Clinton, IA, United States of America

Lloyd Pebsworth


Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 19(Granted Patents)


Company Filing History:


Years Active: 1987

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1 patent (USPTO):Explore Patents

Title: Innovator Spotlight: Lloyd Pebsworth - Pioneering Catalytic Deactivation in Clinton, IA

Introduction: Lloyd Pebsworth, a brilliant inventor based in Clinton, IA, has made significant contributions to the field of polymerization with his groundbreaking patent for a new method of catalyst deactivation. His innovative approach promises to revolutionize the industry and improve the efficiency of polymer production processes.

Latest Patents: Lloyd Pebsworth currently holds one patent for his Method of catalyst deactivation. This patent outlines a novel technique for terminating ethylene polymerization and interpolymerization reactions using a selected deactivating agent. By injecting this agent into the molten polymer solution before degassing, Pebsworth's method enhances the overall performance of Ziegler-type catalysts.

Career Highlights: Working at Chemplex Company, Lloyd Pebsworth has established himself as a key figure in the development of advanced polymerization technologies. His expertise in catalytic deactivation has earned him recognition as a pioneering innovator in the field, with his methods being adopted by leading industrial players.

Collaborations: Throughout his career, Lloyd Pebsworth has collaborated with esteemed coworkers such as Yu-Tang Hwang and Robert A. Dombro. Together, they have tackled complex challenges in polymer research and development, leading to the successful implementation of innovative solutions within the Chemplex Company.

Conclusion: In conclusion, Lloyd Pebsworth's inventive spirit and relentless dedication to advancing polymer science have placed him at the forefront of catalytic deactivation research. His patent stands as a testament to his ingenuity and commitment to pushing the boundaries of innovation in the industry. We look forward to witnessing the continued impact of his work on the future of polymer production.

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