13X Molecular Sieves: Your Premier Supplier for Industrial Gas Purification and Drying

Ningbo Inno Pharmchem Co., Ltd. is your trusted manufacturer and supplier of high-performance 13X molecular sieves. Engineered with a 10Å pore size, these advanced adsorbents are crucial for demanding applications like air separation, gas purification, and cryogenic processes. Discover unparalleled adsorption capacity and efficiency for your industrial needs.

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Key Advantages of Our 13X Molecular Sieves

Superior Impurity Removal

The 10Å pore size of our 13X molecular sieve allows for the selective adsorption of larger molecules like CO2 and H2O, as well as hydrocarbons, from gas streams. This ensures high purity for downstream processes.

High Thermal Stability and Durability

Designed for demanding industrial environments, our molecular sieve 13X exhibits excellent resistance to abrasion and crushing, ensuring sustained performance even under rigorous operating conditions. This makes it a reliable desiccant.

Efficient Regeneration Cycles

With a low regeneration temperature requirement, our 13X zeolite offers energy-efficient reactivation, supporting cost-effective and sustainable operation for industrial users. We are a trusted supplier for these needs.

Diverse Applications for 13X Molecular Sieves

Industrial Gas Purification

Essential for purifying gases in various industries, including the removal of CO2 and H2O from feed gas in air separation units. Buy our high-quality adsorbents.

Natural Gas Sweetening

Effectively removes sulfur compounds like H2S and mercaptans from natural gas and liquid hydrocarbons, enhancing product quality and pipeline integrity.

Air Separation Processes

Crucial for removing CO2 and moisture in cryogenic air separation, preventing equipment freezing and ensuring high-purity oxygen and nitrogen production.

Catalyst Carrier and Support

Its stable structure and high surface area make it an excellent carrier for catalysts in various chemical reactions, supporting your manufacturing processes.