
Electrolytic Manganese Piece Mn Flake
The production of electrolytic manganese is a relatively energy-intensive process, as it requires the use of large amounts of electricity to drive the electrolysis reaction. As a result, the cost of electrolytic manganese can be higher than other forms of manganese, such as ferromanganese or silicomanganese.
Description
Description
Electrolytic manganese is a type of high-purity manganese metal produced by electrolysis of a solution containing manganese sulfate and sulfuric acid. The process involves passing an electric current through the solution, which causes the manganese ions to be reduced and deposited onto a cathode, forming a solid metal.
Electrolytic manganese is used primarily as an alloying element in the production of steel and non-ferrous alloys, such as aluminum and copper alloys. It is added to steel to improve its strength, hardness, and corrosion resistance. Electrolytic manganese is also used in the production of dry cell batteries, as well as in the manufacture of other chemicals, such as fertilizers and pigments.
One of the main advantages of electrolytic manganese over other forms of manganese is its high purity. Electrolytic manganese typically has a purity of over 99.9%, making it suitable for use in high-performance applications where impurities could negatively impact the material's properties.
Specification
| Property | Value/Description |
|---|---|
| Chemical formula | MnSO4 |
| Molecular weight | 151.001 g/mol |
| Melting point | 1245°C |
| Boiling point | 1962°C |
| Density | 2.95 g/cm³ |
| Purity | >99.9% |
| Color | Silver-gray |
| Solubility in water | Soluble |
| Conductivity | High |
| Corrosion resistance | High |
| Alloying element | Added to steel to improve strength, hardness, and corrosion resistance |
| Other applications | Production of batteries, fertilizers, and pigments |
| Production process | Electrolysis of a solution containing manganese sulfate and sulfuric acid |



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