Reaction kettle convenient for temperature regulation

By arranging spiral heating and cooling pipes alternately in the reactor and using circulating condensate for temperature control, the problem of insufficient condensate utilization is solved, enabling flexible temperature adjustment and uniform heating within the reactor, thus improving reaction efficiency.

CN223755815UActive Publication Date: 2026-01-02CHENGDU QIDA WATER TREATMENT ENG
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Patent Information

Application Number
CN202520191305.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-07
Publication Date
2026-01-02
Estimated Expiration
2035-02-07

AI Technical Summary

Technical Problem

The reaction rate and effect of materials in the reactor are affected by temperature, and the condensate generated after high-temperature steam heat exchange is not properly utilized.

Method used

The heating and cooling pipes are arranged in an alternating spiral pattern. The condensate is used for heating and cooling. The condensate is recycled through a conveying component. The temperature inside the vessel is monitored in real time by a temperature monitor.

Benefits of technology

It enables flexible temperature adjustment and uniform heating within the reactor, saves space, effectively utilizes condensate, and improves reaction efficiency.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223755815U_ABST
    Figure CN223755815U_ABST
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Abstract

The utility model discloses a reaction kettle convenient for temperature regulation. The reaction kettle comprises a kettle body, a heat exchange pipeline and a conveying assembly, the top of the kettle body is provided with a feed port, the bottom is provided with a discharge port, and the bottom edge of the kettle body is provided with support legs; the heat exchange pipeline comprises a heating pipe and a cooling pipe, the heating pipe and the cooling pipe are respectively arranged around the inner wall of the kettle body, and the end parts of the heating pipe and the cooling pipe extend out of the kettle body; the end part of the heating pipe and the end part of the cooling pipe are respectively provided with a valve; the conveying assembly communicates with the output end of the heating pipe and the input end of the cooling pipe and is used for one-way conveying from the output end of the heating pipe to the input end of the cooling pipe. According to the reaction kettle convenient to adjust the temperature, the temperature is convenient to adjust, and condensed water generated after heat exchange of high-temperature steam is reasonably utilized.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of reaction kettle, in particular to a reaction kettle of convenient temperature adjustment. BACKGROUND

[0002] The reaction rate and effect of the material in the reaction kettle are generally affected by the temperature environment in the reaction kettle, and the reaction kettle generally adopts high-temperature steam and cooling water for temperature adjustment, and the high-temperature steam produces condensed water after heat exchange, and the condensed water produced lacks reasonable utilization. SUMMARY

[0003] In view of the above problems, the utility model provides a reaction kettle of convenient temperature adjustment, convenient temperature adjustment is favorable to the reasonable utilization of the condensed water produced after the heat exchange of high-temperature steam.

[0004] The technical scheme of the utility model is as follows:

[0005] A reaction kettle of convenient temperature adjustment, comprising:

[0006] The kettle body is provided with a feed inlet at the top and a discharge outlet at the bottom, and the bottom edge of the kettle body is provided with a supporting leg;

[0007] The heat exchange pipeline comprises a heating pipe and a cooling pipe, the heating pipe and the cooling pipe are arranged around the inner wall of the kettle body respectively, and the end portions of the heating pipe and the cooling pipe extend to the outside of the kettle body; the end portion of the heating pipe and the end portion of the cooling pipe are respectively provided with valves;

[0008] The conveying assembly is connected to the output end of the heating pipe and the input end of the cooling pipe respectively, and is used for one-way conveying from the output end of the heating pipe to the input end of the cooling pipe.

[0009] In a further technical scheme, the heating pipe and the cooling pipe are both spiral serpentine pipes.

[0010] In a further technical scheme, the heating pipe and the cooling pipe have the same rotation direction and are arranged in an interlaced and overlapped manner.

[0011] In a further technical scheme, the conveying assembly comprises a conveying pipeline and a pump body arranged on the conveying pipeline, and the two ends of the conveying pipeline are connected to the output end of the heating pipe and the input end of the cooling pipe respectively.

[0012] In a further technical scheme, the conveying assembly further comprises a cooling water tank, and the cooling water tank is arranged between the conveying pipeline and the output end of the heating pipe.

[0013] In a further technical scheme, a temperature monitor is arranged on the side wall of the kettle body.

[0014] The utility model has the advantages of:

[0015] 1、When the kettle body needs to be heated, the high-temperature steam can be introduced into the heating pipe by using external equipment, and the kettle body is uniformly heated by surrounding the inner wall of the kettle body. The condensed water produced after heat exchange in the heating pipe can be temporarily stored in the conveying assembly; when the kettle body needs to be cooled, the conveying assembly can deliver the condensed water as cooling water into the cooling pipe to cool the interior of the kettle body, and the condensed water produced after heat exchange of the high-temperature steam can be reasonably utilized.

[0016] 2、The heating pipe and the cooling pipe adopt spiral serpentine pipes, which have large heat exchange area and are beneficial to sufficient heat exchange;

[0017] 3、The heating pipe and the cooling pipe are staggered and overlapped, which can save the installation space in the kettle body;

[0018] 4、The cooling water tank is used for temporarily storing condensed water, has larger volume than the conveying pipeline, is convenient for long-time temporary storage of condensed water, is also beneficial to cooling of the condensed water, and is convenient for subsequent use as cooling water;

[0019] 5、The temperature monitor is convenient for real-time monitoring of the temperature in the kettle body. BRIEF DESCRIPTION OF DRAWINGS

[0020] Fig. 1 is a structural schematic view of the reaction kettle convenient for temperature adjustment according to the embodiment of the present application;

[0021] Fig. 2 is a sectional view of the kettle body according to the embodiment of the present application.

[0022] EXPLANATION OF REFERENCE NUMERALS:

[0023] 10, kettle body; 11, feed inlet; 12, discharge outlet; 13, supporting leg; 21, heating pipe; 22, cooling pipe; 31, cooling water tank; 32, conveying pipeline; 33, pump body; 40, temperature monitor. DETAILED DESCRIPTION

[0024] The embodiments of the present application will be further described below with reference to the drawings. EMBODIMENT

[0025] As Figs. 1-2As shown, a kind of conveniently temperature-adjusted reaction kettle, including kettle body 10, heat exchange pipeline and conveying assembly;Kettle body 10 top is equipped with feed inlet 11, bottom is equipped with discharge port 12, is used for feeding and discharging respectively;The bottom edge of kettle body 10 is equipped with support 13, for stabilizing support kettle body 10;Heat exchange pipeline includes heating pipe 21 and cooling pipe 22, heating pipe 21 and cooling pipe 22 are all spiral serpentine pipe, respectively, surround kettle body 10 inner wall setting, serpentine pipe heat exchange area is big, it is favorable to fully heat exchange, the end of heating pipe 21 and cooling pipe 22 all extends to kettle body 10 outside, wherein, the input end of heating pipe 21 is at the top of the output end of heating pipe 21, the input end of cooling pipe 22 is at the top of the output end of cooling pipe 22;The end of heating pipe 21 and the end of cooling pipe 22 are equipped with valve respectively;Conveying assembly is used for the one-way conveying of the output end of heating pipe 21 to the input end of cooling pipe 22, including cooling water tank 31, conveying pipeline 32 and pump body 33 being equipped on conveying pipeline 32, cooling water tank 31 is set in the bottom of the output end of heating pipe 21, the two ends of conveying pipeline 32 are connected with the bottom of cooling water tank 31 and the input end of cooling pipe 22 respectively.

[0026] In addition, the input end of heating pipe 21 and the output end of cooling pipe 22 can be connected with existing steam generator respectively, and the hot water or warm water after heat exchange of cooling pipe 22 can be output from the output end to steam generator, and the high-temperature steam generated by steam generator is input into heating pipe 21 to heat and adjust the temperature in kettle body 10, forming a cycle.

[0027] The working principle of the above technical solution is as follows:

[0028] When the temperature in kettle body 10 needs to be raised, the valves at the two ends of heating pipe 21 are opened, and high-temperature steam can be input into heating pipe 21 by using steam generator to uniformly heat the inside of kettle body 10 by surrounding the inner wall of kettle body 10, and the condensed water generated after heat exchange in heating pipe 21 can be discharged into cooling water tank 31 for temporary storage and further cooling;When the temperature in kettle body 10 needs to be lowered, the valves at the two ends of cooling pipe 22 are opened, and pump body 33 is started, and the condensed water after cooling in cooling water tank 31 is conveyed to cooling pipe 22 by using conveying pipeline 32 to lower the temperature in kettle body 10, and the condensed water generated after heat exchange of high-temperature steam is reasonably utilized.

[0029] In another embodiment, as shown in Fig. 2 The rotation directions of heating pipe 21 and cooling pipe 22 are the same, and heating pipe 21 and cooling pipe 22 are arranged in an interlaced and overlapped manner.

[0030] The interlaced and overlapped arrangement of heating pipe 21 and cooling pipe 22 can save the installation space in kettle body 10.

[0031] In another embodiment, as shown in Fig. 1 A temperature monitor 40 for monitoring the temperature in kettle body 10 is arranged on the side wall of kettle body 10.

[0032] Conveniently monitor the temperature in the kettle body 10 in real time.

[0033] The above-described embodiments only express the specific implementation of the present application, and the description is more specific and detailed, but it cannot be understood as a limitation on the scope of the present application. It should be noted that for ordinary skilled persons in the art, without departing from the concept of the present application, a number of modifications and improvements can be made, which are within the scope of protection of the present application.

Claims

1. A reaction vessel for easy temperature adjustment, characterized by, The utility model relates to a kind of heat exchange kettle, including: Kettle body, top is equipped with feed inlet, bottom is equipped with discharge port, the bottom edge of the kettle body is equipped with support; Heat exchange pipeline, including heating pipe and cooling pipe, the heating pipe and cooling pipe are respectively around kettle body inner wall arrangement, the end of the heating pipe and cooling pipe is extended to kettle body outside;The end of the heating pipe and cooling pipe is equipped with valve respectively; Transporting component, respectively communicate the output end of heating pipe and the input end of cooling pipe, for the output end of heating pipe to the input end of cooling pipe one-way transport.

2. The reaction vessel of claim 1, wherein, The heating pipe and cooling pipe are both spiral serpentine pipe.

3. The reaction vessel of claim 2, wherein, The heating pipe and cooling pipe are same in rotation direction, and are staggered and overlapped arrangement.

4. The reaction vessel of claim 3, wherein, The transporting component includes conveying pipeline and pump body on conveying pipeline, and the two ends of conveying pipeline are connected with the output end of heating pipe and the input end of cooling pipe respectively.

5. The reaction vessel of claim 4, wherein, The transporting component further includes cooling water tank, and the cooling water tank is arranged between conveying pipeline and the output end of heating pipe.

6. The reaction vessel of claim 1, wherein, Temperature monitor is arranged on the side wall of the kettle body.