A palladium shell on alumina minimizes green oil formation and double bond isomerization during C4 hydrogenation.
Dual catalytic system converts ethanol to ethane before steam reforming to generate hydrogen-rich products while suppressing carbon polymer formation.
Optimized ruthenium catalyst preparation resolves low selectivity and separation complexity in cycloolefin manufacturing.
A hydrogenated decarboxylated rosin acid composition with controlled molecular weight distribution and low oxygen content.
A semi-eggshell nickel catalyst concentrates active metal at the alumina support periphery to enhance reaction kinetics.
Bow-mounted turbines capture decelerated flow energy to power electrolysis, converting electricity into hydrogenated aromatics for carbon-neutral land supply.
Organic additives control nickel particle dispersion on alumina supports, resolving aggregation issues to boost conversion rates.
An all catalytic process using bifunctional catalysts to produce medicinal white oil.
Polyoxometalates incorporating palladium and platinum centers enable efficient organic substrate reduction through enhanced catalytic activity.
Heating pygas to 170°C separates C5 fractions, overcoming similar vapor pressures that limit distillation purity.