Process action and decomposition of mobile platform for reducing heavy metal pollution in manganese electrolyzing process

A mobile platform, heavy metal technology, applied in the electrolysis process, photography process, electrolysis components and other directions, can solve the problems such as the inability to guarantee the reduction and collection of heavy metal pollution waste liquid, the contact of the conductive copper plate of the cathode plate, the randomness of manual operation, etc. The effect of time interval, reduction of empty slot time, and reduction of manpower workload

Active Publication Date: 2014-02-19
CHINESE RES ACAD OF ENVIRONMENTAL SCI
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The entire operation process requires a certain amount of manual operation. At the same time, during the operation process, continuous operation cannot be achieved and the reduction and collection of heavy metal-contaminated waste liquid cannot be guaranteed during the process of leaving the tank. A large amount of heavy metal-containing waste water is generated into the waste water system.
In the process of entering the tank, the manual operation is very random, causing some cathode plates to fail to contact the conductive copper plate well when entering the tank, resulting in blackening of the cathode plate or failure of normal electrolysis.

Method used

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  • Process action and decomposition of mobile platform for reducing heavy metal pollution in manganese electrolyzing process

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Embodiment Construction

[0048] The principles and features of the present invention are described below in conjunction with the accompanying drawings, and the examples given are only used to explain the present invention, and are not intended to limit the scope of the present invention.

[0049] A mobile platform device for reducing heavy metal pollution in a manganese electrolysis process, including guide rails 15, ingot beams 10, precision access tank system, cathode plate transfer system, No. 1 loading rack 8, No. 1 unloading rack 9, passivation tank 6 and water Glass tank 7, the ingot beam 10 is connected with the guide rail 15, the precision access groove system is located on one side of the ingot beam 10, and is connected with the ingot beam 10, and the cathode plate transfer system is located in The other side of described ingot beam 10, and is connected with described guide rail 15; The quantity of described No. 1 loading rack 8, No. 1 unloading rack 9, passivation tank 6 and water glass tank ...

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Abstract

The invention relates to process action and decomposition of a mobile platform for reducing heavy metal pollution in a manganese electrolyzing process. The mobile platform for reducing heavy metal pollution in the manganese electrolyzing process mainly comprises a guide rail, a shoe-shaped beam, a No.1 material loading frame, a No.1 blanking frame, a passivation groove, a sodium silicate groove, an accurate groove inlet/outlet system, a negative plate movement system and other components. The process action and the decomposition define the movement content, movement method and sequence of movements of all parts of the mobile platform during the working process, greatly improve the automation level of the mobile platform for reducing heavy metal pollution in the manganese electrolyzing process, and reduce the cost for reducing the heavy metal pollution in the manganese electrolyzing process.

Description

technical field [0001] The invention relates to a process action and decomposition of a mobile platform for reducing heavy metal pollution in a manganese electrolysis process, in particular to a working process of a mobile platform for reducing heavy metal pollution in an electrolytic manganese electrolysis process, and is an action decomposition method. Background technique [0002] my country is the world's largest producer and consumer of electrolytic manganese products, and the electrolytic manganese industry is an important industry in my country's national economy. At the same time, backward production technology, labor-intensive, heavy metal wastewater, and serious environmental pollution are important constraints for the sustainable development of the electrolytic manganese industry. [0003] The subsequent production process of electrolytic manganese electrolysis mainly includes: tank exit, passivation, cleaning, drying, stripping, whole board, polishing, cleaning, ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C25C1/10C25C7/06
Inventor 段宁降林华周超但智钢徐夫元陆大玮文玉成张歌李志强阳建平高晓娟
Owner CHINESE RES ACAD OF ENVIRONMENTAL SCI
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