Green intelligent unmanned toilet rest station device and system
By designing a stretchable and retractable green intelligent unmanned toilet device, combined with a water circulation and odor purification system, the problems of resource waste and mobility of mobile toilets are solved, energy recycling and intelligent management are realized, and the user experience and management efficiency are improved.
Patent Information
- Application Number
- CN202520131663.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2024-03-04
- Filing Date
- 2025-01-21
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2035-01-21
AI Technical Summary
Existing portable toilets suffer from problems such as poor hygiene conditions due to lack of supervision, waste of resources, limited functionality, restricted mobility, and time-consuming and labor-intensive assembly and disassembly.
Design a green, intelligent, unmanned toilet rest station device, including a toilet module and a rest station module. The modules can be stretched or retracted. Combined with a water-circulating toilet, an odor-purifying green wall, and an unmanned driving system, it realizes resource recycling and intelligent monitoring.
It achieves energy recycling, intelligent management, multi-functional adaptability and convenient mobility, improves user experience and management efficiency, and reduces the complicated process of disassembly and assembly.
Smart Images

Figure CN223738735U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to mobile toilet, sewage treatment technical field, specifically relates to a kind of green wisdom unmanned toilet rest station device and system. BACKGROUND
[0002] Mobile toilet is named because of mobility, mobile toilet is not limited by any working environment, and is light and compact in shape structure, which can be used not only in parks, but also in railway stations, wharfs, tourist attractions, construction sites and squares where people are concentrated. Currently, mobile toilets have poor sanitary conditions, resource waste and single function, and mobility is limited. Because many mobile toilets need to be disassembled and assembled to realize the movement of the toilet, the assembled public toilet has low structural strength and is easy to damage, and the assembly and disassembly process is time-consuming and laborious. UTILITY MODEL CONTENTS
[0003] The utility model aims to provide a kind of green wisdom unmanned toilet rest station device and system to solve the above problems.
[0004] The utility model provides a kind of green wisdom unmanned toilet rest station device, including toilet module and activity sleeve in toilet module Rest station module can be stretched outwards or contracted inwards from toilet module;Toilet module is equipped with water circulation type closestool and water circulation structure connected with water circulation type closestool;Toilet module further includes odor purification green wall, and odor purification green wall is connected with water circulation structure.
[0005] As a further preferred embodiment of the above scheme
[0006] The top of the inner cavity of the toilet module is provided with a water storage tank, the water circulation type closestool is connected with the water storage tank, and a water collecting tank is suspended in the water storage tank. The water collecting tank and the water storage tank are connected by siphon effect.
[0007] As a further preferred embodiment of the above scheme
[0008] The water circulation type closestool is provided below the water circulation type closestool. The first water storage tank is connected to the output end of the excrement processor. The second water storage tank and the compression tank located inside the second water storage tank are also provided below the water circulation type closestool. The second water storage tank is connected to the first water storage tank, and an induction valve is provided at the connection. The first water storage tank is connected to the compression tank through the second water storage tank.
[0009] As a further preferred embodiment of the above scheme
[0010] The compression box side wall is provided with a hole, the hole is away from the bottom surface of the compression box, the top of the compression box is provided with an opening, a compression rod is vertically arranged in the opening, the bottom of the compression rod is connected to a horizontally arranged compression plate, the cross section of the compression plate is adapted to the cross section of the inner cavity of the compression box, and the compression box is connected to the water collecting end of the water circulation structure.
[0011] As a further preferred embodiment of the above-mentioned solution
[0012] The two sides and the back side of the toilet frame are surrounded by wallboards, and the odor purification green wall comprises glass plates dry-hung on the outer side of the wallboards, the wallboards and the glass plates form planting spaces, a plurality of layers of plant boxes are arranged in the planting spaces, and the odor purification green wall is connected to the water collecting end of the water circulation structure.
[0013] As a further preferred embodiment of the above-mentioned solution
[0014] The toilet module comprises a toilet frame in a cubic structure, a plurality of roof photovoltaic panels are arranged on the top opening of the toilet frame, the roof photovoltaic panels are rotatably connected to the top opening of the toilet frame, the roof photovoltaic panels can be rotated to mutually overlap and close the top opening of the toilet frame, and the roof photovoltaic panels can also be rotated to a certain angle to open the top opening of the toilet frame.
[0015] As a further preferred embodiment of the above-mentioned solution
[0016] The rest station module comprises a rest station frame in a cubic structure, the rest station frame is sleeved with the toilet frame, the rest station module comprises movable wall surfaces arranged on the two side surfaces of the rest station frame, and the movable wall surfaces can be disassembled to form foldable seats and sun-shading windows.
[0017] The utility model also provides a green wisdom unmanned toilet rest station system, including green wisdom unmanned toilet rest station device, still include:
[0018] The unmanned system is used for controlling the position and operation of the toilet rest station.
[0019] The GPS system is used for positioning the position of the toilet rest station at this time, and providing position information for the management personnel and tourists.
[0020] The GIS system is used for visual analysis of the position of the toilet rest station, and has an auxiliary effect on the arrangement and distribution of the device for the management personnel.
[0021] The utility model has the advantages that:
[0022] (1) The green intelligent unmanned toilet rest station device can maximize the use of natural energy, realize energy recycling, conveniently change service locations, and install intelligent monitoring systems at multiple positions inside to monitor passenger flow, toilet time, toilet frequency, whether the internal odor exceeds the standard, whether the toilet is congested, and the like, thereby providing data support for self-regulation inside the toilet, maintenance by management personnel, and prediction of the number of fixed-point toilets; the green intelligent unmanned toilet rest station device can realize omnibearing intelligent monitoring and application, thereby providing a brand-new experience for users and providing the most convenient management and operation for managers;
[0023] (2) The rest station module designed in the utility model can be stretched or contracted, and different lengths can be pulled out as needed to meet different needs, and the rest station module can be pushed in when not needed to save space. Such a design structure not only meets the hygiene requirements of the toilet, but also meets other multifunctional requirements, such as rest functions and exercise functions;
[0024] (3) The green intelligent unmanned toilet rest station device can realize green recycling of resources inside the device. Specifically, the recycling of water resources is realized as follows: rainwater is collected first, then the toilet is flushed, and the toilet water is stored again after being filtered multiple times. The compressed solid excrement can be used as fertilizer for the odor purification green wall, and the collected rainwater can be used for irrigation;
[0025] (4) The utility model has a reasonable structure, and when it rains, the roof water collecting device operates to collect and store rainwater in the water collecting tank, and the rainwater can be used to flush the toilet by using the siphon effect and filtration. After the excrement is sucked into the excrement vacuum suction device and compressed in the excrement vacuum compression space, the excrement is placed in the maintenance space in the form of a box with the same size, and the liquid squeezed out after compression is recycled by the water recycling device and then used to supply water to the toilet. The odor of the excrement is purified by the air purification green wall inside the toilet, and part of the compressed solid excrement can be used as fertilizer for the air purification green wall and placed in the green wall box, thereby realizing the maximum use of energy;
[0026] (5) The utility model can realize intelligent unmanned operation, and compared with the previous assembled mobile toilet, the utility model can not only reduce the complicated process of disassembly and assembly, but also can realize customized services for special persons. BRIEF DESCRIPTION OF DRAWINGS
[0027] The accompanying drawings are used to provide a further understanding of the utility model, constitute a part of the specification, and are used together with embodiments of the utility model to explain the utility model, and do not constitute a limitation on the utility model. In the drawings:
[0028] Fig. 1 is a perspective structure schematic view of the green intelligent unmanned toilet rest station device in the embodiment 1 of the application, wherein the rest station module is in a contracted state;
[0029] Fig. 2 is a perspective view of the rest station module in a stretched state, wherein the seat and the sunshade window are in a closed state; Figure 1
[0030] Figure 3 is a perspective view of the foldable seat and the sunshade window in an open state; Figure 2
[0031] Figure 4 is a perspective view of the foldable seat in another angle; Figure 3
[0032] Figure 5 is a perspective view of the foldable seat in another angle;
[0033] Figure 6 is a schematic view of the water circulation in the embodiment 1 of the application;
[0034] Figure 7 is a schematic view of the water circulation in the embodiment 1 of the application in another angle;
[0035] Figure 8 is a schematic view of the toilet shaft in the embodiment 1 of the application;
[0036] Figure 9 is a schematic view of the toilet plane in the embodiment 1 of the application;
[0037] Figure 10 is a schematic view of the odor purification green wall in the embodiment 1 of the application;
[0038] Figure 11 is a schematic view of the compression box, the compression rod and the compression plate in the embodiment 1 of the application;
[0039] Figure 12 is a schematic view of the system of the green intelligent unmanned toilet rest station device in the embodiment 2 of the application;
[0040] Figure 13 is a schematic view of the network platform in the embodiment 2 of the application;
[0041] The reference signs are: 1, toilet module; 2, rest station module; 3, toilet frame; 4, water circulation toilet; 5, water collecting tank; 6, water storage tank; 7, odor purification green wall; 8, roof photovoltaic panel; 9, rest station frame; 10, foldable seat; 11, general electric socket; 12, vending machine; 13, feces processor; 14, first conduit; 15, second conduit; 16, third conduit; 17, fourth conduit; 18, first water storage tank; 19, second water storage tank; 20, compression box; 21, hole; 22, compression rod; 23, compression plate; 24, fifth conduit; 25, wallboard; 26, glass plate; 27, plant box; 28, compressed solid excrement; 29, fan; 30, air outlet; 31, positioning rod; 32, universal wheel; 33, directional wheel; 34, battery pack; 35, air monitor; 36, infrared sensor; 37, laser sensor; 38, alarm; 39, sunshade window; 40, support leg; 41, hand washing basin. DETAILED DESCRIPTION
[0042] The utility model will be further described below in combination with specific embodiments. These embodiments are only used to illustrate the utility model and not used to limit the scope of the utility model. The structural characteristics of the utility model will be described in detail in combination with the drawings of the specification.
[0043] Embodiment 1
[0044] Referring to Figure 1 , Figure 2 and Figure 3 , a green intelligent unmanned toilet rest station device is provided in this embodiment 1, which comprises a toilet module 1 and a rest station module 2 sleeved in the toilet module 1, and the rest station module 2 can be stretched outwards or contracted inwards from the toilet module 1. Referring to Figure 7 and Figure 8 in combination with Figure 2 , the structure of the aforementioned toilet module 1 is specifically as follows: a toilet frame 3 in a cubic structure, the two sides and the rear side formed by the toilet frame 3 are surrounded by wallboards 25, the bottom surface of the toilet frame 3 is paved with a bottom plate, the toilet frame 3 is provided with two or more than two toilet spaces (two are preferably provided in this embodiment), a water circulation toilet 4 is correspondingly provided in each toilet space, and the toilet frame 3 further comprises a water circulation structure connected with the water circulation toilet 4.
[0045] The green intelligent unmanned toilet rest station device can realize green recycling of internal resources. Specifically, the recycling of water resources is realized by first collecting rainwater by the water circulation structure, then flushing the water circulation toilet 4, and then storing the water filtered for multiple times for flushing. The utility model has the advantages of reasonable structure, and when it rains, the water collecting structure designed on the top of the toilet frame 3 operates to collect rainwater, and the rainwater can be used for flushing the water circulation toilet 4 by using the siphon effect and filtration.
[0046] On the one hand, referring to Figure 6 and Figure 7 , the water circulation structure can provide water to the water circulation toilet 4. The structure of the water circulation structure for providing water is as follows: the water circulation structure comprises a water storage tank 6 arranged on the top of the inner cavity of the toilet frame 3, the water storage tank 6 is located below the roof photovoltaic panel 8, a water collecting tank 5 is suspended in the water storage tank 6, the water collecting tank 5 and the water storage tank 6 are connected through a first conduit 14, and the water collecting tank 5 is used for collecting rainwater. In the embodiment, the water collecting tank 5 is connected to the inner wall of the water storage tank 6 by screws and is kept at a certain distance from the bottom of the water storage tank 6. The two are placed together below the water collecting structure designed on the top of the toilet frame 3. The water circulation toilet 4 is connected to the water storage tank 6 through a third conduit 16. When in use, one end of the first conduit 16 is placed on the lowest water surface of the water collecting tank 5, and the other end is placed on the lowest water surface of the water storage tank 6. By using the siphon effect, the part of the water in the water collecting tank 5 that does not contain impurities is pumped out and stored in the water storage tank 6. The water in the water storage tank 6 is connected to the toilet and used for flushing the toilet. By adopting such a structure, the toilet module 1 can collect rainwater and supply water to the water circulation toilet 4.
[0047] Further, referring to Figure 2 , Figure 3 , the implementation mode of the rainwater collection in the foregoing water inlet design is as follows: a plurality of roof photovoltaic panels 8 are arranged and laid on the top opening of the toilet frame 3. The roof photovoltaic panels 8 are rotationally connected to the top opening of the toilet frame 3. The connection structure of the roof photovoltaic panels 8 on the toilet frame 3 is as follows: the roof photovoltaic panels 8 can be rotated to overlap each other to close the top opening of the toilet frame 3, or can be rotated to a certain angle to open the top opening of the toilet frame 3. The rainwater collection mode is as follows: the roof photovoltaic panels 8 on the toilet frame 3 are used for collecting rainwater. In rainy days, the roof photovoltaic panels 8 are rotated to overlap each other. In the embodiment, the installation height of each roof photovoltaic panel 8 is preferably slightly increased from the back side to the front side of the toilet frame 3, so that when the roof photovoltaic panels 8 overlap each other, a certain slope of the rainwater collecting slope is formed. The water collecting tank 5 of the water circulation system is located at the rear wall of the inner cavity of the toilet frame 3. A gap is left between the last roof photovoltaic panel 8 near the top of the rear wall of the inner cavity of the toilet frame 3 and the toilet frame 3. Rainwater flows down along the rainwater collecting slope, passes through the gap and enters the water collecting tank 5.
[0048] On the other hand, referring to 6,Figure 7 and Figure 9 The specific structure of the water circulation toilet 4 for waste discharge is that the water circulation toilet 4 is provided below with a feces processor 13, the output end of the feces processor 13 is connected with a first water storage tank 18, the water circulation toilet 4 is further provided below with a second water storage tank 19 and a compression box 20 located inside the second water storage tank 19, the second water storage tank 19 is in communication with the first water storage tank 18 and an inductive valve is arranged at the communication position, a water quality detection sensor is preferably arranged in the first water storage tank 18, the first water storage tank 18 is connected with the compression box 20 through the second water storage tank 19, a hole 21 is arranged on the side wall of the compression box 20, and a distance is left between the hole 21 and the bottom surface of the compression box 20, and in the embodiment, the distance is preferably kept at least 15 cm; Figure 11 and Figure 10 An opening is arranged on the top of the compression box 20, a compression rod 22 is vertically arranged in the opening, the top of the compression rod 22 protrudes from the bottom surface of the bathroom module 1, the bottom of the compression rod 22 is connected to a compression plate 23, the compression plate 23 is horizontally arranged in the compression box 20, the cross section of the compression plate 23 is adapted to the cross section of the inner cavity of the compression box 23, the compression plate 23 is tightly connected with the inside of the compression box 23 to form a closed system, and a fourth conduit 17 is arranged in the compression box 20, the other end of the fourth conduit 17 is communicated upward to the water storage tank 6; the bottom surface of the first water storage tank 18 is further provided with a fifth conduit 24, and the other end of the fifth conduit 24 is communicated to the outside of the bathroom module 1. With such a structure, the circulation and waste discharge of the water circulation toilet 4 are realized.
[0049] Further, the realization mode of the water circulation toilet 4 for circulation and waste discharge is that: first, when the water quality detection sensor in the first water storage tank 18 detects that the water quality is excellent, at this time, the water quality can be used as circulating water, the inductive valve at the communication position between the second water storage tank 19 and the first water storage tank 18 is opened, the sewage of the water circulation toilet 4 is treated by the feces processor 13, then enters the first water storage tank 18 and then enters the second water storage tank 19, when the water in the second water storage tank 19 reaches the height of the hole 21, the water in the second water storage tank 19 can enter the compression box 20 through the hole 21 left by the compression box 20, at this time, only the compression rod 22 needs to be stepped on by manpower, and the water in the compression box 20 is squeezed into the fourth conduit 17 by the compression plate 23, and the water in the fourth conduit 17 finally enters the top water storage tank 6 through upward flow, and then is recycled as water supply for the water circulation toilet 4 to form overall water circulation; second, when the water quality detection sensor in the first water storage tank 18 detects that the water quality is too turbid and cannot be used as circulating water, the inductive valve at the communication position between the second water storage tank 19 and the first water storage tank 18 is closed, and the waste water is discharged to the outside through the fifth conduit 24.
[0050] Reference Figure 3 and Figure 10The toilet module 1 in the embodiment 1 also comprises an odor purification green wall 7. The odor of the toilet excrement is purified through the odor purification green wall 7, and the compressed part of the toilet excrement can also be used as the fertilizer of the air purification green wall and placed in the green wall box, so as to realize the maximum utilization of energy. In addition, the water collecting tank 5 of the water circulation structure can also provide water for irrigating the green wall of the odor purification green wall 7, so as to realize the overall circulation structure. The specific implementation is as follows.
[0051] On the one hand, referring to Figure 6 , the odor purification green wall 7 is provided with three groups, which are respectively located on the two side walls and the rear wall of the toilet module 1. The structure of the odor purification green wall 7 is specifically as follows: the glass plate 26 is dry hung on the outer side of the wall plate 25 of the toilet module 1, the wall plate 25 and the glass plate 26 form a planting space, and a plurality of layers of plant boxes 27 are arranged in the planting space. In the embodiment, the plant boxes 27 are preferably bound on the wall plate 25. The second conduit 15 is arranged in the water collecting tank 5, and the other end of the second conduit 15 is connected to the odor purification green wall 7. The second conduit 15 outputs water for irrigating the plants in the plant boxes 27. In the embodiment, the output end of the second conduit 15 is first connected to each layer of plant boxes 27 in the horizontal direction, so that the water can be sent to each plant in each layer in the horizontal direction, and then the vertical connection is performed, so as to provide water for each layer of plant boxes 27. The implementation mode of the odor purification green wall 7 for purifying odor is as follows: the fan 29 is arranged on the inner wall of the toilet module 1. The fan 29 can be preferably arranged at the bottom and the top. The outer side of the fan 29 is provided with an air outlet 30. The odor of the toilet excrement enters the interior of the odor purification green wall 7 through the air outlet 30 at the bottom of the toilet module 1. The odor purification green wall 7 adopts a plurality of odor absorbing plants, which can absorb the odor in the toilet layer by layer and maximize the absorption of the odor in the toilet, and the excess odor is discharged through the air outlet at the top of the green wall. When the air monitor 35 detects that the odor in the toilet exceeds the standard, the fan 29 below the odor purification green wall is started to accelerate the air circulation in the toilet, so that the odor in the toilet is discharged through the odor purification green wall as soon as possible.
[0052] On the other hand, the solid excrement after being treated by the excrement processor 13 is compressed into the compressed solid excrement 28 in the form of a box and is placed in the storage space of the excrement processor 13, and then can be used as the fertilizer of the odor purification green wall and is placed at the bottom of each layer of plant boxes 27, so as to realize the maximum utilization of energy. Specifically, the bottom of the plant box 27 has a reserved hole, and the compressed solid excrement can be inserted into the reserved space to provide nutrients for the plant box 27. In addition, the top of the water circulation toilet 4 is also provided with a washing basin 41. The waste water after washing the face in the washing basin 41 can directly enter the second water storage tank 19.
[0053] Referring to Figure 1 , Figure 2 and Figure 3In this embodiment, the structure of the rest station module 1 is as follows: a rest station frame 9 in a cubic structure, which is sleeved with the toilet frame 3 and can be stretched or contracted relative to the toilet frame 3; the rest station module 1 includes movable walls on both sides of the rest station frame 9, which can be disassembled to form foldable seats 10 and sunshade windows 39. Figure 5 and Figure 3 In particular, the movable walls are divided into upper and lower parts, the upper part is opened upward to form the sunshade windows 39, and the lower part has a horizontal positioning rod 31 at one-half thereof, the lower half of the wall is fixed, and the upper half of the wall can be rotated inward to release the foldable support legs 40, so as to form the foldable seats 10. Further, the rest station module 1 is provided with a roof photovoltaic panel 8 at the top opening, which is not used for collecting rainwater but for ventilation or power supply. The rest station module 1 further includes a general electric socket 11 and an automatic vending machine 12, the electric socket 11 is arranged at the top of the roof photovoltaic panel 8 and connected by wires. The automatic vending machine 12 is arranged outside the wall panel 25 of the toilet module 1.
[0054] Therefore, the rest station module 1 of this embodiment can be stretched or contracted, and different lengths can be pulled out as needed to meet different needs, and the whole device forms a double-skin system when it is pushed in, which not only realizes energy saving but also saves space. The foldable seats 10 also provide maximum selection space for the rest station module 1, and the general electric socket 11 and the automatic vending machine 12 provide convenience for different needs of tourists and pedestrians.
[0055] Referring to Figure 1 , Figure 2 and Figure 3 The toilet rest station in this embodiment not only maximizes the use of natural energy and realizes energy recycling, but also can conveniently change the service location. Four universal wheels 32 and two directional wheels 33 are installed below the toilet rest station, which can realize random movement of the device position. The toilet rest station can realize internal power operation due to the power generation of the roof photovoltaic panel 8 and the joint action of the battery pack 34.
[0056] Embodiment 2
[0057] On the basis of embodiment 1, a green intelligent unmanned toilet rest station system is provided in this embodiment 2, which includes:
[0058] A water circulation system including a water circulation toilet 4, a water collecting tank 5, a water storage tank 6, a roof photovoltaic panel 8, a first water storage tank 18, a second water storage tank 19, and a compression tank 20;
[0059] An odor treatment system including an odor purification green wall 7;
[0060] The air monitoring system comprises an air monitor 35, which is used to monitor whether the odor inside the toilet is over standard, and to determine whether to start the internal fan 29 to discharge the odor.
[0061] A GPS system is used to locate the position of the toilet rest station at the moment, and to provide position information for the managers and tourists.
[0062] A GIS system is used for visual analysis of the position of the toilet rest station, and to assist the managers in arranging and distributing the devices.
[0063] In addition, the infrared sensor 36 and the laser sensor 37 are also included, the infrared sensor 36 is used to help the automatic flushing of the toilet when the tourists do not flush the toilet in time after using the toilet; the laser sensor 37 is mainly used to monitor the passenger flow, the toilet time, the toilet frequency, etc., to provide data support for the self-regulation of the toilet inside and the prediction of the fixed-point toilet quantity by the managers.
[0064] The green intelligent unmanned toilet rest station system of the embodiment can predict the number and proportion of tourists in each month of the future for each scenic spot, and arrange the number of toilets in each month of each scenic spot through the predicted data, and arrange the capital investment of each scenic spot.
[0065] The preferred embodiments of the present application are described above, and the protection scope of the present application is not limited to the above-mentioned embodiments. Any technical solution falling within the concept of the present application belongs to the protection scope of the present application. It should be noted that, for ordinary technical personnel in the technical field, some improvements and decorations without departing from the principles of the present application are also considered to be within the protection scope of the present application.
Claims
1. A green smart unmanned toilet rest station device, characterized in that, The toilet module (1) and the rest station module (2) are sleeved in the toilet module (1), the rest station module (2) can be stretched out of the toilet module (1) or contracted in the toilet module (1); the toilet module (1) is provided with a water circulation type toilet (4) and a water circulation structure connected with the water circulation type toilet (4); the toilet module (1) further comprises an odor purification green wall (7) connected with the water circulation structure.
2. The green smart unmanned washroom rest station device according to claim 1, characterized in that: The inner cavity top of the toilet module (1) is provided with a water storage tank (6), the water circulation type toilet (4) is connected with the water storage tank (6), and the water storage tank (6) is provided with a water collecting tank (5) suspended therein, and the water collecting tank (5) and the water storage tank (6) are connected in communication through a siphon effect.
3. The green smart unmanned washroom rest station device according to claim 1, characterized in that: The water circulation type toilet (4) is provided below with a feces processor (13), the output end of the feces processor (13) is connected with a first water storage tank (18), the water circulation type toilet (4) is further provided below with a second water storage tank (19) and a compression tank (20) located in the second water storage tank (19), the second water storage tank (19) is in communication with the first water storage tank (18) and is provided with a sensing valve at the communication position, and the first water storage tank (18) is connected with the compression tank (20) through the second water storage tank (19).
4. The green smart unmanned washroom rest station device according to claim 3, characterized in that: The side wall of the compression tank (20) is provided with a hole (21), a distance is left between the hole (21) and the bottom surface of the compression tank (20), the top of the compression tank (20) is provided with an opening, a compression rod (22) is vertically and penetratingly arranged in the top opening, the bottom of the compression rod (22) is connected to a horizontally arranged compression plate (23), the cross section of the compression plate (23) is adapted to the cross section of the inner cavity of the compression tank (23), and the compression tank (20) is connected to the water collecting end of the water circulation structure.
5. The green smart unmanned washroom rest station device, according to claim 1, wherein: The two sides and the rear side formed by the toilet frame (3) are surrounded by wallboards (25), the odor purification green wall (7) comprises glass plates (26) dry-hung on the outer side of the wallboards (25), the wallboards (25) and the glass plates (26) form a planting space, a plurality of layers of plant boxes (27) are arranged in the planting space, and the odor purification green wall (3) is connected to the water collecting end of the water circulation structure.
6. The green smart unmanned washroom rest station device, according to claim 1, wherein: The toilet module (1) comprises a toilet frame (3) in a cubic structure, a plurality of roof photovoltaic panels (8) are arranged and laid on the top opening of the toilet frame (3), the roof photovoltaic panels (8) are rotationally connected to the top opening of the toilet frame (3), the roof photovoltaic panels (8) can be rotated to mutually overlap and close the top opening of the toilet frame (3), and the roof photovoltaic panels (8) can also be rotated to a certain angle to open the top opening of the toilet frame (3).
7. The green smart unmanned washroom rest station device, according to claim 6, wherein: The rest station module (1) comprises a rest station frame (9) in a cubic structure, the rest station frame (9) is sleeved with the toilet frame (3), and the rest station module (1) comprises movable wall surfaces arranged on the two side surfaces of the rest station frame (9), the movable wall surfaces can be disassembled to form foldable seats (10) and sunshade windows (39).
8. A green smart unmanned toilet rest station system, characterized in that: The green intelligent unmanned toilet rest station device comprises the green intelligent unmanned toilet rest station device according to any one of claims 1 to 7, and further comprises: an unmanned system for controlling the position and operation of the toilet rest station; a GPS system for positioning the position of the toilet rest station at the moment and providing position information for management personnel and tourists; GIS system for the visual analysis of the position of the rest stops in the sanitary areas, with the aid of the management personnel for the arrangement and distribution of the devices. GIS system for the visual analysis of the position of the rest stops in the sanitary areas, with the aid of the management personnel for