Transforming the Energy Industry with Green Chemistry.
By rethinking catalysts with Green Chemistry, we transform today’s toughest challenges into pathways for low-carbon fuels, circular carbon solutions, and sustainable production.
We engineer nanocatalysts to outperform conventional systems—delivering noble-metal performance at base-metal cost, scalable with standard manufacturing, and stable even in harsh, water-rich environments. Built for the energy transition, our catalysts enable renewable oil upgrading, CO₂-to-syngas conversion, and cleaner heavy oil recovery—opening new pathways for sustainable fuels, circular carbon solutions, and lower-emission production.
Where others see barriers, we see catalytic opportunity.
This is how we transform today’s energy challenges into scalable, sustainable solutions.
We build catalytic platforms, not single-use fixes. Our nanocatalysts deliver noble-metal performance at base-metal cost—scalable, durable, and proven. Three portfolios—Carbon Management, AQP, and ISUT™—all powered by one breakthrough design. One platform. Many solutions. A cleaner energy future.
ISUT technology harnesses a unique nanocatalyst to decarbonize oil in the reservoir directly. Upgrading heavy crude in situ reduces emissions at the source, improves oil quality, and lowers the cost of production, making cleaner oil recovery possible.
AQP enables both hydrogenation and steam cracking in a single reactor, eliminating the need for external hydrogen. AQP Plus takes it further, processing the most challenging feedstocks into cleaner, higher-value products.
Olympia™ catalyst delivers noble-metal performance without the cost, providing unmatched selectivity and stability. As part of our Carbon Management suite, it converts CO₂ into syngas at lower temperatures, enabling sustainable fuels and circular solutions.
Our ISUT® technology utilizes advanced nanocatalysts to upgrade heavy oil directly within the reservoir, enhancing oil quality and recovery rates. The CatSkid system, featured in the video, exemplifies our state-of-the-art engineering, enabling on-site preparation of these nanocatalysts for efficient and sustainable energy production.