Molecular
sieve absorption capability is extremely strong, for purified gas, save
should avoid direct exposure in the air. Longer storage time and moisture
absorption of molecular sieve before use should be regenerated. Molecular sieve
avoid oil and liquid water. Use should be avoided in contact with the oil and
liquid water . Industrial gases in the drying process , air, hydrogen , oxygen
, nitrogen , argon , etc. in parallel with two adsorptive dryer , a work, while
the other can be regenerated . Alternating between work and regeneration, in
order to ensure continuous operation of equipment . Work under the dryer at
8-12 ℃ , heated to
350 ℃ under the
red gas regeneration. Different specifications slightly different molecular
sieve regeneration temperature . Some organic molecular sieve has good
catalytic gas phase reactions .
Also known as Molecular sieve is a
crystalline aluminum silicate , its crystal structure has pores of regular and
uniform pore size of the molecular size of the order of magnitude , than the
pore diameter only allows small molecules to enter, so can molecules in the
mixture to be screened according to size . So called molecular sieves.
As early as 200 years ago , B. Crone tter
first named the aluminosilicate Molecular sieve , the chemical composition of
the general formula wherein M and n is the valence of the metal ions and their
; x is silica molecules ; y is the number of molecules of water ; p is the
number of atoms of aluminum ; q is the number of atoms of silicon . Molecular
sieve in the chemical industry as a solid adsorbent, the adsorption material
can be desorbed molecular sieve can be regenerated after use . Also for gas and
liquid drying, purification , separation and recycling. 1960s began , in the
oil refining industry as a cracking catalyst , and now has developed a variety
of catalytic processes for different molecular sieve catalysts.
Performance
Powdered molecular sieve crystals with
metallic luster , hardness of 3-5 , the relative density of 2 to 2.8 , a color
of natural Molecular sieve , synthetic Molecular sieve is white , insoluble in
water , thermal stability and acid resistance as the composition ratio of
SiO2/Al2O3 increased with the increase . Molecular sieve has a large surface
area , up to 300 ~ 1000m2 / g, the inner surface height crystal polarized
efficient adsorbent as a class , also a kind of solid acid , the surface has a
high acid strength and acid concentration , can cause carbenium ionic catalytic
reaction . When the composition of the metal ions and other ions in the
solution to be exchanged, adjust aperture to change its adsorption and
catalytic properties, and thus to obtain different properties of Molecular
sieve catalysts.
About us
SILICA
GEL supplier----Fenglong Chemical Co., Ltd. is primarily engaged in
manufacturing silica gel since 2001. We are
manufacturing Indicating silica gel & Non-Indicating type of
SILICA GEL in all grades such as blue silica gel, orange silica
gel and basic silica gel such as type A silica gel , type B
silic gel ,type C silica gel and another special silica gel Column
chromatography silica gel . We are Chinese manufacturer of silica gel
and supplying it across the world. Silica gel manufactured by us is of best
quality which is widely used as cat litter, desiccant
silica gel in anti-rusting and moisture-proof of product, packaging,
drying and separation of gases, the catalyst carrier of petrochemical industry
and so on.
We added the production line of molecular sieve and special-purpose molecular sieve in 2005, and the production base covers an area of 11000m2, with 8000m2 of factory buildings, three production shops and annual output of 3,000 tons of molecular sieves.
We added the production line of molecular sieve and special-purpose molecular sieve in 2005, and the production base covers an area of 11000m2, with 8000m2 of factory buildings, three production shops and annual output of 3,000 tons of molecular sieves.
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回复删除The water fumes adsorption features are very different from those of silica gel. Molecular sieves can adsorb up to approximately 20% by weight of water before the comparative moisture of the air improves significantly. Any further increase causes a large rise in comparative moisture.
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