A treatment device for pure water separation

By designing a pure water separation treatment device including a water separation unit and an evaporation unit, the problem of accumulation of impurities on the inner wall of the distillation flask and the suspension of distillation work during the cleaning process is solved, and efficient multiple evaporation treatment and continuous operation of raw water are achieved.

CN119143218BActive Publication Date: 2025-06-10SHANGHAI CHONGYANG WATER TREATMENT EQUIP CO LTD
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Patent Information

Application Number
CN202411621059.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-14
Publication Date
2025-06-10
Estimated Expiration
2044-11-14

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Abstract

The present invention relates to the technical field of water treatment, and particularly relates to a treatment device for pure water separation, including: a treatment barrel, and a water inlet unit is connected to the top wall of the treatment barrel; further including a water distribution unit, a plurality of the water distribution units are provided and are circumferentially and evenly connected to the water inlet unit, the water distribution unit includes a water distribution pipe connected to the water inlet unit and having a V-shaped structure, and a partition ring is installed at the lower end of the water distribution pipe. The multiple evaporation units adopted by the present invention can be separately taken out for cleaning, so that the remaining evaporation units can continue to evaporate the raw water without stopping the evaporation equipment, ensuring the continuity of the raw water evaporation treatment and further improving the efficiency of a large amount of raw water treatment.
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Description

Technical Field

[0001] The present invention relates to the technical field of water treatment, and particularly relates to a treatment device for pure water separation. Background Art

[0002] The pure water separation treatment technology refers to the technology of removing various dissolved substances and other pollutants from water containing impurities to meet the standard of high-purity water; common pure water separation technologies include RO reverse osmosis technology, distillation technology, deionization technology, ultrafiltration technology, electrodialysis technology, nanofiltration technology, etc. Among them, the distillation technology is the most common method for pure water separation and is widely used in laboratories, medical water, electronic manufacturing and other fields.

[0003] At present, the pure water distillation separation technology basically performs distillation separation operations through multiple distillation flasks, which can speed up the distillation separation speed and the pure water extraction speed. However, after the distillation flasks are used for a long time, impurities may accumulate on the inner wall, such as mineral precipitation, organic matter residues, etc. These impurities will affect the purity of the distilled water. Therefore, it is necessary to clean the distillation flasks regularly. However, cleaning will suspend the distillation work process, and it is necessary to clean all the multiple distillation flasks in sequence before the pure water distillation work can be restarted, thereby reducing the efficiency of pure water distillation for a large amount of raw water. Summary of the Invention

[0004] Based on this, it is necessary to provide a treatment device for pure water separation, aiming to solve the problems generated during pure water separation in the prior art.

[0005] To achieve the above object, the present invention adopts the following technical solutions: A treatment device for pure water separation, comprising: a treatment barrel, and a water inlet unit is connected to the top wall of the treatment barrel.

[0006] It further includes a water distribution unit. A plurality of water distribution units are provided and are circumferentially and evenly connected to the water inlet unit. The water distribution unit includes a water distribution pipe connected to the water inlet unit and having a V-shaped structure. A partition ring is installed at the lower end of the water distribution pipe, a sealing plate is provided at the upper end of the partition ring, and a pressing component is connected to the sealing plate.

[0007] It further includes an evaporation unit. A plurality of evaporation units are provided and are respectively arranged at the lower ends of the corresponding water distribution pipes. The evaporation unit includes a heating table arranged below the corresponding water distribution pipe. A support component is connected to the lower end of the heating table. A distillation flask is placed on the upper end of the heating table. A limiting component is connected to the heating table. An air outlet component is connected to the cylindrical section of the distillation flask.

[0008] It further includes a condensation unit, which is connected to the bottom wall of the processing barrel. The condensation unit includes a water storage bucket rotatably connected to the bottom wall of the processing barrel. A ventilation pipe is installed in the water storage bucket. A plurality of air inlet components are connected to the annular barrel wall of the water storage bucket and are evenly distributed circumferentially. The air inlet components are connected to the corresponding air outlet components. A connecting rod is installed at the upper end of the water storage bucket, and the connecting rod is connected to the water inlet unit. A water outlet pipe is installed at the upper end of the water storage bucket, and a water inlet pipe is installed at the lower end of the water storage bucket.

[0009] According to an embodiment of the present invention, the pressing component includes a limiting frame installed at the lower end of the water distribution pipe. A plurality of lifting rods that are evenly distributed circumferentially and are located on the outer periphery of the lower end of the water distribution pipe penetrate through the top wall of the limiting frame in a sliding manner. A lifting ring is jointly installed at the upper ends of the plurality of lifting rods. A connecting spring is installed between the lower end of the lifting ring and the top wall of the limiting frame. A close-fitting ring is jointly installed at the lower ends of the plurality of lifting rods. An annular arc surface is provided at the lower end of the close-fitting ring. An inverted T-shaped rod is installed on the inner ring surface of the close-fitting ring, and the upper end of the vertical section of the T-shaped rod is fixedly connected to the sealing plate.

[0010] According to an embodiment of the present invention, the supporting component includes a strip-shaped plate installed on the outer ring surface of the water storage bucket. A sliding frame is slidably sleeved on the strip-shaped plate. The upper end of the sliding frame is fixedly connected to the heating table. A waist-shaped hole is opened at the lower end of the sliding frame. A blocking rod is installed at a position of the lower end of the strip-shaped plate away from the water storage bucket, and the blocking rod is slidably connected to the waist-shaped hole.

[0011] According to an embodiment of the present invention, the supporting component further includes a rectangular through hole opened in the middle of the frame wall of the sliding frame away from the water storage bucket. A cylindrical rod is arranged in the rectangular through hole, and the cylindrical rod is rotatably connected to the strip-shaped plate. A clamping plate is installed at the end of the cylindrical rod away from the strip-shaped plate.

[0012] According to an embodiment of the present invention, the limiting component includes a rotating ring rotatably connected to the annular surface of the heating table. An inverted L-shaped arc plate is installed at the upper end of the rotating ring, and an arc-shaped rod is installed at the inner end of the horizontal section of the L-shaped arc plate.

[0013] According to an embodiment of the present invention, the air outlet component includes an air outlet pipe installed on the cylindrical section of the distillation flask. A clamping sleeve is installed at one end of the outer ring surface of the air outlet pipe away from the distillation flask, and a pushing plate is installed at one end of the inner wall of the air outlet pipe away from the distillation flask.

[0014] According to an embodiment of the present invention, the air inlet component includes an air inlet pipe installed through the barrel wall of the water storage bucket. The lower end of the air inlet pipe penetrates through the ventilation pipe. One end of the air inlet pipe away from the water storage bucket is inserted and matched with the clamping sleeve. A sealing ring is installed at one end of the inner wall of the air inlet pipe away from the water storage bucket. A fixing strip is installed on the inner ring surface of the sealing ring, and a sealing assembly is connected to the fixing strip.

[0015] According to an embodiment of the present invention, the sealing assembly includes a moving rod slidably and penetratingly connected to the middle of the fixed strip. One end of the moving rod away from the air outlet pipe is provided with a sealing plate, and a return spring is installed between the sealing plate and the fixed strip.

[0016] According to an embodiment of the present invention, the water inlet unit includes a cylindrical pipe penetrating and rotatably connected to the middle of the top wall of the treatment barrel. The lower end of the cylindrical pipe penetrates and is installed with a water collecting frame. A plurality of water outlet holes are evenly distributed circumferentially on the annular wall of the water collecting frame. The water outlet holes are fixedly connected and communicated with the corresponding water distribution pipes. A plurality of circular rods are evenly distributed circumferentially near the upper end of the outer ring surface of the cylindrical pipe.

[0017] According to an embodiment of the present invention, a square through hole is provided on the annular barrel wall of the treatment barrel. A sealing cover is inserted into the square through hole. A drain pipe is installed and communicated with the bottom wall of the treatment barrel. A plurality of support columns are evenly distributed circumferentially at the lower end of the treatment barrel.

[0018] In summary, the present invention includes the following beneficial technical effects: 1. The water distribution unit and the evaporation unit adopted by the present invention cooperate to effectively disperse a large amount of raw water into a plurality of evaporation units, realizing the function of evaporating the raw water in small amounts and multiple times, avoiding the evaporation of a large amount of raw water in one container, and improving the efficiency of treating a large amount of raw water.

[0019] 2. The plurality of evaporation units adopted by the present invention can be taken out separately for cleaning, and the remaining evaporation units can continue to evaporate the raw water without stopping the evaporation equipment, ensuring the continuity of the raw water evaporation treatment and further improving the efficiency of treating a large amount of raw water. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings in the following description are only the embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained according to the provided drawings without creative efforts.

[0021] Figure 1 Shows a first perspective three-dimensional structure diagram of the present invention.

[0022] Figure 2 Shows a second perspective three-dimensional structure diagram of the present invention.

[0023] Figure 3 Shows the front view of the present invention.

[0024] Figure 4Shows a left view of the present invention.

[0025] Figure 5 Shows Figure 4 A cross-sectional view taken along A-A in

[0026] Figure 6 Shows Figure 5 An enlarged view of the N area in

[0027] Figure 7 Shows Figure 5 An enlarged view of the X area in

[0028] Figure 8 Shows Figure 5 An enlarged view of the D area in

[0029] Figure 9 Shows a schematic structural view of the interior of the treatment barrel of the present invention.

[0030] Figure 10 Shows a schematic structural view of the water separation unit and the evaporation unit of the present invention.

[0031] Among them, the above-mentioned drawings include the following reference numerals: 1, treatment barrel; 11, square through-hole; 12, sealing cover; 13, drain pipe; 14, support column; 2, water inlet unit; 21, cylindrical pipe; 22, water collection frame; 23, water outlet hole; 24, round rod; 3, water separation unit; 31, water distribution pipe; 32, partition ring; 33, sealing plate; 34, pressing component; 341, limiting frame; 342, lifting rod; 343, lifting ring; 344, connecting spring; 345, close-fitting ring; 346, T-shaped rod; 4, evaporation unit; 41, heating table; 42, support component; 421, strip-shaped plate; 422, sliding frame; 423, waist-shaped hole; 424, partition rod; 425, rectangular through-hole; 426, cylindrical rod; 427, clamping plate; 43, distillation flask; 44, limiting component; 441, rotating ring; 442, L-shaped arc plate; 443, arc-shaped rod; 45, air outlet component; 451, air outlet pipe; 452, clamping sleeve; 453, pushing plate; 5, condensation unit; 51, water storage bucket; 511, water outlet pipe; 512, water inlet pipe; 52, ventilation pipe; 53, air inlet component; 531, air inlet pipe; 532, sealing ring; 533, fixing strip; 534, sealing component; 5341, moving rod; 5342, sealing plate; 5343, return spring; 54, connecting rod. Detailed implementation manners

[0032] To make the above objects, features, and advantages of the present invention more apparent and understandable, the following detailed description of the specific embodiments of the present invention will be given in conjunction with the accompanying drawings. Many specific details are set forth in the following description to facilitate a thorough understanding of the present invention. However, the present invention can be implemented in many other ways different from those described herein, and those skilled in the art can make similar improvements without departing from the spirit of the present invention. Therefore, the present invention is not limited by the specific embodiments disclosed below.

[0033] Refer to Figures 1 - 4 , a treatment device for pure water separation, including a treatment barrel 1. A square through-hole 11 is opened on the circumferential barrel wall of the treatment barrel 1. A sealing cover 12 is inserted into the square through-hole 11. A drain pipe 13 is installed and communicated with the bottom wall of the treatment barrel 1. A plurality of support columns 14 evenly distributed circumferentially are installed at the lower end of the treatment barrel 1.

[0034] Before treatment, the treatment barrel 1 is fixed at the working position through the support columns 14. Subsequently, the sealing cover 12 is inserted and fitted with the square through-hole 11 to make the treatment barrel 1 in a sealed environment.

[0035] Refer to Figure 1 and Figure 5 , a water inlet unit 2 is connected to the top wall of the treatment barrel 1. The water inlet unit 2 includes a cylindrical pipe 21 that penetrates and is rotatably connected to the middle of the top wall of the treatment barrel 1. A water collecting frame 22 is installed at the lower end of the cylindrical pipe 21 through penetration. A plurality of water outlet holes 23 evenly distributed circumferentially are opened on the circumferential frame wall of the water collecting frame 22. A plurality of circular rods 24 evenly distributed circumferentially are installed on the outer circumferential surface of the cylindrical pipe 21 near the upper end.

[0036] Initially, the upper end of the cylindrical pipe 21 is connected to a container filled with raw water through an existing rotatable joint. Subsequently, the raw water is injected into the water collecting frame 22 through the cylindrical pipe 21 by an existing water pump. The water collecting frame 22 collects the injected raw water. The liquid level of the raw water in the water collecting frame 22 gradually rises and simultaneously moves to the water outlet holes 23 to ensure that the flow rates of the raw water through the plurality of water outlet holes 23 are substantially the same, realizing the function of evenly dividing the raw water.

[0037] Refer to Figure 5 and Figure 6 , the treatment device for pure water separation further includes a water distribution unit 3. A plurality of the water distribution units 3 are provided and are evenly connected circumferentially to the water inlet unit 2. The water distribution unit 3 includes a water distribution pipe 31 connected to the water inlet unit 2 and having a V-shaped structure. The water outlet holes 23 are fixedly connected and communicated with the corresponding water distribution pipes 31. A partition ring 32 is installed at the lower end of the water distribution pipe 31. A sealing plate 33 is provided at the upper end of the partition ring 32. A pressing member 34 is connected to the sealing plate 33.

[0038] Refer to Figure 5 , Figure 6, Figure 9 and Figure 10 , the pressing member 34 includes a limiting frame 341 installed at the lower end of the water distribution pipe 31. A plurality of lifting rods 342 that are circumferentially and evenly distributed and are located on the outer periphery of the lower end of the water distribution pipe 31 penetrate through the top wall of the limiting frame 341 in a sliding manner. A lifting ring 343 is commonly installed at the upper ends of the plurality of lifting rods 342. A connecting spring 344 is installed between the lower end of the lifting ring 343 and the top wall of the limiting frame 341. A plurality of pressing rings 345 are commonly installed at the lower ends of the plurality of lifting rods 342. The lower end of the pressing ring 345 is provided with an annular arc surface. An inverted T-shaped rod 346 is installed on the inner ring surface of the pressing ring 345. The upper end of the vertical section of the T-shaped rod 346 is fixedly connected to the sealing plate 33.

[0039] Refer to Figure 5 , Figure 9 and Figure 10 , the water treatment device for pure water separation further includes an evaporation unit 4. A plurality of evaporation units 4 are provided and are respectively arranged at the lower ends of the corresponding water distribution pipes 31. The evaporation unit 4 includes a heating table 41 arranged below the corresponding water distribution pipe 31. A support member 42 is connected to the lower end of the heating table 41. A distillation flask 43 is placed on the upper end of the heating table 41.

[0040] Refer to Figure 2 , Figure 5 , Figure 9 and Figure 10 , the water treatment device for pure water separation further includes a condensation unit 5. The condensation unit 5 is connected to the bottom wall of the treatment barrel 1. The condensation unit 5 includes a water storage bucket 51 rotatably connected to the bottom wall of the treatment barrel 1. The support member 42 is connected to the water storage bucket 51.

[0041] A heating plate is arranged in the heating table 41. Initially, a plurality of distillation flasks 43 are placed in the heating table 41. The heating table 41 is positioned through the support member 42. At this time, the distillation flask 43 is directly below the lower end of the corresponding water distribution pipe 31. The upper end of the distillation flask 43 is in close contact with the lower end of the pressing ring 345. The pressing ring 345 supports the sealing plate 33 through the T-shaped rod 346, so that the partition ring 32 and the sealing plate 33 are in a separated state, ensuring that the lower end of the water distribution pipe 31 is in an open state. At the same time, the pressing ring 345 jacks up the lifting ring 343 through a plurality of lifting rods 342, and the lifting ring 343 drives the connecting spring 344 to be in a stretched state. Raw water flows into the plurality of water distribution pipes 31 from the plurality of water outlet holes 23. The raw water in the plurality of water distribution pipes 31 flows into the corresponding distillation flasks 43. When the liquid level of the raw water in the distillation flask 43 reaches a certain height, the water pump is closed to stop the injection of raw water. Subsequently, the heating plate in the heating table 41 is started, and the heating plate distills the raw water in the distillation flask 43. The plurality of distillation flasks 43 process the raw water simultaneously, which can effectively improve the processing efficiency and processing effect of the raw water.

[0042] Refer to Figure 1 and Figure 5 At the upper end of the water storage bucket 51, a connecting rod 54 is installed. The connecting rod 54 is connected to the water inlet unit 2. At the upper end of the water storage bucket 51, a water outlet pipe 511 is installed, and at the lower end of the water storage bucket 51, a water inlet pipe 512 is installed.

[0043] Initially, the water inlet pipe 512 is connected to an existing cooling water pipe in the outside world. The cooling water pipe injects cold water into the water storage bucket 51. The cold water level in the water storage bucket 51 gradually rises until it is discharged from the water outlet pipe 511. At this time, the water storage bucket 51 is filled with cold water. The cold water discharged from the water outlet pipe 511 falls into the treatment bucket 1 and is discharged from the drain pipe 13. The discharged water falls into an existing collection device and is then cooled by a cooling system to realize the recycling of cold water.

[0044] Refer to Figure 5 and Figure 7 On the cylindrical section of the distillation flask 43, an air outlet component 45 is connected. The air outlet component 45 includes an air outlet pipe 451 installed on the cylindrical section of the distillation flask 43. At one end of the outer ring surface of the air outlet pipe 451 away from the distillation flask 43, a clamping sleeve 452 is installed, and at one end of the inner wall of the air outlet pipe 451 away from the distillation flask 43, a pushing plate 453 is installed.

[0045] Refer to Figure 5 In the water storage bucket 51, a ventilation pipe 52 is installed. On the annular barrel wall of the water storage bucket 51, a plurality of air inlet components 53 evenly distributed in the circumferential direction are connected. The air inlet components 53 are connected to the corresponding air outlet components 45.

[0046] Refer to Figure 5 and Figure 7 The air inlet component 53 includes an air inlet pipe 531 installed through the barrel wall of the water storage bucket 51. The lower end of the air inlet pipe 531 penetrates through the ventilation pipe 52. The end of the air inlet pipe 531 away from the water storage bucket 51 is inserted and matched with the clamping sleeve 452. At one end of the inner wall of the air inlet pipe 531 away from the water storage bucket 51, a sealing ring 532 is installed. On the inner ring surface of the sealing ring 532, a fixing strip 533 is installed, and a sealing component 534 is connected to the fixing strip 533.

[0047] Refer to Figure 5 and Figure 7 The sealing component 534 includes a moving rod 5341 slidably penetrating and connected to the middle of the fixing strip 533. At one end of the moving rod 5341 away from the air outlet pipe 451, a sealing plate 5342 is installed. A return spring 5343 is installed between the sealing plate 5342 and the fixing strip 533.

[0048] Initially, during the installation of the distillation flask 43, the air outlet pipe 451 drives the clamping sleeve 452 to be inserted into the corresponding air inlet pipe 531. The air outlet pipe 451 pushes the moving rod 5341 through the pushing plate 453. The moving rod 5341 drives the sealing plate 5342 to move under force and separate from the sealing ring 532. At the same time, the sealing plate 5342 stretches the return spring 5343, thereby opening the air inlet end of the air inlet pipe 531 and realizing the function of connecting the air inlet pipe 531 and the air outlet pipe 451. During operation, the water vapor generated in the distillation flask 43 is injected into the air inlet pipe 531 through the air outlet pipe 451. The water vapor in the air inlet pipe 531 is injected into the ventilation pipe 52. The water vapor contacts the wall of the ventilation pipe 52, and cold water condenses the water vapor through the wall of the ventilation pipe 52. The pure water droplets generated by condensation gradually move downward and fall from the opening at the lower end of the ventilation pipe 52, and the pure water droplets are collected by an existing collection container.

[0049] Refer to Figure 5 , Figure 8 , Figure 9 and Figure 10 , the support member 42 includes a strip-shaped plate 421 installed on the outer ring surface of the water storage bucket 51. A sliding frame 422 is slidably sleeved on the strip-shaped plate 421. The upper end of the sliding frame 422 is fixedly connected to the heating table 41. A waist-shaped hole 423 is opened at the lower end of the sliding frame 422. A blocking rod 424 is installed at a position on the lower end of the strip-shaped plate 421 away from the water storage bucket 51. The blocking rod 424 is slidably connected to the waist-shaped hole 423.

[0050] Refer to Figure 5 , Figure 8 , Figure 9 and Figure 10 , the support member 42 further includes a rectangular through hole 425 opened in the middle of the frame wall of the sliding frame 422 away from the water storage bucket 51. A cylindrical rod 426 is arranged in the rectangular through hole 425. The cylindrical rod 426 is rotatably connected to the strip-shaped plate 421. A clamping plate 427 is installed at one end of the cylindrical rod 426 away from the strip-shaped plate 421.

[0051] Initially, the end of the waist-shaped hole 423 driven by the sliding frame 422 away from the water storage bucket 51 is in close contact with the blocking rod 424. The clamping plate 427 is in a vertical state and is located at the end of the sliding frame 422 away from the water storage bucket 51. The clamping plate 427 limits the sliding frame 422. At the same time, the sliding frame 422 supports and limits the heating table 41.

[0052] Refer to Figure 5 , Figure 9 and Figure 10, a limiting component 44 is connected to the heating table 41. The limiting component 44 includes a rotating ring 441 rotatably connected to the annular surface of the heating table 41. An inverted L-shaped arc plate 442 is installed at the upper end of the rotating ring 441, and an arc-shaped rod 443 is installed at the inner end of the horizontal section of the L-shaped arc plate 442.

[0053] After multiple distillation flasks 43 are used for a period of time, certain impurities accumulate in the distillation flasks 43, and the distillation flasks 43 need to be cleaned. At this time, the sealing cover 12 is separated from the square through-hole 11, and the round rod 24 is rotated. The round rod 24 drives the cylindrical tube 21 to rotate. The cylindrical tube 21 drives the connecting rod 54 to rotate through the water collecting frame 22. The connecting rod 54 drives the water storage bucket 51 to rotate. The water storage bucket 51 drives multiple sliding frames 422 to rotate through multiple strip-shaped plates 421. Multiple sliding frames 422 drive multiple distillation flasks 43 to rotate through multiple heating tables 41. At the same time, the water collecting frame 22 drives the pressing component 34 to rotate through multiple water distribution pipes 31. When the distillation flask 43 to be cleaned moves to the square through-hole 11, the rotating ring 441 is rotated. The rotating ring 441 drives the arc-shaped rod 443 to move to the position near the water storage bucket 51 on the cylindrical section of the distillation flask 43 through the L-shaped arc plate 442. The arc-shaped rod 443 blocks and limits the cylindrical section of the distillation flask 43 and plays a supporting role in the movement of the distillation flask 43 to prevent the distillation flask 43 from tilting during the movement. Subsequently, the corresponding clamping plate 427 is rotated to the horizontal state, and then the corresponding sliding frame 422 is pulled outwards. The sliding frame 422 drives the distillation flask 43 to move through the heating table 41. The upper end of the distillation flask 43 is separated from the tight-fitting ring 345. The connecting spring 344 in the stretched state drives multiple lifting rods 342 to descend through the lifting ring 343. Multiple lifting rods 342 drive the tight-fitting ring 345 to descend. The tight-fitting ring 345 drives the sealing plate 33 to be in close contact with the partition ring 32 through the T-shaped rod 346, realizing the function of sealing the lower end of the water distribution pipe 31 to prevent the raw water from flowing out of this water distribution pipe 31. At the same time, the distillation flask 43 drives the clamping sleeve 452 on the air outlet pipe 451 to be separated from the corresponding air inlet pipe 531. The pushing plate 453 is separated from the moving rod 5341. The reset spring 5343 in the stretched state resets and drives the sealing plate 5342 to be in close contact with the sealing ring 532, realizing the function of sealing the air inlet end of the air inlet pipe 531. At this time, the remaining distillation flasks 43 can continue to treat the raw water, ensuring the continuity of the raw water treatment and improving the efficiency of a large amount of raw water treatment. When the taken-out distillation flask 43 is cleaned, it is placed back on the corresponding heating table 41 and moved to the lower end of the corresponding water distribution pipe 31 to resume work. Repeat this method to realize the function of cleaning multiple water distribution pipes 31 during the continuous treatment of the raw water. When all the raw water is treated, the treatment ends.

[0054] In the description of the embodiments of the present invention, it should be noted that the orientation or positional relationship indicated by the terms "longitudinal", "lateral", "upper", "lower", "front", "rear", "left", "right", "top", "bottom", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the embodiments of the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the embodiments of the present invention. In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be construed as indicating or implying relative importance. In addition, in the description of the present invention, unless otherwise specified, the meaning of "a plurality" is two or more.

[0055] In the description of the present invention, it should also be noted that unless otherwise clearly specified and defined, the terms "arranged", "installed", and "connected" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0056] The embodiments of the specific implementation manners are all preferred embodiments of the present invention, and do not limit the protection scope of the present invention accordingly. Therefore, all equivalent changes made according to the structure, shape, and principle of the present invention should be covered within the protection scope of the present invention.

Claims

1. A pure water separation treatment device, characterized in that: include: A treatment barrel, the top wall of which is connected with a water inlet unit; A water distribution unit, wherein the water distribution unit is provided in multiple pieces and is evenly connected to the water inlet unit in the circumferential direction, and the water distribution unit comprises a water distribution pipe connected to the water inlet unit and having a V-shaped structure, a baffle ring is installed at the lower end of the water distribution pipe, a sealing plate is provided at the upper end of the baffle ring, and a pressing component is connected to the sealing plate; Evaporation units, multiple evaporation units are provided and are respectively arranged at the lower ends of corresponding water distribution pipes, the evaporation units include a heating platform arranged below the corresponding water distribution pipes, the lower end of the heating platform is connected to a supporting component, a distillation flask is placed on the upper end of the heating platform, a limiting component is connected to the heating platform, and a gas outlet component is connected to the cylindrical section of the distillation flask; A condensing unit, the condensing unit is connected to the bottom wall of the treatment barrel, the condensing unit includes a water storage barrel rotatably connected to the bottom wall of the treatment barrel, a vent pipe is installed in the water storage barrel, a plurality of air inlet components evenly distributed in the circumferential direction are connected to the annular barrel wall of the water storage barrel, the air inlet components are connected to the corresponding air outlet components, a connecting rod is installed at the upper end of the water storage barrel, the connecting rod is connected to the water inlet unit, a water outlet pipe is installed at the upper end of the water storage barrel, and a water inlet pipe is installed at the lower end of the water storage barrel; The limiting component includes a rotating ring rotatably connected to the annular surface of the heating platform, an inverted L-shaped arc plate is installed on the upper end of the rotating ring, and an arc rod is installed on the inner end of the horizontal section of the L-shaped arc plate; The clamping component includes a limit frame installed at the lower end of the water distribution pipe, and the top wall of the limit frame is slidably connected with a plurality of lifting rods that are evenly distributed in the circumference and located at the outer periphery of the lower end of the water distribution pipe, and a lifting ring is commonly installed on the upper ends of the plurality of lifting rods, and a connecting spring is installed between the lower end of the lifting ring and the top wall of the limit frame, and a close-fitting ring is commonly installed on the lower ends of the plurality of lifting rods, and an annular arc surface is provided at the lower end of the close-fitting ring, and an inverted T-shaped rod is installed on the inner ring surface of the close-fitting ring, and the upper end of the vertical section of the T-shaped rod is fixedly connected to the sealing plate; The supporting component comprises a strip plate installed on the outer ring surface of the water storage bucket, a sliding frame is slidably sleeved on the strip plate, the upper end of the sliding frame is fixedly connected to the heating table, a waist-shaped hole is opened at the lower end of the sliding frame, and a baffle rod is installed at the lower end of the strip plate away from the water storage bucket, and the baffle rod is slidably connected to the waist-shaped hole; The supporting component also includes a rectangular through hole opened in the middle of the frame wall of the sliding frame away from the water storage bucket. A cylindrical rod is arranged in the rectangular through hole. The cylindrical rod is rotatably connected to the strip plate. A clamping plate is installed at one end of the cylindrical rod away from the strip plate.

2. A pure water separation treatment device according to claim 1, characterized in that: The water inlet unit includes a cylindrical tube that passes through and is rotatably connected to the middle of the top wall of the treatment barrel. A water collecting frame is passed through and installed at the lower end of the cylindrical tube. A plurality of circumferentially evenly distributed water outlet holes are opened on the annular frame wall of the water collecting frame. The water outlet holes are fixedly connected and communicated with the corresponding water distribution pipes. A plurality of circumferentially evenly distributed round rods are installed near the upper end of the outer ring surface of the cylindrical tube.

3. A pure water separation treatment device according to claim 1, characterized in that: The gas outlet component comprises a gas outlet pipe installed on the cylindrical section of the distillation flask, a clamping sleeve is installed on the end of the outer annular surface of the gas outlet pipe away from the distillation flask, and a pushing plate is installed on the end of the inner wall of the gas outlet pipe away from the distillation flask.

4. A pure water separation treatment device according to claim 3, characterized in that: The air intake component includes an air intake pipe that passes through and is installed on the wall of the water storage barrel, the lower end of the air intake pipe passes through the ventilation pipe, the end of the air intake pipe away from the water storage barrel is plugged into and matched with the snap-on sleeve, a sealing ring is installed on the inner wall of the air intake pipe away from the water storage barrel, a fixing strip is installed on the inner ring surface of the sealing ring, and a sealing component is connected to the fixing strip.

5. A pure water separation treatment device according to claim 4, characterized in that: The sealing component comprises a moving rod which slides through and is connected to the middle of the fixing strip, a sealing plate is installed at one end of the moving rod away from the air outlet pipe, and a return spring is installed between the sealing plate and the fixing strip.

6. A pure water separation treatment device according to claim 1, characterized in that: A square through hole is opened on the annular barrel wall of the treatment barrel, a sealing cover is inserted into the square through hole, a drainage pipe is installed and connected on the bottom wall of the treatment barrel, and a plurality of circumferentially evenly distributed support columns are installed at the lower end of the treatment barrel.

Citation Information

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