Molecular Sieve Ns-E Wth Low Nitrogen Adsorption and Low Electrostatic Load

Product Details
Customization: Available
CAS No.: 1318-02-1
Formula: 2/3K2o.1/3na2o.Al2O3.2sio2.9/2H2O
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  • Molecular Sieve Ns-E Wth Low Nitrogen Adsorption and Low Electrostatic Load
  • Molecular Sieve Ns-E Wth Low Nitrogen Adsorption and Low Electrostatic Load
  • Molecular Sieve Ns-E Wth Low Nitrogen Adsorption and Low Electrostatic Load
  • Molecular Sieve Ns-E Wth Low Nitrogen Adsorption and Low Electrostatic Load
  • Molecular Sieve Ns-E Wth Low Nitrogen Adsorption and Low Electrostatic Load
  • Molecular Sieve Ns-E Wth Low Nitrogen Adsorption and Low Electrostatic Load
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Basic Info.

Model NO.
ZGLB
Certification
REACH, LFT
Environmental Protection
Yes
Function
Moisture Drying
Appearance
Spherical
Color
Beige
Nominal Pore Diameter
3 Angstroms
Powder Falling
0.01mg/G
Water Adsorption
16%
Leading Time
5 Days After Order Confirmation
Bulk Density
0.7g/Ml
Certificate
Ift
OEM
Yes
Transport Package
Carton, Drum, Bigbag
Specification
0.5-0.9mm, 1.0-1.5mm, 1.5-2.0mm
Trademark
chico
Origin
China
HS Code
3824999999
Production Capacity
500000kg/Month

Product Description

 
High Quality Molecular Sieve 3A Pellet as Adsorbent

Product Introduction
The lattice pores of type 3A molecular sieve is only 3 angstroms, which is the smallest of all molecular sieves. It can only absorb water and cannot absorb any other components in the air, because the critical diameter of water molecules is 2.8 angstroms and the polarity is very strong. Any other type of molecular sieve will adsorb oxygen or nitrogen in the air, and this adsorption capacity is very sensitive due to small changes in temperature.


As a special desiccant for insulating glass, 3A molecular sieve can best meet all the performance indexes of insulating glass without any influence on its physical and chemical properties. It can continuously and deeply adsorb the water and residual organic matter in the insulating glass spacer layer, effectively prevent the condensation and frost of the glass, completely solve the problem of distortion and breakage caused by the expansion or contraction of the insulating glass, and ensure that the insulating glass is as short as 20 years -8ºC Dew point life. Therefore, only 3A molecular sieve can be used as an insulating glass desiccant.


Technical parameters 

Item
d(0.5-0.9mm) d(0.9-1.4mm) d(1.4-2.0mm)

Premium

Qualified product

Premium
     

Exterior

Beige, beige or earth red spherical particles, no mechanical impurities

Bulk density/(g/ml)
>= 0.7

Static water adsorption RH10%,(25±1)ºC/%
>= 16 15 16 15 16 15

granularity/%
>= 93 88 96 95 90 89

Static nitrogen adsorption/(mg/g)
<= 2

Packaged product moisture content/%
<= 1.5

Water absorption rate/%
<= 0.5 0.7 0.5 0.5

Gas desorption/(ml/g)
<= 0.3

Temperature rise/ºC
>= 40 35 40 35 40 35

Powder falling/(mg/g)
<= 0.01 0.04 0.01 0.04 0.01 0.04

Packing and Shipping

We could offer several kinds of packages:
25kg carton box (lined with aluminum foil bag)
150kg steel drum
140kg fiber drum
All sizes of big bags
We could also design different kinds of packages according to requirements of customers

 
 
Molecular Sieve Ns-E Wth Low Nitrogen Adsorption and Low Electrostatic Load
 
 
Molecular Sieve Ns-E Wth Low Nitrogen Adsorption and Low Electrostatic Load
 

Precautions
1. The insulating glass desiccant should be sealed and stored before use. When in use, it should be filled quickly, and the unused molecular sieve should be sealed in time to avoid moisture absorption.
2. Molecular sieve that cannot be determined whether it absorbs moisture should be tested for temperature rise. When the temperature rise is lower than 33 degrees Celsius (25 grams molecular sieve/25 ml water), it cannot be used again and should be recycled by the manufacturer.
3. The manufacturer should have at least two detection methods for temperature rise and molecular sieve desiccant outgassing.



Product Images
Molecular Sieve Ns-E Wth Low Nitrogen Adsorption and Low Electrostatic LoadMolecular Sieve Ns-E Wth Low Nitrogen Adsorption and Low Electrostatic Load

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