Outdoor portable emergency intelligent water purification cup
By integrating adsorption treatment, membrane separation, and disinfection enhancement chambers into the water purification cup, the problems of poor portability and lack of quantitative detection of purification in field water purification equipment have been solved, realizing convenient and efficient water purification and real-time detection, and improving the emergency water supply capacity in the field.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- THE FIFTH MIDDLE SCHOOL OF HUIYANG DISTRICT HUIZHOU CITY
- Filing Date
- 2026-01-28
- Publication Date
- 2026-04-10
AI Technical Summary
Existing outdoor water purification equipment is not portable, lacks quantitative testing of purification, and causes delays in water supply after disasters, making an integrated emergency solution urgently needed.
Design a portable emergency smart water purifier cup for outdoor use, integrating an adsorption treatment chamber, a membrane separation chamber, and a disinfection enhancement chamber. Combined with a micro water quality testing mechanism, it achieves gradient purification and real-time monitoring. A reasonable flow path is constructed through limiting partitions, supporting convenient replacement of purification components.
It improves the portability of outdoor water purification equipment, makes it easy and efficient to operate, adapts to complex environments and provides rapid replenishment, thereby improving water resource utilization and water quality safety.
Smart Images

Figure CN121823894A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of outdoor water purification technology, specifically a portable emergency smart water purifier cup for outdoor use. Background Technology
[0002] Some unexpected risks during field activities are related to the lack of safe drinking water. This necessitates adapting to disaster emergencies and specialized scenarios, such as serving fieldworkers in geological exploration and polar expeditions.
[0003] Traditional equipment suffers from poor portability, lacks quantitative testing of purification, and suffers from delayed water supply after disasters. There is an urgent need for an integrated emergency solution. To address this, this invention proposes a portable emergency smart water purifier cup for the field. Combining the principles of chemical adsorption and oxidation from high school and the multi-stage treatment process of sewage treatment plants, this "Qingyuan Emergency Smart Drinking Cup" integrates purification and testing to achieve a complete process of gradient purification, water quality testing, and drinking water meeting standards, significantly improving the survival guarantee capability in extreme scenarios. Summary of the Invention
[0004] To address the shortcomings of existing technologies, this invention provides a portable emergency smart water purifier cup for outdoor use, solving the problems of poor portability and lack of quantitative detection of purification.
[0005] To achieve the above objectives, the present invention provides the following technical solution: a portable emergency intelligent water purifier cup for outdoor use, comprising a cup shell and a direct drinking chamber assembled inside the cup shell. A limiting partition is provided on the side of the direct drinking chamber opposite to the bottom port of the cup shell, and the limiting partition is fixedly installed inside and connected to the cup shell. Four sets of elongated inlet ports are evenly distributed along the circumference of the limiting partition. Two sets of inlet ports are opened opposite each other on the bottom sidewall of the direct drinking chamber opposite to the limiting partition. A disinfection enhancement chamber, a membrane separation chamber, and an adsorption treatment chamber are sequentially fixedly attached to the top end face of the limiting partition opposite to the direct drinking chamber. The adsorption treatment chamber, the membrane separation chamber, and the disinfection enhancement chamber are all movably assembled inside the cup shell.
[0006] Preferably, the disinfection enhancement cavity is perpendicular to the outer wall of the limiting partition and has eight sets of liquid outlets evenly opened along the circumferential direction. The liquid outlets, the liquid inlet strip, and the liquid inlet form a liquid flow channel in sequence.
[0007] Preferably, a heat-insulating cover is fixedly fitted on the side of the direct drinking cavity facing the inner wall of the cup shell, and an electric heating base is fixedly attached to the side of the direct drinking cavity facing the limiting partition, and the electric heating base is fixedly connected to the bottom end face of the limiting partition. A micro water quality detection mechanism is provided on the side of the heat-insulating cover facing the inner wall of the cup shell, and the micro water quality detection mechanism faces the bottom end face of the limiting partition and is fixedly connected to it.
[0008] Preferably, the cup shell is fixedly connected to the side of the outer wall of the disinfection and enhancement chamber, and the bottom of the membrane separation chamber and the top of the disinfection and enhancement chamber are both embedded in the limiting kit and fixedly fitted and positioned therewith.
[0009] Preferably, a limiting kit is fixedly connected to the side of the cup shell facing the outer wall of the membrane separation chamber, and the bottom of the adsorption treatment chamber and the top of the membrane separation chamber are both embedded in the limiting kit and fixedly fitted and positioned therewith.
[0010] Preferably, the inner wall of the cup shell facing the top end face of the adsorption treatment cavity is integrally formed with a top cover sealing kit, and the top cover is fitted on the side of the top cover sealing kit away from the adsorption treatment cavity, and the top cover and the top cover sealing kit are sealed by threaded connection.
[0011] Preferably, a control display panel is fixedly embedded on the outer side wall of the cup shell component away from the limiting kit 2, and the portion of the control display panel extending to the inner side of the cup shell component is fixedly snapped onto the limiting kit 1 and the limiting kit 2.
[0012] Preferably, the bottom end face of the direct drinking cavity away from the limiting partition is integrally formed with a retaining kit, and the retaining kit is fixedly attached to the inner side wall of the cup shell.
[0013] Preferably, the cup shell is threadedly connected to the inner wall of the retaining assembly with a bottom cover sealing assembly, and the bottom cover sealing assembly is fixedly fitted and sealed to the bottom end face of the retaining assembly. The bottom cover is fitted on the side of the bottom cover sealing assembly away from the drinking cavity, and the bottom cover and the bottom cover sealing assembly are sealed by threaded connection.
[0014] In summary, the technical effects and advantages of this invention are as follows: 1. In this invention, by sequentially assembling an adsorption treatment chamber, a membrane separation chamber, a disinfection enhancement chamber, and a direct drinking chamber along the length of the cup shell, the basic purification process of adsorption, membrane separation, and disinfection is deeply integrated with the portable water cup structure, effectively solving the pain points of bulky and cumbersome operation of water purification equipment in field emergency scenarios. This integrated design eliminates the need to carry multiple sets of purification tools; the entire process from raw water to direct drinking water can be completed with just one water cup, significantly improving portability for field trips. Furthermore, the three chambers—adsorption treatment, membrane separation, and disinfection enhancement—can be directly poured out and replaced from the top of the cup shell according to their wear and tear, without excessive disassembly of the cup body and bottom detection and heating structure. This convenient and efficient operation effectively reduces maintenance difficulty and adapts to the rapid replenishment needs in complex field environments.
[0015] 2. In this invention, a limiting partition is set between the disinfection and enhancement chamber and the direct drinking chamber, and a long inlet for guiding water is opened on the partition. Combined with the wall cavity formed by the direct drinking chamber and the cup shell, and the inlet on the bottom side wall, a scientifically sound and reasonable flow path is constructed. Purified water enters the wall cavity through the long inlet and is buffered before being uniformly poured into the direct drinking chamber through the inlet. This avoids the problem of insufficient purification caused by water flow impact and achieves seamless connection between the purification and heating / detection stages. This design allows for centralized collection of purified water, and micro-water quality detection can be initiated simply by inverting the cup. The process is simple and streamlined, requiring no professional operating skills, and can be quickly mastered by ordinary users.
[0016] 3. In this invention, by assembling a miniature water quality testing mechanism within the wall cavity of the drinking chamber and the cup shell, and combining this with the independent and detachable design of the drinking chamber, the dual advantages of controllable water quality and secondary purification and reuse are achieved. Water that passes the test can be drunk directly through the drinking spout at the bottom of the cup shell. If the water fails the test, simply remove the drinking chamber and pour the water back to the top of the cup for re-purification and circulation. This eliminates the need to discard the original water or disassemble the entire purification system, greatly improving water resource utilization. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the overall structure of a portable emergency smart water purifier cup for outdoor use according to the present invention; Figure 2 This is a schematic cross-sectional view of the overall structure of a portable emergency smart water purifier cup for outdoor use according to the present invention; Figure 3 This is a schematic diagram of the overall structure of the cup shell and heating base of the present invention; Figure 4 This is a top view of the overall structure of the adsorption treatment chamber, membrane separation chamber, disinfection enhancement chamber, and detection and heating direct drinking chamber of the present invention; Figure 5 This is a bottom schematic diagram of the overall structure of the adsorption treatment chamber, membrane separation chamber, disinfection enhancement chamber, and detection and heating direct drinking chamber of the present invention.
[0018] In the diagram: 1. Cup shell; 101. Top cover sealing kit; 102. Bottom cover sealing kit; 103. Limiting kit one; 104. Limiting kit two; 105. Limiting partition; 106. Liquid inlet strip; 2. Control display panel; 3. Top cover; 4. Bottom cover; 5. Adsorption treatment chamber; 6. Membrane separation chamber; 7. Disinfection enhancement chamber; 701. Liquid outlet; 8. Direct drinking chamber; 801. Insulation cover; 802. Supporting kit; 803. Liquid inlet; 9. Electric heating base; 10. Miniature water quality testing mechanism. Detailed Implementation
[0019] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0020] refer to Figures 1-5 The portable emergency smart water purifier cup shown includes a cup shell 1 and a direct drinking cavity 8 assembled inside the cup shell 1. A specific embodiment is shown below: Example 1
[0021] A limiting partition 105 is provided on the side of the direct drinking chamber 8 opposite to the bottom port of the cup shell 1. The limiting partition 105 is firmly installed inside the cup shell 1 and forms a fixed connection with the inner wall of the cup shell 1, serving the dual function of separating the chamber and supporting the components. To achieve smooth flow of purified water, four sets of elongated liquid inlets 106 are evenly arranged along the circumference on the limiting partition 105. At the same time, two sets of liquid inlets 803 are opened opposite each other on the bottom side wall of the direct drinking chamber 8 opposite to the limiting partition 105.
[0022] Correspondingly, the disinfection and enhancement chamber 7 is perpendicular to the outer wall of the limiting partition 105, and eight sets of liquid outlets 701 are evenly opened in the circumferential direction. The above-mentioned liquid outlets 701, liquid inlet strip 106 and liquid inlet 803 together form a complete liquid flow channel to ensure that the water after disinfection and enhancement treatment can flow into the drinking water chamber 8 in an orderly manner, and avoid water flow disturbance affecting the user experience. Example 2
[0023] The limiting partition 105 faces away from the top end face of the direct drinking chamber 8. The disinfection and enhancement chamber 7, the membrane separation chamber 6, and the adsorption treatment chamber 5 are assembled in a sequentially fixed and attached manner, with the three layers stacked from top to bottom to form a stepped purification structure. To adapt to the needs of portable outdoor use, the adsorption treatment chamber 5, the membrane separation chamber 6, and the disinfection and enhancement chamber 7 are all installed inside the cup shell 1 using a movable assembly method, which facilitates subsequent disassembly and replacement.
[0024] Meanwhile, the cup shell 1 is fixedly connected to the outer wall of the disinfection and enhancement chamber 7 with a limiting kit 2 104. The bottom of the membrane separation chamber 6 and the top of the disinfection and enhancement chamber 7 are both embedded in the limiting kit 2 104. The fit and positioning achieve a stable assembly and prevent the chamber from shaking. Similarly, the cup shell 1 is fixedly connected to the outer wall of the membrane separation chamber 6 with a limiting kit 1 103. The bottom of the adsorption treatment chamber 5 and the top of the membrane separation chamber 6 are embedded in the limiting kit 1 103 and fixedly fitted. The double limiting structure ensures the assembly stability of the purification chamber assembly and avoids displacement of components due to outdoor bumps. Example 3
[0025] An insulation cover 801 is fixedly fitted onto the side of the direct drinking cavity 8 facing the inner wall of the cup shell 1, which can effectively reduce the heat loss of the water in the cavity and meet the drinking needs in low-temperature outdoor environments. An electric heating base 9 is fixedly attached to the side of the direct drinking cavity 8 facing the limiting partition 105. The electric heating base 9 is also fixedly connected to the bottom end face of the limiting partition 105, which not only realizes the heating function of the direct drinking cavity 8, but also strengthens the connection between the components.
[0026] In addition, a miniature water quality detection mechanism 10 is mounted on the side of the insulation cover 801 facing the inner wall of the cup shell 1. This miniature water quality detection mechanism 10 faces the bottom end face of the limiting partition 105 and is fixedly connected to it, precisely installed in the cavity formed by the drinking chamber 8 and the cup shell 1, providing a stable installation foundation for subsequent water quality testing. A retaining kit 802 is integrally formed on the bottom end face of the drinking chamber 8 away from the limiting partition 105. The retaining kit 802 fits tightly against the inner wall of the cup shell 1, further improving the assembly stability of the drinking chamber 8. Example 4
[0027] A top cover sealing kit 101 is integrally formed on the inner wall of the cup shell 1 facing the top end face of the adsorption treatment chamber 5. A top cover 3 is fitted on the side of the top cover sealing kit 101 away from the adsorption treatment chamber 5. The two are connected by threads to achieve a sealed assembly, which can effectively prevent water leakage or the entry of external impurities during field use. A control display panel 2 is fixedly embedded on the outer wall of the cup shell 1 away from the limiting kit 2 104. The control display panel 2 extends to the inner side of the cup shell 1 and is fixedly snapped onto the limiting kit 1 103 and the limiting kit 2 104. This ensures that the panel is firmly installed and facilitates circuit connection with the internal micro water quality detection mechanism 10 and the electric heating chassis 9, so as to accurately feed back the water quality detection results and heating status.
[0028] A bottom cover sealing kit 102 is threadedly connected to the inner wall of the cup shell 1 perpendicular to the retaining kit 802. The bottom cover sealing kit 102 is fixedly fitted and sealed to the bottom end face of the retaining kit 802, further enhancing the sealing performance of the bottom of the cup body. A bottom cover 4 is fitted onto the side of the bottom cover sealing kit 102 opposite to the drinking chamber 8. The two are also sealed by threaded connection, which facilitates opening and drinking, and protects the port of the drinking chamber 8 when not in use.
[0029] Working principle of this invention: In use, first unscrew the top cover 3, which is threadedly connected to the top cover sealing kit 101. Pour raw water from the field into the top of the cup shell 1. The water first flows into the uppermost adsorption treatment chamber 5, where the internal adsorption material removes large particles, odors, and some harmful organic matter, completing preliminary purification. Subsequently, the pre-purified water enters the lower membrane separation chamber 6, where membrane separation technology intercepts fine impurities, microorganisms, and colloidal particles, achieving deep filtration. The filtered water continues to flow into the lowermost disinfection and enhancement chamber 7, completing disinfection treatment, killing residual bacteria, viruses, and other harmful microorganisms, and ensuring water quality safety.
[0030] The purified water, after disinfection, flows out through eight sets of outlets 701 on the outer wall of the disinfection enhancement chamber 7, enters the wall cavity formed by the drinking chamber 8 and the cup shell 1 through four sets of elongated inlets 106 on the limiting partition 105, and then is uniformly poured into the drinking chamber 8 through two sets of inlets 803 on the bottom side wall of the drinking chamber 8. At this time, the miniature water quality detection mechanism 10 assembled in the wall cavity automatically starts working as the water is injected, and the detection results are fed back through the control display panel 2 to realize real-time water quality monitoring.
[0031] If the test results are satisfactory, the water inside the drinking chamber 8 can be heated via the electric heating base 9. The insulation cover 801 on the outside of the drinking chamber 8 reduces heat loss, meeting the drinking needs in low-temperature outdoor environments. After heating, unscrew the bottom cover 4 to drink from the bottom of the cup shell 1. If the test results are unsatisfactory, the drinking chamber 8 can be removed, and the water poured back to the top of the cup shell 1 to re-enter the purification process for secondary purification until the water quality meets the standards.
[0032] Throughout the entire operation, limiting kit 103 and limiting kit 2 104 ensure the stable assembly of the three main chambers: adsorption treatment, membrane separation, and disinfection enhancement, preventing displacement due to outdoor bumps. When a chamber is worn out, it can be directly emptied from the top of the cup shell 1 for replacement without disassembling the bottom structure, making operation convenient. The bottom cover sealing kit 102 and the top cover sealing kit 101 ensure the cup's sealing performance, preventing water leakage and achieving a streamlined process for purification, testing, heating, and maintenance.
[0033] All electrical components mentioned in this article are connected to an external main controller and 220V AC mains power, and the main controller can be a conventional known device such as a computer that can control it.
[0034] Finally, it should be noted that the above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A portable emergency smart water purifier cup for outdoor use, comprising a cup shell (1) and a direct drinking cavity (8) assembled inside the cup shell (1), characterized in that: The drinking chamber (8) is provided with a limiting partition (105) on the side opposite to the bottom port of the cup shell (1), and the limiting partition (105) is fixedly installed in the cup shell (1) and fixedly connected to it. Four sets of liquid inlet strips (106) are evenly distributed along the circumferential direction on the limiting partition (105). Two sets of liquid inlets (803) are opened opposite to the bottom side wall of the drinking chamber (8) opposite to the limiting partition (105). The top end face of the limiting partition (105) opposite to the drinking chamber (8) is fixedly attached to the disinfection enhancement chamber (7), the membrane separation chamber (6) and the adsorption treatment chamber (5) in sequence. The adsorption treatment chamber (5), the membrane separation chamber (6) and the disinfection enhancement chamber (7) are all movably assembled inside the cup shell (1).
2. The portable emergency smart water purifier cup for outdoor use according to claim 1, characterized in that: The disinfection enhancement cavity (7) is perpendicular to the outer wall of the limiting partition (105) and has eight sets of liquid outlets (701) evenly opened in the circumferential direction. The liquid outlets (701), the liquid inlet strip (106) and the liquid inlet (803) form a liquid flow channel in sequence.
3. The portable emergency smart water purifier cup for outdoor use according to claim 1, characterized in that: A heat preservation cover (801) is fixedly fitted on the side of the direct drinking cavity (8) facing the inner wall of the cup shell (1). An electric heating base (9) is fixedly attached to the side of the direct drinking cavity (8) facing the limiting partition (105), and the electric heating base (9) is fixedly connected to the bottom end face of the limiting partition (105). A micro water quality detection mechanism (10) is provided on the side of the heat preservation cover (801) facing the inner wall of the cup shell (1), and the micro water quality detection mechanism (10) faces the bottom end face of the limiting partition (105) and is fixedly connected to it.
4. The portable emergency smart water purifier cup for outdoor use according to claim 1, characterized in that: The cup shell (1) is fixedly connected to the side of the outer wall of the disinfection enhancement chamber (7) by a limiting kit (104). The bottom of the membrane separation chamber (6) and the top of the disinfection enhancement chamber (7) are both embedded in the limiting kit (104) and fixedly fitted and positioned therewith.
5. A portable emergency smart water purifier cup for outdoor use according to claim 1, characterized in that: The cup shell (1) is fixedly connected to the side of the outer wall of the membrane separation chamber (6) with a limiting kit (103). The bottom of the adsorption treatment chamber (5) and the top of the membrane separation chamber (6) are both embedded in the limiting kit (103) and fixedly fitted and positioned therewith.
6. A portable emergency smart water purifier cup for outdoor use according to claim 1, characterized in that: The cup shell (1) has an integrally formed top cover sealing kit (101) on the inner side wall facing the top end face of the adsorption treatment cavity (5). The top cover sealing kit (101) is fitted with a top cover (3) on the side away from the adsorption treatment cavity (5), and the top cover (3) and the top cover sealing kit (101) are sealed by threaded connection.
7. A portable emergency smart water purifier cup for outdoor use according to claim 1, characterized in that: The cup shell (1) is fixedly fitted with a control display panel (2) on the outer side wall away from the limiting kit (104). The control display panel (2) extends to the inner side of the cup shell (1) and is fixedly snapped onto the limiting kit (103) and the limiting kit (104).
8. A portable emergency smart water purifier cup for outdoor use according to claim 1, characterized in that: The bottom end face of the direct drinking cavity (8) away from the limiting partition (105) is integrally formed with a retaining kit (802), and the retaining kit (802) is fixedly attached to the inner wall of the cup shell (1).
9. A portable emergency smart water purifier cup for outdoor use according to claim 8, characterized in that: The cup shell (1) is threaded to the inner wall of the retaining kit (802) with a bottom cover sealing kit (102), and the bottom cover sealing kit (102) is fixedly fitted and sealed to the bottom end face of the retaining kit (802).
10. A portable emergency smart water purifier cup for outdoor use according to claim 9, characterized in that: The bottom cover sealing kit (102) is fitted with a bottom cover part (4) on the side opposite to the drinking cavity (8), and the bottom cover part (4) and the bottom cover sealing kit (102) are sealed by threaded connection.