Wharton, NJ, United States of America

Christopher A Di Biase


Average Co-Inventor Count = 3.0

ph-index = 1

Forward Citations = 11(Granted Patents)


Company Filing History:


Years Active: 2006

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1 patent (USPTO):Explore Patents

Title: Christopher A Di Biase: Innovator in Catalytic Distillation Technology

Introduction

Christopher A Di Biase is a notable inventor based in Wharton, NJ (US). He has made significant contributions to the field of catalytic distillation technology, particularly in the processing of hydrocarbon feedstocks. His innovative approach has led to advancements in the efficiency of ethylene production.

Latest Patents

Christopher holds a patent for a "Dual pressure catalytic distillation hydrogenation column system for the front end of an ethylene plant." This invention focuses on processing charge gas from the thermal cracking of hydrocarbon feedstock. The system is designed to effectively recover ethylene and propylene products while managing by-products. By employing two columns, with the first operating at a higher pressure and the second at a lower pressure, the rate of fouling is significantly reduced. The first column facilitates both hydrogenation and fractionation, while the second column serves solely as a fractionator. The temperature of the bottoms from each column is maintained below 200°C to prevent fouling.

Career Highlights

Christopher is currently associated with Catalytic Distillation Technologies, where he applies his expertise in catalytic processes. His work has been instrumental in enhancing the efficiency of olefins plants, contributing to the overall advancement of the industry.

Collaborations

He has collaborated with notable colleagues, including Charles Sumner and Jeffrey L Heineman, to further develop innovative solutions in the field of catalytic distillation.

Conclusion

Christopher A Di Biase's contributions to catalytic distillation technology exemplify the impact of innovative thinking in the chemical engineering sector. His patent and ongoing work continue to influence the efficiency of ethylene production processes.

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