[0009] Figure 1 This is a schematic diagram of the overall structure of an apparatus for recovering aluminum-silicon materials from water according to the present invention;

[0010] Figure 2 This is a schematic diagram of the internal structure of a device for recovering aluminum-silicon materials from water according to the present invention;

[0011] Figure 3 This is a schematic diagram of the first push-pull box structure of an apparatus for recovering aluminum-silicon materials from water according to the utility model;

[0012] Figure 4 This is a schematic diagram of the second push-pull box structure of an apparatus for recovering aluminum-silicon materials from water according to the present invention;

[0013] Figure 5 This is a schematic diagram of the structure of the third push-pull box of the device for recovering aluminum-silicon materials from water according to the utility model;

[0014] As shown in the figure: 1 cabinet, 2 water inlet, 3 first chute, 4 first push-pull box, 5 limit block, 6 coarse filter plate, 7 second chute, 8 second push-pull box, 9 support frame, 10 placement slot, 11 magnetic strip, 12 fine filter plate, 13 drug feeding port, 14 third chute, 15 third push-pull box, 16 drain outlet. DETAILED DESCRIPTION

[0015] The following is a clear and complete description of the technical solution of the present invention in conjunction with the accompanying drawings. Obviously, the embodiments described are only some of the embodiments of the present invention, not all of them. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making any creative efforts are within the scope of protection of the present invention.

[0016] In the description of this utility model, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicating positions or relationships, are based on the positions or relationships shown in the accompanying drawings and are intended solely to facilitate the description of this utility model and simplify the description. They do not indicate or imply that the devices or components referred to must have a specific orientation, be constructed, or operate in a specific orientation. Therefore, they should not be construed as limitations on this utility model. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0017] In the description of the present invention, it should be noted that, unless otherwise clearly specified and limited, the terms "installed", "connected", and "connected" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, or it can be indirectly connected through an intermediate medium, or it can be internal communication between two components. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances. In addition, the technical features involved in the different embodiments of the present invention described below can be combined with each other as long as they do not conflict with each other.

[0018] Example 1

[0019] The utility model provides an apparatus for recovering aluminum silicon materials in water, characterized in that it includes a cabinet 1, a water inlet 2, a first chute 3, a first push-pull box 4, a limit block 5, a coarse filter plate 6, a second chute 7, a second push-pull box 8, a carrier 9, a placement slot 10, a magnetic strip 11, a fine filter plate 12, a drug feeding port 13, a third chute 14, a third push-pull box 15, and a drain port 16. The water inlet 2 is provided on the cabinet 1, the first chute 3 is provided on the cabinet 1, and the first push-pull box 4 is provided in the first chute 3. A limit block 5 is provided in the first push-pull box 4, a coarse filter plate 6 is provided on the limit block 5, a second chute 7 is provided on the cabinet 1, a second push-pull box 8 is provided in the second chute 7, a carrier 9 is provided in the second push-pull box 8, a placement slot 10 is provided on the carrier 9, a magnetic strip 11 is provided on the placement slot 10, a fine filter plate 12 is provided on the carrier 9, a medicine feeding port 13 is provided on the cabinet 1, a third chute 14 is provided on the cabinet 1, a third push-pull box 15 is provided on the third chute 14, and a drain outlet 16 is provided on the cabinet 1;

[0020] Furthermore, the water inlet 2 is located above the cabinet 1, the first chute 3 is located below the water inlet 2, and a large opening is provided in the first push-pull box 4. A plurality of limit blocks 5 are fixedly provided on the edge of the opening in the first push-pull box 4, and a coarse filter plate 6 is placed on the limit blocks 5;

[0021] Furthermore, the second chute 7 is located below the first chute 3, and the second push-pull box 8 has a large opening. Several carriers 9 are fixedly installed in the opening of the second push-pull box 8. Each carrier 9 is provided with multiple placement slots 10. The upper edge of the magnetic strip 11 is flush with the upper edge of the carrier 9. The fine filter plate 12 is located above the carrier 9 and the magnetic strip 11. The aperture of the fine filter plate 12 is smaller than that of the coarse filter plate 6.

[0022] Furthermore, the medicine feeding port 13 is located below the second chute 7, the third chute 14 is located below the medicine feeding port 13, the third push-pull box 15 has a large opening, and several limit blocks 5 are fixedly set on the opening edge of the third push-pull box 15. The fine filter plate 12 is placed on the limit blocks 5, and the drain outlet 16 is located below the third chute 14, and there is a valve on the drain outlet 16.

[0023] Example 2

[0024] During use, sewage containing larger impurities and fine impurities of iron and aluminum-silicon materials is poured into the cabinet 1 from the water inlet 2 of the cabinet 1, and the larger impurities are blocked by the coarse filter plate 6 in the first push-pull box 4, and the fine iron impurities are adsorbed by the fine filter plate 12 and the magnetic strip 11 in the second push-pull box 8. The fine impurities of aluminum-silicon materials fall to the bottom of the cabinet 1 with the sewage and are suspended in the sewage. Flocculants and other drugs are added into the cabinet 1 from the drug injection port 13. The fine impurities of aluminum-silicon materials in the sewage agglomerate under the action of the drugs and stay on the fine filter plate 12 of the third push-pull box 15. The drain port 16 is opened to discharge the remaining sewage, and the third push-pull box 15 is pulled out to recover the aluminum-silicon material. The first push-pull box 4 and the second push-pull box 8 are pulled out from the first chute 3 and the second chute 7 to process the larger impurities and iron impurities.

[0025] The above shows and describes the basic principles, main features and advantages of the present invention. The various components mentioned in the present invention are common technologies in the existing field. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions are merely illustrative of the principles of the present invention. Various changes and improvements may be made to the present invention without departing from the spirit and scope of the present invention. Such changes and improvements fall within the scope of the present invention. The scope of protection claimed in this utility model is defined by the appended claims and their equivalents.

Claims

1. A device for recovering aluminum silicon materials from water, characterized in that: It includes a cabinet body, a water inlet, a first chute, a first push-pull box, a limit block, a coarse filter plate, a second chute, a second push-pull box, a supporting frame, a placement slot, a magnetic strip, a fine filter plate, a medicine feeding port, a third chute, a third push-pull box, and a drain outlet. The cabinet body is provided with a water inlet, the cabinet body is provided with a first chute, the first push-pull box is provided in the first chute, the limit block is provided in the first push-pull box, the coarse filter plate is provided on the limit block, the cabinet body is provided with a second chute, the second push-pull box is provided in the second chute, the supporting frame is provided in the second push-pull box, the placement slot is provided on the supporting frame, the placement slot is provided on the magnetic strip, the fine filter plate is provided on the supporting frame, the medicine feeding port is provided on the cabinet body, the third chute is provided on the cabinet body, the third push-pull box is provided on the third chute, and the cabinet body is provided with a drain outlet.

2. The device for recovering aluminum silicon materials in water according to claim 1, characterized in that: The water inlet is located above the cabinet body, the first chute is located below the water inlet, a large opening is provided in the first push-pull box, a plurality of limit blocks are fixedly provided on the edge of the opening in the first push-pull box, and a coarse filter plate is placed on the limit blocks.

3. The device for recovering aluminum silicon materials in water according to claim 1, characterized in that: The second slide slot is located below the first slide slot, and there is a large opening in the second push-pull box. Several supporting racks are fixedly installed in the opening of the second push-pull box, and each supporting rack is provided with multiple placement slots. The upper edge of the magnetic strip is flush with the upper edge of the supporting rack, and the fine filter plate is located above the supporting rack and the magnetic strip. The aperture of the fine filter plate is smaller than that of the coarse filter plate.

4. The device for recovering aluminum silicon materials in water according to claim 1, characterized in that: The medicine feeding port is located below the second chute, the third chute is located below the medicine feeding port, the third push-pull box has a large opening, and several limit blocks are fixedly set on the opening edge of the third push-pull box. A fine filter plate is placed on the limit blocks. The drain outlet is located below the third chute, and there is a valve on the drain outlet.