East Hampton, CT, United States of America

Sam Karavolis


Average Co-Inventor Count = 3.2

ph-index = 4

Forward Citations = 68(Granted Patents)


Company Filing History:


Years Active: 1983-1988

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4 patents (USPTO):Explore Patents

Title: Inventor Spotlight: Sam Karavolis

Introduction

Sam Karavolis is a notable inventor based in East Hampton, Connecticut, with a focus on developing advanced catalysts for steam reforming processes. Throughout his career, he has been granted four patents, highlighting his significant contributions to the field of chemical engineering.

Latest Patents

Karavolis' latest innovations include high-activity sulfur tolerant steam reforming catalysts. These catalysts utilize iridium, palladium, or platinum supported on lanthanum-stabilized alumina or magnesium-promoted lanthanum-stabilized alumina. They demonstrate improved activity compared to conventional catalysts in the presence of sulfur-containing hydrocarbon fuels, particularly in various steam reforming environments. The catalysts are versatile and have applications in autothermal, tubular, cyclic, and adiabatic steam reforming processes.

Career Highlights

He has worked with prominent companies in the field, including International Fuel Cells, LLC and United Technologies Corporation. His work in these organizations has allowed him to develop innovative solutions that enhance energy production from hydrocarbon sources through advanced catalysis techniques.

Collaborations

Throughout his career, Karavolis has collaborated with esteemed colleagues such as Herbert J. Setzer and John A. Bett. These partnerships have not only propelled his research forward but have also fostered a collaborative environment conducive to innovation in his field.

Conclusion

Sam Karavolis stands out as an influential inventor making strides in the area of steam reforming catalysts. His patented innovations continue to play a crucial role in advancing energy production technologies, showcasing his commitment to the development of more efficient and sustainable methods of harnessing energy.

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