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Calcined Petroleum Coke carbon content

Calcined Petroleum Coke Carbon Content Calcined petroleum coke (CPC) is a high-carbon material derived from the thermal treatment of raw (green) petroleum coke. The calcination process involves heating the raw coke to temperatures typically between 1200°C and 1400°C in a rotary kiln or vertical shaft calciner to remove volatile matter, moisture, and other impurities. This results in a product with significantly higher carbon content, improved electrical conductivity, and greater physical stability, making it suitable for various industrial applications, particularly in the production of anodes for aluminum smelting and graphite electrodes for steelmaking. Carbon Content in Calcined Petroleum Coke The carbon content of CPC is one of its most critical properties, directly influencing its performance in end-use applications. After calcination, the carbon content typically ranges between 98% and 99.5%, depending on the quality of the raw coke and the efficiency of the calcination process. The remaining composition consists of minor impurities such as sulfur, nitrogen, metals (e.g., vanadium, nickel, iron), and trace amounts of hydrogen and oxygen. Factors Affecting Carbon Content 1. Raw Coke Quality – The carbon content of CPC is largely determined by the quality of the feedstock (green petroleum coke). Low-sulfur, low-metal feedstocks generally yield higher-purity CPC. 2. Calcination Conditions – The temperature, residence time, and atmosphere (oxygen-limited) during calcination influence the removal of volatile components, thereby increasing fixed carbon content. 3. Impurities – Sulfur, ash, and metal content can slightly reduce the effective carbon percentage, though advanced refining techniques can minimize these impurities. Importance of High Carbon Content - Aluminum Industry – CPC with high carbon content (≥98.5%) is essential for producing prebaked anodes used in aluminum electrolysis, ensuring efficient electrical conductivity and reducing energy consumption. - Steel Industry – Graphite electrodes made from high-carbon CPC improve arc furnace efficiency in steel production. - Other Applications – High-purity CPC is also used in titanium dioxide production, carbon raisers in foundries, and as a recarburizer in metallurgical processes. Conclusion Calcined petroleum coke is a crucial carbon material in multiple industries due to its high fixed carbon content, low reactivity, and excellent conductivity. The carbon content is a key quality parameter, influenced by feedstock purity and calcination efficiency. Industries requiring high-performance carbon materials rely on CPC with consistent carbon levels to ensure optimal performance in their processes. Continuous advancements in calcination technology further enhance the purity and consistency of CPC, meeting the stringent demands of modern industrial applications.

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  • Calcined Petroleum Coke

    Calcined Petroleum Coke

    Category: Carbon products
    Browse number: 8
    Number:
    Release time: 2025-11-05 18:22:13
    The calcined petroleum coke used in the primary aluminum industry; another large segment is used in the steel industry as a recarburizing agent. Other uses include the production of titanium dioxide, which is used as a pigment for paint, plastics, sunscreens, and food coloring.
  • Calcined Petroleum Coke

    Calcined Petroleum Coke

    Category: Carbon products
    Browse number: 34
    Number:
    Release time: 2025-11-05 18:34:05
    Calcination of petroleum coke is the calcination of delayed coke extracted from refinery. Although calcined petroleum coke has higher sulfur and nitrogen content than asphalt coke,its price advantage also makes it widely used as a kind of carburizing agent in steelmaking and foundry materials.

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