Integrated water tank capable of recycling water and automatically generating electricity
Through the design of the integrated sink's layered dishwasher, ultra-efficient nanofiltration water purifier, turbine unit and multi-functional control console, water recycling and self-generation of electricity are achieved, solving the energy waste and operational inconvenience problems of the integrated sink and improving ease of use and cleaning efficiency.
Patent Information
- Application Number
- CN202423241110.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-27
- Publication Date
- 2025-09-09
- Estimated Expiration
- 2034-12-27
AI Technical Summary
Existing integrated sinks have serious energy waste and unreasonable operation design, which makes them inconvenient to use and inefficient, especially when washing large loads, and they cannot save energy efficiently.
The integrated sink is equipped with a layered dishwasher, an ultra-efficient nanofiltration water purifier, a water tank and a turbine unit, realizing water recycling and self-generation of electricity. The operation interface is optimized by combining with a multi-functional console, and the traffic flow design is optimized through an ultrasonic cleaning tank and a built-in cutting board.
Effectively reduce energy consumption and water waste, improve ease of use and intelligence, optimize kitchen workflow, and improve cleaning efficiency and hygiene.
Smart Images

Figure CN223317282U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of integrated water tanks, in particular to an integrated water tank capable of circulating water and self-generating electricity. Background Art
[0002] In modern home life, the kitchen is a core functional area, and the demand for integrated appliances is becoming increasingly diversified and refined. Integrated sinks, as emerging household integrated appliances, are designed to integrate multiple kitchen functions and improve ease of use and space utilization. However, ordinary integrated sinks currently on the market have many defects. On the one hand, most of them ignore the rational use of energy. In daily use, there is a serious waste of water and electricity resources, which fails to conform to the current energy-saving and environmental protection concept advocated. On the other hand, from an ergonomic perspective, there are obvious deficiencies in its operational design. For example, the overall traffic flow planning is unreasonable, and users need to move frequently and significantly when performing operations such as food processing and tableware washing. This is extremely inconvenient and not only reduces work efficiency, but also easily causes user fatigue.
[0003] Even some integrated sinks offer energy-saving features, but most often employ overly simplistic energy-saving measures, typically using small-capacity dishwashers to reduce water consumption per wash. However, this approach has significant limitations. For scenarios requiring large quantities of dishwashing, such as family gatherings and banquets, small-capacity dishwashers are insufficient, forcing users to perform multiple washes, which can increase overall water consumption and prolong operation times, failing to fundamentally resolve the conflict between energy conservation and efficient use. Utility Model Content
[0004] The technical problem to be solved and the technical task proposed by the present invention are to improve and perfect the existing technical solutions and provide an integrated water tank that can recycle water and generate electricity to achieve better energy utilization. To this end, the present invention adopts the following technical solutions.
[0005] An integrated water sink capable of recycling water and generating its own electricity comprises a water sink body, a cabinet arranged below the water sink body and a faucet arranged above the water sink body, the water sink body being provided with a multifunctional control console, the cabinet being provided with a layered dishwasher, an ultra-efficient nanofiltration water purifier, a water tank and a water turbine unit, the multifunctional control console being provided on the upper rear side of the water sink body, the layered dishwasher being provided below the right portion of the water sink body, the ultra-efficient nanofiltration water purifier being provided below the left portion of the water sink body, the water tank being provided below the ultra-efficient nanofiltration water purifier, the water turbine unit being connected to the tap water inlet of the integrated water sink, an ultrasonic cleaning tank being provided on the left side of the water sink body, the water drain hole of the ultrasonic cleaning tank being connected to the ultra-efficient nanofiltration water purifier through a pipe The water inlet of the multifunctional console is connected, the water outlet of the ultra-efficient nanofiltration water purifier is connected to the water tank, the water tank is connected to the stratified washing dishwasher through a water outlet pipe, the water outlet pipe is provided with a water intake pump, the tap water inlet is connected to the stratified washing dishwasher through a water inlet pipe, the multifunctional console includes a control panel and energy storage battery arranged therein and an LCD display, buttons and button indicator lights arranged on the top of the multifunctional console, the LCD display, buttons and button indicator lights are all connected to the control panel, the external power cord of the multifunctional console and the turbine unit are electrically connected to the control panel and the energy storage battery through the power panel, the control panel is electrically connected to the water intake pump, the stratified washing dishwasher and the ultrasonic vibrator of the ultrasonic cleaning tank. By integrating components such as a multi-function console, a stratified washing dishwasher, an ultra-efficient nanofiltration water purifier, a water tank and a hydro-turbine unit, water recycling and self-generation of electricity are achieved. The ultra-efficient nanofiltration water purifier purifies the water and stores it in a water tank for use in the stratified washing dishwasher. The hydro-turbine unit uses water flow to generate electricity to power the entire system. The stratified washing dishwasher is equipped with dual spray heads to achieve stratified water washing, which is suitable for washing a small amount of tableware to reduce water waste. Compared with traditional integrated sinks, it can effectively reduce the supply of mains electricity, reduce energy consumption and water waste. The multi-function console provides a convenient operating interface, allowing users to easily control various functions, improving the convenience and intelligence of use.
[0006] As a preferred technical means: the sink body includes a main cleaning tank, a built-in cutting board, a food waste collection frame, and the ultrasonic cleaning tank. The main cleaning tank is located on the right side of the sink body, and the ultrasonic cleaning tank is located on the left side of the sink body. The built-in cutting board and the food waste collection frame are located between the ultrasonic cleaning tank and the main cleaning tank. The built-in cutting board is located in the front position close to the operator, and the food waste collection frame is located on the back side of the built-in cutting board. The main cleaning tank is used for cleaning conventional large items, and the ultrasonic cleaning tank is dedicated to cleaning delicate ingredients or other items. The two are distributed on the left and right, with a clear division of labor. The built-in cutting board is in the front, which is convenient for pre-processing ingredients. The food waste collection frame is in the back, close to the cutting board, so that the garbage generated during the food processing process can be easily discarded, reducing the operation steps, optimizing the kitchen workflow, keeping the kitchen countertop clean at all times, and improving cooking and cleaning efficiency.
[0007] As a preferred technical approach, the kitchen waste storage frame includes a frame trough and a removable support frame disposed within the trough. The bottom of the trough is provided with a drain hole connected to the main drainpipe of the integrated sink. A grating filter plate is provided at the drain hole, and the support frame can support and place a garbage bag. The combination of the trough and the removable support frame facilitates garbage cleaning, and the support frame provides a stable placement for garbage bags, preventing them from slipping. The bottom drain hole connects to the main drainpipe, allowing for the timely removal of garbage leachate, keeping the storage frame dry and clean. The grating filter plate prevents large pieces of garbage from clogging the pipe, ensuring smooth drainage and maintaining the normal operation of the entire sink drainage system, making the disposal of kitchen waste more convenient and hygienic.
[0008] As a preferred technical means: the built-in cutting board has a low-angle tilted structure with a high front and a low back. This tilted structure, together with the raised integrated sink countertops on the left and right sides, forms a backward-facing self-flowing trough structure, the rear end of which is integrated with the front upper end of the frame trough. The low-angle tilt, with a high front and a low back, combined with the raised countertops on the left and right sides to form a self-flowing trough, can guide juice to flow naturally to the kitchen waste collection frame at the rear, eliminating the need for additional wiping and cleaning, facilitating subsequent cleaning of the cutting board countertop, preventing residual juice from breeding bacteria, maintaining kitchen hygiene, and keeping the food processing area dry at all times, reducing cleaning workload and improving user comfort.
[0009] As a preferred technical approach, the ultrasonic cleaning tank is equipped with a waterfall-style water outlet on the upper rear side, which is connected to the tap water inlet pipe of the integrated water tank. This provides a strong water flow, helping to initially remove dirt and pesticide residue from the surface of food, improving cleaning efficiency and cleanliness.
[0010] As a preferred technical means: the faucet includes a direct drinking water faucet and a direct tap water faucet, which are located on the countertop of the multi-function control console on the rear side of the main cleaning tank. The direct drinking water faucet and the direct tap water faucet are both vertical plane arc structures and can rotate horizontally. When the direct drinking water faucet and the direct tap water faucet are rotated to the same plane state with adjacent water outlets, the direct drinking water faucet and the direct tap water faucet form an arched semicircular structure. The arc structure and horizontal rotation are flexible to operate, and the user can conveniently adjust the water outlet direction according to needs; the two rotate to adjacent same planes to form an arched semicircular structure, saving countertop space and can be used as a temporary hanger for cleaning cloths.
[0011] As a preferred technical measure, the multifunctional console surface is raised by 20-35mm above the main surface of the main cleaning tank and ultrasonic cleaning tank. This elevated surface provides greater comfort and convenience for users when using the various buttons and display screens on the console, reducing the inconvenience of bending or lowering their heads, and improving ease and comfort. The elevated surface effectively blocks splashes of water during cleaning, preventing them from reaching the console.
[0012] As a preferred technical approach, a detergent squeeze pump is installed on the multifunctional control console between the direct drinking water faucet and the tap water faucet. A detergent container is installed within the cabinet, and the detergent container is connected to the squeeze pump via a detergent pipe. The squeeze-type detergent outlet conforms to the traditional main sink detergent usage method and facilitates detergent access.
[0013] As a preferred technical measure, the water tank is equipped with a water level detection device connected to the control panel. This device can monitor the water level in real time and feed the information back to the multi-function console. The user can intuitively understand the water tank's water status through the console's LCD screen, allowing them to plan water use in advance, such as replenishing water in a timely manner or arranging dishwashing tasks appropriately, thus avoiding the inconvenience caused by water shortages and ensuring stable operation of all water-using links in the sink.
[0014] As a preferred technical measure, the width of the ultrasonic cleaning tank is 30%-50% of the width of the main cleaning tank, and the depth of the ultrasonic cleaning tank is 60%-80% of the depth of the main cleaning tank. Limiting the size ratio of the ultrasonic cleaning tank ensures sufficient space for efficient cleaning of common fruits and vegetables while not occupying too much of the main tank area. This leaves ample operating space in the main cleaning tank, allowing for both fine cleaning and large item handling. This optimizes overall tank space utilization, effectively reduces water consumption, and achieves optimal environmental protection.
[0015] Beneficial effects: By integrating components such as a multi-functional console, a layered dishwasher, an ultra-efficient nanofiltration water purifier, a water tank and a turbine unit, water recycling and self-generation of electricity are achieved. Compared with traditional integrated sinks, it can effectively reduce the supply of mains electricity, reduce energy consumption and waste of water resources; the multi-functional console provides a convenient operation interface, allowing users to easily control various functions, improving the convenience and intelligence of use; the application of ultrasonic cleaning tank and main cleaning tank can be used reasonably according to actual needs, which can better achieve cleaning and water-saving effects; the position layout of the built-in chopping board and kitchen waste storage box allows the garbage generated during the processing of food ingredients to be discarded easily, reducing the operating steps and optimizing the kitchen workflow. At the same time, the gravity flow structure of the built-in chopping board can guide the juice to flow naturally to the kitchen waste storage box at the rear, without the need for additional wiping and cleaning, which facilitates the subsequent cleaning of the chopping board countertop. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a schematic diagram of the main structure of the utility model.
[0017] Figure 2 It is a schematic diagram of the top structure of the utility model.
[0018] Figure 3 It is a right side structural schematic diagram of the utility model.
[0019] Figure 4 It is a blasting schematic diagram of the present utility model.
[0020] Figure 5 This utility model Figure 4 Enlarged schematic diagram of part A in the middle.
[0021] In the figure: 1. Sink body; 2. Cabinet; 3. Faucet; 4. Multi-function control console; 5. Layered washing dishwasher; 6. Ultra-efficient nanofiltration water purifier; 7. Water tank; 8. Turbine unit; 9. Ultrasonic cleaning tank; 10. LCD screen; 11. Button; 12. Button indicator light; 13. Ultrasonic vibrator; 14. Main cleaning tank; 15. Built-in cutting board; 16. Kitchen waste storage box; 17. Detergent squeeze pump; 501. Double spray head; 901. Waterfall water outlet; 1601. Frame slot; 1602. Support frame; 1603. Grid filter plate. DETAILED DESCRIPTION
[0022] The technical solution of the present invention is further described in detail below with reference to the accompanying drawings.
[0023] In the description of the present invention, it should be understood that terms such as "center", "longitudinal", "lateral", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc., indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Since the embodiments disclosed in the present invention can be set in different directions, these terms indicating directions are only for illustration and should not be regarded as limitations. For example, "up" and "down" are not necessarily limited to directions opposite to or consistent with the direction of gravity.
[0024] Example 1
[0025] like Figure 1-5As shown, an integrated water sink that can recycle water and generate its own electricity includes a water sink body 1, a cabinet 2 arranged below the water sink body 1, and a faucet 3 arranged above the water sink body 1. The faucet 3 includes a direct drinking water outlet faucet and a tap water direct outlet faucet. A layered washing dishwasher 5, an ultra-efficient nanofiltration water purifier 6, a water tank 7 and a turbine unit 8 are arranged in the cabinet 2. The layered washing dishwasher 5 is arranged at the lower right part of the water sink body 1, the ultra-efficient nanofiltration water purifier 6 is arranged at the lower left part of the water sink body 1, the water tank 7 is arranged below the ultra-efficient nanofiltration water purifier 6, the turbine unit 8 is connected to the tap water inlet of the integrated water sink, the turbine unit 8 uses water flow to drive power generation, and the generated electricity is used for the daily electricity needs of the integrated water sink. An ultrasonic cleaning tank 9 is provided on the left side of the water sink body 1. The drain hole of 9 is connected to the water inlet of the ultra-efficient nanofiltration water purifier 6 through a pipe, and the water outlet of the ultra-efficient nanofiltration water purifier 6 is connected to the water tank 7. The water tank 7 is used to store filtered water. The water tank 7 is connected to the stratified washing dishwasher 5 through a water outlet pipe. The water outlet pipe is provided with a water intake pump, and the tap water inlet is connected to the stratified washing dishwasher 5 through a water inlet pipe. The ultra-efficient nanofiltration water purifier 6 is used to filter all impurities and harmful substances in the water, while retaining beneficial minerals, and can filter the water after use in the ultrasonic cleaning tank 9 to meet the dishwasher water standard. The stratified washing dishwasher 5 is equipped with a double spray head 501 to achieve stratified water washing, which is suitable for washing a small amount of tableware to reduce water waste. The drain hole of the stratified washing dishwasher 5 is connected to the main downpipe, and the main downpipe is connected to the kitchen sewer pipe. A multifunctional console 4 is provided on the left front side of the sink body 1. The multifunctional console 4 includes a control panel and energy storage battery arranged therein, and an LCD screen 10, buttons 11 and button indicator lights 12 arranged on the surface of the multifunctional console 4. The energy storage battery is used to store the electricity generated by the turbine unit 8 and the mains electricity. The LCD screen 10 is used to display the water saving amount in real time and provide a user-friendly operation interface. The buttons 11 and button indicator lights 12 are used to control the water outlet and the operation of the dishwasher. The LCD screen 10, buttons 11 and button indicator lights 12 are all connected to the control panel. The external power cord of the multifunctional console 4 and the turbine unit 8 are electrically connected to the control panel and the energy storage battery through the power panel. The control panel is electrically connected to the water intake pump, the stratified washing dishwasher 5 and the ultrasonic vibrator 13 of the ultrasonic cleaning tank 9.
[0026] In order to improve the use and cleaning efficiency of the integrated sink, the sink body 1 includes a main cleaning tank 14, an embedded chopping board 15, a kitchen waste storage frame 16 and an ultrasonic cleaning tank 9. The main cleaning tank 14 is located on the right side of the sink body 1, and the drain hole of the main cleaning tank 14 is connected to the main drain pipe of the integrated sink. The ultrasonic cleaning tank 9 is located on the left side of the sink body 1, and the ultrasonic vibrator 13 is arranged at the multi-function control console 4 on the rear side of the ultrasonic cleaning tank 9. The embedded chopping board 15 and the kitchen waste storage frame 16 are located between the ultrasonic cleaning tank 9 and the main cleaning tank 14, and the embedded chopping board 15 is located in the front position close to the operator, and the kitchen waste storage frame 16 is located on the rear side of the embedded chopping board 15. The main cleaning tank 14 is used for cleaning conventional large items, and the ultrasonic cleaning tank 9 is dedicated to cleaning fine ingredients or other items. The two are distributed on the left and right with clear division of labor; the embedded chopping board 15 is in the front, which is convenient for pre-processing of ingredients, and the kitchen waste storage box 16 is in the back, next to the chopping board, so that the garbage generated during the processing of ingredients can be discarded easily, reducing the operation steps, optimizing the kitchen workflow, and keeping the kitchen countertop clean at all times. The overall traffic line design conforms to the operating habits and improves the use and cleaning efficiency of the integrated sink.
[0027] To improve the cleaning efficiency of the ultrasonic cleaning tank 9 and reduce water consumption, the width of the ultrasonic cleaning tank 9 is 40% of the width of the main cleaning tank 14, and the depth of the ultrasonic cleaning tank 9 is 75% of the depth of the main cleaning tank 14. Optimizing the size ratio of the ultrasonic cleaning tank 9 ensures that it has sufficient space to efficiently clean common fruits and vegetables without occupying too much area of the water tank body 1, allowing the main cleaning tank 14 to still retain a large operating space, taking into account the needs of both fine cleaning and large item processing, optimizing the overall space utilization of the water tank, effectively improving the cleaning efficiency of the ultrasonic cleaning tank 9 and reducing water consumption, thereby achieving better environmental protection requirements.
[0028] To improve cleaning efficiency and cleanliness, a waterfall-style water outlet 901 is provided on the upper rear side of the ultrasonic cleaning tank 9. This outlet is connected to the tap water inlet pipe of the integrated water tank. This provides a strong water flow, which helps to initially remove dirt and pesticide residues from the surface of the food, improving cleaning efficiency and cleanliness.
[0029] To facilitate garbage disposal, the kitchen waste storage frame 16 includes a frame slot 1601 and a removable support frame 1602 disposed within the frame slot 1601. A drain hole is provided at the bottom of the frame slot 1601, connected to the main downpipe of the integrated sink. A grating filter plate 1603 is provided at the drain hole, and a garbage bag can be supported on the support frame 1602. The combination of the frame slot 1601 and the removable support frame 1602 facilitates garbage disposal, and the support frame 1602 provides a stable placement of garbage bags to prevent them from slipping. The drain hole at the bottom connects to the main downpipe, allowing for the timely removal of garbage leachate, keeping the storage frame dry and clean. The grating filter plate 1603 prevents large pieces of garbage from clogging the pipe, ensuring smooth drainage and maintaining the normal operation of the entire sink drainage system, making the disposal of kitchen waste more convenient and hygienic.
[0030] To facilitate access to detergent, a detergent squeeze pump 17 is located on the multifunctional console 4 at the rear of the main wash tank 14. A detergent container is located within the cabinet 2 and is connected to the squeeze pump via a detergent pipe. This squeeze-type detergent outlet conforms to traditional main wash tank detergent usage and provides convenient access to detergent.
[0031] To monitor the water level in water tank 7, a water level detection device is provided, connected to the control panel. This device monitors the water level in real time and sends feedback to the multi-function console 4. The user can intuitively monitor the water level in water tank 7 via the LCD screen 10 of the multi-function console 4, allowing them to plan their water use in advance, such as replenishing water promptly or arranging dishwashing tasks appropriately. This helps prevent inconvenience caused by water shortages and ensures stable operation of all water-using components of the sink.
[0032] In this example, the LCD screen 10 is arranged on the countertop of the multi-function control console 4 on the rear side of the kitchen waste storage frame 16, the faucet 3 is arranged on the countertop of the multi-function control console 4 on the rear side of the main cleaning tank 14, the button 11 and the button indicator light 12 are arranged on the right side of the LCD screen 10, located between the LCD screen 10 and the faucet 3, the button indicator light 12 is located on the countertop of the multi-function control console 4, the button 11 is located on the front side of the multi-function control console 4, and the button 11 and the button indicator light 12 correspond one-to-one. The countertop of the multi-function control console 4 as a whole is 30 mm higher than the countertop of the sink body 1 where the main cleaning tank 14 and the ultrasonic cleaning tank 9 are located.
[0033] To enhance user convenience and comfort, the multifunctional console 4 is elevated 30mm above the main tank 1, where the main cleaning tank 14 and ultrasonic cleaning tank 9 are located. This elevated height allows users to more comfortably access the various buttons and displays on the console, reducing the need to bend or lower their heads, thus enhancing ease and comfort. The elevated height effectively blocks splashes of water from reaching the console during cleaning.
[0034] In this example, the water pipe enters from the right rear part, and the turbine unit 8 is arranged at the upper right rear part of the integrated water tank.
[0035] In this embodiment, the water outlet switch of the waterfall-type water outlet 901 is a knob-type switch.
[0036] The integrated sink realizes the functions of water recycling and self-generation of electricity by integrating components such as a multi-function control console 4, a stratified dishwasher 5, an ultra-efficient nanofiltration water purifier 6, an ultrasonic cleaning tank 9, a water tank 7 and a turbine unit 8. The ultra-efficient nanofiltration water purifier 6 purifies the water and stores it in the water tank 7 for use by the stratified dishwasher 5. The turbine unit 8 uses water flow to generate electricity to power the entire system. The stratified dishwasher 5 is equipped with a double spray head 501 to achieve stratified water washing, which is suitable for washing a small amount of tableware to reduce water waste. Compared with traditional integrated sinks, it can effectively reduce the supply of mains electricity, reduce energy consumption and water waste. The multi-function control console 4 provides a convenient operation interface, allowing users to easily control various functions, thereby improving the convenience and intelligence of use.
[0037] Example 2
[0038] Unlike Example 1 above, the built-in cutting board 15 has a slightly tilted structure with a higher front and lower rear. This tilted structure, together with the raised integrated sink countertops on the left and right sides, forms a rearward-facing self-flowing trough structure, the rear end of which is integrated with the front upper end of the frame groove 1601. The slightly tilted structure, with a higher front and lower rear angle, combined with the raised countertops on the left and right sides, forms a self-flowing trough that guides juices to flow naturally toward the kitchen waste collection frame 16 at the rear, eliminating the need for additional wiping and cleaning, preventing residual juice from breeding bacteria, maintaining kitchen hygiene, and keeping the food processing area dry, reducing cleaning workload, and improving user comfort.
[0039] Example 3
[0040] Unlike Examples 1 and 2 above, the drinking water faucet and the tap water faucet are both vertically curved and can rotate horizontally. When the two faucets rotate to the same plane with their outlets adjacent, they form an arched semicircular structure. This curved structure and horizontal rotation offer flexible operation, allowing users to easily adjust the water flow direction as needed. Rotating the two faucets to the same plane, the arched semicircular structure saves countertop space and can also serve as a temporary hanger for cleaning cloths.
[0041] To meet different cleaning needs, a water mode switch is installed on the top of the direct-flow faucet. This allows users to easily switch between different water modes with one click, such as powerfully rinsing dishes or gently rinsing ingredients. Precisely controlling the water flow avoids water waste, improves water efficiency, and optimizes the kitchen water experience.
[0042] In this example, the water outlet switches of the direct drinking water faucet and the direct water outlet faucet both adopt knob switches.
[0043] The integrated water tank shown above, which can recycle water and generate its own electricity, is a specific embodiment of the present invention. It has reflected the outstanding substantial features and significant progress of the present invention. According to actual use needs and under the guidance of the present invention, equivalent modifications in shape, structure, etc. can be made to it, which are all within the scope of protection of this scheme.
Claims
1. An integrated water tank capable of recycling water and generating its own electricity, characterized by: The utility model comprises a sink body, a cabinet body arranged under the sink body and a faucet arranged above the sink body, the sink body is provided with a multifunctional control console, the cabinet body is provided with a layered dishwasher, an ultra-efficient nanofiltration water purifier, a water tank and a turbine unit, the multifunctional control console is arranged on the upper rear side of the sink body, the layered dishwasher is arranged at the lower right part of the sink body, the ultra-efficient nanofiltration water purifier is arranged at the lower left part of the sink body, the water tank is arranged below the ultra-efficient nanofiltration water purifier, the turbine unit is connected to the tap water inlet of the integrated sink, an ultrasonic cleaning tank is provided on the left side of the sink body, the water drop hole of the ultrasonic cleaning tank is connected to the water inlet of the ultra-efficient nanofiltration water purifier through a pipe, and the ultra-efficient nanofiltration water purifier is connected to the tap water inlet of the integrated sink. The water outlet of the nanofiltration water purifier is connected to the water tank, and the water tank is connected to the stratified washing machine through a water outlet pipe. The water outlet pipe is provided with a water intake pump, and the tap water inlet is connected to the stratified washing machine through an inlet pipe. The multifunctional console includes a control panel and energy storage battery arranged therein and an LCD display, buttons and button indicator lights arranged on the top of the multifunctional console. The LCD display, buttons and button indicator lights are all connected to the control panel. The external power cord of the multifunctional console and the turbine unit are electrically connected to the control panel and the energy storage battery through the power panel. The control panel is electrically connected to the water intake pump, the stratified washing machine and the ultrasonic vibrator of the ultrasonic cleaning tank.
2. The integrated water tank capable of recycling water and generating electricity according to claim 1, characterized in that: The sink body includes a main cleaning tank, an embedded cutting board, a kitchen waste storage frame and the ultrasonic cleaning tank. The main cleaning tank is located on the right side of the sink body, the ultrasonic cleaning tank is located on the left side of the sink body, the embedded cutting board and the kitchen waste storage frame are located between the ultrasonic cleaning tank and the main cleaning tank, and the embedded cutting board is located in the front position close to the operator, and the kitchen waste storage frame is located on the rear side of the embedded cutting board.
3. The integrated water tank capable of recycling water and generating electricity according to claim 2, characterized in that: The kitchen waste storage frame includes a frame groove and a support frame arranged in the frame groove and can be taken out upward. The bottom of the frame groove is provided with a water drop hole connected to the main water drop pipe of the integrated sink. The water drop hole is provided with a grid filter plate, and the support frame can support and place a garbage bag.
4. The integrated water tank capable of recycling water and generating electricity according to claim 3, characterized in that: The built-in chopping board is a small-angle inclined structure with a high front and a low back. The inclined structure and the integrated sink countertops raised on the left and right sides form a backward self-flowing trough structure, and the rear end of the self-flowing trough structure is integrated with the front upper end of the frame groove.
5. The integrated water tank capable of recycling water and generating electricity according to claim 4, characterized in that: A waterfall-type water outlet is provided on the upper rear side of the ultrasonic cleaning tank, and the waterfall-type water outlet is communicated with the tap water inlet pipe of the integrated water tank.
6. The integrated water tank capable of recycling water and generating electricity according to claim 5, characterized in that: The faucet includes a direct drinking water outlet faucet and a direct tap water outlet faucet. The direct drinking water outlet faucet and the direct tap water outlet faucet are located on the countertop of the multi-function control console on the rear side of the main cleaning tank. The direct drinking water outlet faucet and the direct tap water outlet faucet are both vertical plane arc structures and can rotate horizontally. When the direct drinking water outlet faucet and the direct tap water outlet faucet are rotated to the same plane state where the water outlets are adjacent, the direct drinking water outlet faucet and the direct tap water outlet faucet form an arched semicircular structure.
7. The integrated water tank capable of recycling water and generating electricity according to claim 6, characterized in that: The multifunctional control console table is overall higher than the main body table of the water tank where the main cleaning tank and the ultrasonic cleaning tank are located in a range of 20-35 mm.
8. The integrated water tank capable of recycling water and generating electricity according to claim 6, characterized in that: A detergent squeezing pump is provided on the multifunctional control console table between the direct drinking water faucet and the tap water direct water faucet; a detergent container is provided in the cabinet, and the detergent container is connected to the squeezing pump through a detergent pipeline.
9. The integrated water tank capable of recycling water and generating electricity according to claim 1, characterized in that: The water tank is provided with a water level detection device, and the water level detection device is connected to the control panel.
10. The integrated water tank capable of recycling water and generating electricity according to claim 2, characterized in that: The width of the ultrasonic cleaning tank is in the range of 30%-50% of the width of the main cleaning tank, and the depth of the ultrasonic cleaning tank is in the range of 60%-80% of the depth of the main cleaning tank.