Integrated reverse osmosis water treatment system

By adopting a box structure and chamber design in the integrated reverse osmosis water treatment system, and integrating the filtration and softening systems, the problems of complex piping and large space occupied in the existing technology are solved, and simplified installation and efficient maintenance are achieved.

CN223342531UActive Publication Date: 2025-09-16CHANGZHOU KELIER ENVIRONMENTAL PROTECTION TECH CO LTD
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Patent Information

Application Number
CN202422287481.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-19
Publication Date
2025-09-16
Estimated Expiration
2034-09-19

AI Technical Summary

Technical Problem

Existing integrated reverse osmosis water treatment systems have complex piping, take up a long time to install, are prone to problems, occupy a large area, and are difficult to quickly repair.

Method used

A box structure is used instead of pipelines, integrating components such as the filtration system, softening system and pressure pump. The box is equipped with chambers and sensors. The filtration system and softening system are integrated in the box window. The box is connected to the bearing seat, which simplifies the pipeline connection and saves space.

Benefits of technology

It simplifies pipeline connections, reduces installation time and maintenance difficulty, saves floor space, and improves the system's space utilization efficiency and maintenance convenience.

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Abstract

The utility model relates to the technical field of water treatment, in particular to an integrated reverse osmosis water treatment system which comprises a box body which is of a hollow structure, a first cavity, a second cavity and a third cavity are arranged in the box body, and a filtering system, a softening system, a security filter and a booster pump are arranged outside the box body. The first chamber is sequentially connected with the filtering system, the softening system and the security filter through pipelines, the security filter is connected with the third chamber through a pipeline, and the third chamber is sequentially connected with the pressure pump and the second chamber through pipelines; the reverse osmosis system is connected with the chamber II through a pipeline; the first cavity is sequentially connected with the active water pump and the box body through a pipeline. According to the utility model, the box body is used for conveying raw water instead of a pipeline, and the box body plays a role in storing the raw water, so that the use of the pipeline is greatly saved, the problems in pipeline connection are reduced, and the occupied area is effectively saved.
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Description

Technical Field

[0001] The utility model relates to the technical field of water treatment, in particular to an integrated reverse osmosis water treatment system. Background Art

[0002] With the improvement of the overall environmental awareness in the society and the mandatory constraints of national policies, the environmental protection pressure faced by enterprises is increasing, and the pressure on water resource utilization is particularly huge. In order to meet the national environmental protection standards and also to reduce production costs, many enterprises have installed an integrated reverse osmosis water treatment system to treat the production wastewater they generate. The existing technology integrates reverse osmosis water treatment systems. The reverse osmosis water treatment system consists of a filtration system, a pumping system, a softening system, a raw water tank, a reverse osmosis system, etc. The various systems are connected by pipelines, resulting in complex pipelines and a long installation time. In addition, problems are prone to occur in the pipeline connection, which is not conducive to rapid maintenance and occupies a large area. Utility Model Content

[0003] The utility model aims to solve the above-mentioned defects and provides an integrated reverse osmosis water treatment system.

[0004] In order to overcome the defects existing in the background technology, the technical solution adopted by the present invention to solve the technical problems thereof is: an integrated reverse osmosis water treatment system, comprising a box body, the interior of which is a hollow structure, and is provided with chamber 1, chamber 2 and chamber 3 inside, and a filtration system, a softening system, a safety filter and a pressure pump are provided outside, the chamber 1 is connected to the filtration system, softening system and safety filter in sequence through pipelines, the safety filter is connected to the chamber 3 through pipelines, and the chamber 3 is connected to the pressure pump and chamber 2 in sequence through pipelines;

[0005] a reverse osmosis system connected to the second chamber via a pipeline;

[0006] The chamber 1 is connected to the active water pump and the box in sequence through pipelines.

[0007] A further improvement includes that the filtering system and softening system are arranged in the second window opened on the box body, and the security filter is arranged in the first window opened on the box body.

[0008] A further improvement includes providing a sensor on the box body for detecting the water pressure in the chamber three.

[0009] A further improvement includes that the filtration system includes a mechanical filter and an activated carbon filter, the mechanical filter is connected to the chamber one via a pipeline, and the mechanical filter is connected in series with the activated carbon filter via a pipeline.

[0010] A further improvement includes that the softening system includes a main softener and a backup softener, and the main softener and the backup softener are connected in parallel through pipelines.

[0011] A further improvement includes that the box and the reverse osmosis system are both arranged on a supporting base, and a fence for protecting the reverse osmosis system is detachably provided on the supporting base.

[0012] A further improvement includes installing a pressure pump on a mounting base connected to the box body.

[0013] A further improvement includes providing a water injection valve on the box body that is in communication with the interior of the box body.

[0014] The beneficial effects of the present invention are as follows: the present design uses a box body to replace pipeline transportation for the transportation of raw water. At the same time, the box body also acts as a raw water tank for storing raw water. This design greatly saves the use of pipelines and reduces the occurrence of problems in pipeline connections. In addition, the arrangement of window one and window two integrates the softening system and the filtration system on the box body, effectively saving floor space. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0016] Figure 1 It is the main view of the utility model;

[0017] Figure 2 It is a left view of the utility model;

[0018] In the figure, 1-mechanical filter, 2-activated carbon filter, 3-active water pump, 4-chamber one, 5-main softener, 6-backup softener, 7-chamber two, 8-pressure pump, 9-mounting seat, 10-chamber three, 11-sensor, 12-window one, 13-security filter, 14-window two, 15-fence, 16-support seat, 17-water injection valve, 18-reverse osmosis system, 19-tank. DETAILED DESCRIPTION

[0019] To make the purpose, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present invention. Obviously, the embodiments described are part of the embodiments of the present invention, not all of them. The embodiments of the basic utility model and all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present utility model.

[0020] according to Figure 1 and Figure 2As shown, an integrated reverse osmosis water treatment system includes a housing 19 having a hollow interior for storing raw water to be treated. The housing includes chamber 1 4 , chamber 2 7 , and chamber 3 10 . A filtration system, a softening system, a safety filter 13 , and a pressure pump 8 are disposed on the exterior. Chamber 1 4 is sequentially connected to the filtration system, softening system, and safety filter 13 via pipelines. The safety filter 13 is connected to chamber 3 10 via pipelines. Chamber 3 10 is sequentially connected to the pressure pump 8 and chamber 2 7 via pipelines. The pressure pump 8 pumps water into chamber 2 7 .

[0021] The reverse osmosis system 18 is connected to the chamber 2 7 through a pipeline. The pressurized water pumped into the chamber 2 7 by the pressure pump 8 enters the reverse osmosis system 18, and passes through the reverse osmosis membrane in the reverse osmosis system 18, thereby removing impurities such as dissolved solids, organic matter, bacteria, and viruses in the water to obtain high-quality pure water;

[0022] The chamber 1 4 is connected to the active water pump 3 and the box 19 in sequence through pipelines. The active water pump 3 pumps the raw water loaded in the box 19 into the chamber 1 4, the filtration system and the softening system, etc. for subsequent processing.

[0023] The filtering system and softening system are arranged in the second window 14 opened on the box body 19, and the safety filter 13 is arranged in the first window 12 opened on the box body 19. This structure allows the filtering system, softening system and safety filter 13 to be installed inline, the installation structure is compact, the space utilization efficiency is high, and it is convenient to maintain the filtering system and softening system.

[0024] The box body 19 is provided with a sensor 11 for detecting the water pressure in the chamber three 10 to ensure that there is enough water in the chamber three 10.

[0025] The filtration system includes a mechanical filter 1 and an activated carbon filter 2. Mechanical filter 1 is connected to chamber 1 4 via a pipeline. Raw water is pumped into mechanical filter 1 via an active water pump 3. Mechanical filter 1 is connected in series with activated carbon filter 2 via a pipeline. Refined quartz sand is used as filter media in mechanical filter 1 to remove impurities such as fine particles, suspended matter, and colloids from the raw water, ensuring that the produced water quality meets the inlet water quality requirements of subsequent treatment devices and that the effluent water contains less than 5 mg / L of suspended matter. Activated carbon filter 2 utilizes activated carbon with extremely strong adsorption and filtration properties to absorb residual chlorine, color, odor, organic matter, and microorganisms from the water. Of particular importance is the activated carbon's ability to effectively absorb residual chlorine and organic matter, ensuring that the effluent residual chlorine is ≤0.1 mg / L and the SDI is ≤4, meeting the water supply requirements of reverse osmosis membranes, which are very sensitive to residual chlorine and organic matter.

[0026] The softening system includes a main softener 5 and a backup softener 6. The main softener 5 and the backup softener 6 are connected in parallel through pipelines. The softening system is used to soften the filtered water.

[0027] The box 19 and the reverse osmosis system 18 are both arranged on a supporting base 16 , and a fence 15 for protecting the reverse osmosis system 18 is detachably provided on the supporting base 16 .

[0028] A pressure pump 8 is installed on the mounting seat 9 connected to the box body 19.

[0029] The box body 19 is provided with a water injection valve 17 which is in communication with the interior of the box body 19 , and the box body 19 can be replenished with raw water through the water injection valve 17 .

[0030] Working principle: The raw water in the box 19 is pumped into chamber one 4 through the active water pump 3. The raw water then enters the mechanical filter 1, the activated carbon filter 2, the main softener 5, the security filter 13 in sequence, and then enters chamber three 10. The raw water in chamber three 10 is pumped into chamber two 7 through the pressure pump 8. The filtered water in chamber two 7 enters the reverse osmosis system 18. The water filtered by the reverse osmosis system 18 is passed into the pure water tank.

[0031] The above is only a preferred specific implementation method of the present invention, but the protection scope of the present invention is not limited to this. Any technician familiar with the technical field within the technical scope disclosed by the present invention can make equivalent replacements or changes based on the technical solution and utility model concept of the present invention, which should be covered by the protection scope of the present invention.

Claims

1. An integrated reverse osmosis water treatment system, characterized in that: It comprises a box body (19) with a hollow interior, wherein chamber one (4), chamber two (7) and chamber three (10) are provided therein, and a filtering system, a softening system, a safety filter (13) and a pressure pump (8) are provided on the exterior, wherein chamber one (4) is connected to the filtering system, the softening system and the safety filter (13) in sequence through pipelines, the safety filter (13) is connected to chamber three (10) through pipelines, and chamber three (10) is connected to the pressure pump (8) and chamber two (7) in sequence through pipelines; a reverse osmosis system (18), connected to the second chamber (7) via a pipeline; The chamber 1 (4) is connected to the active water pump (3) and the box (19) in sequence through pipelines.

2. The integrated reverse osmosis water treatment system according to claim 1, characterized in that: The filtering system and the softening system are arranged in the second window (14) opened on the box body (19), and the security filter (13) is arranged in the first window (12) opened on the box body (19).

3. The integrated reverse osmosis water treatment system according to claim 1, characterized in that: The box body (19) is provided with a sensor (11) for detecting the water pressure in the chamber three (10).

4. The integrated reverse osmosis water treatment system according to claim 1, characterized in that: The filtration system comprises a mechanical filter (1) and an activated carbon filter (2), wherein the mechanical filter (1) is connected to the chamber one (4) via a pipeline, and the mechanical filter (1) is connected in series with the activated carbon filter (2) via a pipeline.

5. The integrated reverse osmosis water treatment system according to claim 1, characterized in that: The softening system comprises a main softener (5) and a backup softener (6), wherein the main softener (5) and the backup softener (6) are connected in parallel via a pipeline.

6. The integrated reverse osmosis water treatment system according to claim 1, characterized in that: The box (19) and the reverse osmosis system (18) are both arranged on a supporting seat (16), and a fence (15) for protecting the reverse osmosis system (18) is detachably arranged on the supporting seat (16).

7. The integrated reverse osmosis water treatment system according to claim 1, characterized in that: A pressure pump (8) is installed on the mounting seat (9) connected to the box body (19).

8. The integrated reverse osmosis water treatment system according to claim 1, characterized in that: The box body (19) is provided with a water injection valve (17) which is in communication with the interior of the box body (19).