Efficient control type intelligent salt water desalination treatment device

By introducing a flow control structure and a capacitor deionizer into the saltwater desalination device, and using a stepper motor to drive a transmission gear pump for water flow control, the problem of inconvenient flow control in existing devices is solved, realizing intelligent saltwater desalination treatment and improving the stability and economy of the system.

CN223576203UActive Publication Date: 2025-11-21TARIM UNIV
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Patent Information

Application Number
CN202423112072.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-17
Publication Date
2025-11-21
Estimated Expiration
2034-12-17

AI Technical Summary

Technical Problem

Existing saltwater desalination equipment lacks intelligent flow regulation capabilities, making it difficult to achieve precise control.

Method used

A highly efficient and intelligently controlled saline water desalination device was designed, comprising a flow regulation structure, a capacitor deionizer, a support base, a guide pipe, and a waste discharge pipe. The device controls water flow by driving a toothed pump with a stepper motor, removes salt by combining the capacitor deionizer, and attracts charged salt ions using an electric field to achieve intelligent regulation.

Benefits of technology

It achieves precise control and continuous transmission of water flow, improves the efficiency and system stability of saline desalination, and reduces energy and desalination costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an efficient control type intelligent salt water desalination treatment device which comprises a flow regulation and control structure, a capacitive deionizer, a support seat, a matching seat, a guide and discharge pipe, a first butt joint pipe and a waste discharge pipe, and the front end of the flow regulation and control structure is communicated with the capacitive deionizer through the first butt joint pipe; the lower end of the capacitive deionizer is supported by a supporting seat, the capacitive deionizer penetrates through the supporting seat and is supported by a matching seat, the lower end of the capacitive deionizer is communicated with a discharge guide pipe through a pipe body, and the lower end of the capacitive deionizer is further communicated with a waste discharge pipe through a pipe body. The utility model relates to an efficient control type intelligent salt water desalination treatment device, which realizes the purpose of salt water desalination treatment through the arrangement of the structure.
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Description

TECHNICAL FIELD

[0001] The utility model relates to salt water desalination equipment technical field, concretely is a kind of efficient control type intelligent salt water desalination treatment device. BACKGROUND

[0002] The controllable precision desalination technology for salt water suitable for facility agriculture is improved based on the open crystal structure of Faraday electrode, a selective capacitive deionization electrode capable of precisely capturing Na+ is developed, the module operation mode is optimized aiming at the chemical and microbial mechanisms of electrode failure, the system stability and applicability are improved, and the existing equipment is improved to form a salt water desalination system that can be regulated as needed.

[0003] However, the existing salt water desalination treatment device has the following problems: it is inconvenient to intelligently regulate flow, and needs to be improved. UTILITY MODEL CONTENT

[0004] The utility model aims at providing a kind of efficient control type intelligent salt water desalination treatment device to solve the problems raised in the above background.

[0005] To achieve the above object, the utility model provides the following technical scheme: an efficient control type intelligent salt water desalination treatment device, comprising a flow regulation structure, a capacitive deionization generator, a support seat, a matching seat, a guide pipe, a first butt joint pipe and a waste discharge pipe, the front end of the flow regulation structure is connected with the capacitive deionization generator through the first butt joint pipe, the lower end of the capacitive deionization generator is supported by the support seat, and the capacitive deionization generator is supported through the support seat and the matching seat, the lower end of the capacitive deionization generator is connected with the guide pipe through the pipe body, and the lower end of the capacitive deionization generator is also connected with the waste discharge pipe through the pipe body.

[0006] The flow regulation structure comprises a stepper motor, a first sealing seat, a conductive gear pump, a second sealing seat, a support bottom block frame, a sealing guide seat and a second butt joint pipe, the second sealing seat is fixedly connected on the support bottom block frame, the sealing guide seat is sealingly connected on the second sealing seat, the upper end of the sealing guide seat is sealingly connected with the first sealing seat, and the stepper motor is installed on the first sealing seat, the stepper motor drives the conductive gear pump to rotate, and the rear end of the sealing guide seat is connected with the second butt joint pipe.

[0007] Specifically, the front end of the sealing guide seat is connected with the waste discharge pipe, and the lower end of the support bottom block frame is fixed with the support seat.

[0008] Specifically, the second butt joint pipe is connected with the external water source through the pump body.

[0009] Specifically, the conductive gear pump guides and processes water flow through the tooth gap gap.

[0010] Specific, the conduct tooth pump rotates in the first sealing seat, sealing guide base, second sealing seat sealing state.

[0011] Specific, the capacitive deionization generator lower end shunt, through different pipe body respectively with guide pipe, waste discharge pipe communication.

[0012] Compared with the prior art, the beneficial effects of the utility model are:

[0013] I. By installing flow control structure, flow control structure can be communicated with the outside water source, through the transmission of pump body, so that the water source reaches the flow control structure, through the control of flow control structure, so that the water flow is controlled, water flow as needed to reach the inside of capacitive deionization generator, capacitive deionization generator is equipped with operation detector, can carry out real-time monitoring of state, so as to be able to control the operation adjustment of flow control structure through the controller, capacitive deionization generator is supported through support seat, and the capacitive deionization generator lower end can be handled through guide pipe water guide, and the waste water guide work is carried out through waste discharge pipe.

[0014] II. By installing flow control structure, the stepper motor in flow control structure can drive the conduct tooth pump to rotate, so that the conduct tooth pump rotates in the first sealing seat, second sealing seat, sealing guide base, water flow enters the sealing guide base through the second connecting pipe, with the rotation of conduct tooth pump, so that the water flow is transmitted, and then the water flow is conducted through the first connecting pipe, realizing continuous conduction control work. BRIEF DESCRIPTION OF DRAWINGS

[0015] Fig. 1 It is the main body structure schematic diagram of the utility model;

[0016] Fig. 2 It is the three-dimensional rear view structure diagram of the main body of the utility model;

[0017] Fig. 3 It is the split drawing of flow control structure of the utility model.

[0018] In the drawing: 1-flow control structure; 2-capacitive deionization generator; 3-support seat; 4-matching seat; 5-guide pipe; 6-first connecting pipe; 7-stepper motor; 8-first sealing seat; 9-conduct tooth pump; 10-second sealing seat; 11-support bottom block frame; 12-sealing guide base; 13-second connecting pipe; 14-waste discharge pipe. DETAILED DESCRIPTION

[0019] Clearly, the described embodiments are merely a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application.

[0020] Please refer to Figs. 1-3 The utility model provides a kind of technical scheme: a kind of high-efficiency control type intelligentization salt water desalination treatment device, including flow control structure 1, capacitive deionization generator 2, support seat 3, cooperation seat 4, guide pipe 5, first docking pipe 6 and waste discharge pipe 14, the front end of flow control structure 1 is connected with capacitive deionization generator 2 by first docking pipe 6, the lower end of capacitive deionization generator 2 is supported by support seat 3, and capacitive deionization generator 2 is supported through support seat 3 and cooperation seat 4, the lower end of capacitive deionization generator 2 is communicated with guide pipe 5 by pipe body, and the lower end of capacitive deionization generator 2 is also communicated with waste discharge pipe 14 by pipe body, by installing flow control structure 1, flow control structure 1 can be communicated with external water source, by the transmission of pump body, so that water reaches flow control structure 1, after being controlled by flow control structure 1, water flow is controlled, water flow reaches the inside of capacitive deionization generator 2 as needed, running detector is equipped in capacitive deionization generator 2, can carry out real-time monitoring of state, so as to be able to control the running adjustment of flow control structure 1 by controller, capacitive deionization generator 2 is supported by support seat 3, and the lower end of capacitive deionization generator 2 can be guided and discharged by guide pipe 5, while waste water is guided and discharged by waste discharge pipe 14 simultaneously;

[0021] Flow control structure 1 includes step motor 7, first sealing seat 8, conduction gear pump 9, second sealing seat 10, support bottom block frame 11, sealing guide base 12 and second docking pipe 13, second sealing seat 10 is fixedly connected on support bottom block frame 11, sealing guide base 12 is sealingly connected on second sealing seat 10, the upper end of sealing guide base 12 is sealingly connected with first sealing seat 8, and step motor 7 is installed on first sealing seat 8, step motor 7 drives conduction gear pump 9 to rotate, the rear end of sealing guide base 12 is communicated with second docking pipe 13, by installing flow control structure 1, step motor 7 in flow control structure 1 can drive conduction gear pump 9 to rotate, so that conduction gear pump 9 rotates in first sealing seat 8, second sealing seat 10, sealing guide base 12, water flow enters sealing guide base 12 through second docking pipe 13, accompanied by the rotation of conduction gear pump 9, so that water flow is transmitted, and then water flow is conducted through first docking pipe 6, realizes continuous conduction control work.

[0022] The front end of the sealing guide base 12 is communicated with the waste discharge pipe 14, and the lower end of the supporting bottom block frame 11 is fixed with the supporting seat 3.

[0023] The second connecting pipe 13 is communicated with the external water source through the pump body.

[0024] The conductive tooth pump 9 guides the water flow through the tooth gap.

[0025] The conductive tooth pump 9 rotates in the sealed state of the first sealing seat 8, the sealing guide base 12 and the second sealing seat 10.

[0026] The lower end of the capacitive deionization generator 2 is branched, and is respectively communicated with the guide pipe 5 and the waste discharge pipe 14 through different pipe bodies.

[0027] Working principle: when it is needed to work, the second connecting pipe 13 is communicated with the external water source through the pump body, the water flow reaches the first sealing seat 8, the second sealing seat 10 and the sealing guide base 12 through the second connecting pipe 13, at this time, the stepping motor 7 works to drive the conductive tooth pump 9 to rotate, so that the water flow is guided and transmitted to the inside of the capacitive deionization generator 2 through the first connecting pipe 6, and the salt water is desalinated through the treatment of the capacitive deionization generator 2, the treated water can be guided through the guide pipe 5, and the subsequent waste water can be guided and treated through the waste discharge pipe 14, and the capacitive deionization generator 2 is provided with an operation detector, which can perform real-time monitoring of the state, so that the operation adjustment of the flow regulation structure 1 can be controlled through the controller, the capacitive deionization is a relatively new technology, which is different from the membrane-based method, the CDI removes salt through an electric field, and the charged salt ions are attracted to the charged porous electrode, so that the salt is removed from the water, the device is operated by applying voltage to two spaced electrodes, the two electrodes are similar to the plates of a super capacitor, and when the water passes through the device, the salt ions are attracted to the charged surface, so that the salt is removed from the water, the energy cost of the CDI is proportional to the amount of salt removed, so under the condition of low salinity, the CDI is possible to be more energy-saving than the RO, since the CDI is operated at low voltage in nature, and the battery and electrode assembly are made of low-cost materials, so the desalination cost will be much lower than the RO, the capacitive deionization generator 2 adopts the above-mentioned technology, and the technology is prior art, which will not be described herein.

[0028] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and spirits of the utility model, the scope of the utility model is defined by the appended claims and their equivalents.

Claims

1. A highly efficient and intelligently controlled saline water desalination treatment device, characterized in that: The utility model provides a flow control structure (1), capacitive deionization generator (2), support seat (3), fit seat (4), guide pipe (5), first butt joint pipe (6) and waste discharge pipe (14), the front end of flow control structure (1) is equipped with capacitive deionization generator (2) through first butt joint pipe (6) intercommunication, the lower end of capacitive deionization generator (2) is supported through support seat (3), and capacitive deionization generator (2) supports through support seat (3) with fit seat (4), the lower end of capacitive deionization generator (2) is communicated with guide pipe (5) through the pipe body, and the lower end of capacitive deionization generator (2) is also communicated with waste discharge pipe (14) through the pipe body, The flow control structure (1) includes a stepper motor (7), a first sealing seat (8), a conductive gear pump (9), a second sealing seat (10), a support bottom block frame (11), a sealing guide seat (12), and a second butt joint pipe (13), the support bottom block frame (11) is fixedly connected with the second sealing seat (10), the second sealing seat (10) is sealingly connected with the sealing guide seat (12), the upper end of the sealing guide seat (12) is sealingly connected with the first sealing seat (8), and the first sealing seat (8) is installed with the stepper motor (7), the stepper motor (7) drives the conductive gear pump (9) to rotate, and the rear end of the sealing guide seat (12) is communicated with the second butt joint pipe (13).

2. The high-efficiency control type intelligent saltwater desalination treatment device according to claim 1, characterized in that: The front end of the sealing guide seat (12) is communicated with the waste discharge pipe (14), and the lower end of the support bottom block frame (11) is fixed with the support seat (3).

3. The high-efficiency control type intelligent saltwater desalination treatment device according to claim 2, characterized in that: The second butt joint pipe (13) is communicated with an external water source through a pump body.

4. The high-efficiency control type intelligent saltwater desalination treatment device according to claim 3, characterized in that: The conductive gear pump (9) guides water flow through a tooth gap gap.

5. The high-efficiency control type intelligent saltwater desalination treatment device according to claim 4, characterized in that: The conductive gear pump (9) rotates under the sealing state of the first sealing seat (8), the sealing guide seat (12), and the second sealing seat (10).

6. The high-efficiency control type intelligent saltwater desalination treatment device according to claim 5, characterized in that: The lower end of the capacitive deionization generator (2) is shunted and communicated with the guide pipe (5) and the waste discharge pipe (14) through different pipe bodies.