With a pore volume of 0.85-0.95 Cm3/g, our catalyst offers exceptional performance in selective hydrogenation of C2 molecules. It has been specifically designed and formulated to provide the highest level of selectivity, boasting an impressive 80% selectivity rate.
The active metal in this catalyst is Palladium - a highly effective and efficient choice for the selective hydrogenation of C2. The Palladium works to catalyze the reaction, allowing for the precise selectivity required for C2 hydrogenation.
Our C2 Selective Hydrogenation Catalyst is the ideal solution for those in the chemical industry looking for a reliable and effective catalyst for their front-hydrogenation and post-hydrogenation needs. It has been proven to provide excellent results time and time again, ensuring a consistent and high-quality product.
Whether you are in the petrochemical, pharmaceutical, or any other chemical-related industry, our C2 Selective Hydrogenation Catalyst is the perfect choice for your selective hydrogenation needs. With its exceptional selectivity rate and active metal composition, you can trust that you are getting the very best in catalyst technology.
This C2 Selective Hydrogenation Catalyst is a front-hydrogenation catalyst that is used for selective hydrogenation reactions. It features a support material of alumina and has a pressure rating of 3.5MPa. With a selectivity rate of 80%, this spherical catalyst offers excellent efficiency and performance. Additionally, it is reusable, making it a cost-effective option for your hydrogenation needs.
Technical Parameter | Value |
---|---|
Active Metal | Palladium |
Shape | Spherical |
Support Material | Alumina |
Application | Selective Hydrogenation Of C2 |
Pressure | 3.5MPa |
Reusability | Yes |
Industry | Chemical Industry |
Selectivity | 80% |
Pore Volume | 0.85-0.95 Cm3/g |
Operating Temperature | 60-100°C |
This product is a Hydrogenation Catalyst used for post-hydrogenation with a selectivity of 80%.
The C2 Selective Hydrogenation Catalyst is highly effective in converting unsaturated C2 hydrocarbons to their saturated counterparts. It is particularly useful in the production of ethylene, where it helps to remove impurities and improve product purity. The catalyst is also effective in the selective hydrogenation of acetylene, which is important in the production of polyethylene and other petrochemical products.
The C2 Selective Hydrogenation Catalyst is a versatile product that can be used in a range of scenarios. It is commonly used in refinery processes, as well as in the production of various petrochemicals. It is also effective in the production of fine chemicals, such as pharmaceuticals and agrochemicals.
The C2 Selective Hydrogenation Catalyst (Model Number: KMH-02) is a highly efficient product that is designed to meet the needs of the chemical industry. It is made in China and is well-suited for use in a range of applications, including front-hydrogenation, selective hydrogenation, and post-hydrogenation processes. With its high surface area and unique composition, this catalyst is an essential tool for any company looking to improve the efficiency and effectiveness of its chemical processes.
The C2 Selective Hydrogenation Catalyst, model number KMH-02, is manufactured in CHINA and is designed for use in the Chemical Industry. The catalyst contains active metal Palladium and has a pore volume of 0.85-0.95 Cm3/g. The particle size ranges from 3-4.5 mm and has a surface area of 150-200 M2/g.
Our customization services include:
Product Packaging:
The C2 Selective Hydrogenation Catalyst product is packaged in a 1 liter glass bottle with a screw cap. The bottle is sealed with a tamper-evident seal and is placed in a cardboard box with cushioning material to prevent damage during shipping.
Shipping:
The C2 Selective Hydrogenation Catalyst product is shipped via ground transportation in compliance with all applicable regulations. Shipping is only available within the United States and delivery typically takes 3-5 business days. Expedited shipping options are available upon request for an additional fee.