Graphitized petroleum coke has good stability due to the high degree of crystallinity and low impurity content. This makes it an excellent carbon source for various applications, including steel pr...
DESCRIPTION
Graphitized petroleum coke has good stability due to the high degree of crystallinity and low impurity content. This makes it an excellent carbon source for various applications, including steel production, foundries, and electrodes for aluminum smelting. Graphitized petroleum coke is known for its high thermal conductivity, low electrical resistivity, and durability under high temperatures and corrosive environments. It can maintain its properties even after prolonged exposure to harsh conditions, making it a reliable and cost-effective material for many industrial processes.
1. High Carbon Content: GPC has a high carbon content of 98% to 99.5%, which makes it an excellent source of carbon for various applications.
2. Low Sulfur Content: GPC has a low sulfur content of less than 0.05%, which makes it an ideal material for the production of high-quality steel.
3. High Density: GPC is a dense material with a density of 2.22 g/cm3, which makes it suitable for use in electric arc furnaces.
4. High Thermal Conductivity: GPC has a high thermal conductivity, which makes it an ideal material for use in the production of high-temperature products such as refractories.
5. High Electrical Conductivity: GPC has a high electrical conductivity, which makes it an ideal material for use in the production of electrodes for the steel and aluminum industry.
6. Low Ash Content: GPC has a low ash content of less than 0.5%, which makes it an ideal material for use in the production of carbon-based products.
7. High Strength: GPC has a high mechanical strength, which makes it suitable for use in high-stress applications.
Chemical | Formula | Percentage Range |
---|---|---|
Carbon | C | 98-99.5% |
Sulfur | S | 0.01-0.05% |
Nitrogen | N | 0.03-0.1% |
Ash | – | 0.1-0.5% |
Moisture | H2O | 0.5-1.0% |
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