Rural high-quality ecological drinking water supply purification system and process

By designing a water supply purification system including purification tanks, sediment tanks and water storage tanks, combined with a multi-level purification process of transportation, cleaning, collection and purification mechanisms, the problem of pollution in drinking water in rural areas during transportation is solved, and efficient purification and safety guarantee of drinking water is achieved.

CN119977223APending Publication Date: 2025-05-13JIANGSU NEW EPOCH ENVIRONMENTAL PROTECTION
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Patent Information

Application Number
CN202510266151.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-07
Publication Date
2025-05-13

AI Technical Summary

Technical Problem

In rural areas, drinking water is easily contaminated during storage, and existing water supply purification systems are difficult to thoroughly purify water during transportation, affecting the quality of drinking water.

Method used

A water supply purification system including a purification tank, a sediment tank and a water storage tank is designed. Through a process combining a conveying mechanism, a cleaning mechanism, a collection mechanism and a purification mechanism, a multi-level purification of drinking water is achieved.

Benefits of technology

Through the multi-level purification process of this system, the water quality can be further purified during the drinking water transportation process, ensuring the safety and quality of drinking water, and solving the problem of drinking water pollution in rural areas.

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Abstract

The invention relates to the technical field of drinking water supply and purification systems, and discloses a rural high-quality ecological drinking water supply and purification system and process. The conveying mechanism, the cleaning mechanism, the collecting mechanism and the purifying mechanism are arranged in the water storage tank, and the purifying mechanism can further purify the ecological drinking water in the conveying process through a purifying part; by arranging the purification mechanism, when water needs to be conveyed and supplied, a driven gear can be driven to rotate through rotation of a transmission gear, a connecting rod and blades on the side wall of the connecting rod can be driven to rotate through rotation of the transmission gear, and water in the water storage pond can be pumped into a conveying pipe through a conveying pipe water inlet hole through rotation of the blades; in the process, the drinking water is firstly filtered through the third filter screen, and then impurities in the drinking water are adsorbed and purified through the purification piece, so that the drinking water can be purified more cleanly when being supplied, and the quality of the drinking water is ensured.
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Description

Technical Field

[0001] The invention relates to the technical field of drinking water supply and purification systems, and in particular to a rural high-quality ecological drinking water supply and purification system and process. Background Art

[0002] The key to achieving high-quality ecological drinking water in rural areas lies in comprehensive control of water pollution, improvement of water quality, and establishment of a scientific drinking water system. The water purification system is a comprehensive treatment process used to ensure water supply safety and improve water quality. High-quality ecological drinking water in rural areas is usually stored in pools during the storage process.

[0003] In the water purification system suitable for land water plants, the public number CN1323751A includes: a water storage tank, a mixing device, a mesh plate stirring reaction device, a low-angle inclined tube (plate) countercurrent sedimentation tank with a mud discharge device, a three-layer filter tank with suction filtration, a disinfection device and a water supply network. It is characterized in that it also includes: a water storage tank set at the shore of the water source; the mixing device is a fast mixer composed of 2 to 3 or more axial flow pumps. Its advantages are that it can take into account both high turbidity and low turbidity water sources, and can provide purified water that meets sanitary standards; due to the use of suction filtration, the fixed position of the disinfector can be saved; and the production water quality can also be guaranteed.

[0004] High-quality ecological drinking water in rural areas is usually stored in pools during the storage process. Drinking water is transported when needed. The water supply purification system purifies the water during transportation. In order to purify the drinking water more thoroughly during the water supply process, a rural high-quality ecological drinking water supply purification system and process is proposed. Summary of the invention

[0005] The purpose of the present invention is to provide a rural high-quality ecological drinking water supply and purification system and process to solve the problems raised in the above background technology.

[0006] To achieve the above object, the present invention provides the following technical solutions: A rural high-quality ecological drinking water supply and purification system and process, comprising: A purification tank, a sedimentation tank and a water storage tank, wherein the sedimentation tank is installed between the purification tank and the water storage tank, and the purification tank is used to store ecological drinking water with a water purifier; A conveying mechanism, wherein the conveying mechanism is installed inside the sedimentation tank, and the purification tank, the sedimentation tank and the water storage tank are connected through the conveying mechanism; A cleaning mechanism, which is installed inside the purification tank and cleans impurities floating on the surface of the ecological drinking water inside the purification tank through a collection box; A collecting mechanism, wherein the collecting mechanism is arranged inside the sedimentation tank, and the collecting mechanism collects impurities at the bottom of the sedimentation tank inside the installation cylinder through a conveying rod; A purification mechanism is arranged inside the water storage tank, and the purification mechanism can further purify the ecological drinking water during the transportation process through a purification component.

[0007] Optionally, the purification mechanism includes a mounting rod, a transmission gear, a delivery pipe, a driven gear, a connecting rod, blades and a third filter screen, the mounting rod is rotatably connected to one end of the water tank, the transmission gear is fixedly mounted on the side wall of the mounting rod, the transmission gear is located on the surface of one end of the water tank, the connecting rod is rotatably connected to the inside of the water tank, the driven gear is fixedly mounted on one end of the connecting rod, the driven gear is located on the surface of one end of the water tank, the transmission gear is meshed with the driven gear, and the mounting rod is transmission-connected to the connecting rod through the transmission gear and the driven gear , the blades are fixedly mounted on the side walls of the connecting rod, a plurality of the blades are provided, and a plurality of the blades are grouped as four and evenly distributed on the side walls of the connecting rod, the purifier is fixedly mounted on the side walls of the connecting rod, and the purifier is located between two adjacent groups of the blades, the delivery pipe is fixedly mounted on the inner wall of the water storage tank, the connecting rod, the blades and the purifier are all located inside the delivery pipe, a water inlet hole is opened on the top of the delivery pipe, the delivery pipe is connected to the water storage tank through the water inlet hole, the water inlet hole is a rectangular hole, and the third filter is fixedly mounted on the inner wall of the water inlet hole.

[0008] Optionally, the purification element is cylindrical, and the specific material of the purification element is activated carbon.

[0009] Optionally, a mounting cover is fixedly mounted on one end of the water tank, and the transmission gear and the driven gear are both located inside the mounting cover.

[0010] Optionally, a third servo motor is fixedly mounted on one side of the mounting cover, and the mounting rod is fixedly mounted on an output end of the third servo motor.

[0011] Optionally, the cleaning mechanism includes a movable frame, a first servo motor, a rotating shaft, a gear part, a first filter, a rotating frame and a connecting rope, the first servo motor is fixedly mounted on one end of the movable frame, the rotating shaft is rotatably connected to the inside of the movable frame, one end of the rotating shaft is connected to the output end of the first servo motor, the gear part is fixedly mounted on the side wall of the rotating shaft, the top of the purification pool is provided with a plurality of tooth grooves that fit with the gear part, the rotating frame is rotatably connected to the inside of the movable frame, the rotating frame is located on the side wall of the rotating shaft, the connecting rope is located on the inner side of the rotating frame, one end of the connecting rope is connected to the collecting box, one end of the collecting box is provided with a first collecting port and a second collecting port, the other end of the collecting box is equipped with a first filter, the inner wall of the collecting box is fixedly provided with a protrusion, and the protrusion is located on one side of the first filter.

[0012] Optionally, the side wall of the rotating shaft is provided with an installation groove, and a clamping piece is movably connected to the inside of the installation groove through a second torsion spring. The inner wall of the rotating frame is provided with a plurality of clamping grooves that match with the clamping piece, and the side wall of the rotating frame is provided with a plurality of clamping grooves. A movable cylinder is installed on the side wall of the rotating frame, and a first torsion spring is fixedly installed on the inner wall of the movable cylinder. A clamping block that matches with the clamping groove is fixedly installed on one end of the first torsion spring, and the connecting rope is wound on the side wall of the movable cylinder.

[0013] Optionally, a partition is fixedly installed on the inner wall of the sedimentation tank, a three-way pipe is fixedly installed inside the partition, the two sides of the partition are connected by the three-way pipe, a plurality of baffles are fixedly installed on the inner wall of the sedimentation tank, the collecting mechanism includes a second servo motor, a mounting cylinder and a second filter, the mounting cylinder is fixedly installed inside the sedimentation tank by a screw, the second servo motor is fixedly installed on the top of the mounting cylinder, the conveying rod is fixedly installed on the output end of the second servo motor, the conveying rod is rotatably connected inside the mounting cylinder, a water inlet is opened on the side wall of the mounting cylinder near the bottom end, a plurality of water outlets are opened on the side wall of the mounting cylinder located at the top of the water inlet, the second filter is fixedly installed on the inner wall of the water outlet, and a groove is opened at the bottom of the sedimentation tank.

[0014] Optionally, the conveying mechanism includes a water inlet pipe, a first water pump, a drain pipe and a second water pump, the first water pump is fixedly installed inside the water inlet pipe, the second water pump is fixedly installed inside the drain pipe, the water inlet pipe is fixedly installed at one end of the sedimentation tank, one end of the water inlet pipe is connected to the sedimentation tank, the other end of the water inlet pipe is located inside the purification tank, a plurality of through holes are provided at the bottom end of the side wall at the other end of the water inlet pipe, one end of the drain pipe is fixedly installed inside the sedimentation tank, one end of the drain pipe is connected to the sedimentation tank, the other end of the drain pipe is connected to the water storage tank, a mounting hole matching the drain pipe is provided on one side of the water storage tank, and the other end of the drain pipe is fixedly installed inside the mounting hole.

[0015] A rural high-quality ecological drinking water supply and purification process, specifically comprising the following steps: S1: The drinking water cleaned of impurities in the purification tank can be pumped into the water inlet pipe through the through hole on the side wall of the water inlet pipe by the first water pump, and then transported to the sedimentation tank by the water inlet pipe; S2: The interior of the sedimentation tank can be divided into two parts by a partition, and the two parts can be connected by a three-way pipe. The floating objects on the surface of the drinking water in the sedimentation tank can be blocked by a baffle, so as to prevent the floating objects from flowing to the other end of the partition through the three-way pipe, so that the drinking water at the other end of the partition is cleaner. The clean drinking water in the sedimentation tank can be pumped into the water storage tank through the drainage pipe by a second water pump; S3: When water needs to be delivered, the driven gear can be driven to rotate by the rotation of the transmission gear, and the connecting rod and the blades on the side wall of the connecting rod can be driven to rotate by the rotation of the transmission gear. The water inside the water storage tank can be pumped into the delivery pipe through the water inlet hole of the delivery pipe through the rotation of the blades. In this process, the drinking water is first filtered through the third filter screen, and then the impurities in the drinking water are adsorbed and purified by the purification component, so that the drinking water can be purified more cleanly when it is delivered, thereby ensuring the quality of the drinking water.

[0016] The present invention has at least the following beneficial effects: (1) This scheme sets up a purification mechanism. When water needs to be delivered, the driven gear can be driven to rotate by the rotation of the transmission gear. The rotation of the transmission gear can drive the connecting rod and the blades on the side wall of the connecting rod to rotate. The water inside the water storage tank can be pumped into the delivery pipe through the water inlet hole of the delivery pipe through the rotation of the blades. In this process, the drinking water is first filtered through the third filter screen, and then the impurities in the drinking water are adsorbed and purified by the purification component, so that the drinking water can be purified more cleanly when it is delivered, ensuring the quality of the drinking water; (2) This solution sets a cleaning mechanism. By setting a first servo motor, the rotating shaft can be driven to rotate. When the rotating shaft rotates, the gear part can be driven to rotate. The movable frame can be moved on the top of the purification tank by the rotation of the gear part and the meshing of the tooth groove. During the movement of the movable frame, the collection box connected by the connecting rope will be moved together. During the movement of the collection box, floating objects on the water surface inside the purification tank will enter the collection box through the first collection port and the second collection port. Thereafter, the floating objects will be blocked by the first filter screen and remain inside the collection box, so that the surface of the drinking water inside the purification tank can be cleaned; (3) This solution sets a collection mechanism and a second servo motor to drive the conveying rod to rotate, so that the impurities precipitated at the bottom of the sedimentation tank and drinking water can be pumped into the installation cylinder through the water inlet. When the drinking water is transported to the water outlet located at the top of the water surface, the drinking water will be discharged to the outside of the installation cylinder through the second filter screen inside the water outlet and return to the sedimentation tank again. The precipitated impurities will be left inside the installation cylinder, so that the precipitated impurities can be collected by the installation cylinder. The installation cylinder can be taken out by disassembling the installation cylinder to deal with the internal impurities. (4) This solution provides a clamping member so that the rotating shaft does not engage with the clamping groove when it rotates in the forward direction. When the rotating shaft reverses, the clamping member engages with the clamping groove, thereby driving the rotating frame to rotate together, so that the connecting rope can be reeled in and the collection box can be pulled up at the same time to prevent the collected material inside the collection box from flowing back, so that the cleaning mechanism can be cleaned repeatedly. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for describing the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without creative work. Figure 1 It is a schematic diagram of the structure of the present invention; Figure 2 It is a schematic diagram of the structure of the movable frame of the present invention; Figure 3 This is a schematic diagram of the structure of the collection box of the present invention; Figure 4 This is a schematic diagram of the cross-sectional structure of the collection box of the present invention; Figure 5 It is a schematic cross-sectional structure diagram of the rotating shaft and the rotating frame of the present invention; Figure 6 It is a schematic diagram of the structure of the movable cylinder of the present invention; Figure 7 This is a schematic diagram of the bottom structure of the sedimentation tank of the present invention; Figure 8 It is a schematic diagram of the internal structure of the sedimentation tank of the present invention; Fig. 9 It is a schematic diagram of the structure of the conveying rod of the present invention; Fig.10 This is a schematic diagram of the internal structure of the water storage tank of the present invention; Fig.11 This is a schematic diagram of the connecting rod structure of the present invention; Fig.12 This is a schematic diagram of the internal structure of the mounting cover of the present invention.

[0018] In the accompanying drawings, the components represented by the reference numerals are listed as follows: 1. Purification tank; 101. Tooth groove; 102. Movable frame; 103. First servo motor; 1031. Rotating shaft; 1032. Gear member; 1033. Mounting groove; 1034. Snap-fit ​​member; 104. Collection box; 1041. First collection port; 1042. Second collection port; 1043. Bump; 1044. First filter screen; 105. Rotating frame; 1051. Slot; 1052. Snap-fit ​​groove; 1053. Movable cylinder; 1054. First torsion spring; 1055. Block; 106. Connecting rope; 2. Sedimentation tank; 201. Second servo motor; 2011. Mounting cylinder; 2012. Conveying rod; 20 13. Water inlet; 2014. Water outlet; 20141. Second filter; 202. Water inlet pipe; 2021. Through hole; 2022. First water pump; 203. Drain pipe; 2031. Second water pump; 204. Partition; 205. Tee; 206. Baffle; 207. Groove; 3. Water reservoir; 301. Third servo motor; 3011. Mounting rod; 3012. Transmission gear; 302. Mounting cover; 303. Delivery pipe; 3031. Water inlet hole; 3032. Third filter; 304. Driven gear; 3041. Connecting rod; 3042. Blade; 3043. Purification element; 305. Mounting hole. DETAILED DESCRIPTION

[0019] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0020] See also Figure 1-Figure 12 The present invention provides a rural high-quality ecological drinking water supply and purification system and process, including: Purification tank 1, sedimentation tank 2 and water storage tank 3, the sedimentation tank 2 is installed between the purification tank 1 and the water storage tank 3, and the purification tank 1 is used to store ecological drinking water with water purifier added; The conveying mechanism is installed inside the sedimentation tank 2, and the purification tank 1, the sedimentation tank 2 and the water storage tank 3 are connected through the conveying mechanism; A cleaning mechanism is installed inside the purification tank 1, and cleans impurities floating on the surface of the ecological drinking water inside the purification tank 1 through the collection box 104; The collecting mechanism is arranged inside the sedimentation tank 2, and the collecting mechanism collects the impurities at the bottom of the sedimentation tank 2 into the installation cylinder 211 through the conveying rod 2012; The purification mechanism is arranged inside the water storage tank 3. The purification mechanism can further purify the ecological drinking water during the transportation process through the purification component 3043.

[0021] In some embodiments, see Fig.10 , Fig.11 , Fig.12The purification mechanism includes a mounting rod 3011, a transmission gear 3012, a delivery pipe 303, a driven gear 304, a connecting rod 3041, a blade 3042 and a third filter screen 3032. The mounting rod 3011 is rotatably connected to one end of the water storage tank 3, the transmission gear 3012 is fixedly mounted on the side wall of the mounting rod 3011, the transmission gear 3012 is located on the surface of one end of the water storage tank 3, the connecting rod 3041 is rotatably connected to the inside of the water storage tank 3, the driven gear 304 is fixedly mounted on one end of the connecting rod 3041, and the driven gear 304 is located in the water storage tank On one end surface of the pool 3, the transmission gear 3012 is meshed with the driven gear 304, the mounting rod 3011 is connected to the connecting rod 3041 through the transmission gear 3012 and the driven gear 304, the blade 3042 is fixedly mounted on the side wall of the connecting rod 3041, and the blade 3042 is provided with a plurality of blades 3042, and the plurality of blades 3042 are evenly distributed on the side wall of the connecting rod 3041 in a group of four, and the purification member 3043 is fixedly mounted on the side wall of the connecting rod 3041, and the purification member 3043 is located between two adjacent groups of blades 3042, and the delivery pipe 30 3 is fixedly installed on the inner wall of the water storage tank 3, the connecting rod 3041, the blades 3042 and the purification member 3043 are all located inside the delivery pipe 303, a water inlet hole 3031 is opened on the top of the delivery pipe 303, the delivery pipe 303 is connected with the water storage tank 3 through the water inlet hole 3031, the water inlet hole 3031 is a rectangular hole, the third filter 3032 is fixedly installed on the inner wall of the water inlet hole 3031, the purification member 3043 is cylindrical, and the specific material of the purification member 3043 is activated carbon. When water needs to be delivered, the transmission gear 3012 can be rotated to drive the The movable gear 304 rotates, and the rotation of the transmission gear 3012 can drive the connecting rod 3041 and the blades 3042 on the side wall of the connecting rod 3041 to rotate. The rotation of the blades 3042 can pump the water inside the water storage tank 3 into the inside of the delivery pipe 303 through the water inlet hole 3031 of the delivery pipe 303. In this process, the drinking water is first filtered through the third filter screen 3032, and then the impurities in the drinking water are adsorbed and purified by the purification component 3043, so that the drinking water can be purified more cleanly when it is supplied, thereby ensuring the quality of the drinking water.

[0022] In some embodiments, see Fig.10 , Fig.12 A mounting cover 302 is fixedly installed at one end of the water tank 3, a transmission gear 3012 and a driven gear 304 are both located inside the mounting cover 302, a third servo motor 301 is fixedly installed on one side of the mounting cover 302, and a mounting rod 3011 is fixedly installed at the output end of the third servo motor 301. The third servo motor 301 can be used to control the rotation of the mounting rod 3011.

[0023] In some embodiments, see Figure 2 , Figure 3 , Figure 4 , Figure 5The cleaning mechanism includes a movable frame 102, a first servo motor 103, a rotating shaft 1031, a gear 1032, a first filter 1044, a rotating frame 105 and a connecting rope 106. The first servo motor 103 is fixedly mounted on one end of the movable frame 102, the rotating shaft 1031 is rotatably connected to the inside of the movable frame 102, one end of the rotating shaft 1031 is connected to the output end of the first servo motor 103, and the gear 1032 is fixedly mounted on the side wall of the rotating shaft 1031. The top of the chemical tank 1 is provided with a plurality of tooth grooves 101 that fit with the gear member 1032. The rotating frame 105 is rotatably connected to the inside of the movable frame 102. The rotating frame 105 is located on the side wall of the rotating shaft 1031. The connecting rope 106 is located on the inner side of the rotating frame 105. One end of the connecting rope 106 is connected to the collecting box 104. The collecting box 104 has a first collecting port 1041 and a second collecting port 1042 at one end. The other end of the collecting box 104 is equipped with a first filter screen 1044. A protrusion 1043 is fixedly installed on the inner wall of the collecting box 104, and the protrusion 1043 is located on one side of the first filter 1044. By setting the first servo motor 103, the rotating shaft 1031 can be driven to rotate. When the rotating shaft 1031 rotates, the gear part 1032 can be driven to rotate. The movable frame 102 can be moved on the top of the purification pool 1 by the rotation of the gear part 1032 and the engagement with the tooth groove 101. During the movement of the movable frame 102, the collecting box 104 connected by the connecting rope 106 will be moved together. During the movement of the collecting box 104, floating objects on the water surface inside the purification pool 1 will enter the collecting box 104 through the first collecting port 1041 and the second collecting port 1042. Thereafter, the floating objects will be blocked by the first filter 1044 and remain in the collecting box 104, so that the surface of the drinking water inside the purification pool 1 can be cleaned, and the movable frame 102 can be driven to move in the opposite direction by reversing the rotating shaft 1031, so that it can be cleaned repeatedly.

[0024] In some embodiments, see Figure 5 , Figure 6The side wall of the rotating shaft 1031 is provided with a mounting groove 1033, and a clamping piece 1034 is movably connected inside the mounting groove 1033 through a second torsion spring. The inner wall of the rotating frame 105 is provided with a plurality of clamping grooves 1052 that match the clamping piece 1034. The side wall of the rotating frame 105 is provided with a plurality of clamping grooves 1051. A movable cylinder 1053 is installed on the side wall of the rotating frame 105. A first torsion spring 1054 is fixedly installed on the inner wall of the movable cylinder 1053. A clamping block 1055 that matches the clamping groove 1051 is fixedly installed on one end of the first torsion spring 1054. The connecting rope 106 is wound on the side wall of the movable cylinder 1053. By setting the clamping piece 1034, the rotating shaft 1031 is not engaged with the clamping groove 1052 when it rotates forward. When rotating, the clamping piece 1034 is engaged with the clamping groove 1052, thereby driving the rotating frame 105 to rotate together, so that the connecting rope 106 can be reeled in, and the collecting box 104 can be pulled up at the same time to prevent the collected material inside the collecting box 104 from flowing back. The movable cylinder 1053 is installed by setting the first torsion spring 1054, so that the movable cylinder 1053 can reel in the connecting rope 106 by itself. When the rotating shaft 1031 rotates in the opposite direction, the movable cylinder 1053 can reel in the connecting rope 106. When the connecting rope 106 is reeled in, if the rotating shaft 1031 is still rotating, the clamping block 1055 at one end of the first torsion spring 1054 will be pulled to the next clamping groove 1051 due to the reaction force, thereby preventing the connecting rope 106 from being broken due to excessive tension.

[0025] In some embodiments, see Figure 8 , Fig. 9A partition 204 is fixedly installed on the inner wall of the sedimentation tank 2, a three-way pipe 205 is fixedly installed inside the partition 204, and the two sides of the partition 204 are connected through the three-way pipe 205. A plurality of baffles 206 are fixedly installed on the inner wall of the sedimentation tank 2. The collecting mechanism includes a second servo motor 201, a mounting cylinder 2011 and a second filter screen 20141. The mounting cylinder 2011 is fixedly installed inside the sedimentation tank 2 by a screw, and the second servo motor 201 is fixedly installed on the top of the mounting cylinder 2011. The conveying rod 2012 is fixedly mounted on the output end of the second servo motor 201, the delivery rod 2012 is rotatably connected to the inside of the installation cylinder 2011, a water inlet 2013 is provided near the bottom of the side wall of the installation cylinder 2011, a plurality of water outlets 2014 are provided on the side wall of the installation cylinder 2011, and the second filter screen 20141 is fixedly mounted on the inner wall of the water outlet 2014, a groove 207 is provided at the bottom of the sedimentation tank 2, and the partition 204 can be used to separate the water in the sedimentation tank 2 The partition 204 is divided into two parts, and the two parts can be connected by a three-way pipe 205. The baffle 206 can be set to block the floating objects on the surface of the drinking water inside the sedimentation tank 2, so as to prevent the floating objects from flowing to the other end of the partition 204 through the three-way pipe 205, so that the drinking water at the other end of the partition 204 is cleaner. The second servo motor 201 can drive the conveying rod 2012 to rotate, so that the impurities precipitated at the bottom of the sedimentation tank 2 and the drinking water can be drawn into the installation cylinder 2011 through the water inlet 2013. When the drinking water is transported to the water outlet 2014 located at the top of the water surface, the drinking water will be discharged to the outside of the installation cylinder 2011 through the second filter screen 20141 inside the water outlet 2014, and then return to the sedimentation tank 2 again. The precipitated impurities will be left in the installation cylinder 2011, so that the precipitated impurities can be collected by the installation cylinder 2011, and the installation cylinder 2011 can be taken out to treat the internal impurities by disassembling the installation cylinder 2011.

[0026] Furthermore, the conveying mechanism includes a water inlet pipe 202, a first water pump 2022, a drain pipe 203 and a second water pump 2031. The first water pump 2022 is fixedly installed inside the water inlet pipe 202, the second water pump 2031 is fixedly installed inside the drain pipe 203, the water inlet pipe 202 is fixedly installed at one end of the sedimentation tank 2, one end of the water inlet pipe 202 is connected to the sedimentation tank 2, the other end of the water inlet pipe 202 is located inside the purification tank 1, and a plurality of through holes 2021 are provided at the bottom end of the side wall of the other end of the water inlet pipe 202. One end of the drain pipe 203 is fixedly installed inside the sedimentation tank 2, and one end of the drain pipe 203 is connected to the sedimentation tank 2. The other end of the drain pipe 203 is connected to the water tank 3. A mounting hole 305 matching the drain pipe 203 is opened on one side of the water tank 3. The other end of the drain pipe 203 is fixedly installed inside the mounting hole 305. The drinking water stored in the purification tank 1 can be pumped into the water inlet pipe 202 through the through hole 2021 on the side wall of the water inlet pipe 202 by the first water pump 2022, and then transported to the sedimentation tank 2 by the water inlet pipe 202. The water in the sedimentation tank 2 can be pumped to the water tank 3 through the drain pipe 203 by the second water pump 2031, and the drinking water is transported to the purification tank 1, the sedimentation tank 2 and the water tank 3.

[0027] The working process and principle of the present invention are as follows: the first servo motor 103 can drive the rotating shaft 1031 to rotate, and when the rotating shaft 1031 rotates, the gear member 1032 can be driven to rotate, and the gear member 1032 rotates and meshes with the tooth groove 101 to make the movable frame 102 move on the top of the purification pool 1, and the collection box 104 connected by the connecting rope 106 will be moved together during the movement of the movable frame 102. During the movement of the collection box 104, the floating objects on the water surface inside the purification pool 1 will enter the collection box 104 through the first collection port 1041 and the second collection port 1042, and then the floating objects will be blocked by the first filter screen 1044 and remain in the collection box 104, thereby The surface of the drinking water inside the purification tank 1 can be cleaned, and the movable frame 102 can be driven to move in the opposite direction by reversing the rotating shaft 1031, so that it can be cleaned repeatedly. The drinking water stored in the purification tank 1 can be pumped into the water inlet pipe 202 through the through hole 2021 on the side wall of the water inlet pipe 202 by the first water pump 2022, and then transported to the sedimentation tank 2 by the water inlet pipe 202. The interior of the sedimentation tank 2 can be divided into two parts by the partition 204, and the two parts can be connected by the three-way pipe 205. The floating objects on the surface of the drinking water inside the sedimentation tank 2 can be blocked by the baffle 206, so as to prevent the floating objects from flowing to the other end of the partition 204 through the three-way pipe 205, so that the partition The drinking water at the other end of plate 204 is cleaner. By setting a second servo motor 201, the conveying rod 2012 can be driven to rotate, so that the impurities precipitated at the bottom of the sedimentation tank 2 and the drinking water can be pumped into the installation cylinder 2011 through the water inlet 2013. When the drinking water is transported to the water outlet 2014 located at the top of the water surface, the drinking water will be discharged to the outside of the installation cylinder 2011 through the second filter screen 20141 inside the water outlet 2014, and then return to the sedimentation tank 2 again. The precipitated impurities will be left inside the installation cylinder 2011, so that the precipitated impurities can be collected by the installation cylinder 2011 to avoid mixing impurities in the drinking water during transportation to ensure the quality of the drinking water. 1 can pump the water in the sedimentation tank 2 into the water storage tank 3 through the drain pipe 203. When water is needed, the driven gear 304 can be driven to rotate by the rotation of the transmission gear 3012. The connecting rod 3041 and the blades 3042 on the side wall of the connecting rod 3041 can be driven to rotate by the rotation of the transmission gear 3012. The water in the water storage tank 3 can be pumped into the delivery pipe 303 through the water inlet hole 3031 of the delivery pipe 303 by the rotation of the blades 3042. In this process, the drinking water is first filtered through the third filter screen 3032, and then the impurities in the drinking water are adsorbed and purified by the purification component 3043, so that the drinking water can be purified more cleanly when it is supplied, and the quality of the drinking water is guaranteed.

[0028] It should be noted that, in this article, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device.

[0029] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A rural high-quality ecological drinking water supply and purification system, characterized in that: include: A purification tank (1), a sedimentation tank (2) and a water storage tank (3), wherein the sedimentation tank (2) is installed between the purification tank (1) and the water storage tank (3), and the purification tank (1) is used to store ecological drinking water with a water purifier added thereto; A conveying mechanism, the conveying mechanism being installed inside the sedimentation tank (2), the purification tank (1), the sedimentation tank (2) and the water storage tank (3) being connected via the conveying mechanism; A cleaning mechanism, the cleaning mechanism being installed inside the purification tank (1) and cleaning impurities floating on the surface of the ecological drinking water inside the purification tank (1) through a collection box (104); A collecting mechanism, the collecting mechanism being arranged inside the sedimentation tank (2), and the collecting mechanism collecting impurities at the bottom of the sedimentation tank (2) inside the installation cylinder (211) via a conveying rod (2012); A purification mechanism, wherein the purification mechanism is arranged inside the water storage tank (3), and the purification mechanism can further purify the ecological drinking water during the transportation process through the purification component (3043).

2. A rural high-quality ecological drinking water supply and purification system according to claim 1, characterized in that: The purification mechanism comprises a mounting rod (3011), a transmission gear (3012), a delivery pipe (303), a driven gear (304), a connecting rod (3041), blades (3042) and a third filter screen (3032); the mounting rod (3011) is rotatably connected to one end of the water storage tank (3); the transmission gear (3012) is fixedly mounted on a side wall of the mounting rod (3011); the transmission gear (3012) is located on a surface of one end of the water storage tank (3); The connecting rod (3041) is rotatably connected to the inside of the water tank (3); the driven gear (304) is fixedly mounted on one end of the connecting rod (3041); the driven gear (304) is located on the surface of one end of the water tank (3); the transmission gear (3012) is meshed with the driven gear (304); and the mounting rod (3011) is transmission-connected to the connecting rod (3041) via the transmission gear (3012) and the driven gear (304). The blade (3042) is fixedly mounted on the side wall of the connecting rod (3041), a plurality of blades (3042) are provided, and the plurality of blades (3042) are evenly distributed on the side wall of the connecting rod (3041) in a group of four. The purification member (3043) is fixedly mounted on the side wall of the connecting rod (3041), and the purification member (3043) is located between two adjacent groups of blades (3042). The delivery pipe (303) is fixedly mounted on the water storage tank. (3) inner wall, the connecting rod (3041), the blades (3042) and the purification element (3043) are all located inside the delivery pipe (303), a water inlet hole (3031) is opened at the top of the delivery pipe (303), the delivery pipe (303) is connected to the water storage tank (3) through the water inlet hole (3031), the water inlet hole (3031) is a rectangular hole, and the third filter (3032) is fixedly installed on the inner wall of the water inlet hole (3031).

3. A rural high-quality ecological drinking water supply and purification system according to claim 2, characterized in that: The purification element (3043) is cylindrical, and the specific material of the purification element (3043) is activated carbon.

4. A rural high-quality ecological drinking water supply and purification system according to claim 2, characterized in that: A mounting cover (302) is fixedly mounted on one end of the water storage tank (3), and the transmission gear (3012) and the driven gear (304) are both located inside the mounting cover (302).

5. A rural high-quality ecological drinking water supply and purification system according to claim 4, characterized in that: A third servo motor (301) is fixedly mounted on one side of the mounting cover (302), and the mounting rod (3011) is fixedly mounted on the output end of the third servo motor (301).

6. A rural high-quality ecological drinking water supply and purification system according to claim 1, characterized in that: The cleaning mechanism comprises a movable frame (102), a first servo motor (103), a rotating shaft (1031), a gear member (1032), a first filter screen (1044), a rotating frame (105) and a connecting rope (106); the first servo motor (103) is fixedly mounted on one end of the movable frame (102); the rotating shaft (1031) is rotatably connected to the inside of the movable frame (102); one end of the rotating shaft (1031) is connected to the output end of the first servo motor (103); the gear member (1032) is fixedly mounted on a side wall of the rotating shaft (1031); and a plurality of gear members (1032) are provided on the top of the purification pool (1) to fit with the gear member (1032). The tooth groove (101) is provided in the rotating frame (105), the rotating frame (105) is rotatably connected to the inside of the movable frame (102), the rotating frame (105) is located on the side wall of the rotating shaft (1031), the connecting rope (106) is located on the inner side of the rotating frame (105), one end of the connecting rope (106) is connected to the collecting box (104), one end of the collecting box (104) is provided with a first collecting port (1041) and a second collecting port (1042), the other end of the collecting box (104) is installed with a first filter screen (1044), and a protrusion (1043) is fixedly installed on the inner wall of the collecting box (104), and the protrusion (1043) is located on one side of the first filter screen (1044).

7. A rural high-quality ecological drinking water supply and purification system according to claim 6, characterized in that: The side wall of the rotating shaft (1031) is provided with a mounting groove (1033), and a clamping piece (1034) is movably connected inside the mounting groove (1033) via a second torsion spring. The inner wall of the rotating frame (105) is provided with a plurality of clamping grooves (1052) that match the clamping piece (1034). The side wall of the rotating frame (105) is provided with a plurality of clamping grooves (1051). A movable cylinder (1053) is installed on the side wall of the rotating frame (105), and a first torsion spring (1054) is fixedly installed on the inner wall of the movable cylinder (1053). A clamping block (1055) that matches the clamping groove (1051) is fixedly installed on one end of the first torsion spring (1054), and the connecting rope (106) is rolled up on the side wall of the movable cylinder (1053).

8. A rural high-quality ecological drinking water supply and purification system according to claim 1, characterized in that: A partition (204) is fixedly mounted on the inner wall of the sedimentation tank (2), a three-way pipe (205) is fixedly mounted inside the partition (204), two sides of the partition (204) are connected via the three-way pipe (205), a plurality of baffles (206) are fixedly mounted on the inner wall of the sedimentation tank (2), and the collection mechanism comprises a second servo motor (201), a mounting cylinder (2011) and a second filter screen (20141), the mounting cylinder (2011) is fixedly mounted inside the sedimentation tank (2) via a screw, and the second servo motor (201) is fixedly mounted on the mounting cylinder (2011). 11), the conveying rod (2012) is fixedly mounted on the output end of the second servo motor (201), the conveying rod (2012) is rotatably connected to the inside of the mounting tube (2011), a water inlet (2013) is provided on the side wall of the mounting tube (2011) near the bottom end, a plurality of water outlets (2014) are provided on the side wall of the mounting tube (2011) and are located at the top of the water inlet (2013), the second filter screen (20141) is fixedly mounted on the inner wall of the water outlet (2014), and a groove (207) is provided at the bottom of the sedimentation tank (2).

9. A rural high-quality ecological drinking water supply and purification system according to claim 1, characterized in that: The conveying mechanism comprises a water inlet pipe (202), a first water pump (2022), a drainage pipe (203) and a second water pump (2031); the first water pump (2022) is fixedly installed inside the water inlet pipe (202); the second water pump (2031) is fixedly installed inside the drainage pipe (203); the water inlet pipe (202) is fixedly installed at one end of the sedimentation tank (2); one end of the water inlet pipe (202) is connected to the sedimentation tank (2); the other end of the water inlet pipe (202) is located at the purification tank (1). Inside, a plurality of through holes (2021) are provided at the bottom end of the side wall of the other end of the water inlet pipe (202), one end of the drain pipe (203) is fixedly installed inside the sedimentation tank (2), one end of the drain pipe (203) is connected to the sedimentation tank (2), and the other end of the drain pipe (203) is connected to the water storage tank (3), one side of the water storage tank (3) is provided with a mounting hole (305) that matches the drain pipe (203), and the other end of the drain pipe (203) is fixedly installed inside the mounting hole (305).

10. A process for a rural high-quality ecological drinking water supply and purification system according to any one of claims 1 to 9, characterized in that: The specific steps include: S1: Drinking water that has been cleaned of impurities in the purification tank (1) can be pumped into the water inlet pipe (202) through the through hole (221) on the side wall of the water inlet pipe (202) by the first water pump (222), and then transported to the sedimentation tank (2) by the water inlet pipe (202); S2: The interior of the sedimentation tank (2) can be divided into two parts by a partition (204), and the two parts can be connected by a three-way pipe (205). The baffle (206) can block floating objects on the surface of drinking water in the sedimentation tank (2), thereby preventing the floating objects from flowing to the other end of the partition (204) through the three-way pipe (205), so that the drinking water at the other end of the partition (204) is cleaner. The clean drinking water in the sedimentation tank (2) can be pumped into the water storage tank (3) through the drainage pipe (203) by a second water pump (2031); S3: When water supply is required, the driven gear (304) can be driven to rotate by the rotation of the transmission gear (3012), and the connecting rod (3041) and the blades (3042) on the side walls of the connecting rod (3041) can be driven to rotate by the rotation of the transmission gear (3012). The water in the water storage tank (3) can be pumped into the delivery pipe (303) through the water inlet hole (3031) of the delivery pipe (303) by the rotation of the blades (3042). In this process, the drinking water is first filtered through the third filter screen (3032), and then the impurities in the drinking water are adsorbed and purified by the purification element (3043), so that the drinking water can be purified more cleanly when it is supplied, thereby ensuring the quality of the drinking water.

Citation Information

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