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Primary steam reforming catalyst DZC-S169
Steam reforming of natural gas is the most common method, also known as Steam Methane Reforming (SMR), which is the most economical method to produce commercial bulk hydrogen used in the industrial synthesis of ammonia and other chemicals widely. DZC-S169 catalyst is used to catalyze the reaction of methane and steam at high temperature and pressure to produce synthesis gas (H2 and CO).
The reaction is summarized as below:
CH4 + H2O ⇌ CO + 3H2
CO + H2O ⇌ CO2 + H2
PRODUCT DESCRIPTION
Primay reforming catalyst / primary reformer catalyst
Product composition
Typical physical and chemical property | |
Outer appearance and shape | 6-holes honeycomb Longer formΦ16×14x3.5mm |
Bulk density | 0.9-1.0 kg/l |
Chemistry composition % (m/m) | NiO≥14.5 rare earth2-5% Si≤0.2 |
Inlet gas temperature | 450~600℃ |
Outlet gas temperature | 650~850℃ |
Steam/carbon ratio: | 2.2~5.0 |
Good mechanical strength
The catalyst’s sponge micro pore structure can make it better tenacity so that it is of better heat-expansion & cold-shrink resistance. The 6-holed shape ensures symmetrical stress patterns and no easy fracture-line. In addition, the increase of pressure drop due to catalyst attrition or breakage will be less than 10% over guarantee period.
High activity
The reaction normally takes places at outer surface of the catalyst, therefore a uniform nickel coating has
to be insured. The catalyst features an optimized Ni-content, specially adapted to its surface roughness and
porosity. Simultaneously, domed shape allows full utilization of surface.
Excellent anti-accident ability
The catalyst has added rare earth to improve its comprehensive performance, and rare earth can increase the catalyst’s adsorption capacity to water and also improve its activity at low temperature. Thus this will allow steam/carbon ratio of as low as 2.0 without risk of carbon formation. In the unlikely event of a plant up-set which does result in carbon formation, the catalyst can be easily steamed due to large hole size, and usually activity can be completely recovered.
Long service life
The catalyst contains stable aluminum aluminate support, which can resist nickel and alumina into nickel-aluminium spinel. Therefore it can give additional operational security in case of frequent start-up and shut-down conditions (repeating oxidation and reduction process). At the same time, long mechanism life and good carbon and sulphur resistance can extend catalyst service life.
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