The development of efficient hydrogen carrier technologies depends on the ability to rapidly evaluate catalyst performance and optimize operating conditions. In this study, the Flowrence® XR platform was used to investigate methylcyclohexane (MCH) dehydrogenation, demonstrating highly reproducible results across 16 parallel reactors.
By enabling parallel experimentation and generating high-quality data in a fraction of the time required by conventional testing methods, Flowrence® XR supports faster catalyst screening and more efficient process development. The platform allows researchers to evaluate multiple catalysts and operating conditions simultaneously, helping to accelerate development programs while maintaining data reliability and consistency.
As hydrogen storage and transport technologies continue to gain importance in the energy transition, the ability to generate robust experimental data quickly is critical for reducing technical risk, shortening development timelines, and bringing innovative decarbonisation solutions to market more efficiently.
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