Mobile rescue water purification equipment
By designing a mobile rescue water purification device, which includes wheels, a filter interface, and a multi-stage filtration module, the problem of existing water purification devices being unable to be miniaturized and adapt to complex road conditions has been solved, achieving the effects of portability, multi-stage filtration, and water quality testing.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-25
- Publication Date
- 2026-03-31
AI Technical Summary
Existing water purification equipment is usually stationary and cannot be moved in a small, portable manner by a single person in the event of a disaster. Furthermore, existing mobile equipment relies on a vehicle, resulting in excessively large equipment that is difficult to use in complex road conditions.
A mobile rescue water purification device was designed, comprising a body, wheels, handle, water inlet, filter device interface, and water faucet. It has a main pipeline and multi-stage filtration modules, supports detachable filter devices, a booster pump, and a detection module to achieve water quality monitoring and output.
The device has been miniaturized, making it easy for a single person to carry and move in complex road conditions. It provides filtered and direct drinking water, has water quality testing and pressurization functions, protects the filtration device, and improves the applicability and reliability of the device.
Smart Images

Figure CN224062470U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of water purification equipment technology, and in particular to a mobile rescue water purification device. Background Technology
[0002] Water purification equipment can purify water sources to produce drinking water or water for other uses. However, existing water purification equipment is usually stationary, and mobile water purification equipment usually relies on a vehicle, resulting in a large overall size. In the event of disaster risks, many roads are inaccessible to vehicles, therefore, there is a lack of a miniaturized water purification device that can be operated by a single person. Utility Model Content
[0003] To address the problems mentioned in the background art, the purpose of this application is to provide a mobile rescue water purification device. It includes a body, with wheels at the bottom, a handle at the top, a water inlet on the outer surface, and an internal accommodating space with an opening facing the side of the body. The accommodating space contains a first filter interface and a second filter interface. The surface of the body also features a first water faucet and a second water faucet.
[0004] The machine body is equipped with a main pipeline. The water inlet is connected to the water inlet of the first filter device interface through the main pipeline. The water outlet of the first filter device interface is connected to the water inlet of the second filter device interface through the main pipeline. The first water purifier faucet and the second water purifier faucet are connected in parallel to the main pipeline through a first T-connector and are located at the water outlet of the second filter device interface.
[0005] Preferably, both the first filter device interface and the second filter device interface are detachably connected to a PP cotton filter device.
[0006] Preferably, a second three-way pipe is provided between the second filter device interface and the first three-way pipe. The inlet of the second three-way pipe is connected to the outlet of the second filter device interface, the first outlet of the second three-way pipe is connected to the inlet of the first three-way pipe through a pipeline, and the second outlet of the second three-way pipe is connected to the first detection module.
[0007] Preferably, a direct drinking filter module is connected between the outlet of the first three-way pipe and the inlet of the second water purifier faucet, and the direct drinking filter module is also equipped with a sewage outlet.
[0008] Preferably, the pipeline between the direct drinking filter module and the second water purifier faucet is provided with a third T-connector. The inlet of the third T-connector is connected to the outlet of the direct drinking filter module, the first outlet of the third T-connector is connected to the inlet of the second water purifier faucet, and the second outlet of the third T-connector is connected to the second detection module.
[0009] Preferably, a booster pump is connected to the pipeline between the first filter device interface and the second filter device interface.
[0010] Preferably, a first pressure switch is provided between the first water purifier faucet and the first three-way pipe, and a second pressure switch is provided between the third three-way pipe and the second water purifier faucet. Both the first pressure switch and the second pressure switch are connected to the booster pump via electrical signal.
[0011] Preferably, the machine body is provided with a washbasin at the position corresponding to the water outlet of the first water purifier and the water outlet of the second water purifier, and a wastewater outlet is provided at the bottom of the washbasin.
[0012] In summary, this application includes the following beneficial technical effects:
[0013] 1. The machine body is equipped with a handle on the top and a set of wheels on the bottom. By pushing or pulling the handle, the machine body can be moved with the help of the wheels.
[0014] 2. The machine body is equipped with a first filter device interface and a second filter device interface, which facilitates the connection of external filter devices and makes the machine body easy to move when no external filter device is connected, reducing weight and preventing collision damage to the filter device.
[0015] 3. The internal piping of the machine is equipped with a direct drinking water filtration module, which allows the two faucets of the machine to output filtered water and direct drinking water respectively. Attached Figure Description
[0016] Figure 1 This is a perspective view of an embodiment of the present utility model;
[0017] Figure 2 This is a schematic diagram of the functional structure within this utility model.
[0018] Explanation of reference numerals in the attached figures:
[0019] 1. Body; 101. Handle; 102. Wheel assembly; 103. Water inlet; 104. First filter device interface; 105. Second filter device interface; 106. First water purifier faucet; 107. Second water purifier faucet; 108. Support frame; 2. First T-connector; 3. Second T-connector; 4. First detection module; 5. Direct drinking filter module; 6. Third T-connector; 7. Second detection module; 8. Booster pump; 9. First pressure switch; 10. Second pressure switch. Detailed Implementation
[0020] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of this application. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.
[0021] The following is in conjunction with the appendix Figure 1-2 This application provides a further detailed description. An embodiment of this application discloses a mobile rescue water purification device. It includes a body 1, with wheels 102 at the bottom for movement and a handle 101 at the top. By pushing or pulling the handle 101, the body 1 can move using the wheels. A water inlet 103 is provided on the outer surface of the body 1 for connecting to an external water source. An internal accommodating space with an opening facing the side of the body 1 contains a first filter interface 104 and a second filter interface 105. A first water faucet 106 and a second water faucet 107 are also provided on the surface of the body 1. Specifically, both the first filter interface 104 and the second filter interface 105 are detachably connected to PP cotton filters. Given the complexity of mobile rescue scenarios, the placement of the first filter interface 104 and the second filter interface 105 within the accommodating space helps protect the outer shell of the body 1. The detachable PP cotton filter helps reduce the burden of moving the machine body 1. That is, it can be moved without the PP cotton filter installed, and then the PP cotton filter can be installed when the machine body 1 is reached. This way, the operator does not have to worry about vibration damage to the filter when moving the machine body 1 on complex road surfaces.
[0022] The main body 1 is equipped with a main pipeline. The water inlet 103 is connected to the water inlet of the first filter device interface 104 through the main pipeline. The water outlet of the first filter device interface 104 is connected to the water inlet of the second filter device interface 105 through the main pipeline. The first water purifier faucet 106 and the second water purifier faucet 107 are connected in parallel to the main pipeline through the first tee pipe 2 and are located at the water outlet of the second filter device interface 105. This allows water to be filtered through the first filter device interface 104 and the second filter device interface 105 after entering the water inlet, and then output from the first water purifier faucet 106 or the second water purifier faucet 107.
[0023] Furthermore, a second three-way pipe 3 is provided between the second filter device interface 105 and the first three-way pipe 2. The inlet of the second three-way pipe 3 is connected to the outlet of the second filter device interface 105, the first outlet of the second three-way pipe 3 is connected to the inlet of the first three-way pipe 2 via a pipe, and the second outlet of the second three-way pipe 3 is connected to the first detection module 4. The bypass sampling of the first detection module 4 detects whether the water source purified by the first filter device interface 104 and the second filter device interface 105 meets the requirements. The bypass sampling of the first detection module 4 can also further determine whether the first water faucet 106 has a problem when the water quality output by the first water purifier faucet 106 is substandard, but the water quality detected by the first detection module 4 meets the standards. Specifically, the first detection module 4 is a conventional technical device for arbitrary water quality testing, and the specific specifications and models are selected according to actual needs.
[0024] Furthermore, a direct drinking water filtration module 5 is connected between the outlet of the first three-way pipe 2 and the inlet of the second water purifier faucet 107. The direct drinking water filtration module 5 also has a wastewater outlet. Direct drinking water is further filtered and output through the direct drinking water filtration module 5, and the wastewater generated during the filtration process is discharged through the wastewater outlet. Specifically, the direct drinking water filtration module 5 is a conventional RO direct drinking water filtration device. The direct drinking water filtration module 5 enables the second water purifier faucet 107 to output direct drinking water, making the water output from the second water purifier faucet 107 different from the water output from the first water purifier faucet 106.
[0025] Furthermore, a third T-connector 6 is provided in the pipeline between the direct drinking water filter module 5 and the second water purifier faucet 107. The inlet of the third T-connector 6 is connected to the outlet of the direct drinking water filter module 5, the first outlet of the third T-connector 6 is connected to the inlet of the second water purifier faucet 107, and the second outlet of the third T-connector 6 is connected to the second detection module 7. Bypass sampling through the second detection module 7 can further determine whether the water quality output by the second water purifier faucet 107 is substandard, while the water quality detected by the second detection module 7 is up to standard, thus indicating a problem with the second water purifier faucet 107.
[0026] Furthermore, a booster pump 8 is connected to the pipeline between the first filter device interface 104 and the second filter device interface 105 to increase the water pressure so that the first water faucet 106 and the second water faucet 107 at the end of the main pipeline can output water. Specifically, the booster pump 8 is a self-priming booster pump.
[0027] Furthermore, a first pressure switch 9 is provided between the first water purifier faucet 106 and the first three-way pipe 2, and a second pressure switch 10 is provided between the third three-way pipe 6 and the second water purifier faucet 107. Both the first pressure switch 9 and the second pressure switch 10 are electrically connected to the booster pump 8. The first pressure switch 9 monitors the output water pressure of the first water purifier faucet 106, and the second pressure switch 10 monitors the output water pressure of the second water purifier faucet 107. When the water pressure of the first water purifier faucet 106 and / or the second water purifier faucet 107 is insufficient, the booster pump 8 is activated via an electrical signal to increase the pressure. The first pressure switch 9 can be located between the third three-way pipe 6 and the second detection module 7, or between the third three-way pipe 6 and the second water purifier faucet 107.
[0028] Furthermore, a washbasin is provided on the body 1 at the positions corresponding to the water outlets of the first water faucet 106 and the second water faucet 107. A wastewater discharge outlet is provided at the bottom of the washbasin. The washbasin can be one large basin simultaneously corresponding to both the first and second water faucets 106 and 107, or it can consist of two smaller basins, one corresponding to the first water faucet 106 and the other to the second water faucet 107. Wastewater in the washbasin is discharged through the wastewater discharge outlet. The wastewater discharge outlet can be connected to a pipe leading to the outside of the body 1, or the wastewater can be directed to the outside of the body 1 through structural design with an inclined surface, etc.
[0029] Furthermore, the machine body 1 also includes an electrical system, including a power supply. The first pressure switch 9, the second pressure switch 10, and the booster pump 8 are all electrically connected to the power supply. The power supply can be a battery or a power interface for connecting to an external power source. The first detection module 4 and the second detection module 7 are also powered by this power supply when they use electrical signals. Additionally, the bottom of the machine body 1 has a support frame 108 corresponding to the wheel set 102, used to fix the machine body 1 in a fixed position when stationary.
[0030] Working principle: The operator moves the machine body 1 via the wheel assembly 102 by pulling or pushing the handle 101. The machine body 1 stops moving when it reaches the rescue position. The operator then installs the PP cotton filter devices at the first filter interface 104 and the second filter interface 105. An external water source is connected to the water inlet 103 on the outer surface of the machine body 1. With the help of the external water source's own water pressure, filtered water is output from the first water faucet 106 and the second water faucet 107 respectively. With the help of the first pressure switch 9, the second pressure switch 10, and the booster pump 8, the external water source's own water pressure is increased by the booster pump 8 when it is insufficient.
[0031] The device embodiments described above are merely illustrative. The units described as separate components may or may not be physically separate, and the components shown as units may or may not be physical units; they may be located in one place or distributed across multiple network units. Some or all of the modules can be selected to achieve the purpose of this embodiment according to actual needs.
[0032] In this application, unless otherwise expressly specified and limited, the terms "installation", "setting", "connection", "fixing", "screw connection", etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal connection of two components or the interaction between two components. Unless otherwise expressly limited, those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.
[0033] It is understood that those skilled in the art can make equivalent substitutions or changes based on the technical solution and concept of this application, and all such substitutions or changes should fall within the protection scope of the appended claims.
Claims
1. A mobile rescue water purification apparatus, characterized by, The utility model provides a kind of water purifier, including body (1), the bottom of body (1) is equipped with wheel group (102), the top of body (1) is equipped with handle (101), the outer surface of body (1) is equipped with water inlet (103), the inside of body (1) is equipped with the containing space with opening towards the side of body (1), the containing space is equipped with first filter device interface (104) and second filter device interface (105), the surface of body (1) is further equipped with first clean water tap (106) and second clean water tap (107); Body (1) is equipped with main pipeline, water inlet (103) is connected to the water inlet of first filter device interface (104) by the main pipeline, the water outlet of first filter device interface (104) is connected to the water inlet of second filter device interface (105) by the main pipeline, first clean water tap (106) and second clean water tap (107) are connected in parallel to the main pipeline by first tee pipe (2) and located the water outlet of second filter device interface (105).
2. The mobile rescue water purification apparatus of claim 1, wherein, First filter device interface (104) and second filter device interface (105) are detachably connected with PP cotton filter device.
3. The mobile rescue water purification apparatus of claim 1, wherein, Second tee pipe (3) is further equipped between second filter device interface (105) and first tee pipe (2), the water inlet of second tee pipe (3) is connected to the water outlet of second filter device interface (105), the first water outlet of second tee pipe (3) is connected to the water inlet of first tee pipe (2) by pipeline, and the second water outlet of second tee pipe (3) is connected with first detection module (4).
4. The mobile rescue water purification apparatus of claim 1, wherein, The pipeline between the water outlet of first tee pipe (2) and the water inlet of second clean water tap (107) is connected with direct drinking filter module (5), and direct drinking filter module (5) is further equipped with sewage outlet.
5. The mobile rescue water purification apparatus of claim 4, wherein, The pipeline between direct drinking filter module (5) and second clean water tap (107) is equipped with third tee pipe (6), the water inlet of third tee pipe (6) is connected to the water outlet of direct drinking filter module (5), the first water outlet of third tee pipe (6) is connected to the water inlet of second clean water tap (107), and the second water outlet of third tee pipe (6) is connected with second detection module (7).
6. The mobile rescue water purification apparatus of claim 5, wherein, The pipeline between first filter device interface (104) and second filter device interface (105) is connected with booster pump (8).
7. The mobile rescue water purification apparatus of claim 6, wherein, First pressure switch (9) is equipped between first clean water tap (106) and first tee pipe (2), second pressure switch (10) is equipped between third tee pipe (6) and second clean water tap (107), and first pressure switch (9) and second pressure switch (10) are electrically connected with booster pump (8).
8. The mobile rescue water purification apparatus of claim 1, wherein, Body (1) is equipped with wash basin corresponding to the water outlet of first clean water tap (106) and the water outlet of second clean water tap (107), and waste water outlet is formed in the bottom of wash basin.