CN215636525U - Liquid ammonia storage tank evaporation heat gasification device - Google Patents

Liquid ammonia storage tank evaporation heat gasification device Download PDF

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Publication number
CN215636525U
CN215636525U CN202121381921.9U CN202121381921U CN215636525U CN 215636525 U CN215636525 U CN 215636525U CN 202121381921 U CN202121381921 U CN 202121381921U CN 215636525 U CN215636525 U CN 215636525U
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pipe
fixedly connected
ring
intercommunication
communicating
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CN202121381921.9U
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刘茂帅
赵嘉
张保堂
崔媛
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Shanxi Huatai Environmental Technology Co ltd
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Shanxi Huatai Environmental Technology Co ltd
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Abstract

The utility model discloses a liquid ammonia storage tank evaporative heat gasification device in the technical field of liquid ammonia evaporative heat gasification, which comprises an evaporation tank, wherein the lower end of the evaporation tank is fixedly connected with a mounting frame, a motor is fixedly connected onto the mounting frame, an output shaft of the motor is fixedly connected with a large gear, the lower end of the evaporation tank is rotatably connected with a water outlet pipe, the outer wall of the water outlet pipe is fixedly connected with a small gear, the small gear is meshed with the large gear, the water outlet pipe is rotatably connected onto the evaporation tank, the upper end of the water outlet pipe is communicated with a communicating ring, the upper end of the communicating ring is fixedly connected with a connecting rod, the upper end of the connecting rod is fixedly connected with a communicating ring II, the periphery of the communicating ring II is communicated with a flow guide pipe, one end of the flow guide pipe, far away from the communicating ring II, is communicated with a water ring, the lower end of the water ring is fixedly connected with a heating pipe, the lower end of the heating pipe is fixedly connected with a mounting ring, and the periphery of the communicating ring is communicated with a flow guide pipe II, and the upper end of the second communicating ring is rotated with a water supply pipe which is communicated with the second communicating ring. This practical effect and the efficiency of heating are higher.

Description

Liquid ammonia storage tank evaporation heat gasification device
Technical Field
The utility model relates to the technical field of liquid ammonia evaporation thermal gasification, in particular to a liquid ammonia storage tank evaporation thermal gasification device.
Background
Liquid ammonia, a colorless liquid, has a strong pungent odor. Ammonia is an important chemical raw material, and for convenience in transportation and storage, gaseous ammonia gas is usually pressurized or cooled to obtain liquid ammonia. Ammonia is readily soluble in water, forming an alkaline solution of ammonium hydroxide upon dissolution in water. The liquid ammonia is often stored in a pressure-resistant steel cylinder or a steel tank, and cannot coexist with acetaldehyde, acrolein, boron and the like. Liquid ammonia is widely used in industry, has corrosiveness and is easy to volatilize, so that the chemical accident rate is high.
In chemical production, the liquefied gas in the steel cylinder is gasified to participate in gas-liquid or gas-solid reaction, such as the gasification of liquid chlorine, liquid ammonia and propylene to participate in chlorination, ammoniation and addition reaction, and under general conditions, the direct gasification method of the steel cylinder is adopted.
Accordingly, the present invention provides an apparatus for vaporizing heat by liquid ammonia storage tank, which solves the above-mentioned problems of the prior art.
SUMMERY OF THE UTILITY MODEL
The present invention is directed to a liquid ammonia storage tank evaporation thermal gasification device to solve the above problems in the background art.
In order to achieve the purpose, the utility model provides the following technical scheme: the evaporative heat gasification device for the liquid ammonia storage tank comprises an evaporation tank, wherein a mounting frame is fixedly connected to the lower end of the evaporation tank, a motor is fixedly connected to the mounting frame, a gear wheel is fixedly connected to an output shaft of the motor, a water outlet pipe is rotatably connected to the lower end of the evaporation tank, a pinion is fixedly connected to the outer wall of the water outlet pipe, the pinion is meshed with a gear wheel, the water outlet pipe is rotatably connected to the evaporation tank, a communicating ring is communicated with the upper end of the water outlet pipe, a connecting rod is fixedly connected to the upper end of the communicating ring, a communicating ring II is fixedly connected to the upper end of the connecting rod, a flow guide pipe is communicated with the periphery of the communicating ring II, one end of the flow guide pipe, away from the communicating ring II, is communicated with a water ring, a heating pipe is fixedly connected to the lower end of the water ring, a mounting ring is fixedly connected to the lower end of the heating pipe, and a flow guide pipe II is communicated with the periphery of the communicating ring, and the upper end of the second communicating ring is rotated with a water supply pipe which is communicated with the second communicating ring.
As a further scheme of the utility model: the lower end of the water outlet pipe is communicated and rotatably connected with a second communicating pipe, a connecting ring is arranged at the lower end of the water outlet pipe, a connecting sleeve is arranged at the upper end of the second communicating pipe, the lower end of the water outlet pipe is rotatably connected in the connecting sleeve of the second communicating pipe through the connecting ring, and the connecting mode of the water outlet pipe and the second communicating pipe is the same as that of the water feeding pipe and the second communicating pipe.
As a further scheme of the utility model: the right-hand member intercommunication of communicating pipe two has the intercommunication box, the right-hand member intercommunication heat dissipation pipe of intercommunication box, the right-hand member intercommunication of heat dissipation pipe has the intercommunication box, the right-hand member intercommunication communicating pipe of intercommunication box, the lower extreme fixed connection of intercommunication box is on the bottom plate, the upper end fixedly connected with sleeve of bottom plate, the upper end fixedly connected with motor two of bottom plate, the output shaft fixedly connected with flabellum of motor two, telescopic upper end is provided with ventilative net.
As a further scheme of the utility model: the material of heat dissipation pipe is aluminium, the shape of heat dissipation pipe is the narrow bar of wave, the heat dissipation pipe is hollow structure, the sleeve is located the heat dissipation under the pipe.
As a further scheme of the utility model: the right end of the communicating pipe is communicated with a water tank, a water pump is arranged inside the water tank, and an output port of the water pump is communicated with a water supply pipe.
As a further scheme of the utility model: and an exhaust port is arranged at the upper end of the evaporation tank.
As a further scheme of the utility model: the heating pipe is provided with a plurality of, the shape of heating pipe is wave narrow bar and ripple slope up or down, the inside of heating pipe is hollow structure.
Advantageous effects
Compared with the prior art, the utility model has the beneficial effects that:
1. the water pump sends water to the second of the intercommunication ring through the water supply pipe, and the intercommunication ring sends water to the water ring through the honeycomb duct again, and in passing through the water ring and sending water to the heating tube, realize the heating to liquid ammonia through the heating pipe, rivers flow into the honeycomb duct through the lower extreme of heating pipe again and finally stay the intercommunication intra-annular, flow to second communicating pipe through the outlet pipe at last and stay the return water tank through communicating pipe at last. The whole water flow is closed loop, the utilization rate of water is improved, and the waste of water resources is reduced.
2. The motor drives the gear wheel and rotates, and the gear wheel drives the pinion and rotates to drive the outlet pipe and rotate on the evaporating pot, thereby drive all heating pipes and rotate in the evaporating pot, can play the stirring effect to liquid ammonia in the jar, it is more even to heat, and efficiency is higher, can accelerate the quick upflow of the ammonia gas of gasification in the liquid ammonia simultaneously.
3. The right-hand member intercommunication of communicating pipe has the heat dissipation pipe, and the heat dissipation pipe is the narrow bar of wave, and the lower extreme of heat dissipation pipe is provided with motor and flabellum, and the motor drives the flabellum and rotates, and the intraductal cold water that will flow to the heat dissipation that can be quick takes the surface of heat dissipation pipe in the air through the mode of blowing, can heat up with the intraductal cold water of heat dissipation with higher speed, discharges to the water tank again in, great improvement the efficiency of heating.
Drawings
FIG. 1 is a schematic view of the overall structure;
FIG. 2 is an internal schematic view of the overall structure;
FIG. 3 is a schematic view of the internal structure of the evaporation tank;
FIG. 4 is a schematic view of a heat sink tube portion;
FIG. 5 is a schematic view of a motor portion;
fig. 6 is a schematic structural view of a heating tube.
In the figure: 1. an evaporator tank; 2. a motor; 3. a water tank; 4. a water supply pipe; 5. a communicating pipe; 6. a heat dissipation pipe; 7. a sleeve; 8. a second communicating pipe; 9. an exhaust port; 10. a water pump; 11. a bull gear; 12. a pinion gear; 13. a water outlet pipe; 14. a flow guide pipe; 15. a mounting frame; 16. a second motor; 17. installing a ring; 18. a communication box; 19. a base plate; 20. a communication ring; 21. heating a tube; 22. a second communication ring; 23. a connecting rod; 24. a water ring; 25. a second flow guide pipe; 26. a connecting ring; 27. a connecting sleeve.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1 to 6, in the embodiment of the present invention, the liquid ammonia storage tank evaporation thermal gasification device includes an evaporation tank 1, a mounting frame 15 is fixedly connected to a lower end of the evaporation tank 1, a motor 2 is fixedly connected to the mounting frame 15, a large gear 11 is fixedly connected to an output shaft of the motor 2, a water outlet pipe 13 is rotatably connected to a lower end of the evaporation tank 1, a small gear 12 is fixedly connected to an outer wall of the water outlet pipe 13, the small gear 12 is engaged with the large gear 11, the water outlet pipe 13 is rotatably connected to the evaporation tank 1, an upper end of the water outlet pipe 13 is communicated with a communicating ring 20, an upper end of the communicating ring 20 is fixedly connected with a connecting rod 23, an upper end of the connecting rod 23 is fixedly connected with a communicating ring two 22, a flow guide pipe 14 is communicated to a periphery of the communicating ring two 22, one end of the flow guide pipe 14 far away from the communicating ring two 22 is communicated with a water ring 24, a lower end of the water ring 24 is fixedly connected with a heating pipe 21, and a lower end of the heating pipe 21 is fixedly connected with a mounting ring 17, the outer wall of the periphery of the communicating ring 20 is communicated with a second draft tube 25, the upper end of the second communicating ring 22 is rotated with a water delivery pipe 4, and the water delivery pipe 4 is communicated with the second communicating ring 22.
Specifically, the lower end of the water outlet pipe 13 is communicated and rotatably connected with the second communication pipe 8, the lower end of the water outlet pipe 13 is provided with a connecting ring 26, the upper end of the second communication pipe 8 is provided with a connecting sleeve 27, the lower end of the water outlet pipe 13 is rotatably connected in the connecting sleeve 27 of the second communication pipe 8 through the connecting ring 26, and the connecting mode of the water outlet pipe 13 and the second communication pipe 8 is the same as that of the water feeding pipe 4 and the second communication ring 22.
In this embodiment: the function of realizing the water pipe intercommunication can be realized simultaneously and the rotation is connected.
Specifically, the right end of the communicating pipe II 8 is communicated with a communicating box 18, the right end of the communicating box 18 is communicated with a heat dissipation pipe 6, the right end of the heat dissipation pipe 6 is communicated with a communicating box 18, the right end of the communicating box 18 is communicated with a communicating pipe 5, the lower end of the communicating box 18 is fixedly connected to a bottom plate 19, an upper end of the bottom plate 19 is fixedly connected with a sleeve 7, the upper end of the bottom plate 19 is fixedly connected with a motor II 16, an output shaft of the motor II 16 is fixedly connected with fan blades, and the upper end of the sleeve 7 is provided with a breathable grid.
Specifically, the heat dissipation pipe 6 is made of aluminum, the heat dissipation pipe 6 is in a wave narrow strip shape, the heat dissipation pipe 6 is in a hollow structure, and the sleeve 7 is located right below the heat dissipation pipe 6.
In this embodiment: the heat dissipation pipe 6 is the narrow bar of wave, and the lower extreme of heat dissipation pipe 6 is provided with two 16 and flabellums of motor, and two 16 drive flabellums of motor rotate, and the cold water that will flow in the heat dissipation pipe 6 that can be quick takes the heat in the air to the surface of heat dissipation pipe 6 through the mode of blowing, can heat up with higher speed the cold water in the heat dissipation pipe 6, discharges to water tank 3 again in, great improvement the efficiency of heating.
Specifically, the right end of the communicating pipe 5 is communicated with a water tank 3, a water pump 10 is arranged inside the water tank 3, and an output port of the water pump 10 is communicated with a water supply pipe 4.
In this embodiment: when the water circulation power machine is used, water in the water tank 3 needs to be heated, and the circulation power of the whole water flow is realized through the conveying function of the water pump 10.
Specifically, the upper end of the evaporation tank 1 is provided with an exhaust port 9.
In this embodiment: the evaporated ammonia gas can be discharged.
Specifically, a plurality of heating pipes 21 are provided, the shape of the heating pipe 21 is a wave narrow strip shape, the wave shape is upward or downward inclined, and the inside of the heating pipe 21 is a hollow structure. Not only can realize the function of heating, can also realize the stirring function to liquid ammonia.
The working principle of the utility model is as follows: when the device is used, water in the water tank 3 needs to be heated, the water pump 10 pumps the heated water into the water supply pipe, the water supply pipe supplies the water into the second communication ring 22 and then flows into the guide pipe 14 and then flows into the water ring 24, the water flows into the heating pipe 21 through the water ring 24, the heating function of liquid ammonia is achieved through the heating pipe 21, in the process, the water ring 24, the guide pipe 14 and the second guide pipe 25 play a secondary heating function, finally, the water flows out of the second communication pipe 8 through the water outlet pipe 13, and finally flows back into the water tank 3 through the second guide pipe 25 after the temperature of the heat dissipation pipe 6 is raised, so that the integral water circulation is achieved. In the process, the motor 2 drives the large gear 11 to rotate to drive the small gear 12 to rotate, the small gear 12 rotates to drive the water outlet pipe 13 to rotate, and therefore the water outlet pipe 13 is driven to drive all the heating pipes 21 to rotate in the evaporation tank 1, and the heating and stirring functions in the evaporation tank 1 are achieved.
In the description herein, references to the description of "one embodiment," "an example," "a specific example" or the like are intended to mean that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the utility model. In this specification, the schematic representations of the terms used above do not necessarily refer to the same embodiment or example. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples. The preferred embodiments of the utility model disclosed above are intended to be illustrative only.

Claims (7)

1. Liquid ammonia storage tank evaporation heat gasification equipment, including evaporating pot (1), its characterized in that: the lower extreme fixedly connected with mounting bracket (15) of evaporating pot (1), fixedly connected with motor (2) on mounting bracket (15), the output shaft fixedly connected with gear wheel (11) of motor (2), the lower extreme of evaporating pot (1) rotates and is connected with outlet pipe (13), the outer wall fixedly connected with pinion (12) of outlet pipe (13), pinion (12) meshing gear wheel (11), outlet pipe (13) rotate and connect on evaporating pot (1), the upper end intercommunication of outlet pipe (13) has intercommunication ring (20), the upper end fixedly connected with connecting rod (23) of intercommunication ring (20), the upper end fixedly connected with intercommunication ring two (22) of connecting rod (23), the intercommunication all around of intercommunication ring two (22) has honeycomb duct (14), the one end intercommunication water circle (24) of intercommunication ring two (22) are kept away from in honeycomb duct (14), the lower extreme fixedly connected with heating pipe (21) of water circle (24), the lower extreme fixed connection installation circle (17) of heating pipe (21), the outer wall intercommunication all around of intercommunication ring (20) has honeycomb duct two (25), the upper end of intercommunication ring two (22) is rotated and is had water pipe (4), water pipe (4) intercommunication ring two (22).
2. The liquid ammonia storage tank evaporative heat gasification device of claim 1, wherein: the lower extreme intercommunication and the rotation of outlet pipe (13) are connected communicating pipe two (8), the lower extreme of outlet pipe (13) is provided with clamping ring (26), the upper end of communicating pipe two (8) is provided with adapter sleeve (27), the lower extreme of outlet pipe (13) is passed through clamping ring (26) and is rotated the connection in adapter sleeve (27) of communicating pipe two (8), the connected mode of outlet pipe (13) and communicating pipe two (8) is the same with the connected mode of intercommunication ring two (22) with delivery pipe (4).
3. The liquid ammonia storage tank evaporative heat gasification device of claim 1, wherein: the right-hand member intercommunication of communicating pipe two (8) has communicating box (18), the right-hand member intercommunication heat dissipation pipe (6) of communicating box (18), the right-hand member intercommunication of heat dissipation pipe (6) has communicating box (18), the right-hand member intercommunication communicating pipe (5) of communicating box (18), the lower extreme fixed connection of communicating box (18) is on bottom plate (19), the upper end fixedly connected with sleeve (7) of bottom plate (19), the upper end fixedly connected with motor two (16) of bottom plate (19), the output shaft fixedly connected with flabellum of motor two (16), the upper end of sleeve (7) is provided with ventilative net.
4. A liquid ammonia storage tank evaporative heat gasification apparatus as claimed in claim 3, wherein: the heat dissipation pipe (6) is made of aluminum, the heat dissipation pipe (6) is in a wave narrow strip shape, the heat dissipation pipe (6) is of a hollow structure, and the sleeve (7) is located under the heat dissipation pipe (6).
5. A liquid ammonia storage tank evaporative heat gasification apparatus as claimed in claim 3, wherein: the water tank (3) is communicated with the right end of the communicating pipe (5), the water pump (10) is arranged inside the water tank (3), and an output port of the water pump (10) is communicated with the water conveying pipe (4).
6. The liquid ammonia storage tank evaporative heat gasification device of claim 1, wherein: an exhaust port (9) is arranged at the upper end of the evaporation tank (1).
7. The liquid ammonia storage tank evaporative heat gasification device of claim 1, wherein: the heating pipe (21) is provided with a plurality of, the shape of heating pipe (21) is wave narrow strip shape and ripple upwards or slope down, the inside of heating pipe (21) is hollow structure.
CN202121381921.9U 2021-06-22 2021-06-22 Liquid ammonia storage tank evaporation heat gasification device Active CN215636525U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121381921.9U CN215636525U (en) 2021-06-22 2021-06-22 Liquid ammonia storage tank evaporation heat gasification device

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Application Number Priority Date Filing Date Title
CN202121381921.9U CN215636525U (en) 2021-06-22 2021-06-22 Liquid ammonia storage tank evaporation heat gasification device

Publications (1)

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CN215636525U true CN215636525U (en) 2022-01-25

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115950287A (en) * 2022-12-21 2023-04-11 浙江高晟光热发电技术研究院有限公司 Fluidized bed particle electric heater
CN117167647A (en) * 2023-08-23 2023-12-05 东台宏博净化科技有限公司 Liquid ammonia adding device for ammonia decomposition hydrogen production furnace

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115950287A (en) * 2022-12-21 2023-04-11 浙江高晟光热发电技术研究院有限公司 Fluidized bed particle electric heater
CN117167647A (en) * 2023-08-23 2023-12-05 东台宏博净化科技有限公司 Liquid ammonia adding device for ammonia decomposition hydrogen production furnace

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