Ecological environment water source treatment device for gardens

By designing auxiliary mechanisms in the garden ecological environment water source treatment device, the accurate analysis and addition of nutrients in the water source is achieved, the problem of inaccurate nutrient addition in the prior art is solved, and the use effect and efficiency of the treatment device are improved.

CN120094460APending Publication Date: 2025-06-06东营市湿地城市建设推进中心
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202510483071.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-17
Publication Date
2025-06-06

AI Technical Summary

Technical Problem

The existing garden ecological environment water source treatment device lacks the precise nutritional salt addition function, which leads to waste of nutrients, eutrophication of water bodies and plant diseases, reducing the efficiency of the treatment device.

Method used

A garden ecological environment water source treatment device including auxiliary mechanisms is designed. Through components such as liquid storage boxes, electric push rods, connecting plates and multi-porous plates arranged on the top of the treatment box, a controller and an analyzer are used to achieve accurate analysis and addition of nutrient elements in the water.

Benefits of technology

The precise addition of nutrients in the water source is achieved, which avoids eutrophication of water bodies and plant diseases, promotes plant growth, and improves the use effect and efficiency of the treatment device.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120094460A_ABST
    Figure CN120094460A_ABST
Patent Text Reader

Abstract

The invention discloses an ecological environment water source treatment device for gardens, and relates to the technical field of water treatment.The ecological environment water source treatment device comprises a placement table, an auxiliary mechanism comprises a treatment box, a box door is installed on the front surface of the treatment box, and first electric valves are installed at three liquid inlet ends of the top of the treatment box; a perforated plate is fixed between the bottoms of the two connecting blocks, a second electric valve is installed at the liquid outlet end of the bottom of one groove of the treatment box, a shading shell and a controller are installed on one side of the treatment box, and an analyzer is installed on one side of the shading shell. According to the ecological environment water source treatment device for the garden, by arranging the auxiliary mechanism, needed nutritive salt can be accurately injected into a treated water source, water nutrition and plant diseases cannot be caused, meanwhile, plant growth can be promoted, the using effect of the ecological environment water source treatment device for the garden is improved, and the water source treatment effect is improved. Meanwhile, the use efficiency of the ecological environment water source treatment device for the garden is also improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The invention relates to the technical field of water treatment, in particular to an ecological environment water source treatment device for gardens. Background Art

[0002] The ecological environment water source treatment device for gardens is a device specially used in garden scenes to purify and adjust various water sources to meet ecological needs such as garden irrigation and landscape water use.

[0003] In the existing technology, the existing ecological environment water source treatment device for gardens can remove mud, suspended matter, pathogens, etc. in the water during actual use, ensuring that plants will not cause soil compaction due to poor water quality, and can also maintain clear water bodies to ensure landscape beauty and ecological balance, but it does not have the function of accurately adding nutrients. When the water source completes the treatment operation, the staff generally adds nutrients such as nitrogen, phosphorus and potassium to the water source according to a fixed formula. When the water with nutrients is transported to areas with good fertility, the excessive nutrients not only fail to promote plant growth, but will cause eutrophication of water bodies and plant diseases. When the water with nutrients is poured on poor soil and no targeted nutrients are added to the water source, the plants will continue to grow slowly, which will affect the beauty of the garden, reduce the use effect of the ecological environment water source treatment device for gardens, and reduce the use efficiency of the ecological environment water source treatment device for gardens.

[0004] Therefore, we propose an ecological environment water source treatment device for gardening in order to solve the problems raised in the above background technology. Summary of the invention

[0005] The purpose of the present invention is to provide an ecological environment water source treatment device for gardens, so as to solve the problem that the existing ecological environment water source treatment device for gardens does not have the function of accurately adding nutrients, which will cause nutrient waste, eutrophication of water bodies and plant diseases, thereby reducing the use efficiency of the ecological environment water source treatment device for gardens.

[0006] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: A garden ecological environment water source treatment device comprises a placement table, and an auxiliary mechanism is arranged on the top of the placement table; The auxiliary mechanism comprises a processing box, a box door is installed on the front surface of the processing box, three liquid inlet ends of the top of the processing box are installed with a first electric valve, two rectangular frames and two electric push rods are installed on the top of the processing box, a liquid storage box is fixed between the tops of the two rectangular frames, a box cover is installed on the top of the liquid storage box, a connecting plate is installed between the telescopic ends of the two electric push rods, three plugs are bonded and connected to the bottom of the connecting plate, two symmetrical connecting blocks are fixed to the bottom of the connecting plate, a porous plate is fixed between the bottoms of the two connecting blocks, a second electric valve is installed at the bottom liquid outlet end of one of the grooves of the processing box, a water outlet pipe is installed at the liquid outlet end of the second electric valve, a light shielding shell and a controller are installed on one side of the processing box, and a light shielding shell is installed on one side. An analyzer is installed, and a quartz tube is installed between the two liquid outlet ends on the side of one of the grooves of the treatment box; by setting up an auxiliary mechanism, the required nutrients can be accurately injected into the treated water source, which will not cause eutrophication of the water body and plant disease, and can also promote the growth of plants, which not only improves the use effect of the garden ecological environment water source treatment device, but also improves the use efficiency of the garden ecological environment water source treatment device. When the water source in the ecological environment of the garden is processed by the treatment mechanism and enters one of the grooves of the treatment box, the transparent sheet on the box door is used to cooperate to inject an appropriate amount of water into one of the grooves of the treatment box, and then the analyzer, controller and light-shielding shell are used to cooperate to accurately analyze the nutrients contained in the water.

[0007] Preferably, the liquid outlet ends at the three grooves of the liquid storage box are respectively installed with the liquid inlet ends of the three first electric valves, and the interiors of the three circular holes on the top of the box cover are respectively connected with the interiors of the three grooves of the liquid storage box; by using the content value set in advance by the controller and the data received by the controller, it is possible to calculate the phosphate fertilizer or nitrogen fertilizer, or potassium fertilizer that needs to be injected into the water. When nitrogen fertilizer needs to be added to the treatment box, the three plugs can be moved out of the three circular holes on the top of the box cover respectively by first using the cooperation of the controller, two electric push rods and the connecting plate, and then the controller and the corresponding first electric valves can be used to allow the nitrogen fertilizer in the corresponding grooves of the liquid storage box to enter the interior of the treatment box through the opened first electric valve.

[0008] Preferably, the bottom ends of the three plugs are respectively located inside the three circular holes on the top of the box cover, the bottom ends of the two connecting blocks are movable through the top of the processing box, the porous plate is located inside one of the grooves of the processing box, and the second electric valve is located inside another groove of the processing box; by utilizing the cooperation of two electric push rods, the connecting plate and the two connecting blocks, the porous plate can be continuously moved upward, thereby achieving sufficient mixing of water and nitrogen fertilizer, and then by utilizing the cooperation of the controller, the second electric valve, the water outlet pipe and the sprinkler pipe, the water with added nutrients can be released from one of the grooves of the processing box and watered on the plants or transported back to the pool.

[0009] Preferably, the quartz tube is inside the light-shielding shell, the detection end of the analyzer moves through one side of the light-shielding shell, the water outlet end of the water outlet pipe moves through one side of the inner wall of another groove of the processing box, and the processing box is placed on the top of the placement table.

[0010] Preferably, a processing mechanism is provided on the top of the placement table, and the processing mechanism includes a filter tower and a mounting frame, the filter tower and the mounting frame are both installed on the top of the placement table, and a first valve is installed at the liquid inlet end and the liquid outlet end of the filter tower.

[0011] Preferably, a water inlet pipe is installed at the liquid inlet end of one of the first valves, a Y-type filter is installed at the liquid outlet end of the other first valve, a shunt pipe is installed at the liquid outlet end of the Y-type filter, and a second valve is installed at both liquid outlet ends of the shunt pipe.

[0012] Preferably, two water pumps are installed on the top of the mounting frame, and the liquid inlet ends of the two water pumps are respectively installed with the liquid outlet ends of the two second valves, and the liquid outlet ends of the two water pumps are both installed with connecting pipes, and the liquid outlet ends of the two connecting pipes are both installed with first regulating valves; through the processing mechanism, the water source in the ecological environment in the garden can be processed. When the water source needs to be processed, the controller, one of the water pumps, the opened second valve, the closed second valve, the diverter pipe, the Y-type filter, the two opened first valves, the filter tower, the water inlet pipe and the pumping pipe are first used to pump away the water to be processed, and then the water inlet pipe and one of the opened first valves are used to transport the water source to the filter tower for processing.

[0013] Preferably, a collecting pipe is installed between the liquid outlet ends of the two first regulating valves, a filter box is installed on the mounting frame, the liquid outlet end of the collecting pipe is installed with the liquid inlet end of the filter box, a second regulating valve is installed at the liquid outlet end of the filter box, and two symmetrical stabilizing frames are fixed on the mounting frame.

[0014] Preferably, a filter body is fixed between the top end faces of the two stabilizing frames, the liquid inlet end of the filter body is installed with the liquid outlet end of the second regulating valve, the liquid outlet end of the filter body is installed with a third valve, and the liquid outlet end of the third valve is installed with a drain pipe.

[0015] Preferably, the liquid outlet end of the drain pipe is installed with the other liquid inlet end on the top of the treatment box, a support frame is installed on the top of the placement table, the outer surface of the water inlet pipe is in contact with the top of the support frame near the liquid outlet end, and a threading hole is opened on one side of the inner wall of another groove of the treatment box; by using the cooperation of the other opened first valve, the water after preliminary treatment can be transported to the Y-type filter for treatment, and then by using the cooperation of one of the opened second valves, one of the water pumps, the corresponding connecting pipes, one of the first regulating valves and the collecting pipe, the further treated water can be transported to the filter box for treatment, and then by using the cooperation of the second regulating valve, the re-treated water can be transported to the filter body for treatment, and then by using the cooperation of the opened third valve and the drain pipe, the treated water can be transported to the treatment box for subsequent treatment.

[0016] Compared with the prior art, the present invention has the following beneficial effects: 1. The present invention, by setting an auxiliary mechanism, can accurately inject the required nutrient salts into the treated water source, thereby not causing eutrophication of the water body and disease of plants, and can also promote the growth of plants, which not only improves the use effect of the garden ecological environment water source treatment device, but also improves the use efficiency of the garden ecological environment water source treatment device. When the water source in the ecological environment of the garden is processed by the processing mechanism and enters one of the grooves of the processing box, the transparent sheet on the box door is first used to cooperate to inject an appropriate amount of water into one of the grooves of the processing box, and then the analyzer, the controller and the light-shielding shell are used to cooperate to achieve accurate analysis of the nutrient elements contained in the water.

[0017] 2. The present invention uses the content value pre-set by the controller and the data received by the controller to calculate the phosphate fertilizer or nitrogen fertilizer or potash fertilizer that needs to be injected into the water. When nitrogen fertilizer needs to be added to the treatment box, the controller, two electric push rods and the connecting plate are used to move the three plugs out of the three circular holes on the top of the box cover respectively. Then, the controller and the corresponding first electric valve are used to allow the nitrogen fertilizer in the corresponding groove in the liquid storage box to enter the interior of the treatment box through the opened first electric valve.

[0018] 3. The present invention utilizes the cooperation of two electric push rods, a connecting plate and two connecting blocks to realize the continuous upward movement of the porous plate, thereby achieving sufficient mixing of water and nitrogen fertilizer. Thereafter, the cooperation of a controller, a second electric valve, a water outlet pipe and a sprinkler pipe is utilized to release water with added nutrients from one of the grooves of the treatment box, and irrigate the plants or transport it back to the pool.

[0019] 4. The present invention can process water sources in the ecological environment of the garden through the processing mechanism. When the water source needs to be processed, the controller, one of the water pumps, the opened second valve, the closed second valve, the shunt pipe, the Y-type filter, the two opened first valves, the filter tower, the water inlet pipe and the pumping pipe are first used to extract the water that needs to be processed. Then, the water inlet pipe and one of the opened first valves are used to transport the water source to the filter tower for processing.

[0020] 5. The present invention can realize the transportation of preliminarily treated water to the Y-type filter for treatment by utilizing the cooperation of another opened first valve, and then by utilizing the cooperation of one of the opened second valves, one of the water pumps, the corresponding connecting pipes, one of the first regulating valves and the collecting pipe, the further treated water can be transported to the filter box for treatment, and then by utilizing the cooperation of the second regulating valve, the re-treated water can be transported to the filter body for treatment, and then by utilizing the cooperation of the opened third valve and the drain pipe, the treated water can be transported to the treatment box for subsequent treatment. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 A three-dimensional diagram of an ecological environment water source treatment device for gardens according to the present invention; Figure 2 It is a three-dimensional view from another angle of the ecological environment water source treatment device for gardens of the present invention; Figure 3 It is a partially cutaway stereoscopic view of a garden ecological environment water source treatment device of the present invention; Figure 4 It is a partial three-dimensional diagram of the auxiliary mechanism of a garden ecological environment water source treatment device of the present invention; Figure 5 It is a partial three-dimensional diagram of the treatment mechanism of a garden ecological environment water source treatment device of the present invention; Figure 6 It is a partial three-dimensional view from another angle of the treatment mechanism of the ecological environment water source treatment device for gardens of the present invention; Figure 7 A three-dimensional diagram of a filter tower of a garden ecological environment water source treatment device according to the present invention; Figure 8It is a three-dimensional structural schematic diagram of a treatment box and threading holes of a garden ecological environment water source treatment device of the present invention; Fig. 9 It is a partial stereoscopic view from a side angle of an auxiliary mechanism of an ecological environment water source treatment device for gardens according to the present invention.

[0022] In the figure: 1, placing table; 2, processing mechanism; 201, filter tower; 202, first valve; 203, water inlet pipe; 204, Y-type filter; 205, diverter pipe; 206, second valve; 207, mounting frame; 208, water pump; 209, connecting pipe; 210, filter box; 211, manifold; 212, first regulating valve; 213, second regulating valve; 214, stabilizing frame; 215, filter body; 216, third valve; 217, exhaust Water pipe; 3. Support frame; 4. Auxiliary mechanism; 401. Processing box; 402. Box door; 403. Controller; 404. First electric valve; 405. Rectangular frame; 406. Liquid storage box; 407. Box cover; 408. Electric push rod; 409. Connecting plate; 410. Plug; 411. Connecting block; 412. Perforated plate; 413. Second electric valve; 414. Water outlet pipe; 415. Shading shell; 416. Quartz tube; 417. Analyzer; 5. Threading hole. DETAILED DESCRIPTION

[0023] 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 implementation regulations described 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.

[0024] Example 1: Please refer to Figure 1 , Figure 3 , Figure 4 , Figure 8 and Fig. 9 As shown, the present invention provides a technical solution: an ecological environment water source treatment device for gardening, comprising a placement table 1, and an auxiliary mechanism 4 is arranged on the top of the placement table 1; The auxiliary mechanism 4 includes a processing box 401, a box door 402 is installed on the front surface of the processing box 401, three liquid inlet ends of the top of the processing box 401 are installed with a first electric valve 404, two rectangular frames 405 and two electric push rods 408 are installed on the top of the processing box 401, a liquid storage box 406 is fixed between the tops of the two rectangular frames 405, a box cover 407 is installed on the top of the liquid storage box 406, a connecting plate 409 is installed between the telescopic ends of the two electric push rods 408, and the bottom of the connecting plate 409 is bonded and connected There are three plugs 410, two symmetrical connecting blocks 411 are fixed at the bottom of the connecting plate 409, a porous plate 412 is fixed between the bottoms of the two connecting blocks 411, a second electric valve 413 is installed at the bottom liquid outlet of one of the grooves of the processing box 401, and a water outlet pipe 414 is installed at the liquid outlet of the second electric valve 413. A light shielding shell 415 and a controller 403 are installed on one side of the processing box 401, and an analyzer 417 is installed on one side of the light shielding shell 415. Two liquid outlets on the side of one of the grooves of the processing box 401 are installed. A quartz tube 416 is installed between the ends, the liquid outlet ends at the three grooves of the liquid storage box 406 are respectively installed with the liquid inlet ends of the three first electric valves 404, the three round holes on the top of the box cover 407 are respectively connected with the three grooves of the liquid storage box 406, the bottom ends of the three plugs 410 are respectively located in the three round holes on the top of the box cover 407, the bottom ends of the two connecting blocks 411 are movable through the top of the processing box 401, the porous plate 412 is located in one of the grooves of the processing box 401, and the second electric valve 413 is located in the processing box 401. Inside another groove of the box 401, the quartz tube 416 is inside the light-shielding shell 415, the detection end of the analyzer 417 moves through one side of the light-shielding shell 415, the water outlet end of the outlet pipe 414 moves through one side of the inner wall of another groove of the processing box 401, the processing box 401 is placed on the top of the placement table 1, and a processing mechanism 2 is provided on the top of the placement table 1. The liquid outlet end of the drain pipe 217 is installed with the other liquid inlet end on the top of the processing box 401, and a threading hole 5 is opened on one side of the inner wall of another groove of the processing box 401.

[0025] In this embodiment, when the treated water enters one of the grooves of the treatment box 401, at this time, the transparent sheet on the box door 402 is cooperated to ensure that an appropriate amount of water is injected into one of the grooves of the treatment box 401, and then the analyzer 417 is started by the controller 403. Then, the started analyzer 417 will accurately analyze the nutrient elements of the water inside the quartz tube 416 with the cooperation of the light shielding shell 415, and then the detected data will be directly transmitted to the controller 403, and then the controller 403 will directly compare the received data with the content value (the content value of nitrogen, phosphorus and potassium liquid fertilizer in water) set in advance by the controller 403. For comparison, when nitrogen fertilizer needs to be added to the water in one of the grooves in the treatment box 401, the controller 403 will move the three plugs 410 out of the three round holes on the top of the box cover 407 through the cooperation of the two electric push rods 408 and the connecting plate 409, and when the connecting plate 409 moves to a point where it cannot move, the two electric push rods 408 are paused at the same time, and then the corresponding first electric valve 404 is started, so that the nitrogen fertilizer in the corresponding groove in the liquid storage box 406 enters the interior of the treatment box 401 through the opened first electric valve 404. When the opening time of the first electric valve 404 is reached (the controller 403 adjusts the opening time of the first electric valve 404 according to the amount to be added and the first electric valve 404), the nitrogen fertilizer in the corresponding groove in the liquid storage box 406 enters the interior of the treatment box 401. When the liquid passes through the first electric valve 404 when the first electric valve 404 is opened, the controller 403 will close the first electric valve 404, and then use the cooperation of the two electric push rods 408, the connecting plate 409 and the two connecting blocks 411 to move the porous plate 412 up and down to achieve the goal of evenly mixing the liquid nitrogen fertilizer with the water in the treatment box 401. When the liquid nitrogen fertilizer is fully distributed in the water, the controller 403 will use the cooperation of the two electric push rods 408, the connecting plate 409 and the two connecting blocks 411 to reset the porous plate 412 and the three plugs 410 to their original positions. Similarly, when there is a lack of phosphate fertilizer in the water in one of the grooves of the treatment box 401, When phosphate fertilizer or potash fertilizer is added, the controller 403 will repeat the above-mentioned operation steps until the phosphate fertilizer or potash fertilizer is fully mixed in the water. When the water in one of the grooves of the treatment box 401 needs to be released, the second electric valve 413 is directly opened by the controller 403. When the second electric valve 413 is opened, the water in one of the grooves of the treatment box 401 will directly enter the outlet pipe 414 through the cooperation of the opened second electric valve 413, and then enter the sprinkler pipe, and then be watered on the plants or discharged back into the pool, which not only reduces the waste of nutrients, avoids water eutrophication and plant disease, but also promotes plant growth.

[0026] Embodiment 2: According to Figure 1 , Figure 2 and Figure 5-Figure 7As shown, a processing mechanism 2 is arranged on the top of the placing table 1, and the processing mechanism 2 includes a filter tower 201 and a mounting frame 207. The filter tower 201 and the mounting frame 207 are both mounted on the top of the placing table 1. The liquid inlet end and the liquid outlet end of the filter tower 201 are both mounted with a first valve 202, the liquid inlet end of one of the first valves 202 is mounted with a water inlet pipe 203, the liquid outlet end of the other first valve 202 is mounted with a Y-type filter 204, the liquid outlet end of the Y-type filter 204 is mounted with a shunt pipe 205, and the two liquid outlet ends of the shunt pipe 205 are both mounted with a second valve 206, and two water pumps 208 are mounted on the top of the mounting frame 207, the liquid inlet ends of the two water pumps 208 are respectively mounted with the liquid outlet ends of the two second valves 206, the liquid outlet ends of the two water pumps 208 are both mounted with connecting pipes 209, and the two connecting pipes 20 9 are all equipped with a first regulating valve 212 at the liquid outlet end, a collecting pipe 211 is installed between the liquid outlet ends of the two first regulating valves 212, a filter box 210 is installed on the mounting frame 207, the liquid outlet end of the collecting pipe 211 is installed with the liquid inlet end of the filter box 210, a second regulating valve 213 is installed at the liquid outlet end of the filter box 210, two symmetrical stabilizing frames 214 are fixed on the mounting frame 207, a filter body 215 is fixed between the top end faces of the two stabilizing frames 214, the liquid inlet end of the filter body 215 is installed with the liquid outlet end of the second regulating valve 213, a third valve 216 is installed at the liquid outlet end of the filter body 215, a drain pipe 217 is installed at the liquid outlet end of the third valve 216, a support frame 3 is installed on the top of the placing table 1, and the outer surface of the water inlet pipe 203 is in contact with the top of the support frame 3 near the liquid outlet end.

[0027] In this embodiment, when it is necessary to treat the ecological environment water source in the garden, the controller 403 is directly used to start one of the water pumps 208. The started water pump 208 will directly use the opened second valve 206, the closed second valve 206, the diverter pipe 205, the Y-type filter 204, the two opened first valves 202, the filter tower 201, the water inlet pipe 203 and the pumping pipe to pump away the water that needs to be treated. Then the water entering the pumping pipe will enter the interior of the water inlet pipe 203, and then enter the water of one of the opened first valves 202. When the water enters the filter tower 201, the filter tower 201 will filter out the silt and suspended matter in the water source. The water that has completed the preliminary filtration will enter the inside of the other opened first valve 202, and then enter the inside of the Y-type filter 204. When the water enters the inside of the Y-type filter 204, the small impurities remaining in the water will be filtered out. The further treated water will then enter the inside of the diversion pipe 205, and then enter the inside of one of the opened second valves 206, and then through the activated one of the A water pump 208 cooperates to enter the interior of the corresponding connecting pipe 209, and then enters the interior of one of the first regulating valves 212, and then enters the interior of the collecting pipe 211, and finally enters the interior of the filter box 210. When the water after further treatment enters the interior of the filter box 210, the filter box 210 will absorb and filter out the pathogens in the water. Then the water that has been treated again will enter the interior of the second regulating valve 213, and then enter the interior of the filter body 215. After that, the filter body 215 will treat the entering water for the last time, that is, the heavy metals in the water are adsorbed and organic pollutants are treated by the filter body 215. Then the treated water will enter the interior of the opened third valve 216, and then enter the interior of the drain pipe 217, and finally enter the interior of the treatment box 401. When one of the water pumps 208 is damaged, one of the second valves 206 and one of the first regulating valves 212 are closed, and then another second valve 206 and another first regulating valve 212 are opened, and then another water pump 208 is started by the controller 403 to continue the water treatment operation.

[0028] The effect and working principle of the whole mechanism are as follows: when it is necessary to treat the ecological environment water source in the garden, first connect the controller 403 to the external power supply, then turn on the controller 403 to set the basic usage program and the content value of nitrogen, phosphorus and potassium liquid fertilizer in the water (nutrient salt, set according to the water source), then connect the water inlet pipe 203 to the water pumping pipe (used to extract the water source to be treated), then open the two first valves 202, one of the second valves 206, one of the first regulating valves 212 (adjust the amount of liquid passing through each time), the second regulating valve 213 (adjust the amount of liquid passing through each time) and the third valve 216, and then use the controller 403 to start the two electric push rods 408 at the same time, At this time, the two started electric push rods 408 will drive the connecting plate 409 to move upward, and the upward connecting plate 409 will drive the three plugs 410 and the two connecting blocks 411 to move at the same time. The two connecting blocks 411 that move at the same time will drive the porous plate 412 to move inside one of the grooves of the processing box 401. When the connecting plate 409 moves to a point where it cannot move, the controller 403 will pause the two electric push rods 408 at the same time. At this time, nitrogen fertilizer, phosphate fertilizer and potash fertilizer are injected into the three grooves on the liquid storage box 406 in sequence through the three round holes on the box cover 407. When the three grooves on the liquid storage box 406 are filled with liquid fertilizers (nitrogen, phosphorus and potassium fertilizers), the controller 403, the two electric push rods 408 and the two connecting blocks 411 are directly used to control the liquid storage box 406. The three plugs 410 and the porous plate 412 are reset to their original positions by the cooperation of the connecting block 411 and the connecting plate 409, and then the outlet end of the outlet pipe 414 is installed together with the water inlet end of the sprinkler pipe (used to send the treated water back to the pool and water the plants, etc.). When everything is ready, the controller 403 is directly used to start one of the water pumps 208. The started water pump 208 will directly use the opened second valve 206, the closed second valve 206, the diverter pipe 205, the Y-type filter 204, the opened two first valves 202, the filter tower 201, the water inlet pipe 203 and the pumping pipe to pump away the water to be treated, and then the water entering the pumping pipe will enter the inside of the water inlet pipe 203, and then enter the opened other The water enters the interior of a first valve 202, and then enters the interior of the filter tower 201. When the water enters the interior of the filter tower 201, the filter tower 201 will filter out the silt and suspended matter in the water source. Then the water that has completed the preliminary filtration will enter the interior of another opened first valve 202, and then enter the interior of the Y-type filter 204. When the water enters the interior of the Y-type filter 204, the small impurities remaining in the water will be filtered out. Then the further treated water will enter the interior of the diversion pipe 205, and then enter the interior of one of the opened second valves 206. Then, through the cooperation of one of the started water pumps 208, it enters the interior of the corresponding connecting pipe 209, and then enters the interior of one of the first regulating valves 212.Then it enters the interior of the collecting pipe 211, and finally enters the interior of the filter box 210. When the water after further treatment enters the interior of the filter box 210, the filter box 210 will absorb and filter out the pathogens in the water. Then the water that has been treated again will enter the interior of the second regulating valve 213, and then enter the interior of the filter body 215. After that, the filter body 215 will perform the final treatment on the incoming water, that is, the heavy metals and organic pollutants in the water will be adsorbed and treated by the filter body 215. Then the treated water will enter the interior of the opened third valve 216, and then enter the interior of the drain pipe 217, and finally enter the interior of the treatment box 401. When one of the water pumps 208 is damaged, it will be closed at this time. Close one of the second valves 206 and one of the first regulating valves 212, then open the other second valve 206 and the other first regulating valve 212, and then use the controller 403 to start the other water pump 208 to continue the water treatment operation. When it is observed through the transparent sheet on the box door 402 that a proper amount of water is injected into one of the grooves of the treatment box 401 (the inside of the quartz tube 416 is also filled with water at this time), the controller 403 is used to pause the started water pump 208, and then the controller 403 is used to start the analyzer 417. The analyzer 417 that is then started will accurately analyze the nutrient elements of the water inside the quartz tube 416 with the cooperation of the light-shielding shell 415, and then the detected data will be directly transmitted to the controller 403. Controller 403, then controller 403 will directly compare the received data with the content value (the content value of nitrogen, phosphorus and potassium liquid fertilizer in water) set in advance by controller 403. When nitrogen fertilizer needs to be added to the water in one of the grooves in treatment box 401, controller 403 will once again cooperate with two electric push rods 408 and connecting plate 409 to move three plugs 410 out of the three round holes on the top of box cover 407 respectively, and when connecting plate 409 moves to a point where it cannot move, two electric push rods 408 will be paused again at the same time, and then the corresponding first electric valve 404 will be started to allow the nitrogen fertilizer in the corresponding groove in liquid storage box 406 to enter the interior of treatment box 401 through the opened first electric valve 404. When the first electric valve 404 is When the opening time is reached (calculated by the controller 403 based on the required amount to be added and the speed at which the liquid passes through when the first electric valve 404 is opened), the controller 403 will close the first electric valve 404, and then use the cooperation of the two electric push rods 408, the connecting plate 409 and the two connecting blocks 411 again to move the porous plate 412 up and down to achieve the goal of evenly mixing the liquid nitrogen fertilizer with the water in the treatment box 401. When the liquid nitrogen fertilizer is fully distributed in the water, the controller 403 will use the cooperation of the two electric push rods 408, the connecting plate 409 and the two connecting blocks 411 to reset the porous plate 412 and the three plugs 410 to their original positions. Similarly, when there is a lack of phosphate fertilizer or potash fertilizer in the water inside one of the grooves of the treatment box 401,At this time, the controller 403 will repeat the above operation steps until the phosphate fertilizer or potash fertilizer is fully mixed in the water. When the water in one of the grooves of the treatment box 401 needs to be released, the controller 403 is directly used to open the second electric valve 413. When the second electric valve 413 is opened, the water in one of the grooves of the treatment box 401 will directly enter the outlet pipe 414 through the cooperation of the opened second electric valve 413, and then enter the sprinkler pipe, and then irrigate the plants or drain back into the pool.

[0029] The two water pumps 208 , the three first electric valves 404 , the two electric push rods 408 , the two second electric valves 413 and the analyzer 417 are all electrically connected to the controller 403 .

[0030] Among them, the filter tower 201, the first valve 202, the box door 402 (consisting of a plate, an observation hole and a transparent sheet), the Y-type filter 204, the second valve 206, the water pump 208, the filter box 210, the first regulating valve 212, the second regulating valve 213, the filter body 215, the third valve 216, the controller 403 (PLC controller), the first electric valve 404, the electric push rod 408, the second electric valve 413 and the analyzer 417 are all existing technologies, and their models can be selected according to actual conditions, and no excessive explanation is given here.

[0031] Although the present invention has been described in detail with reference to the aforementioned embodiments, it is still possible for those skilled in the art to modify the technical solutions described in the aforementioned embodiments, or to make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the protection scope of the present invention.

Claims

1. A garden ecological environment water source treatment device, characterized by: It comprises a placement table (1), wherein an auxiliary mechanism (4) is arranged on the top of the placement table (1); The auxiliary mechanism (4) comprises a processing box (401), a box door (402) is installed on the front surface of the processing box (401), three liquid inlet ends of the top of the processing box (401) are each installed with a first electric valve (404), two rectangular frames (405) and two electric push rods (408) are installed on the top of the processing box (401), a liquid storage box (406) is fixed between the tops of the two rectangular frames (405), a box cover (407) is installed on the top of the liquid storage box (406), a connecting plate (409) is installed between the telescopic ends of the two electric push rods (408), and three plugs (407) are bonded and connected to the bottom of the connecting plate (409). 410), two symmetrical connecting blocks (411) are fixed at the bottom of the connecting plate (409), a porous plate (412) is fixed between the bottoms of the two connecting blocks (411), a second electric valve (413) is installed at the bottom liquid outlet end of one of the grooves of the processing box (401), a water outlet pipe (414) is installed at the liquid outlet end of the second electric valve (413), a light shielding shell (415) and a controller (403) are installed on one side of the processing box (401), an analyzer (417) is installed on one side of the light shielding shell (415), and a quartz tube (416) is installed between the two liquid outlet ends on the side of one of the grooves of the processing box (401).

2. The garden ecological environment water source treatment device according to claim 1 is characterized by: The liquid outlet ends at the three grooves of the liquid storage box (406) are respectively installed with the liquid inlet ends of the three first electric valves (404), and the interiors of the three circular holes on the top of the box cover (407) are respectively connected with the interiors of the three grooves of the liquid storage box (406).

3. The garden ecological environment water source treatment device according to claim 1 is characterized by: The bottom ends of the three plugs (410) are respectively located inside the three circular holes on the top of the box cover (407), the bottom ends of the two connecting blocks (411) are movable through the top of the processing box (401), the porous plate (412) is located inside one of the grooves of the processing box (401), and the second electric valve (413) is located inside another groove of the processing box (401).

4. The garden ecological environment water source treatment device according to claim 1 is characterized by: The quartz tube (416) is located inside the light shielding shell (415), the detection end of the analyzer (417) movably penetrates one side of the light shielding shell (415), the water outlet end of the water outlet pipe (414) movably penetrates one side of the inner wall of another groove of the processing box (401), and the processing box (401) is placed on top of the placement table (1).

5. The garden ecological environment water source treatment device according to claim 1 is characterized by: A processing mechanism (2) is arranged on the top of the placement platform (1), and the processing mechanism (2) comprises a filter tower (201) and a mounting frame (207). The filter tower (201) and the mounting frame (207) are both mounted on the top of the placement platform (1), and a first valve (202) is installed at a liquid inlet end of the filter tower (201) and a liquid outlet end of the filter tower (201).

6. The garden ecological environment water source treatment device according to claim 5 is characterized by: A water inlet pipe (203) is installed at the liquid inlet end of one of the first valves (202), a Y-type filter (204) is installed at the liquid outlet end of the other first valve (202), a diverter pipe (205) is installed at the liquid outlet end of the Y-type filter (204), and a second valve (206) is installed at both liquid outlet ends of the diverter pipe (205).

7. The garden ecological environment water source treatment device according to claim 6 is characterized by: Two water pumps (208) are installed on the top of the mounting frame (207); the liquid inlet ends of the two water pumps (208) are respectively installed with the liquid outlet ends of the two second valves (206); the liquid outlet ends of the two water pumps (208) are both installed with connecting pipes (209); and the liquid outlet ends of the two connecting pipes (209) are both installed with first regulating valves (212).

8. The garden ecological environment water source treatment device according to claim 7 is characterized by: A collecting pipe (211) is installed between the liquid outlet ends of the two first regulating valves (212); a filter box (210) is installed on the mounting frame (207); the liquid outlet end of the collecting pipe (211) is installed with the liquid inlet end of the filter box (210); a second regulating valve (213) is installed at the liquid outlet end of the filter box (210); and two symmetrical stabilizing frames (214) are fixed on the mounting frame (207).

9. The garden ecological environment water source treatment device according to claim 8, characterized in that: A filter body (215) is fixed between the top end surfaces of the two stabilizing frames (214); a liquid inlet end of the filter body (215) is mounted on a liquid outlet end of the second regulating valve (213); a third valve (216) is mounted on the liquid outlet end of the filter body (215); and a drain pipe (217) is mounted on the liquid outlet end of the third valve (216).

10. The garden ecological environment water source treatment device according to claim 9, characterized in that: The liquid outlet end of the drainage pipe (217) is mounted on the other liquid inlet end at the top of the treatment box (401); a support frame (3) is mounted on the top of the placement table (1); the outer surface of the water inlet pipe (203) is in contact with the top of the support frame (3) near the liquid outlet end; and a threading hole (5) is provided on one side of the inner wall of another groove of the treatment box (401).