A purification and filtration device for phosphorus oxychloride production
By designing the transmission tube and purification mechanism in the production of oxychloride, the sufficient reaction and condensation liquefaction of phosphorus trichloride and oxygen are achieved, the problems of low purity and low efficiency of oxychloride are solved, and efficient integrated preparation and purification are achieved.
Patent Information
- Application Number
- CN202411299359.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-18
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2044-09-18
AI Technical Summary
In the prior art, the purity of oxychloride is low and the preparation efficiency is low, and the preparation process is complicated, resulting in poor production effect of oxychloride.
A purification filter device for the production of phosphorus oxychloride is designed. By setting a transmission tube and purification mechanism in the preparation tank, the sufficient reaction between phosphorus trichloride and oxygen is achieved, and combined with the airbag gas supply and condensation liquefaction process, the reaction efficiency and purity are improved.
The preparation and purification of phosphorus oxychloride has been integrated, which improves the preparation effect and efficiency, reduces the residue of phosphorus chloride, and reduces resource waste and environmental pollution.
Smart Images

Figure CN119098138B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of phosphorus oxychloride production, and in particular to a purification and filtering device for phosphorus oxychloride production. Background Art
[0002] Phosphorus oxychloride, an industrial chemical raw material, is a colorless, transparent, fuming liquid. This colorless, transparent liquid with a pungent odor emits intense fumes in moist air and hydrolyzes into phosphoric acid and hydrogen chloride, which further generates HP2O4Cl3. It is widely used in the production of pesticides, pharmaceuticals, dyes, phosphate esters, and flame retardants. It is a raw material for the manufacture of organophosphorus pesticides, herbicides, chlordimeform, and plasticizers. It is also used in the chlorination of long-acting sulfonamides, an intermediate in dye production, a chlorinating agent and catalyst in organic synthesis, and a uranium extraction agent. Electronic-grade phosphorus oxychloride is used in the solar energy industry, integrated circuits, separators, optical fiber preforms, and other liquid phosphorus sources. It can also be used to prepare phosphate esters. In the semiconductor industry, it is primarily used as an N-type dopant source.
[0003] Phosphorus oxychloride can be prepared by reacting phosphorus trichloride and oxygen in a reactor. However, since phosphorus trichloride and oxygen fail to react fully during the reaction, a portion of phosphorus trichloride remains in the prepared phosphorus oxychloride, resulting in low purity of the prepared phosphorus oxychloride. In addition, during the preparation process, phosphorus trichloride and oxygen need to be reacted first and then placed in a purification tank for evaporation and purification, resulting in complex steps in the preparation process, which leads to low preparation efficiency and poor preparation effect of phosphorus oxychloride. Summary of the Invention
[0004] The object of the present invention is to provide a purification and filtration device for phosphorus oxychloride production to solve the shortcomings of the above-mentioned background technology.
[0005] The purpose of the present invention can be achieved through the following technical solutions:
[0006] A purification and filtration device for phosphorus oxychloride production, comprising a mounting platform, a mounting frame fixedly connected to the top of the mounting platform, a mounting shaft rotatably connected within the mounting frame, a preparation tank fixedly connected to one end of the mounting shaft, a transmission pipe rotatably connected within the preparation tank, and a preparation mechanism connected to the preparation tank provided on the transmission pipe;
[0007] The transmission tube is provided with a purification mechanism connected to the mounting platform, and the purification mechanism is used to purify the phosphorus oxychloride prepared by the preparation mechanism, and at the same time accelerate the preparation of phosphorus oxychloride in the preparation tank. The outer surface of the transmission tube is transmission-connected with a transmission mechanism connected to the preparation tank, and the transmission mechanism is used to drive the transmission tube to rotate. The outer surface of the mounting shaft is transmission-connected with a driving mechanism connected to the mounting frame, and the driving mechanism is used to drive the mounting shaft to rotate.
[0008] As a further solution of the present invention: the preparation mechanism includes a feeding funnel fixedly connected to the preparation tank, the feeding funnel is provided with an electromagnetic valve, two spacers are fixedly connected in the transmission tube, an air intake pipe fixedly connected to the spacer blocks is fixedly connected in the transmission tube, a plurality of air outlet pipes are fixedly connected to the outer surface of the transmission tube, two air bags are fixedly connected to the outer surface of the preparation tank, a first spring is fixedly connected in the air bags, the outer surfaces of the air bags are fixedly connected to the first air supply pipe, the first air supply pipe is provided with a first one-way air valve, one end of the air intake pipe is rotatably connected to the first connecting pipe fixedly connected to the preparation tank, one end of the first connecting pipe is fixedly connected to the second air supply pipe fixedly connected to the first air supply pipe, the outer surface of the air bag is fixedly connected to the return air pipe fixedly connected to the preparation tank, the return air pipe is provided with a second one-way air valve, and the outer surface of the air bag is provided with an air supply mechanism connected to the mounting frame.
[0009] As a further solution of the present invention: the air supply mechanism includes an oxygen tank fixedly connected to the mounting frame, the outer surface of the oxygen tank is fixedly connected to an air pump through a pipeline, the output end of the air pump is fixedly connected to an air supply hose fixedly connected to the airbag, and a third one-way air valve is provided on the air supply hose.
[0010] As a further solution of the present invention: the driving mechanism includes a driving motor fixedly connected to the mounting frame, the output end of the driving motor is fixedly connected to the driving shaft through a coupling, the outer surface of the driving shaft is fixedly sleeved with a first driving gear, and the outer surface of the first driving gear is meshedly connected with a second driving gear fixedly sleeved with the mounting shaft.
[0011] As a further solution of the present invention: the transmission mechanism includes a transmission motor fixedly connected to the preparation tank, the output end of the transmission motor is fixedly connected to the transmission shaft through a coupling, the outer surface of the transmission shaft is fixedly sleeved with a first gear, and the outer surface of the first gear is meshedly connected with a second gear fixedly sleeved with the transmission pipe.
[0012] As a further solution of the present invention: the purification mechanism includes a purification tank fixedly connected to the mounting table, an electric heating plate fixedly connected inside the purification tank, a discharge pipe fixedly connected to the bottom of the preparation tank, an electromagnetic valve provided on the discharge pipe, a first hose fixedly connected to the purification tank at the bottom, a second connecting pipe fixedly connected between the two purification tanks, a second hose fixedly connected to the outer surface of the second connecting pipe, one end of the second hose fixedly connected to a third connecting pipe rotatably connected to the transmission pipe, the third connecting pipe fixedly connected to the preparation tank, a plurality of cooling bends fixedly connected to the outer surface of the transmission pipe, a fourth connecting pipe fixedly connected to the outer surface of the transmission pipe, a condensation mechanism connected to the mounting table fixedly connected to the outer surface of the fourth connecting pipe.
[0013] As a further solution of the present invention: the condensation mechanism includes a condensation tank fixedly connected to the mounting table, a condensation pipe is fixedly connected inside the condensation tank, the outer surface of the fourth connecting pipe is fixedly connected to a third hose fixedly connected to the condensation pipe, and the outer surface of the condensation pipe is fixedly connected to a discharge pipe.
[0014] As a further solution of the present invention: the top of the mounting platform is fixedly connected to the output end of the water cooler which is connected to the condensation tank through a pipe and a water pump, and the outer surface of the condensation tank is fixedly connected to the water cooler through a pipe.
[0015] As a further solution of the present invention: a plurality of heat sinks are fixedly connected to the outer surface of the condensation tank.
[0016] Beneficial effects of the present invention:
[0017] (1) Phosphorus trichloride and oxygen are introduced into a preparation tank, and then a preparation mechanism in the preparation tank is used to increase the reaction between phosphorus trichloride and oxygen to generate phosphorus oxychloride. The prepared phosphorus oxychloride is then introduced into a purification mechanism, and then the generated phosphorus oxychloride is purified by the purification mechanism, thereby realizing an integrated process of preparation and purification of phosphorus oxychloride, thereby greatly improving the preparation effect and efficiency of phosphorus oxychloride.
[0018] (2) Phosphorus trichloride and oxygen are introduced into a preparation tank, and then the preparation tank is driven to swing and the transmission pipe is driven to rotate. During the rotation, the air bag supplies oxygen into the preparation tank by squeezing the air, so that oxygen and phosphorus trichloride fully react. At the same time, the heat during cooling in the purification process is reused to heat the phosphorus trichloride and oxygen during the reaction process, further promoting the reaction of phosphorus trichloride and oxygen, thereby achieving a full reaction of phosphorus oxychloride and oxygen during the reaction process, reducing the residual phosphorus trichloride and improving the purity of the prepared phosphorus oxychloride.
[0019] (3) The phosphorus oxychloride vaporized by heating is introduced into the preparation tank through the cooling elbow, and the phosphorus trichloride in the preparation tank is used to preliminarily liquefy the purified vaporized phosphorus oxychloride, which is convenient for subsequent condensation and liquefaction, reducing the waste of resources for subsequent condensation and liquefaction, and then it is introduced into the condenser again for re-liquefaction, thereby achieving sufficient condensation and liquefaction of the purified vaporized phosphorus oxychloride, preventing a part of the vaporized phosphorus oxychloride from being not fully liquefied and being lost into the air, causing waste of phosphorus oxychloride and also causing pollution to the environment, thereby greatly improving the purification effect and purification efficiency of the prepared phosphorus oxychloride. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] The present invention will be further described below with reference to the accompanying drawings.
[0021] Figure 1 is a first stereoscopic diagram of the external structure of the present invention;
[0022] Figure 2 is a second stereoscopic view of the external structure of the present invention;
[0023] Figure 3 It is a three-dimensional diagram of the internal structure of the present invention;
[0024] Figure 4 This is a front view of the internal structure of the transmission tube of the present invention;
[0025] Figure 5 This is a front view of the internal structure of the airbag of the present invention;
[0026] Figure 6 This is a front view of the internal structure of the purification tank of the present invention;
[0027] Figure 7 This invention Figure 1 A magnified view of middle A;
[0028] Figure 8 This invention Figure 2 Enlarged view of middle B;
[0029] Figure 9 This invention Figure 3 Amplification of middle C.
[0030] In the figure: 1. mounting table; 2. mounting frame; 3. mounting shaft; 4. preparation tank; 5. transmission pipe; 11. feeding funnel; 12. spacer; 13. air inlet pipe; 14. air bag; 15. first spring; 16. first air supply pipe; 17. first one-way air valve; 18. first connecting pipe; 19. second air supply pipe; 190. air return pipe; 191. second one-way air valve; 192. air outlet pipe; 21. oxygen tank; 22. air pump; 23. air supply hose; 24. third one-way air valve; 31. drive motor; 3 2. Drive shaft; 33. First drive gear; 34. Second drive gear; 41. Transmission motor; 42. Drive shaft; 43. First gear; 44. Second gear; 51. Purification tank; 52. Discharge pipe; 53. First hose; 54. Second connecting pipe; 55. Second hose; 56. Third connecting pipe; 57. Cooling elbow; 58. Fourth connecting pipe; 59. Electric heating plate; 61. Condensation tank; 62. Condensation pipe; 63. Third hose; 64. Discharge pipe; 65. Water cooler; 66. Heat sink. DETAILED DESCRIPTION
[0031] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. 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 making any creative efforts shall fall within the scope of protection of the present invention.
[0032] See also Figures 1-9 As shown, the present invention is a purification and filtration device for phosphorus oxychloride production, comprising a mounting platform 1, a mounting frame 2 is fixedly connected to the top of the mounting platform 1, a mounting shaft 3 is rotatably connected to the mounting frame 2, one end of the mounting shaft 3 is fixedly connected to a preparation tank 4, a transmission pipe 5 is rotatably connected to the preparation tank 4, and a preparation mechanism connected to the preparation tank 4 is provided on the transmission pipe 5;
[0033] The transmission tube 5 is provided with a purification mechanism connected to the mounting platform 1, which is used to purify the phosphorus oxychloride prepared by the preparation mechanism and accelerate the preparation of phosphorus oxychloride in the preparation tank 4. The outer surface of the transmission tube 5 is connected to the transmission mechanism connected to the preparation tank 4, and the transmission mechanism is used to drive the transmission tube 5 to rotate. The outer surface of the mounting shaft 3 is connected to the driving mechanism connected to the mounting frame 2, and the driving mechanism is used to drive the mounting shaft 3 to rotate.
[0034] By introducing phosphorus trichloride and oxygen into the preparation tank 4, then increasing the reaction between phosphorus trichloride and oxygen through the preparation mechanism in the preparation tank 4 to generate phosphorus oxychloride, then introducing the prepared phosphorus oxychloride into the purification mechanism, and then purifying the generated phosphorus oxychloride through the purification mechanism, the integrated preparation and purification of phosphorus oxychloride is achieved, thereby greatly improving the preparation effect and efficiency of phosphorus oxychloride.
[0035] The preparation mechanism includes a feeding funnel 11 fixedly connected to the preparation tank 4, an electromagnetic valve is provided on the feeding funnel 11, two spacers 12 are fixedly connected in the transmission tube 5, an air intake pipe 13 fixedly connected to the spacer 12 is fixedly connected in the transmission tube 5, a plurality of air outlet pipes 192 are fixedly connected to the outer surface of the transmission tube 5, two air bags 14 are fixedly connected to the outer surface of the preparation tank 4, a first spring 15 is fixedly connected in the air bag 14, the outer surface of the air bag 14 is fixedly connected to the first air supply pipe 16, the first air supply pipe 16 is provided with a first one-way air valve 17, one end of the air intake pipe 13 is rotatably connected to the first connecting pipe 18 fixedly connected to the preparation tank 4, one end of the first connecting pipe 18 is fixedly connected to the second air supply pipe 19 fixedly connected to the first air supply pipe 16, the outer surface of the air bag 14 is fixedly connected to the return air pipe 190 fixedly connected to the preparation tank 4, the return air pipe 190 is provided with a second one-way air valve 191, and the outer surface of the air bag 14 is provided with an air supply mechanism connected to the mounting frame 2.
[0036] The air supply mechanism includes an oxygen tank 21 fixedly connected to the mounting frame 2, the outer surface of the oxygen tank 21 is fixedly connected to an air pump 22 through a pipeline, the output end of the air pump 22 is fixedly connected to an air supply hose 23 fixedly connected to the air bag 14, and a third one-way air valve 24 is provided on the air supply hose 23. The third one-way air valve 24 is a prior art, so it will not be described in detail here. It can control the oxygen to enter the air bag 14 only from the air supply hose 23 to prevent the oxygen from flowing back from the air bag 14.
[0037] The oxygen in the oxygen tank 21 is introduced into the air supply hose 23 through the air pump 22 and the pipeline, and then enters the air bag 14 through the third one-way air valve 24 on the air supply hose 23 to replenish the air bag 14 with oxygen.
[0038] The driving mechanism includes a driving motor 31 fixedly connected to the mounting bracket 2. The driving motor 31 is controlled by a PLC programming program, and can be controlled to rotate forward and reverse and rotate at an angle. The output end of the driving motor 31 is fixedly connected to a driving shaft 32 through a coupling. The outer surface of the driving shaft 32 is fixedly sleeved with a first driving gear 33, and the outer surface of the first driving gear 33 is meshedly connected with a second driving gear 34 fixedly sleeved with the mounting shaft 3.
[0039] The driving motor 31 drives the driving shaft 32 to rotate, and the driving shaft 32 drives the mounting shaft 3 to rotate through the first driving gear 33 and the second driving gear 34 .
[0040] The transmission mechanism includes a transmission motor 41 fixedly connected to the preparation tank 4. The transmission motor 41 is controlled by a PLC programming program, which can control the transmission motor 41 to rotate forward and backward and the rotation angle. The output end of the transmission motor 41 is fixedly connected to a transmission shaft 42 through a coupling. The additional surface of the transmission shaft 42 is fixedly sleeved with a first gear 43, and the outer surface of the first gear 43 is meshedly connected with a second gear 44 fixedly sleeved with the transmission tube 5.
[0041] The transmission motor 41 drives the transmission shaft 42 to rotate, and the transmission shaft 42 drives the transmission tube 5 to rotate through the first gear 43 and the second gear 44 .
[0042] Phosphorus trichloride is passed through the feed funnel 11 into the preparation tank 4, and then the electromagnetic valve on the feed funnel 11 is closed, and oxygen is filled into the air bag 14 through the air supply mechanism. Then, the mounting shaft 3 is driven by the driving mechanism to rotate back and forth, thereby driving the preparation tank 4 to swing back and forth. At the same time, during the swinging process, the preparation tank 4 drives the air bags 14 on the left and right sides to alternately squeeze the mounting frame 2. When the air bags 14 are squeezed, the oxygen in the air bags 14 is passed into the transmission pipe 5 through the first air supply pipe 16, the first one-way air valve 17, the first connecting pipe 18, the second air supply pipe 19 and the air inlet pipe 13. Then, the phosphorus trichloride drives the transmission pipe 5 to rotate back and forth through the transmission mechanism, and the transmission pipe 5 drives multiple outlet pipes 192 to rotate back and forth. At the same time, oxygen is evenly introduced into the preparation tank 4 through the multiple outlet pipes 192. At the same time, the phosphorus trichloride in the preparation tank 4 swings back and forth in the preparation tank 4 and collides with the oxygen, so that it collides with the phosphorus trichloride in the preparation tank 4. The mixture is evenly mixed to promote the full reaction of phosphorus trichloride and oxygen, so that phosphorus trichloride is fully reacted, thereby improving the purity of phosphorus oxychloride after preparation. At the same time, when the air bag 14 on one side is squeezed, the gas in the air bag 14 is passed into the preparation tank 4 through the transmission pipe 5 and the air outlet pipe 192. Then the unreacted oxygen enters the other air bag 14 through the return pipe 190 and the second one-way air valve 191. At this time, the air bag 14 is inflated to relieve the pressure in the preparation tank 4. However, due to the filling of gas, the pressure in the preparation tank 4 is relatively high. Under the action of the high pressure, the binding tightness between oxygen and phosphorus trichloride is enhanced, thereby further promoting the reaction between phosphorus trichloride and oxygen, and at the same time, the unreacted oxygen is also recovered into the air bag 14. Then, when it swings to the other side, the air bag 14 on the other side begins to compress and continuously supply the oxygen in the preparation tank 4, thereby achieving full reaction of phosphorus oxychloride and oxygen during the reaction process, thereby improving the purity of phosphorus oxychloride after preparation. At the same time, during the reaction process, the purification mechanism is also operated, and during the purification process, the preparation tank 4 is heated to further promote the reaction between oxygen and phosphorus trichloride, so that the raw material phosphorus trichloride is fully reacted.
[0043] The purification mechanism includes a purification tank 51 fixedly connected to the mounting platform 1, an electric heating plate 59 fixedly connected inside the purification tank 51, a discharge pipe 52 fixedly connected to the bottom of the preparation tank 4, an electromagnetic valve is provided on the discharge pipe 52, and a first hose 53 fixedly connected to the purification tank 51 is fixedly connected to the bottom of the discharge pipe 52, a second connecting pipe 54 is fixedly connected between the two purification tanks 51, a second hose 55 is fixedly connected to the outer surface of the second connecting pipe 54, one end of the second hose 55 is fixedly connected to a third connecting pipe 56 rotatably connected to the transmission pipe 5, the third connecting pipe 56 is fixedly connected to the preparation tank 4, a plurality of cooling bends 57 are fixedly connected to the outer surface of the transmission pipe 5, a fourth connecting pipe 58 is fixedly connected to the outer surface of the transmission pipe 5, and a condensation mechanism connected to the mounting platform 1 is fixedly connected to the outer surface of the fourth connecting pipe 58.
[0044] The condensation mechanism includes a condensation tank 61 fixedly connected to the mounting platform 1, a condensation pipe 62 fixedly connected inside the condensation tank 61, an outer surface of the fourth connecting pipe 58 fixedly connected to a third hose 63 fixedly connected to the condensation pipe 62, and an outer surface of the condensation pipe 62 fixedly connected to a discharge pipe 64.
[0045] The top of the mounting platform 1 is fixedly connected to the output end of a water cooler 65 which is connected to the condensation tank 61 through a pipe and a water pump. The outer surface of the condensation tank 61 is fixedly connected to the water cooler 65 through a pipe.
[0046] The water in the condensation tank 61 is pumped into the water cooler 65 for cooling by a water pump. The cooled coolant is pumped into the condensation tank 61 through the water pump and pipeline, and the coolant in the condensation tank 61 is circulated and cooled.
[0047] A plurality of heat sinks 66 are fixedly connected to the outer surface of the condensation tank 61 .
[0048] The heat dissipation of the coolant in the condensation tank 61 is improved by the heat sink 66 .
[0049] By opening the discharge pipe 52 at the bottom of the preparation tank 4, the discharge pipe 52 is then fed into the purification tank 51 through the first hose 53 to supply the phosphorus oxychloride obtained after the reaction. At this time, the preparation tank 4 prepares and processes the next batch of phosphorus oxychloride. At the same time, the electric heating plate 59 in the purification tank 51 is working to heat the prepared phosphorus oxychloride solution. The heated and vaporized phosphorus oxychloride enters the transmission pipe 5 through the second connecting pipe 54, the second hose 55 and the third connecting pipe 56, and then enters the cooling elbow 57 through the transmission pipe 5. The phosphorus trichloride in the preparation tank 4 preliminarily cools the cooling elbow 57 and the vaporized phosphorus oxychloride introduced into the cooling elbow 57. At the same time, the heat in the cooling elbow 57 is conducted to the preparation tank 4, heating the solution in the preparation tank 4, increasing the temperature in the preparation tank 4, further promoting the reaction efficiency and reaction effect between phosphorus trichloride and oxygen, and also After preliminary cooling, the preliminarily vaporized phosphorus oxychloride is then passed into the condenser 62 through the fourth connecting pipe 58 and the third hose 63 on the transmission pipe 5. At this time, the coolant in the condensation tank 61 dissipates heat to the condenser 62, thereby achieving full condensation and liquefaction of the purified and vaporized phosphorus oxychloride, preventing a portion of the vaporized phosphorus oxychloride from being fully liquefied and lost into the air, causing waste of phosphorus oxychloride and also causing environmental pollution, thereby greatly improving the purification effect and efficiency of the prepared phosphorus oxychloride. At the same time, the phosphorus trichloride in the preparation tank 4 is used to preliminarily liquefy the purified and vaporized phosphorus oxychloride, facilitating subsequent condensation and liquefaction, reducing the waste of resources in subsequent condensation and liquefaction, and also utilizing the heat in the preliminary condensation process to promote the reaction of phosphorus oxychloride and oxygen, thereby achieving integrated processing of phosphorus oxychloride, and also improving the production effect and efficiency of phosphorus oxychloride.
[0050] The working principle of the present invention is as follows: phosphorus trichloride is introduced into the preparation tank 4 through the feed funnel 11, and then the electromagnetic valve on the feed funnel 11 is closed, and oxygen is filled into the air bag 14 through the air supply mechanism, and then the mounting shaft 3 is driven by the driving mechanism to rotate back and forth, thereby driving the preparation tank 4 to swing back and forth. At the same time, during the swinging process, the preparation tank 4 drives the air bags 14 on the left and right sides to alternately squeeze the mounting frame 2. When the air bags 14 are squeezed, the oxygen in the air bags 14 is passed into the transmission pipe 5 through the first air supply pipe 16, the first one-way air valve 17, the first connecting pipe 18, the second air supply pipe 19 and the air inlet pipe 13. Then, the phosphorus trichloride drives the transmission pipe 5 to rotate back and forth through the transmission mechanism, and the transmission pipe 5 drives multiple outlet pipes 192 to rotate back and forth. At the same time, oxygen is evenly introduced into the preparation tank 4 through the multiple outlet pipes 192. At the same time, the phosphorus trichloride in the preparation tank 4 swings back and forth in the preparation tank 4 and collides with the oxygen, so that it collides with the oxygen in the preparation tank 4. The phosphorus trichloride is evenly mixed, promoting the full reaction of phosphorus trichloride and oxygen, so that the phosphorus trichloride is fully reacted, thereby improving the purity of the prepared phosphorus oxychloride. At the same time, when the air bag 14 on one side is squeezed, the gas in the air bag 14 passes through the transmission pipe 5 and the air outlet pipe 192 to pass the gas into the preparation tank 4, and then the unreacted oxygen enters the other air bag 14 through the return pipe 190 and the second one-way air valve 191. At this time, the air bag 14 is inflated to relieve the pressure in the preparation tank 4. However, due to the filling of gas at this time, the pressure in the preparation tank 4 is relatively high. Under the action of the high pressure, the bonding tightness between oxygen and phosphorus trichloride is enhanced, thereby further promoting the reaction between phosphorus trichloride and oxygen, and at the same time, the unreacted oxygen is also recovered into the air bag 14. Then, when it swings to the other side, the air bag 14 on the other side begins to compress and continuously supply the oxygen in the preparation tank 4, thereby achieving full reaction of phosphorus oxychloride and oxygen in the reaction process, thereby improving the purity of the prepared phosphorus oxychloride. At the same time, during the reaction process, the purification mechanism is also operated, and during the purification process, the preparation tank 4 is heated to further promote the reaction between oxygen and phosphorus trichloride, so that the raw material phosphorus trichloride is fully reacted.
[0051] By opening the discharge pipe 52 at the bottom of the preparation tank 4, the discharge pipe 52 is then used to feed the phosphorus oxychloride obtained after the reaction into the purification tank 51 through the first hose 53. At this time, the preparation tank 4 prepares and processes the next batch of phosphorus oxychloride. At the same time, the electric heating plate 59 in the purification tank 51 is operated to heat the prepared phosphorus oxychloride solution. The heated and vaporized phosphorus oxychloride enters the transmission pipe 5 through the second connecting pipe 54, the second hose 55 and the third connecting pipe 56, and then enters the cooling elbow 57 through the transmission pipe 5. The phosphorus trichloride in the preparation tank 4 preliminarily cools the cooling elbow 57 and the vaporized phosphorus oxychloride introduced into the cooling elbow 57. At the same time, the heat in the cooling elbow 57 is conducted to the preparation tank 4, heating the solution in the preparation tank 4, increasing the temperature in the preparation tank 4, further promoting the reaction efficiency and reaction effect between phosphorus trichloride and oxygen, and also The phosphorus oxychloride is preliminarily cooled, and then the preliminarily vaporized phosphorus oxychloride is passed into the condenser 62 through the fourth connecting pipe 58 and the third hose 63 on the transmission pipe 5. At this time, the coolant in the condensation tank 61 dissipates heat to the condenser 62, thereby achieving full condensation and liquefaction of the purified and vaporized phosphorus oxychloride, preventing a portion of the vaporized phosphorus oxychloride from being fully liquefied and lost into the air, causing waste of phosphorus oxychloride and also causing pollution to the environment, thereby greatly improving the purification effect and efficiency of the prepared phosphorus oxychloride. At the same time, the phosphorus trichloride in the preparation tank 4 is used to preliminarily liquefy the purified and vaporized phosphorus oxychloride, which is convenient for subsequent condensation and liquefaction, reducing the waste of resources in subsequent condensation and liquefaction, and also utilizing the heat in the preliminary condensation process to promote the reaction of phosphorus oxychloride and oxygen, thereby achieving integrated processing of phosphorus oxychloride, and also improving the production effect and efficiency of phosphorus oxychloride.
[0052] The above is a detailed description of an embodiment of the present invention. However, the content described is only a preferred embodiment of the present invention and should not be considered to limit the scope of the present invention. All equivalent changes and improvements made within the scope of the present invention should still fall within the scope of the patent coverage of the present invention.
Claims
1. A purification and filtration device for phosphorus oxychloride production, comprising a mounting platform (1), characterized in that: The top of the mounting platform (1) is fixedly connected to a mounting frame (2), a mounting shaft (3) is rotatably connected inside the mounting frame (2), one end of the mounting shaft (3) is fixedly connected to a preparation tank (4), a transmission pipe (5) is rotatably connected inside the preparation tank (4), and a preparation mechanism connected to the preparation tank (4) is provided on the transmission pipe (5); The transmission tube (5) is provided with a purification mechanism connected to the mounting platform (1), the purification mechanism is used to purify the phosphorus oxychloride prepared by the preparation mechanism, and at the same time accelerate the preparation of the phosphorus oxychloride in the preparation tank (4), the outer surface of the transmission tube (5) is connected to the transmission mechanism connected to the preparation tank (4), the transmission mechanism is used to drive the transmission tube (5) to rotate, the outer surface of the installation shaft (3) is connected to the driving mechanism connected to the mounting frame (2), the driving mechanism is used to drive the installation shaft (3) to rotate; The preparation mechanism comprises a feed hopper (11) fixedly connected to the preparation tank (4), an electromagnetic valve is provided on the feed hopper (11), two spacers (12) are fixedly connected in the transmission tube (5), an air inlet pipe (13) fixedly connected to the spacer (12) is fixedly connected in the transmission tube (5), a plurality of air outlet pipes (192) are fixedly connected to the outer surface of the transmission tube (5), two air bags (14) are fixedly connected to the outer surface of the preparation tank (4), a first spring (15) is fixedly connected in the air bags (14), and the outer surfaces of the air bags (14) are fixedly connected to the first air supply pipe (192). 6), a first one-way air valve (17) is provided on each of the first air supply pipes (16), one end of the air inlet pipe (13) is rotatably connected to a first connecting pipe (18) fixedly connected to the preparation tank (4), one end of the first connecting pipe (18) is fixedly connected to a second air supply pipe (19) fixedly connected to the first air supply pipe (16), the outer surface of the air bag (14) is fixedly connected to a return air pipe (190) fixedly connected to the preparation tank (4), a second one-way air valve (191) is provided on the return air pipe (190), and the outer surface of the air bag (14) is provided with an air supply mechanism connected to the mounting frame (2); The air supply mechanism comprises an oxygen tank (21) fixedly connected to the mounting frame (2); an outer surface of the oxygen tank (21) is fixedly connected to an air pump (22) via a pipeline; an output end of the air pump (22) is fixedly connected to an air supply hose (23) fixedly connected to the air bag (14); and a third one-way air valve (24) is provided on the air supply hose (23); The drive mechanism drives the mounting shaft (3) to rotate back and forth, thereby driving the preparation tank (4) to swing back and forth. Simultaneously, during the swinging process, the preparation tank (4) drives the air bags (14) on the left and right sides to alternately squeeze the mounting frame (2); the phosphorus trichloride in the preparation tank (4) swings back and forth in the preparation tank (4) to collide with the oxygen.
2. A purification and filtering device for phosphorus oxychloride production according to claim 1, characterized in that: The driving mechanism comprises a driving motor (31) fixedly connected to the mounting frame (2); an output end of the driving motor (31) is fixedly connected to a driving shaft (32) via a coupling; a first driving gear (33) is fixedly sleeved on an outer surface of the driving shaft (32); and a second driving gear (34) is meshedly connected to an outer surface of the first driving gear (33) fixedly sleeved on the mounting shaft (3).
3. A purification and filtering device for phosphorus oxychloride production according to claim 1, characterized in that: The transmission mechanism comprises a transmission motor (41) fixedly connected to the preparation tank (4); an output end of the transmission motor (41) is fixedly connected to a transmission shaft (42) via a coupling; a first gear (43) is fixedly sleeved on an outer surface of the transmission shaft (42); and a second gear (44) is meshedly connected to an outer surface of the first gear (43) fixedly sleeved on a transmission tube (5).
4. A purification and filtering device for producing phosphorus oxychloride according to claim 1, characterized in that: The purification mechanism includes a purification tank (51) fixedly connected to the mounting table (1), an electric heating plate (59) fixedly connected inside the purification tank (51), a discharge pipe (52) fixedly connected to the bottom of the preparation tank (4), an electromagnetic valve provided on the discharge pipe (52), a first hose (53) fixedly connected to the purification tank (51) fixedly connected to the bottom of the discharge pipe (52), a second connecting pipe (54) fixedly connected between the two purification tanks (51), a second hose (55) fixedly connected to the outer surface of the second connecting pipe (54), one end of the second hose (55) fixedly connected to a third connecting pipe (56) rotatably connected to the transmission pipe (5), the third connecting pipe (56) fixedly connected to the preparation tank (4), a plurality of cooling elbows (57) fixedly connected to the outer surface of the transmission pipe (5), a fourth connecting pipe (58) fixedly connected to the outer surface of the transmission pipe (5), and a condensation mechanism connected to the mounting table (1) fixedly connected to the outer surface of the fourth connecting pipe (58).
5. A purification and filtering device for producing phosphorus oxychloride according to claim 4, characterized in that: The condensation mechanism comprises a condensation tank (61) fixedly connected to the mounting platform (1), a condensation pipe (62) fixedly connected inside the condensation tank (61), an outer surface of the fourth connecting pipe (58) fixedly connected to a third hose (63) fixedly connected to the condensation pipe (62), and an outer surface of the condensation pipe (62) fixedly connected to a discharge pipe (64).
6. A purification and filtering device for phosphorus oxychloride production according to claim 5, characterized in that: The top of the mounting platform (1) is fixedly connected to the output end of a water cooler (65), which is connected to the condensation tank (61) via a pipe and a water pump, and the outer surface of the condensation tank (61) is fixedly connected to the water cooler (65) via a pipe.
7. A purification and filtering device for phosphorus oxychloride production according to claim 5, characterized in that: A plurality of heat sinks (66) are fixedly connected to the outer surface of the condensation tank (61).
Citation Information
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