Calcined Petroleum Coke (CPC) is a high-performance, premium-grade carbon additive specifically engineered for the demanding requirements of steel casting, foundry operations, and metallurgical processing. By subjecting green petroleum coke to a rigorous thermal treatment between 1200°C and 1350°C, we eliminate volatile matter and trigger a critical structural transformation. This process significantly enhances carbon purity, thermal stability, and chemical consistency, making it an indispensable tool for precise carbon adjustment in molten iron and steel.
As a high-efficiency recarburizing agent, our CPC ensures that industrial producers can meet the most stringent metallurgical standards with ease. Its superior density and optimized mechanical strength not only improve overall production efficiency but also minimize material waste. Whether used in high-end steel manufacturing or aluminum production, this material provides the cleanliness and stability necessary to achieve superior mechanical properties in the final metal product.
| Calcination Temp | 1200 – 1350°C | Raw Material | Green Petroleum Coke |
|---|---|---|---|
| Fixed Carbon | High Purity Grade | Sulfur Content | Low / Optimized |
| Ash Content | Low Impurity Level | Volatile Matter | Minimal / Removed |
| Structure | High Density / Stable | Conductivity | Enhanced Thermal/Electrical |
| Application | Steel Casting & Smelting | Customization | Available by Specification |
Volatile matter is eliminated through high-temperature calcination to ensure maximum carbon delivery to the melt.
Optimized chemical properties allow for efficient carbon absorption, significantly reducing smelting time and energy costs.
Ultra-low sulfur and ash levels prevent contamination, ensuring the purity of high-quality molten steel.
Maintains structural integrity under extreme heat, providing consistent performance during the casting process.
Uniform particle size ensures predictable carbon addition, allowing operators to hit exact metallurgical targets.
Ideal for steel and aluminum production, and serves as a critical feedstock for graphite electrode manufacturing.
Strict monitoring of carbon purity and sulfur levels throughout the entire calcination process.
Advanced rotary kiln and shaft furnace management for consistent heat distribution.
Reliable sourcing of high-grade green petroleum coke for stable production cycles.
Tailored particle size and grade specifications to meet specific furnace requirements.
Digital tracking of batch consistency to ensure every shipment meets client standards.
Expert guidance on optimal carbon addition rates for different steel grades.
| Comparison Metric | Standard Coke | Premium CPC |
|---|---|---|
| Carbon Recovery | Moderate | Very High (Lower Waste) |
| Smelting Speed | Standard | Accelerated (Higher Throughput) |
| Impurity Risk | Medium | Minimal (Fewer Rejections) |
| Process Stability | Variable | Consistent (Lower Downtime) |
| Cost Efficiency | Low-Mid | High ROI (Lower Total Cost) |
Green petroleum coke is the raw by-product of oil refining. CPC is produced by heating green coke to 1200-1350°C to remove volatile matter, resulting in higher carbon purity, lower moisture, and better stability for metallurgical use.
CPC offers a superior balance of high fixed carbon, low sulfur, and low ash. This minimizes contamination in the molten steel while ensuring rapid and efficient carbon absorption.
By providing a stable and pure carbon source, CPC helps in achieving the precise chemical composition required for specific steel grades, improving the mechanical properties and cleanliness of the metal.
Yes, CPC is widely used in aluminum production, as a raw material for manufacturing graphite electrodes, and in various other high-temperature metallurgical applications.
CPC should be stored in a dry, well-ventilated area to prevent moisture absorption and contamination, ensuring its high purity remains intact until it is added to the furnace.
Absolutely. We offer various specifications and grades of CPC that can be customized based on your specific furnace conditions and industrial requirements for optimal absorption.
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