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Dead-Burned Magnesia


Dead-Burned Magnesia

Dead-burned magnesia, also known as DBM, is a highly refractory material produced by calcining or heating natural magnesite ore at extremely high temp...
Product Description:



Dead-burned magnesia, also known as DBM, is a highly refractory material produced by calcining or heating natural magnesite ore at extremely high temperatures, typically around 1700-1800°C (3092-3272°F). This process results in a product with high purity and excellent resistance to heat and chemical corrosion.

Dead-burned magnesia has numerous industrial applications. Some of the primary uses include refractory materials for furnaces, kilns, and other high-temperature equipment in industries such as steelmaking, cement production, non-ferrous metallurgy, and glass manufacturing. It is also used as a raw material in the production of electrical insulating materials, ceramics, and various other products.

Dead-burned magnesia is distinct from other types of magnesia, such as caustic-calcined magnesia (CCM) and fused magnesia, due to the manufacturing process and properties. DBM is produced by calcining magnesite at a high temperature, leading to a product with superior chemical and thermal stability. In contrast, CCM is produced at lower temperatures and has different applications, mainly in agricultural and environmental sectors. Fused magnesia, on the other hand, is created by melting magnesite in an electric arc furnace and is used in specialized refractory applications.

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Dead-burned magnesia offers several advantages in refractory applications, such as:

High refractoriness: It can withstand extremely high temperatures without significant loss of strength or integrity.

Excellent resistance to basic environments: DBM performs well in alkaline or basic conditions, making it ideal for applications where exposure to basic slags or molten metals is common.

Low thermal conductivity: This property helps reduce heat loss in refractory linings, leading to improved energy efficiency.

High purity: Dead-burned magnesia has low impurity levels, which ensures stable and predictable performance in various applications.

Dead-burned magnesia is typically transported in bulk via trucks, railcars, or cargo ships, depending on the quantity and distance. It is essential to protect the material from moisture during transportation and storage, as moisture can cause undesirable changes in its properties. To prevent moisture absorption, the material is often packaged in moisture-resistant containers or stored in dry, covered areas.

Yes, like many fine powders, dead-burned magnesia should be handled with appropriate safety precautions. It is advisable to wear protective equipment such as gloves, dust masks, and safety goggles when handling the material. Additionally, workers should avoid inhaling the dust and ensure adequate ventilation in workspaces to minimize dust exposure.

 Dead-burned magnesia is not typically recycled in its original form. However, some waste streams generated during manufacturing processes can be reclaimed and used as raw materials for certain applications. In refractory industries, used magnesia bricks can sometimes be crushed and used as aggregate in refractory castables. Recycling possibilities may vary depending on the specific application and the quality of the used material.




Technical Parameters

 

Product Name

DBM85

DBM90

DBM95

MgO(%)

85Min

90Min

95Min

SiO2(%)

7.0Max

4.8Max

4.8Max

AI2O3(%)

0.7Max

1.0Max

1.0Max

Fe2O3(%)

0.6Max

0.7Max

0.7Max

CaO(%)

5.0Max

4.0Max

3.5Max

Loi(%)

0.8Max

0.6Max

0.5Max

BD(kg/cm3)

3.10Min

3.15Min

3.15Min

Coarse Size

1-15 mm, 3-15 mm, 5-15 mm, 3-8 mm, 5-10 mm, customizable

Small Fractions

0-1 mm, 0.5-1 mm, 1-3 mm, 1-5 mm, 200 mesh, customizable

Colour

Brown

Packing

1.25MT Bag, customizable

 

 

 

 


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