Longmont, CO, United States of America

Adam Seymour

USPTO Granted Patents = 3 

Average Co-Inventor Count = 4.1

ph-index = 1

Forward Citations = 67(Granted Patents)


Company Filing History:


Years Active: 2014-2018

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3 patents (USPTO):Explore Patents

Title: Innovator Spotlight: Adam Seymour, Pioneering Purification Processes in Longmont, CO

Introduction:

Adam Seymour is an esteemed inventor based in Longmont, CO, with a remarkable track record in patenting innovative processes. His dedication to advancing purification techniques has earned him recognition in the field of chemical engineering.

Latest Patents:

Adam Seymour's latest patents focus on the reduction of silicon tetrachloride (SiCl4) in the presence of boron trichloride (BCl3). These inventions revolutionize the purification of BCl3 by minimizing SiCl4 formation and facilitating the removal of silicon impurities from the product stream. By integrating hydride materials and freeze separation techniques, Seymour's processes enhance the efficiency of BCl3 purification.

Career Highlights:

Currently employed at Matheson Tri-Gas, Inc., Adam Seymour continues to contribute significantly to the company's research and development initiatives. His expertise in chemical engineering and dedication to innovation have led to the successful implementation of novel purification methods in industrial settings.

Collaborations:

In his professional journey, Adam Seymour has collaborated closely with talented individuals such as Mark Raynor and Daniel Tempel. Together, they have synergized their skills and knowledge to streamline purification processes and achieve groundbreaking results in the field of chemical engineering.

Conclusion:

Adam Seymour's inventive spirit and commitment to excellence have solidified his reputation as a trailblazer in purification technologies. His relentless pursuit of innovation and collaboration with industry experts exemplify his passion for driving advancements in chemical engineering. Through his pioneering work, Seymour continues to shape the future of industrial purification processes.

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