High Density 3mm 6mm 10mm Support Media 17-19% Alumina Ceramic Balls for Hydroprocessing Application

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Overview of High Density 3mm 6mm 10mm Support Media 17-19% Alumina Ceramic Balls for Hydroprocessing Application

Alumina balls are high-purity ceramic grinding media known for their exceptional hardness, wear resistance, and thermal stability. Ideal for industrial applications like milling, catalysis, and wear-resistant components.

Features of High Density 3mm 6mm 10mm Support Media 17-19% Alumina Ceramic Balls for Hydroprocessing Application

High mechanical strength & durability

Excellent chemical & thermal stability

Superior wear & corrosion resistance

Available in various sizes & purity grades

Low contamination for precision processes

High Density 3mm 6mm 10mm Support Media 17-19% Alumina Ceramic Balls for Hydroprocessing Application

(High Density 3mm 6mm 10mm Support Media 17-19% Alumina Ceramic Balls for Hydroprocessing Application)

Specification of High Density 3mm 6mm 10mm Support Media 17-19% Alumina Ceramic Balls for Hydroprocessing Application

High density alumina ceramic spheres supply necessary support in hydroprocessing devices. They rest under driver beds. These spheres deal with serious problems in oil refineries. They’re constructed challenging for high pressure and high heat atmospheres. The product structure issues considerably. These rounds contain 17% to 19% alumina. This specific range balances toughness and cost-effectiveness. They resist chemical assault from process streams. Sulfur compounds and acids existing no significant issue. Thermal stability is an additional essential attribute. These balls withstand rapid temperature modifications without splitting. Their high density is essential. It protects against changing and squashing under heavy driver tons. This shields the important catalyst below.

Three typical sizes are offered: 3mm, 6mm, and 10mm. The smaller 3mm balls create a really fine support layer. They are optimal for catching really small bits. They protect against connecting much deeper in the bed. The 6mm dimension supplies an excellent balance. It offers reliable assistance and keeps good circulation. The larger 10mm spheres are made use of for preliminary coarse support layers. They deal with the mass weight of the driver bed over. Utilizing the appropriate size combination is vital. It makes certain optimum circulation distribution of procedure liquids. It stops pressure decline issues across the reactor.

These ceramic rounds supply essential benefits. They expand driver life by shielding it. They preserve reliable activator procedure. Stress drop stays low. Fluid moves evenly via the catalyst. This makes best use of system performance and run sizes. They are affordable assistance media. Their long life span lowers substitute regularity. Downtime is reduced. Applications are specific to demanding refinery processes. They are made use of in hydrotreaters. They are used in hydrocrackers. They function well in fixed-bed reactors taking care of heavy oils. These rounds deliver reputable performance where it counts.

High Density 3mm 6mm 10mm Support Media 17-19% Alumina Ceramic Balls for Hydroprocessing Application

(High Density 3mm 6mm 10mm Support Media 17-19% Alumina Ceramic Balls for Hydroprocessing Application)

Applications of High Density 3mm 6mm 10mm Support Media 17-19% Alumina Ceramic Balls for Hydroprocessing Application

These high-density ceramic balls come in 3mm, 6mm, and 10mm dimensions. They contain 17-19% alumina. They are crucial for hydroprocessing units. These devices upgrade hefty oil fractions right into cleaner fuels. Assume hydrotreating and hydrocracking activators.

The balls offer essential tasks inside these reactors. They serve as assistance media. They rest over the main driver bed. They shield this costly stimulant. They shield it from fouling. Fouling originates from feed pollutants. Contaminations like range or particulates obstruct driver pores. The balls stop this. They trap these solids initially.

They also make sure even gas and fluid flow. Flow circulation matters significantly. Poor flow develops “carrying”. Channeling ways feed bypasses some driver. This wastes catalyst capacity. It lowers procedure efficiency. The thick rounds stop this. They require the feed to spread uniformly across the whole driver bed surface. This makes the most of contact with the energetic catalyst.

The rounds deal with extreme problems. Activators run hot. They run under high stress. They consist of harsh chemicals. These ceramic rounds resist warm. They resist stress. They withstand chemical strike. They maintain their stamina. They do not break down quickly. This gives long-lasting dependability.

They manage pressure decrease properly. Stress decrease is the resistance to move through the bed. Excessive pressure drop harms procedures. The dense spheres keep bed structure. They stop finer stimulant particles from migrating. Migration triggers uneven packaging. Uneven packing enhances stress drop. Appropriate support media keeps pressure decrease stable. Stable stress drop indicates consistent activator performance.

Smaller sized 3mm rounds typically take place top. They capture extremely fine debris. Larger 6mm or 10mm balls commonly develop the primary support layer below. This split method supplies the most effective defense. It ensures optimal circulation. It extends driver life substantially. Using the appropriate size and thickness is necessary for activator effectiveness and uptime.


Company Profile

Alumina Technology Co., Ltd,. We focus on the research and development, production and sales of alumina products, serving the electronics, ceramics, chemical and other industries. Since its establishment in 2005, 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 Alumina Boat, Alumina Crucible, Alumina Dish, Alumina Foam Filter, Alumina Plate, Alumina Rod, Alumina Bar, Alumina Balls, Filter Alumina, Nano Alumina Powder, Spherical Alumina Powder, ect. please feel free to contact us.(nanotrun@yahoo.com)



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T/T, Western Union, Paypal, Credit Card etc.

Shipment Methods

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

5 FAQs of High Density 3mm 6mm 10mm Support Media 17-19% Alumina Ceramic Balls for Hydroprocessing Application

What are these ceramic balls used for?
These balls act as support media in hydroprocessing reactors. They sit at the top of the catalyst bed. Their job is to spread fluids evenly. They also stop catalyst pellets from moving or escaping. They protect the bed below.

Why are different sizes like 3mm, 6mm, and 10mm offered?
Different reactor designs need different ball sizes. The size chosen depends on the catalyst size below. Bigger balls (like 10mm) go over larger catalyst. Smaller balls (like 3mm) sit over finer catalyst. This layering keeps the bed stable. It prevents the catalyst from mixing with the balls.

What’s the benefit of high density?
High density means these balls are very strong. They resist crushing under the huge pressure inside reactors. Heavy fluids flow past them without pushing them around. This keeps the bed structure intact for a long time. It avoids costly shutdowns.

Why is 17-19% alumina important?
This specific alumina level gives the right balance. The balls get good strength and chemical resistance. They handle the hot, harsh chemicals in hydroprocessing well. Too little alumina makes them weak. Too much might make them brittle. This percentage works best.

Where exactly are these balls used?
You find them in refinery hydrotreaters and hydrocrackers. These units remove sulfur and nitrogen from oil. They also break down heavy oil molecules. The balls support the catalyst that makes these reactions happen. They are essential for clean fuel production.

High Density 3mm 6mm 10mm Support Media 17-19% Alumina Ceramic Balls for Hydroprocessing Application

(High Density 3mm 6mm 10mm Support Media 17-19% Alumina Ceramic Balls for Hydroprocessing Application)

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