Long Grove, IL, United States of America

Roger Queisser


Average Co-Inventor Count = 3.0

ph-index = 1

Forward Citations = 7(Granted Patents)


Company Filing History:


Years Active: 1987

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1 patent (USPTO):Explore Patents

Title: Roger Queisser: Innovator in Deionization Technology

Introduction

Roger Queisser is a notable inventor based in Long Grove, IL (US). He has made significant contributions to the field of fluid treatment technology, particularly through his innovative patent for a mixed resin bed deionizer. His work focuses on improving the efficiency of removing toxic and mineral substances from fluids.

Latest Patents

Roger Queisser holds a patent for a mixed resin bed deionizing apparatus. This invention is designed to remove toxic or mineral substances from fluid passing through a loading vessel that contains a mixed bed of cation and anion resins. The apparatus includes a regeneration assembly that regenerates the cation and anion resins for return to the loading vessel. The assembly features a separation vessel for separating the cation and anion resins, along with two 'U'-shaped regeneration vessels. One vessel is dedicated to regenerating cation resins, while the other is for regenerating anion resins. The process involves precise management of resin amounts and the use of a regenerant to ensure optimal performance.

Career Highlights

Roger Queisser is associated with U.I.P. Engineered Products Corporation, where he has applied his expertise in engineering and innovation. His work has led to advancements in deionization technology, contributing to cleaner and safer fluid treatment processes.

Collaborations

Some of Roger's coworkers include Lee G. Carlson and Conrad Terrien. Their collaboration has likely fostered an environment of innovation and shared expertise within the company.

Conclusion

Roger Queisser's contributions to the field of deionization technology exemplify the impact of innovative thinking in engineering. His patent for a mixed resin bed deionizer showcases his commitment to improving fluid treatment processes.

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