FRP GRP electrolytic cell for Copper Lead Nickle Gold Silver Zinc Cobalt Copper Refining Tank
FRP GRP electrolytic cell for Copper Lead Nickle Gold Silver Zinc Cobalt Copper Refining Tank
FRP GRP electrolytic cell for Copper Lead Nickle Gold Silver Zinc Cobalt Copper Refining Tank
FRP GRP electrolytic cell for Copper Lead Nickle Gold Silver Zinc Cobalt Copper Refining Tank
FRP GRP electrolytic cell for Copper Lead Nickle Gold Silver Zinc Cobalt Copper Refining Tank

FRP GRP electrolytic cell for Copper Lead Nickle Gold Silver Zinc Cobalt Copper Refining Tank

Negotiable

Min.Order:1

Supply Ability:
1000 per Month
Payment Terms:
T/T Credit Card

Hengshui Aoliande Trading Co., Ltd.

Business Type: Trading Company
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Product Details

Product Description

Product Introduction:

FRP electrolytic cells are widely used in electro-refining & electro-winning industry, such as Pb, Zn, Cu, Mn,and so on. Based on its good anti-corrosion and permeability resistance ability, good integrality, strong shocks resistance ability, light weight, good inner surface hardness, good smoothness, and easy to clean, it’s applied widely.
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Aqueous electrolytic cell

The form of aqueous electrolytic cell, can be divided into two categories, diaphragm electrolyzer and diaphragm electrolyzer.Diaphragm cell and can be divided into both to membrane (asbestos wool), ionic membrane and solid electrolyte membrane (such as beta Al2O3) form;No diaphragm cell is divided into mercury cell and oxide electrolyzer, etc.

Molten salt electrolytic cell

Much used for preparing low melting point metal, its characteristic is running at high temperatures, and should try to prevent moisture to enter, avoid hydrogen ions on the cathode reduction.


Electrolytic cell consists of a tub, anode and cathode, most of the anode with the diaphragm chamber is separated from the cathode chamber.According to the divided into aqueous electrolyte cell, molten salt electrolytic cell and three types of nonaqueous solution electrolysis cell.


When direct current through the cell, the oxidizing reaction at the interface between the anode and the solution of reduction reaction at the interface between the cathode and the solution, by making the required product.

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