Sodium Molybdate
Tungsten and molybdenum are widely used in industries such as electronics and energy due to their high melting points, excellent thermal and electrical conductivity, high density and strength, corrosion resistance and oxidation resistance, good machinability, and environmental recyclability.
- Product Description
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Specifications Chemical Composition (%) Main Content ≥ Impurity Content ≤ Na2MoO4·2H2O Cl SO4 Al PO4 Pb Fe Insoluble in Water 99 0.04 0.04 0.005 0.002 0.006 0.005 0.05 Si Cu Sn Ni Cd Zn -PH- 0.005 0.005 0.006 0.005 0.006 0.006 -7-10- -Packaging: Iron drum lined with double-layer plastic bags, each bag net weight of -50Kg; Plastic woven bags, each bag net weight of -50Kg; Executed according to user requirements- -Properties and Uses: Sodium Molybdate [Na2MoO4·2H2O] is used for the manufacture of alkaloids and other reagents, also used in dyes, molybdenum red pigments, catalysts, molybdenum salts and color-resistant precipitating agents. It is a raw material for producing flame retardants and a metal corrosion inhibitor for non-polluting cooling water systems, as well as an essential trace element for plants and animals.- Tungsten electrode, it is made of tungsten electrode which has high melting point, corrosion resistance, high density, good thermal and electrical conductivity material. Tungsten electrode is widely used for welding in its properties. Tungsten electrodes are ground or polished and black rod. Their final colors are different and differences can be discerned. In tungsten electrodes, more importantly, the tungsten content also varies depending on their final color. When welding, choosing the right tungsten electrode makes welding easier and it is important to get a high quality weld. Some important factors to consider to make the right choice are the power source (inverter or transformer), the type of welding material (steel, aluminum or stainless steel) and the thickness of the material.
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Tungsten and molybdenum are widely used in industries such as electronics and energy due to their high melting points, excellent thermal and electrical conductivity, high density and strength, corrosion resistance and oxidation resistance, good machinability, and environmental recyclability.
Tungsten and molybdenum are widely used in industries such as electronics and energy due to their high melting points, excellent thermal and electrical conductivity, high density and strength, corrosion resistance and oxidation resistance, good machinability, and environmentally friendly recyclability.
Tungsten and molybdenum are widely used in industries such as electronics and energy due to their high melting points, excellent thermal and electrical conductivity, high density and strength, corrosion resistance and oxidation resistance, good machinability, and environmental recyclability.
Tungsten and molybdenum are widely used in industries such as electronics and energy due to their high melting points, excellent thermal and electrical conductivity, high density and strength, corrosion resistance and oxidation resistance, good machinability, and environmental recyclability.
Tungsten and molybdenum are widely used in industries such as electronics and energy due to their high melting points, excellent thermal and electrical conductivity, high density and strength, corrosion resistance and oxidation resistance, good machinability, and environmentally friendly recyclability.
Tungsten and molybdenum are widely used in industries such as electronics and energy due to their high melting points, excellent thermal and electrical conductivity, high density and strength, corrosion resistance and oxidation resistance, good machinability, and environmental recyclability.
Tungsten and molybdenum are widely used in industries such as electronics and energy due to their high melting points, excellent thermal and electrical conductivity, high density and strength, corrosion resistance and oxidation resistance, good machinability, and environmental recyclability.
Tungsten and molybdenum are widely used in industries such as electronics and energy due to their high melting points, excellent thermal and electrical conductivity, high density and strength, corrosion resistance and oxidation resistance, good machinability, and environmental recyclability.
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