Hai Xin has been supplying raw molecular sieve powder for NaY molecular sieve modification, in the form of ultra-stable Y-type powder._Product Center Co., Ltd._Dalian Haixin Chemical Co., Ltd. 
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Dalian Haixin Chemical Co., Ltd.

Molecular sieve, catalysts, alumina, purifiers, adsorbents, and chemical addi...

18698717388

Hai Xin has been supplying raw molecular sieve powder for NaY molecular sieve modification, in the form of ultra-stable Y-type powder.

产品Price Negotiable

最小起订Quantity:1 kg 供货总Quantity: 10000 kg

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Location:
Liaoning/Dalian
有效期至:
长期有效
最后更新:
2024-03-28 14:38
Product Details

I. Product Introduction

Y-type molecular sieve is a microporous crystal material with a skeletal structure, where the basic structural units are silicon-oxygen and aluminum-oxygen tetrahedra. These tetrahedra form secondary structural units such as tetrahedral, hexagonal, and octagonal rings through Si-O or Al-O bonds. These secondary units are then assembled to form β-cages. Eight β-cages are arranged in a diamond crystal pattern, with each carbon atom in the diamond structure replaced by a β-cage. Adjacent β-cages are connected by hexagonal rings via Si-O-Si (Al) bonds, creating octahedral zeolite cages. These octahedral zeolite cages are interconnected through dodecagonal rings along three crystal axes, forming a unit cell. The dodecagonal rings serve as the main windows of the octahedral zeolite, with a pore diameter of approximately 0.74 nm.
One,Composition of Y Molecular Sieve
Y Molecular Sieves include NaY Molecular Sieves and their modified products: Ammonium Y (NH4Y), Hydrogen Y (HY), Ultra-Stable Y (USY), Rare Earth Y (RY), etc.


Two,The relationship between NaY and its modified products.
1. NaY is synthesized from aluminum source, silicon source, and a directing agent under certain process conditions.
2. Ammonium Y obtained through ammonium chloride exchange from NaY.
3. Ammonium Y is converted to hydrogen Y through high-temperature calcination.
4. Hydrogen Y is processed through high-temperature hydrothermal treatment to obtain ultra-stable Y.
5. Rare earth Y is obtained through the rare earth exchange of hydrogen Y.


Section 3:Application of Y molecular sieve
1. In large quantities for manufacturing FCC catalysts
2. Used for manufacturing catalytic cracking catalysts
3. Hydrocracking catalyst manufacturing materials
4. Used for producing high-efficiency adsorption, separation, purification agents, and desiccants
 
Section 4: Quality Standards
1. NaY Quality Specifications

Project

Indicator

Relative Crystallinity

≥88%

Silica-to-alumina ratioSiO2/Al2O3

≥5.1

Specific Surface Area

≥680m2/g

Na2O Content

13.0%

Lattice constant

24.75×10-10m

 

2. NaY-related modified products
Manufacture products to meet various quality specifications as per customer design requirements.Y Series Molecular Sieves
*Ammonium Y primarily varies in the content of sodium oxide.
Hydrogen Y is primarily differentiated by the varying content of sodium oxide and the required degree of crystallinity.
*Super Stable Y is primarily characterized by different sodium oxide content requirements, crystalinity standards, and silicon-to-aluminum ratio requirements.
Rare Earth Y is primarily characterized by different sodium oxide content and requirements for rare earth content.

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