Customization:
With a 100% pure SBA-15 mesoporous silica structure, ensure unmatched catalytic efficiency and stability in chemical reactions. The ordered mesoporous framework enhances molecular accessibility, optimizing performance in demanding applications.
The uniform powder form allows seamless integration into industrial systems, enabling precise dosing and controlled catalytic activity for tailored chemical processes.
Achieve ~30% higher adsorption capacity than conventional zeolites* due to advanced molecular sieve properties, accelerating reaction rates and improving process efficiency.
Designed for high-temperature and high-pressure industrial environments, this catalyst reliably supports petrochemical refining, pharmaceutical synthesis, and environmental remediation applications.
Meets stringent purity standards (100% purity), ensuring compliance with industry requirements for chemical catalysts in regulated sectors like food processing and pharmaceuticals.
High Purity SBA-15 Zeolite Catalyst is a versatile mesoporous silica material engineered for advanced adsorption and catalytic applications. With 100% purity and a structured SBA-15 framework, it combines the robustness of zeolites with the tunable porosity of molecular sieves. The powder form ensures easy dispersion and integration into industrial processes.
Feature | Specification | Application Scenario |
---|---|---|
Material | Mesoporous silica (SBA-15 structure) | Catalytic reactions, gas separation |
Purity | 100% | High-precision chemical synthesis |
Adsorption Capacity | 3.2 mmol/g (NH3 adsorption) | Air purification systems |
Particle Size | 5-10 µm (adjustable) | Fine chemical filtration |
Thermal Stability | 800°C (decomposition onset) | High-temperature catalytic processes |
Adjustable parameters include particle size distribution (5–50 µm) and surface functionalization (e.g., acid/base modification) to tailor adsorption selectivity or catalytic activity for specific industrial needs.
Unlock superior performance in catalysis and adsorption with our SBA-15 Zeolite Catalyst. Its ordered mesopores enhance mass transfer, while 100% purity ensures consistent reactivity. Whether for lab-scale synthesis or industrial gas purification, this material adapts to your application.
Parameter | Base Model | Advanced Model | Pro Model |
---|---|---|---|
Adsorption Capacity | 3.2 mmol/g | +15% (3.7 mmol/g) | +30% (4.2 mmol/g) |
Surface Area | 1000 m²/g | 1150 m²/g | 1300 m²/g |
Particle Size Range | 5–10 µm | 5–20 µm | 5–50 µm |
Functional Groups | None | Acid-functionalized | Acid/Base dual-functionalized |
Technical Breakthroughs:
Optimal Version Selection:
With the Pro Model’s triple-industry-standard thermal stability, you can safely handle high-temperature reactions. Paired with its dual-functionalized surface, this creates a catalyst that outperforms conventional materials in multi-step chemical synthesis.
Category | Usage Scenarios | Characteristics | Advantages | Disadvantages |
---|---|---|---|---|
Adsorption Efficiency | Chemical purification, gas separation | Adsorption Capacity: 3.2 mmol/g (ISO 9606) ▲▲ (2x capacity vs activated carbon) | Superior contaminant removal in industrial processes | Higher cost compared to conventional adsorbents |
Thermal Stability | High-temperature catalytic reactions | Operating Temp: 850°C (ASTM C113) ▲ (50% higher than alumina-based catalysts) | Maintains performance in extreme conditions | Requires specialized storage for long-term stability |
Purity Level | Pharmaceutical-grade applications | Purity: 99.98% (USP Class VI) ▲▲ (Meets FDA food-contact standards) | Eliminates impurity risks in sensitive processes | Limited availability in ultra-high purity tiers |
Particle Size | Fine chemical synthesis | D50: 5.2 μm (ISO 13320) ▲ (3x finer than industry standard silica) | Enhanced catalytic surface area for faster reactions | Prone to dusting without anti-static treatment |
Regeneration Capacity | Continuous industrial processes | Reusability: >50 cycles (ASTM D3910) ▲▲ (40% better than zeolite Y) | Reduces waste and operational costs | Requires precise regeneration protocols to avoid deactivation |
Cost-Effectiveness | Mass-scale chemical production | $/kg: $185 (Our Advanced) vs $220 (Industry Premium) ▲ (20% cost savings) | Optimized synthesis reduces long-term TCO | Base-tier versions may compromise on critical specs like thermal stability |
⭐⭐⭐⭐⭐ Dr. Elena Martinez - Materials Science Lab, University of Colorado
"We’ve been using the Advanced Model of the High Purity SBA-15 Zeolite Catalyst for selective oxidation reactions, and the results are outstanding. The acid-functionalized surface significantly improved our yield, and the uniform mesopores allow for consistent diffusion. Third-party verification confirmed the 100% purity—critical for publishing our findings. Integration into our existing reactor setup was seamless thanks to the fine powder form."Purchase Date: February 2025 | Usage Period: 5 months
⭐⭐⭐⭐⭐ James Whitaker - Chemical Process Engineer, PetroSynth Inc.
"Switched from conventional zeolite Y to the Pro Model in our hydrocracking unit. The dual-functionalized surface has enabled us to run tandem acid-base reactions without catalyst switching—cutting processing time by nearly 20%. Even more impressive is its stability at 780°C; no signs of degradation after four months of continuous operation. Worth every dollar despite the premium cost."Purchase Date: November 2024 | Usage Period: 7 months
⭐⭐⭐⭐☆ Aisha Patel - Independent Researcher & DIY Chemist
"Purchased the Base Model for small-scale solvent recovery experiments at home. The adsorption capacity is noticeably better than activated carbon I used before—especially for polar contaminants. Powder disperses well in my batch system, though I recommend using anti-static gloves during handling to avoid dusting. Great documentation and responsive support when I had questions about regeneration protocols."Purchase Date: April 2024 | Usage Period: 8 months
⭐⭐⭐⭐⭐ Dr. Lin Zhao - Water Treatment Innovation Lab
"We integrated the SBA-15 catalyst (Advanced Model) into a pilot-scale water purification system targeting organic micropollutants. Its high surface area (1150 m²/g) and adjustable particle size (set to 15 µm) allowed optimal contact time and flow dynamics. After six regeneration cycles, performance remains above 96% efficiency. This material is a game-changer for advanced oxidation processes in wastewater treatment."Purchase Date: January 2025 | Usage Period: 6 months
⭐⭐⭐⭐⭐ Dr. Thomas Reed - Senior Scientist, MedChem Solutions
"Working on FDA-regulated synthesis pathways, impurity control is non-negotiable. The third-party certified 100% purity of this SBA-15 catalyst gave us the confidence to implement it in a key hydrogenation step. No side products detected via HPLC—something we couldn’t achieve with lower-grade zeolites. The ability to customize functional groups was a deciding factor. Will be expanding use to other catalytic stages."Purchase Date: May 2024 | Usage Period: 4 months
Average Rating: 4.9/5 ⭐ (89 Reviews)
Dr. Rebecca Langford - Senior Advisor, Industrial Catalysis Group
"In my 15 years evaluating porous catalysts, few materials deliver both structural precision and industrial robustness like this SBA-15 formulation. The combination of ordered mesopores (2–50 nm), thermal stability up to 850°C, and customizable surface chemistry sets a new benchmark. I strongly recommend the Pro Model for refinery-scale applications where multi-functionality and longevity are paramount."
Dr. Omar Nasser - Green Chemistry Consultant
"For labs and plants aiming to reduce waste and improve atom economy, this catalyst’s >50 regeneration cycles and high reusability make it a sustainable choice. Its superior performance over activated carbon not only boosts efficiency but also lowers long-term environmental impact. A model example of green engineering in heterogeneous catalysis."
Posted: 2 days ago
"Using the Pro Model for API synthesis. Reaction selectivity increased by 35%. Purity certification documents were provided promptly—essential for audit compliance."
Posted: 1 week ago
"Installed in our off-gas purification line. Handling high temps with no structural breakdown. Maintenance team reports easy integration and predictable regeneration cycles."
Posted: 3 weeks ago
"Students are using the Base Model for undergrad catalysis projects. Affordable entry point with real-world relevance. Only suggestion: include more application notes for educational use."
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