Graphitized Petroleum Coke-manufacture,factory,supplier from China

(Total 24 Products for Graphitized Petroleum Coke)
Chinese Graphitized Petroleum Coke Advantage Graphitized petroleum coke (GPC) is a high-quality carbon material produced by heating green petroleum coke to a high temperature, typically in the range of 2500 to 3000 degrees Celsius. Graphitization is a process that involves the rearrangement of carbon atoms to form a crystalline structure, resulting in a material with high carbon content and excellent electrical conductivity. Here are some advantages of Chinese graphitized petroleum coke:1.
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Graphitized petroleum coke Role in prebaked anodeGraphitized petroleum coke plays a crucial role in the production of prebaked anodes for the aluminum smelting industry. Prebaked anodes are a key component used in the electrolytic process of aluminum production, where they serve as conductive carbon blocks that transfer electrical current to the electrolytic cell.Here's how graphitized petroleum coke contributes to the production of prebaked anodes:Carbon Content: Graphitized petroleum coke has a high carbon content, typically above 98%.
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Usage to use Graphitized petroleum coke in steel Graphitized petroleum coke (GPC) is mainly used in the steel industry for the production of steel through the electric arc furnace (EAF) and ladle furnace (LF) processes. Here's how GPC is used in steelmaking:Electric Arc Furnace (EAF) Steelmaking:GPC is used as a carbon source in the EAF to provide the necessary carbon content for steel production.
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Usage to use Graphitized petroleum coke in steel Graphitized petroleum coke (GPC) is widely used in the steel industry for various applications. Some of the primary usages of GPC in steel production include:Carbon Additive in Electric Arc Furnace (EAF): GPC is used as a carbon additive in the EAF steelmaking process. It is added to the steel melt to increase the carbon content, which is essential for achieving the desired steel grade and properties.
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Graphitized petroleum coke(GPC) Role in foundry factoryGraphitized petroleum coke plays a significant role in foundry factories, particularly in the production of cast iron and steel. Here are some key roles of graphitized petroleum coke in foundry applications:Carbon Additive: Graphitized petroleum coke is commonly used as a carbon additive in foundry applications. It is added to the molten metal to adjust the carbon content and improve the final properties of the castings.
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Graphitized petroleum cokeAs graphited petroleum coke manufacturer,we have successfully diversified into areas that few players have ventured into;graphited petroleum coke business is one such example.Today, our GPC business is growing with many projects already in hand and the Group’s in-house GPC consultancy firm consolidates its position in this segment.Specification of graphitized petroleum cokeCarbonSulfurAshV.MMoisture98.50%0.10%1.50%0.80%0.30%98.50%0.05%0.35%0.30%0.30%Other specifications are available according to your requirements.Production line of graphitized petroleum cokeThe graph
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Graphitized petroleum coke Role in prebaked anodeGraphitized petroleum coke plays a crucial role in the production of prebaked anodes, which are widely used in the aluminum smelting industry. Here's how graphitized petroleum coke contributes to the prebaked anode production:Carbon Content: Prebaked anodes are primarily composed of carbon, which acts as the main conductor of electricity during the aluminum smelting process. Graphitized petroleum coke is a highly carbonaceous material with a high carbon content, typically ranging from 98% to 99.5%.
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Production process of graphitized petroleum cokeThe production process of graphitized petroleum coke involves several steps. Here's a general overview of the process:Petroleum Coke Production: Petroleum coke is a byproduct of the refining process in oil refineries. It is produced from heavy petroleum residues by coking or cracking processes. Initially, crude oil is processed in a refinery to extract various products like gasoline, diesel, and jet fuel.
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Graphitized petroleum coke Role in negative electrode materialsGraphitized petroleum coke is not typically used directly as a negative electrode material. Instead, it is commonly used as a carbon precursor in the production of negative electrode materials, particularly in lithium-ion batteries. Here's an explanation of its role in this context:Carbon Precursor: Graphitized petroleum coke serves as a carbon precursor for the negative electrode (anode) material in lithium-ion batteries.
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Graphitized Petroleum Coke Production LineGraphitized petroleum coke production process is a technology with high technical content. In the production process, it is necessary to pay attention to the technical details such as raw material quality, production environment,temperature, atmosphere, etc., to ensure the production of high-quality graphitized petroleum coke.
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Advantages of graphitized petroleum coke as a carburizerGraphitized petroleum coke (GPC) offers several advantages as a carburizer in various applications, especially in steel and iron production. Here are some of the advantages:High Carbon Content: GPC has a high carbon content, typically exceeding 98%. This high carbon content makes it an efficient and effective carburizer, as it provides a concentrated source of carbon for the desired carburization process.
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Graphitized petroleum coke Role in negative electrode materialsGraphitized petroleum coke does not play a direct role in negative electrode materials. Negative electrode materials in various applications, such as lithium-ion batteries, typically consist of carbon-based materials, but they are not specifically derived from graphitized petroleum coke.Negative electrode materials in lithium-ion batteries often utilize carbon-based materials, such as graphite, as the active component.
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Advantages of graphitized petroleum coke as a carburizerGraphitized petroleum coke (GPC) offers several advantages as a carburizer in various industrial applications. Here are some key advantages:High Carbon Content: GPC typically has a high carbon content ranging from 98% to 99.5% or even higher. This high carbon content makes GPC an excellent source of carbon for carburizing purposes.
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Graphitized petroleum coke(GPC) Role in foundry factoryGraphitized petroleum coke (GPC) can play a role in foundry factories, particularly in the production of castings through the metal casting process. Here's how GPC can be involved:Carbon Additive: GPC can be used as a carbon additive in foundry applications. It is added to the molding sand mixture or as a separate material during the metal casting process. The addition of GPC helps improve the carbon content and overall quality of the casting.Adjusting Carbon Content: GPC can be used to adjust the carbon content in the melt.
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Graphitized petroleum coke Role in negative electrode materiaGraphitized petroleum coke is not typically used as a direct material in negative electrode (cathode) applications. It is primarily utilized in anode applications, such as in the production of prebaked anodes for aluminum smelting.Negative electrode materials in various electrochemical systems, such as lithium-ion batteries, fuel cells, and supercapacitors, usually involve different materials than graphitized petroleum coke.
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Graphitized petroleum coke(GPC) Role in foundry factoryGraphitized petroleum coke plays several important roles in a foundry factory. Here are some of its key functions:Carbon Additive: Graphitized petroleum coke is commonly used as a carbon additive in the production of cast iron and steel in foundries. It is added to the furnace charge or the molten metal to adjust the carbon content and improve the overall quality of the final metal castings.
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Effect Of Graphitized Petroleum Coke On SmeltingGraphitized petroleum coke (GPC) is a highly carbonaceous material derived from petroleum and is often used in the aluminum smelting industry as a carbon source for anodes in the electrolytic reduction process. Its effect on the smelting process can be significant and depends on several factors. Here are some of the key effects of using GPC in aluminum smelting:1.Carbon Content: GPC is a high-purity carbon material with low impurities.
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Graphitized petroleum coke Role in prebaked anodeGraphitized petroleum coke plays a crucial role in the production of prebaked carbon anodes used in aluminum smelting. Prebaked anodes are a key component of the electrolytic cell in the Hall-Héroult process, which is the primary method for producing aluminum.Here's how graphitized petroleum coke is used in the prebaked anode production process:Anode Recipe: The production of prebaked anodes involves blending various carbonaceous materials to create an anode recipe.
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What Are The Properties Of Graphitized Petroleum CokeGraphitized Petroleum Coke (GPC) is a specialized form of petroleum coke that undergoes a heat treatment process called graphitization. This process transforms the amorphous carbon in petroleum coke into a crystalline graphite structure. GPC has several distinct properties, which make it suitable for various industrial applications:1. **High Carbon Content:** GPC typically contains a carbon content of over 98%, making it an excellent carbon source in metallurgical processes.2.
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Production process of graphitized petroleum cokeGraphitized petroleum coke (GPC) is produced through a multi-step process that involves the conversion of raw petroleum coke into a high-quality carbon material suitable for various industrial applications. The production process typically involves the following steps:Raw Material Preparation: The first step is to obtain raw petroleum coke, which is a byproduct of the refining process in the petroleum industry. The raw coke is generally derived from heavy or extra-heavy crude oil through a delayed coking process or fluid coking process.
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Usage to use Graphitized petroleum coke in steel Graphitized petroleum coke (GPC) is primarily used in the steel industry as a carbon additive in the production of high-quality steel. It serves as a key component in electric arc furnace (EAF) steelmaking and ladle furnace (LF) refining processes. Here's how GPC is used in steel production:Electric Arc Furnace (EAF) Steelmaking:GPC is added to the EAF as a carbon source to raise the carbon content of the steel.
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Graphitized petroleum coke(GPC) Role in foundry factoryGraphitized petroleum coke plays a significant role in foundry factories, particularly in the production of cast iron and steel. Here are some ways in which it is utilized:Carbon Additive: Graphitized petroleum coke is commonly used as a carbon additive in the production of cast iron and steel. It provides a source of carbon during the melting process, enabling the desired carbon content to be achieved in the final metal composition.
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Carburizing Agent For CastingIn casting, carburizing agents are used to introduce carbon into the surface layers of a metal or alloy to improve its hardness and wear resistance. The carburizing process involves exposing the metal to a source of carbon at elevated temperatures. Several carburizing agents can be used, including:1.Graphite: Natural or synthetic graphite is a common carburizing agent. It provides a stable source of carbon when heated and is often used in foundries.2.Petroleum Coke: Graphitized petroleum coke (GPC) is a form of carbon with high carbon content and low impurities.
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Graphitized petroleum coke Role in negative electrode materialsGraphitized petroleum coke does not play a direct role in negative electrode materials. It is primarily used in the production of graphite electrodes, as mentioned earlier.Negative electrode materials in various applications, such as lithium-ion batteries and fuel cells, typically involve different carbon-based materials like graphite or carbon black.
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Relate News
Graphitized petroleum coke (GPC) is a crucial raw material in various industries, particularly in the production of carbon and graphite products. Here are some potential news topics or areas related to graphitized petroleum coke:Price Trends: News about fluctuations in the price of GPC can impact industries that rely on this material.
Redsun a distinguished player in the field of chemical manufacturing with a focus on Calcined Petroleum Coke, Graphitized Petroleum Coke, and other premium chemicals, has left an indelible mark at the 2023 Canton Fair.Showcasing Excellence in Carbon Products:At the heart of Redsun's presentation at the Canton Fair were its stellar offerings in Calcined Petroleum Coke and Graphitized Petroleum Coke.    Renowned for their exceptional quality and precise manufacturing processes, RedSun's carbon products garnered attention and admiration from industry experts, buyers, and fellow
Graphitized Petroleum Coke (GPC) has long been valued for its exceptional properties as a carbon additive in the steel and foundry industries. Now, a groundbreaking discovery has revealed a remarkable new advantage of GPC - its potential to significantly enhance the performance of lithium-ion batteries, revolutionizing the energy storage landscape.In recent years, there has been a growing demand for lithium-ion batteries due to their vital role in powering electric vehicles, renewable energy systems, and portable electronic devices.
1. Hot metal carburization technology can add graphite nuclei in the smelting process, in the electric furnace. The addition of silicon carbide in cupola smelting can also increase the length of graphite nuclei in hot metal and reduce the oxidation of hot metal.2. Carbonization is a measure to avoid or reduce the tendency to shrink. Due to the graphitization and shrinkage of hot metal during solidification, good graphitization will reduce the shrinkage tendency of hot metal.3.
In a significant development in the world of international trade, a substantial shipment of Graphitized Petroleum Coke is set to make its way to the United Arab Emirates. This shipment, totaling 500 tons, marks another milestone in the UAE's growing demand for raw materials, particularly in the energy and manufacturing sectors.Graphitized Petroleum Coke is a crucial component in various industrial processes, making this shipment a vital contribution to the region's ongoing economic expansion.
Chemical composition: Petroleum coke is composed of carbon, hydrogen, nitrogen, chlorine, sulfur and other elements, of which the carbon content is more than 90%, hydrogen accounts for 1%-8%, and the remaining trace elements are 2%. From the chemical composition point of view, it will not dissolve in the human body.Impact on the human body: Petroleum coke has an irregular shape, in the form of black blocks or granules of varying sizes. Petroleum coke will produce harmful gases, including carbon dioxide, sulfur dioxide, etc. during transportation, screening, coking, etc.
Calcined Petroleum Coke (CPC) has long been recognized for its vital role in various industrial applications, particularly in the production of aluminum and steel. Now, a groundbreaking development in the production process of CPC has revealed an exciting new advantage - enhanced carbon purity for cleaner energy applications.In traditional CPC production, the raw petroleum coke undergoes a high-temperature calcination process to remove impurities and volatile matter, resulting in a product with high carbon content.
Market overviewThe average petcoke market price on December 29 was 1,778 yuan/ton, an increase of 1 yuan/ton, or 0.06%. Today, coke prices at main refineries remained stable, shipments from local refineries were acceptable, and coke prices in some parts of the market continued to rise by 10-50 yuan/ton.Transaction prices in major regional marketsIn terms of Sinopec, petcoke from its refineries mainly executes orders. Shipments of medium and high-sulfur petroleum coke in North China are stable.
In response to the increasing global demand for Calcined Petroleum Coke (CPC), Redsun, a renowned leader in the industry, is expanding its operations and capacity to cater to the growing needs of its customers. The company's decision comes as the market for CPC experiences a surge in demand across various sectors.Calcined Petroleum Coke, a key component in the production of anodes for aluminum smelting, steelmaking, and other industrial applications, plays a crucial role in providing carbon for these processes.