Fairport, NY, United States of America

James L Stanton


Average Co-Inventor Count = 3.0

ph-index = 1

Forward Citations = 9(Granted Patents)


Company Filing History:


Years Active: 2001

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1 patent (USPTO):Explore Patents

Title: The Innovative Journey of James L. Stanton in Biochemical Processes

Introduction: James L. Stanton, an inventive mind hailing from Fairport, NY, has made significant contributions to the field of biochemical engineering. With a unique patent under his name, Stanton's work demonstrates a profound understanding of the processes involved in metal ore treatment, specifically focusing on the removal of insoluble sulfides.

Latest Patents: Stanton's notable invention is the "Biochemical Oxidation System and Process." This innovative system is designed for effectively removing insoluble sulfides from metal ores. The process involves a sophisticated mechanism where a liquid mixture of an ore slurry and a liquid biochemical oxidation medium flows through a series of covered overflow tanks. In these tanks, the mixture is continuously aerated using a precise blend of purified oxygen and carbon dioxide gases, resulting in a substantially sulfide-free liquid mixture. This mixture is then discharged into a clarifier, allowing for the separation and recirculation of the biochemical oxidation medium, which optimizes the overall process.

Career Highlights: James L. Stanton is associated with General Signal Corporation, a company recognized for its advancements in engineering and technology. His career has notably revolved around innovations in biochemical processes, positioning him as a pivotal contributor in this sector.

Collaborations: Throughout his professional journey, Stanton has partnered with esteemed colleagues such as John R. McWhirter and Paul M. Kubera. Together, they have fostered an environment of collaboration that enhances the potential for groundbreaking discoveries in engineering.

Conclusion: James L. Stanton’s innovative contributions, particularly the Biochemical Oxidation System and Process, highlight his significant role in advancing the biochemical treatment of metal ores. His work not only reflects his expertise but also paves the way for future innovations in the field, demonstrating the endless possibilities that arise from dedicated research and collaboration.

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