GeoLYST40

Catalyst Production

Embracing Nature's Bounty for Catalyst Production

In the diverse catalyst market, the demand for naturally sourced raw materials is increasing and where high carbon silica is traditionally used in catalyst applications, low carbon geothermal colloidal silica can substitute.

At Geo40, we adopt an environmentally conscious approach by recovering silica from geothermal brines, offering a consistent and sustainable solution for catalyst applications. Our products cater to a wide range of catalyst needs, ensuring versatility and performance.

Beginning with our standard silica sol-based products, Geo40 has the flexibility to tailor our natural offerings to suit your specific application requirements. We employ various stabilization methods, pH adjustments, and filtration techniques to customise our products, ensuring they align seamlessly with your industry demands.

GeoLYST40 serves as an exceptional inorganic binder in high-temperature environments. By incorporating GeoLYST40 in your catalyst applications, you can effectively displace high carbon silica, helping with typical applications such as reduced catalyst bead wear, optimised performance, improved catalyst efficiency, stability, durability and lifespan. Notably, GeoLYST40 stands out as one of the most carbon-efficient raw materials available for zeolite synthesis and catalyst carrier applications in the market.

As the world undergoes a transformative shift towards sustainable practices, it is crucial to adapt and embrace forward-thinking approaches. By integrating the GeoLYST40 product range into your catalyst production, you demonstrate your commitment to eco-friendly solutions and progressive innovation.

Join us on this journey of change and make a significant impact by choosing the GeoLYST40 range for your catalyst production needs.

Catalyticconverter
Product Name GeoLYST40
Concentration 15-40wt%
Density 1.09 – 1.28 Kg/L
Shelf Life 6-12 Months
Potential Applications Zeolite Synthesis, Catalyst Binder
Applications Catalyst Production

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