Enclosed type electrolytic tank and electrolytic system

An electrolytic cell and closed technology, applied in the field of electrolytic cells, can solve the problems of increased current density during electrolysis, poor operating environment of the electrolysis plant, uneven electrode current distribution, etc., to achieve good electrode potential distribution, reduce the occurrence of side reactions, increase The effect of limiting current density

Active Publication Date: 2010-08-18
BEIJING GENERAL RES INST OF MINING & METALLURGY
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Problems solved by technology

In the existing production technology, the general-purpose electrolytic cell is an open electrolytic cell. Due to the slow flow rate of the electrolyte, it is difficult to ensure a uniform flow rate of the liquid, and it is prone to uneven flow and dead ends, which not only makes the current distribution on the electrodes uneven , causing the electrolytic current density to drop, and because the flow rate is slow, the laminar layer on the electrode surface is wider, so that the concentration of the electrolyte on the plate surface becomes lower, resulting in concentration polarization, the cell voltage rises, and the secondary The chance of reaction occurs, thus limiting the increase of current density during electrolysis; in electrolysis engineering, the electrolytic cell is the key to investment, especially the area of ​​the electrode leads to an increase in the cost of the electrolytic cell, so in the case of ensuring a certain scale of equipment, increase the unit Reducing the electrode area is the key to reducing investment; in addition, the existing electrolytic cell is open, and the gas generated during electrolysis will entrain the electrolyte and volatilize into the plant, resulting in a poor operating environment for the electrolytic plant

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  • Enclosed type electrolytic tank and electrolytic system
  • Enclosed type electrolytic tank and electrolytic system
  • Enclosed type electrolytic tank and electrolytic system

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Abstract

The invention discloses a sealed electrolysis bath and an electrolytic system, the electrolysis bath comprises two end plates, an anode component, a cathode component, sealing components and a compacting device, wherein liquid flowing ports are evenly arranged on the two end plates, liquid flowing through-holes are correspondingly arranged on the anode component and the cathode component, the anode component and the cathode component are separately arranged between the two end plates, a polar chamber is formed between the anode component and the cathode component, the sealing components are evenly arranged on the contact position of the anode component, the cathode component and the end plates, and the anode component, the cathode component and the end plates form a sealed structure afterbeing compacted through the compacting device. The electrolysis bath has simple structure and can increase the circulation speed of electrolyte, the overpotential is effectively lowered, the current density of an anode and a cathode is increased when in electrolysis, the productivity of unit electrolysis bath is increased, and the electrolysis bath can be widely applied in electrowinning various metal and in electrowinning metallic solution with low concentration. The sealed structure avoids the influence of gas which is discharged in the electrolysis process to environment in a workshop.

Description

Technical field The invention relates to an electrolytic cell technology, in particular to a closed electrolytic cell and an electrolytic system suitable for metal electrowinning. Background technique In the existing production technology, the general electrolytic cell is an open electrolytic cell. Due to the slow flow rate of the electrolyte, it is difficult to ensure a uniform flow rate of the liquid, and it is prone to uneven flow and dead ends, which not only makes the current distribution on the electrode uneven , Resulting in a decrease in electrolytic current density, and due to the slower flow rate and a wider laminar layer on the electrode surface, the concentration of the electrolyte on the electrode plate surface becomes lower, which leads to concentration polarization, increased cell voltage, and increased vice The opportunity of reaction occurs, thereby limiting the increase in current density during electrolysis; in electrolysis engineering, the electrolytic cell ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C25C7/00
Inventor 王振文江培海尹飞
Owner BEIJING GENERAL RES INST OF MINING & METALLURGY
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