Ruthenium catalyst / Ruthenium on activated charcoal
Ruthenium catalyst/Ruthenium on activated charcoal
CAS No.:7440-18-8
Specifications: Ru 101, Ru 103, Ru 105, Ru 107, Ru 110
Ruthenium content: 0.1% ~ 30%
Carrier material: coconut shell, coal, wood, peat and so on
Carrier state: powdered activated carbon
Specific surface area (m2/g): ≥930
Metal surface area (m2/g): 85 ~ 105
Average particle size of carrier (μm): 15, 20, 30, 50, 80, 100 (can be adjusted depending on application type and filter equipment)
Impurities (m %): Cu, Fe, Cr, Ni, Ag, Mg and other impurities ≤ 0.3
Particle strength (m %): ≥ 90
Moisture content: 0.1% ~ 65%
Ash content (m %): ≤ 5
Carrier state: columnar activated carbon
Diameter of 0.8-4mm, length of 2-8mm;
Flaky activated carbon: 4-6 meshes, 6-8 meshes, 8-12 meshes;
Unshaped granular activated carbon: 10-40 meshes
Specific surface area (m2/g): 750-1320
Pore volume (ml/g): 0.35-1.0
Aperture (nm): 1.5-25
Bulk density (ml/g): 0.44-0.75
Compression strength (N): 20-85
Ruthenium catalyst / Ruthenium on activated charcoal
CAS No.:7440-18-8
Carrier state: powdered activated carbon
Application areas:
Ruthenium not only serves as the catalyst for the selective hydrogenation of organic compounds, but also can replace Raney Ni in the production of vitamin C via the sorbitol by the hydrogenation of glucose. It is featured by high activity, good selectivity, quick reaction speed, mild reaction conditions, high service life and easy recovery. In the process of preparing optically active alcohols by means of hydrogenation of carboxylic acid and carboxylic ester, the catalytic activity of ruthenium carbon catalyst is better than that of traditional copper and nickel catalysts. The prepared products have pure color and low impurity content.
Number of nesting: It depends on the specific reaction (such as reaction temperature, pH of reaction medium, etc.)
Упаковка: can be packaged according to user requirements.
Technical Parameters
Carrier state: Columnar activated carbon
Application area:
it is mainly used in nitro reduction, double bond hydrogenation, dechlorination, debenzylation, ester hydrocracking, heterocyclic hydrogenation, condensation of aldehyde and amine as well as other fixed bed reaction with large productivity and output; compared with tank reaction, it has the advantages of high productivity, high automaticity, low labor and production cost.
Catalyst life: depending on the specific reaction and the size of fixed bed reactor