Industry Standard Alumina Catalyst | Basic chemical reactors, low-throughput processes | Pore Volume: 1.0 mL/g (BET analysis) Crush Strength: 80 N/cm² (ASTM C1334) | Cost-effective, widely compatible with standard processes | Limited pore volume restricts catalyst efficiency Lower thermal stability (max 950°C) |
Our Base Alumina Catalyst Support | Mid-scale industrial reactors, pharmaceutical synthesis | Pore Volume: 1.2 mL/g (▲20% vs Industry) Crush Strength: 100 N/cm² (▲25%) | Enhanced catalyst dispersion Improved mechanical durability | Moderate cost increase vs Industry Standard Thermal stability capped at 1050°C |
Our Advanced Alumina Catalyst Support | High-throughput refineries, extreme-temperature applications | Pore Volume: 1.5 mL/g (▲50% vs Industry) Crush Strength: 120 N/cm² (▲50%) | Optimized for high-load operations Thermal stability up to 1200°C (▲26%) | Premium pricing Requires specialized handling for installation |
Silica-Based Catalyst Support | Acidic environments, food-grade applications | Purity: 99.9% (ISO 14687) Thermal Stability: 1400°C (ASTM C20) | Corrosion-resistant in acidic conditions Ultra-high thermal tolerance | Low mechanical strength (60 N/cm²) Unsuitable for alkaline processes |
Zeolite-Based Catalyst Support | Petrochemical cracking, gas separation | Surface Area: 600 m²/g (BET) Pore Diameter: 0.5–1.0 nm (ISO 9276) | Exceptional adsorption capacity Tailored pore structure for molecular sieving | Fragile structure (crush strength: 40 N/cm²) Requires precise activation protocols |
Mixed Oxide Catalyst Support | Multi-phase reactions, heterogeneous catalysis | Composition: Al₂O₃ + SiO₂ (70:30 ratio) Thermal Shock Resistance: ▲30% | Balances mechanical and thermal properties Versatile for complex chemistries | Higher production complexity Moderate cost premium vs single-oxide alternatives |