Fort Mill, SC, United States of America

Bruce G Kelley


Average Co-Inventor Count = 2.3

ph-index = 2

Forward Citations = 10(Granted Patents)


Company Filing History:


Years Active: 1978-1981

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3 patents (USPTO):Explore Patents

Title: Bruce G Kelley: Innovator in Iron Reduction Technology

Introduction

Bruce G Kelley is a notable inventor based in Fort Mill, SC (US), recognized for his contributions to the field of iron reduction technology. He holds a total of 3 patents, showcasing his innovative approach to improving industrial processes.

Latest Patents

Kelley’s latest patents include a method and apparatus for reducing particulate iron oxide to molten iron. This invention utilizes solid carbonaceous fuel as a reductant in a shaft-type reducing furnace. The process involves forming a furnace burden from a mixture of iron oxide lumps or pellets and particulate solid fuel. The reacted top gas is upgraded and recirculated through the burden in a counterflow relationship, thereby heating and reducing the burden. The heat for reduction is generated by passing electric current through the burden. Additionally, a portion of the heat for melting reduced iron and a supplemental source of hot reducing gas is provided by oxy-fuel burners located in the shaft furnace above the molten iron pool. Another significant patent focuses on reducing particulate iron oxide to metallic iron, employing a similar methodology with solid carbonaceous fuel.

Career Highlights

Bruce G Kelley is currently associated with Midrex Corporation, where he applies his expertise in iron reduction technologies. His work has significantly impacted the efficiency and effectiveness of iron production processes.

Collaborations

Kelley has collaborated with notable colleagues, including Donald Beggs and David C Meissner, contributing to advancements in their field.

Conclusion

Bruce G Kelley stands out as an innovative inventor in the iron reduction industry, with a focus on enhancing production methods through his patented technologies. His contributions continue to influence the field positively.

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