Home » Manganese II III Oxide Powder (Mn3O4, APS: 40-50µm, Purity: 99%)
|Product||Manganese II III Oxide Powder|
|Molecular Weight||228.812 g/mol||Confirm|
|Melting Point||1567 °C||Confirm|
|Boiling Point||2847 °C||Confirm|
|Quality Control||Each lot of Manganese II III Oxide Powder was tested successfully.|
|Main Inspect Verifier||Manager QC|
Manganese oxide powder is actually an inorganic compound and like many other monoxides, it has a rock salt structure. Because of the rock-like structure, it exhibits both the cations and anions are octahedrally coordinated. Manganese oxides can act as important adsorbents of phosphate in natural waters and surface sediments. Two useful applications of the scavenging ability of Mn oxide minerals are as geochemical exploration tools and purification agents for drinking water.
Manganese oxide powder is applied in fertilizers and food additives due to its effectiveness in the fertilizer industry. Furthermore, manganese oxide is utilized as a catalyst in the production of allyl alcohol, paints, colored glass, ceramics, etc.
Manganese II III oxide powder: The main application of manganese oxide is in dry-cell batteries (zinc-carbon batteries or d Leclanché cells). In recent years, however, in alkaline batteries, manganese oxides are also employed. Manganese tetraoxide can also be utilized as a weighting agent while drilling reservoir sections in oil and gas wells.
Manganese oxides are indispensable materials because of their extensive range applications, for instance, high-density magnetic storage media, catalysts, ion exchange, molecular adsorption, varistors, electrochemical materials, and solar energy transformation. Mn oxide is an essential component in steelmaking, as a deoxidizer and desulfurizer and for manufacturing hard-steel alloys.
Manganese II III oxide powder: It is also employed in the production of special Al alloys, Mn chemicals, water-purifying agents, plant fertilizers, additives to livestock feed, colorant for bricks, and in batteries. Manganese oxides manifest high catalytic activity for different oxidation and reduction reactions. Because of the diversity in their Mnx+ cation oxidation states as well as morphological characteristics.
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