PSA Medical Oxygen Concentrator Zeolite Molecular Sieve (62591976698)

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Product Overview

Description

PSA Medical Oxygen Concentrator Zeolite Molecular Sieve

PSA Medical Oxygen Concentrator Zeolite Molecular Sieve

oms1

Specification
 What is the details of our molecular sieve for oxygen generator?

EniSorb-13XHP oxygen enrichment molecular sieve are new X type molecular sieve specialized in PSA oxygen generator plant for oxygen producing with high N2 adsorption capacity and N2/O2selectivity.

EniSorb-LiX oxygen enrichment sieve bed is the lithium form aluminosilicate with X type crystal structure. And it is specially developed and designed molecular sieve for oxygen production from air with international advanced level.

 

Typical application of EniSorb-13XHP and EniSorb-LiX

1.     Industrial sieve beds used for industrial oxygen concentrator in Waste water treatment field.

2.     Sieve bed for oxygen concentrator in Aquaculture field for fish farming.

3.     Sieve bed for oxygen concentrator 1-10L/Min in medical oxygen market.

4.     Oxygen concentrator sieve bed material for ozone production filed.

 

Item 1

EniSorb-13XHP

Application

Substitute of 5A (CaA) molecular sieve. Designed for PSA portable oxygen concentrator 1-5L/Min, industrial oxygen generator, oxygen purity is up to 93%±3%.

Diameter

20-50mesh (0.4-0.8mm)

8-12mesh (1.6-2.5mm)

N2 Absorption Capacity (ml/g)

≥8.00

≥8.00

N2/O2 Selectivity

≥3.0

≥3.0

Bulk Density (g/ml)

≥0.62

≥0.62

Crushing Strength (N/pc)

-

25±3

LOI (%)

≤1.0

≤1.0

Item 2

EniSorb-LiX

Application

Designed for PSA / VPSA portable oxygen concentrator 1-5L/Min, industrial oxygen generator, oxygen purity is up to 93%±3%.

Diameter

20-50mesh (0.4-0.8mm)

12-20mesh

(0.8-1.3mm)

10-12mesh

(1.3-1.7mm)

8-12mesh (1.6-2.5mm)

N2 Absorption Capacity (ml/g)

≥22.00

≥22.00

≥22.00

≥22.00

N2/O2 Selectivity

≥6.2

≥6.2

≥6.2

≥6.2

Bulk Density (g/ml)

0.63±0.03

0.63±0.03

0.63±0.03

0.63±0.03

Crushing Strength (N/pc)

-

-

≥15

25±3

LOI (%)

≤1.0

≤1.0

≤1.0

≤1.0

 
0.0086 s.