Kenvil, NJ, United States of America

James P Bailor


Average Co-Inventor Count = 2.7

ph-index = 2

Forward Citations = 20(Granted Patents)


Location History:

  • Denville, NJ (US) (1983)
  • Kenvil, NJ (US) (1993)

Company Filing History:


Years Active: 1983-1993

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2 patents (USPTO):Explore Patents

Title: James P. Bailor: Innovator in Catalytic Reforming Technologies

Introduction

James P. Bailor is a notable inventor based in Kenvil, NJ (US), recognized for his contributions to catalytic reforming technologies. He holds 2 patents that showcase his innovative approaches in the field of hydrocarbon processing.

Latest Patents

His latest patents include a process for multistage reforming with ultra-low pressure cyclic second stage. This process involves catalytically reforming a gasoline boiling range hydrocarbonaceous feedstock, conducted in multiple stages with heavy aromatics removal between the first and second stages. Another significant patent is related to a catalyst regeneration process. This process focuses on regenerating and reactivating coked noble metal catalysts, particularly platinum-containing polymetallic catalysts. It features a system with separate, interconnected primary and secondary regeneration gas circuits, allowing for efficient gas circulation and catalyst reactivation.

Career Highlights

James P. Bailor is currently employed at Exxon Research and Engineering Company, where he applies his expertise in catalytic processes. His work has significantly advanced the understanding and efficiency of hydrocarbon reforming technologies.

Collaborations

Throughout his career, he has collaborated with esteemed colleagues, including George A. Swan, III and David W. Staubs, contributing to various innovative projects and research initiatives.

Conclusion

James P. Bailor's contributions to catalytic reforming technologies reflect his dedication to innovation in the field. His patents and work at Exxon Research and Engineering Company highlight his role as a key figure in advancing hydrocarbon processing techniques.

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