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Automatic fluid supplementing structure for reaction kettle

A technology of reactor and reactor body, which is applied in the structural field of automatic liquid replenishment of reactor, can solve the problems of long production time, low production efficiency, vacuum loss, etc., and achieve the effect of improving production efficiency and efficiently meeting production needs

Inactive Publication Date: 2016-09-07
张家港联合铜业有限公司
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  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0002] The decoppered liquid is evaporated in a high-temperature vacuum inside the reactor to obtain a concentrated product. In the prior art, since the decoppered liquid is placed in a closed reactor and evaporated in a high-temperature vacuum, its liquid level will continue to drop. Therefore, it is necessary to periodically Open the upper cover of the reactor, and then inject the decoppered liquid into the reactor. Opening the upper cover of the reactor each time will cause the vacuum in the reactor to be lost, and the negative pressure must be pulled again, resulting in cumbersome procedures and negative pressure pulling process. It is also easy to cause water pouring in the reactor, which will lead to long production time, low production efficiency, high energy consumption and high production cost

Method used

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  • Automatic fluid supplementing structure for reaction kettle

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Embodiment Construction

[0014] A structure for automatic replenishment of reactor, see figure 1 : It includes the reaction kettle body 1, the reaction kettle upper cover 2, and the liquid replacement tank 3. The copper removal liquid 4 is installed in the liquid replacement tank 3. The temperature of the copper removal liquid 4 is about 60°C. The reaction kettle upper cover 2 is installed in the reaction The kettle body 1 and the top cover 2 of the reaction kettle are provided with a liquid replenishment hole 5, and the liquid replenishment tank 3 is connected to the position of the liquid replenishment hole 5 through a connecting pipeline 6, and the connecting pipeline 6 is provided with a valve structure 7 corresponding to the inlet position of the liquid replenishing hole 5.

[0015] A liquid level detector 8 is installed inside the reactor body 1, and the liquid level detector 8 is connected to the valve structure 7 through an external line. When the liquid level detector 8 detects that the liquid...

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Abstract

The invention provides an automatic fluid supplementing structure for a reaction kettle. The structure continuously and automatically supplements copper removed fluid inside the reaction kettle until final concentrated products are obtained inside the reaction kettle, the production efficiency of the products is improved, and production requirements are met. The structure comprises a reaction kettle body, a reaction kettle upper cover and a fluid supplementing tank, the copper removed fluid is stored in the fluid supplementing tank, and the reaction kettle upper cover is mounted on the reaction kettle body. The structure is characterized in that a fluid supplementing hole is formed in the reaction kettle upper cover, the fluid supplementing tank is communicated with the fluid supplementing hole through a connecting pipeline, and the connecting pipeline is provided with a valve structure corresponding to an inlet of the fluid supplementing hole.

Description

technical field [0001] The invention relates to the technical field of metal processing, in particular to a structure for automatic liquid replenishment of a reactor. Background technique [0002] The decoppered liquid is evaporated in a high-temperature vacuum inside the reactor to obtain a concentrated product. In the prior art, since the decoppered liquid is placed in a closed reactor and evaporated in a high-temperature vacuum, its liquid level will continue to drop. Therefore, it is necessary to periodically Open the upper cover of the reactor, and then inject the decoppered solution into the reactor. Opening the upper cover of the reactor each time will cause the vacuum in the reactor to be lost, and the negative pressure must be pulled again, resulting in cumbersome procedures and negative pressure pulling process. In addition, it is easy to cause water pouring in the reactor, which leads to long production time, low production efficiency, high energy consumption and ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B01J3/02B01J3/03B01J3/00
CPCB01J3/02B01J3/006B01J3/03
Inventor 王震宇谭乐平杨邦本
Owner 张家港联合铜业有限公司