Santa Barbara, CA, United States of America

Peter K Worsley


Average Co-Inventor Count = 2.0

ph-index = 1

Forward Citations = 31(Granted Patents)


Company Filing History:


Years Active: 1977

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1 patent (USPTO):Explore Patents

Title: Innovator Spotlight: Peter K. Worsley and His Contribution to Membrane Technology

Introduction: Peter K. Worsley is an accomplished inventor based in Santa Barbara, California, recognised for his ingenuity in membrane technology. With a focus on direct osmosis separations, Worsley's contributions are significant in the field of fluid dynamics and separation processes, specifically through his innovative patent.

Latest Patents: Worsley holds one notable patent titled "Spiral wound membrane module for direct osmosis separations." This invention features a membrane module constructed from pairs of spaced membrane sheets interposed with porous material sheets. These layers are spirally wound around a central hollow mandrel, designed to facilitate the selective flow of two different fluids. The invention allows for an efficient osmosis process, where fluid streams can be concentrated and diluted, ultimately enhancing the efficiency of separation operations in various industries.

Career Highlights: Worsley has been a part of the Universal Oil Products Company, where he has applied his expertise to improve membrane technologies. His work has contributed to advancements in how fluids are separated, making processes more effective and economical.

Collaborations: In his professional journey, Worsley has collaborated with notable colleagues, including Gerald E. Foreman, fostering innovative approaches to problem-solving in fluid separation technologies. Their combined expertise has led to improved designs and operational efficiencies in the applications of membrane modules.

Conclusion: Peter K. Worsley's work represents a pivotal advancement in membrane separation technology, showcasing the importance of innovation in engineering. His patent not only highlights his contribution to scientific progress but also serves as a foundation for future developments in fluid management across various industries.

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