Mixed Metal Oxide Catalyst

Mixed metal oxides are multifunctional catalysts applied in methanol synthesis, fatty ester to alcohol
conversion, selective hydrogenation (e.g., menthone to menthol, ketones without affecting double
bonds), N-alkylation of amines, isomerization of α-pinene to camphene, and
decarboxylation–dehydration reactions such as propionic acid to diethyl ketone.

Applications: Selective oxidation (propylene → acrolein, methanol → formaldehyde), oxidative
dehydrogenation, syngas conversion, and catalytic combustion of VOCs.
Chemical Information: Include systems such as Mo–V–Nb–Te, Cu–Zn–Al, Co–Mo, and perovskite-type
oxides (ABO₃). Catalytic activity is closely linked to oxygen vacancy concentration and lattice
redox cycles.

  • General Formula: Variable, e.g. 
  • Perovskites: ABO₃ (e.g., LaCoO₃, LaFeO₃)
  •  Spinels: AB₂O₄ (e.g., Co₃O₄, ZnAl₂O₄)
  •  Complex oxides: Mo–V–Nb–Te–Oₓ
  • Structure: Crystalline oxides, often solid solutions or layered structures.
  •  Surface Area: Typically 20–200 m²/g.
  •  Redox Properties: Oxygen vacancies (O²⁻ ↔ ½O₂ + 2e⁻) crucial for activity.

PROCAT CA15T

Application: Methanol Synthesis catalyst

PROCAT CR3P

Application: Reduction / Fatty ester to fatty alcohol

PROCAT CR4P

Application: Selective Hydrogenation / Hydrogenation of Menthone to Menthol

PROCAT CR4E

Application: N-Alkylation / For Alkylation of Amine to produce mono alkylated product Aniline + methanol to N(CH3 )2

PROCAT CR4T

Application: Isomerization / Alpha Pinene to Camphene

PROCAT CR15T

 Application :Selective hydrogenation / Hydrogenation of Ketone without affecting double bond CO=CHOH

PROCAT TiO2

Application: Decarboxylation Dehydration / Propionic acid to Diethyl Ketone

PROCAT CS0P
PROCAT DHC0E
PROCAT DHC0T

Grade Application
PROCAT CA15T
PROCAT CR3P
PROCAT CR4P
PROCAT CR4E
PROCAT CR4T
PROCAT CR15T
PROCAT TiO2
PROCAT CS0P
PROCAT DHC0E
PROCAT DHC0T
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