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Introduction to Fuel Refinement and Catalysts Aluminum Oxide Granules (D50 Particle Size ≤ 20 microns)
Alumina ceramics are known for their high hardness, wear resistance, corrosion resistance, good electrical insulation and high temperature stability. According to the different alumina content, it can be divided into different grades, such as 95 porcelain, 99 porcelain, etc., among which 99 porcelain refers to ceramic materials with an alumina content of 99%. As the alumina content increases, its mechanical strength and electrical insulation properties will also increase accordingly.
Characteristics of Fuel Refinement and Catalysts Aluminum Oxide Granules (D50 Particle Size ≤ 20 microns)
High Hardness: Alumina ceramics have extremely high hardness, which makes it very wear-resistant and suitable for manufacturing abrasive tools and parts that require wear resistance.
Wear resistance: Due to its high hardness, alumina ceramics show excellent wear resistance and are suitable for manufacturing parts for long-term use.
Corrosion resistance: Alumina ceramics have good resistance to most acids and alkalis, making them widely used in the chemical industry.
Good electrical insulation: As an excellent electrical insulating material, alumina ceramics are widely used in electronic and electrical products.
High temperature stability: Ability to withstand extremely high temperatures without significant physical or chemical changes, which makes it an ideal choice for applications in high temperature environments.
Biocompatibility: In the medical field, certain grades of alumina ceramics are used to make medical devices such as artificial joints due to their good biocompatibility.

(Fuel Refinement and Catalysts Aluminum Oxide Granules (D50 Particle Size ≤ 20 microns))
Specifications of Fuel Refinement and Catalysts Aluminum Oxide Granules (D50 Particle Size ≤ 20 microns)
Aluminum Oxide Granules are key in fuel refinement and catalyst applications. The particle size matters a lot. We focus on granules with a D50 particle size of 20 microns or less. This small size is important. It gives the granules a very large surface area. A bigger surface area is good for catalysts. It lets more active catalyst material stick to the surface. This improves the catalyst’s performance significantly. The granules act as a strong support structure.
The granules are very porous. This porosity is essential. It allows fuel or chemicals to flow through easily. Good flow means better contact with the catalyst material. Better contact leads to more efficient reactions. These reactions are vital in fuel processing. They help break down complex molecules. They also help remove unwanted impurities. Cleaner fuel results from this.
Aluminum Oxide is very stable at high temperatures. Fuel refinement often involves heat. The granules can handle these harsh conditions. They do not break down easily. This makes them durable. Long-lasting catalyst supports save money. They reduce the need for frequent replacements. The granules also resist chemical attack well. They maintain their shape and function over time. This reliability is crucial for continuous operations.
The uniform particle size distribution is another benefit. Consistent size ensures predictable performance. It allows for precise process control. Engineers can design systems knowing the granule properties. This predictability improves overall efficiency. Using these granules leads to better catalyst utilization. Better utilization means more effective fuel refinement. It also means potentially lower costs. The granules are a solid choice for demanding industrial applications. They provide a dependable foundation for catalyst systems.

(Fuel Refinement and Catalysts Aluminum Oxide Granules (D50 Particle Size ≤ 20 microns))
Applications of Fuel Refinement and Catalysts Aluminum Oxide Granules (D50 Particle Size ≤ 20 microns)
Aluminum oxide granules with a small particle size are important for fuel refinement and catalysts. The D50 particle size is 20 microns or less. This small size creates a huge surface area. That is key for these jobs. In fuel refinement, these granules help clean fuels. They remove impurities like sulfur compounds. This process is called adsorption. The granules act like tiny sponges. They trap bad stuff in the fuel. Cleaner fuel burns better. It also causes less pollution. Engines run smoother with cleaner fuel. The granules are strong. They handle tough conditions in refineries. This means they last a long time. Companies save money because of this. They don’t need to replace the granules often.
For catalysts, these aluminum oxide granules are often the base material. Catalysts speed up chemical reactions. They don’t get used up themselves. The granules provide a stable place for the active catalyst. The large surface area is crucial here too. It lets more catalyst material attach. More catalyst means reactions happen faster. This boosts efficiency. It can also make reactions more specific. The granules are very pure. This purity avoids unwanted side reactions. It makes the catalyst work reliably. The small granules pack tightly together. This creates good flow paths for gases or liquids. The material moves easily through the system. This setup works well in reactors. It handles high temperatures and pressures. The granules stay intact. They maintain their shape and size. This keeps the reactor working properly. Consistent performance is vital for industrial processes. Using the right granules ensures this consistency. They are a dependable choice for demanding applications.
Company Introduction
Advanced Ceramics founded on October 17, 2014, is a high-tech enterprise committed to the research and development, production, processing, sales and technical services of ceramic relative materials and products.. Since its establishment in 2014, the company has been committed to providing customers with the best products and services, and has become a leader in the industry through continuous technological innovation and strict quality management.
Our products includes but not limited to Silicon carbide ceramic products, Boron Carbide Ceramic Products, Boron Nitride Ceramic Products, Silicon Carbide Ceramic Products, Silicon Nitride Ceramic Products, Zirconium Dioxide Ceramic Products, Quartz Products, etc. Please feel free to contact us.

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By air, by sea, by express, as customers request.

5 FAQs of Fuel Refinement and Catalysts Aluminum Oxide Granules (D50 Particle Size ≤ 20 microns)
What is this aluminum oxide product?
This aluminum oxide product is tiny granules. It acts as a catalyst in fuel refinement. Catalysts speed up chemical reactions without being used up. These granules help break down large fuel molecules. This makes cleaner burning fuels possible.
Why is the small particle size important?
The small particle size matters a lot. D50 ≤20 microns means the average granule is very tiny. More granules fit into the same space. This creates a much bigger surface area. Chemical reactions happen on the surface. More surface area means more places for reactions. This boosts the catalyst’s effectiveness significantly.
How does this catalyst improve fuel refinement?
This catalyst helps change crude oil into useful fuels. It targets specific unwanted molecules. It breaks sulfur and nitrogen compounds apart. Removing these impurities is crucial. It results in cleaner burning gasoline and diesel. Cleaner fuels reduce harmful emissions from engines.
Will the granules break down during use?
The granules are very durable. They are made to withstand tough conditions. High temperatures and pressures exist inside reactors. The granules maintain their structure. This strength ensures consistent performance. The catalyst lasts a long time before needing replacement. This saves money on operation costs.
Is handling this catalyst safe?
Standard safety procedures apply. The small granules are dry and free-flowing. Wear gloves and safety glasses when handling. Avoid breathing in dust. Use the material in well-ventilated areas. Store it in a dry place. Follow all provided safety instructions carefully.

(Fuel Refinement and Catalysts Aluminum Oxide Granules (D50 Particle Size ≤ 20 microns))
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