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Advantages of Light Burned Magnesium Powder

2023-07-10 13:51:17
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Light burned magnesite powder is calcined from Magnesite by light burned reverberatory kiln, Rotary kiln or fluidized bed furnace. The product is calcined evenly, with stable quality, high purity and good activity. It can be widely used in industries such as papermaking, chemical engineering, refractory materials, building materials, desulfurization, etc.


Light burned magnesium powder is used to make refractory materials. In the United States and most magnesium product consuming countries, the steel industry is one of the consuming industries. The calcined magnesia produced from magnesite ore, sea water, salt lake or well salt is mainly used in the manufacture of refractory products for metallurgical furnaces. Light burned magnesium powder is widely used in various fields. In the water treatment industry, light burned magnesium powder is used to remove silicon from water and heavy industrial waste liquid; It can also serve as a neutralizer for the treatment of industrial waste gas. Lightly burned magnesium powder can react with SO2 in the flue gas to generate magnesium sulfate, thereby removing SO2 from industrial waste gas, which is superior to the sulfur removal effect of calcium compounds. Another use is to produce magnesium oxychloride and magnesium oxysulfide cement for manufacturing industrial and civil building floors.


When the line is overloaded, as long as the heating does not reach the melting point temperature of copper, the cable will not be damaged. Even if the breakdown occurs instantaneously, the crystals at the breakdown point will not form carbides. After the overload is eliminated, the performance of the cable will not change and can still be used normally.


The insulating layer is composed of minerals, which can easily react with the moisture in the air to form Magnesium hydroxide that can conduct electricity. In the construction of cable heads, when the exposed conductor is peeled off at the cable end, the insulation resistance of the cable is generally above 10M Ω. However, if the cable head is not completed within 1 hour, the insulation resistance can drop to below 10M Ω, and even to below 0.5M Ω. If the outer layer is not carefully scratched and not detected in a timely manner and sealed for moisture prevention, the insulation value will quickly decrease and gradually decrease to 0, which will cause the cable to be unusable.

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