Baltimore, MD, United States of America

Pilip Stephen Deitz


Average Co-Inventor Count = 5.0

ph-index = 1

Forward Citations = 15(Granted Patents)


Company Filing History:


Years Active: 2003

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1 patent (USPTO):Explore Patents

Title: Pilip Stephen Deitz: Innovator in Gasoline Sulfur Reduction Technology

Introduction

Pilip Stephen Deitz is a notable inventor based in Baltimore, MD (US). He has made significant contributions to the field of catalytic processes, particularly in reducing sulfur compounds in gasoline. His innovative work has led to the development of a patented technology that addresses environmental concerns associated with gasoline production.

Latest Patents

Pilip Stephen Deitz holds a patent for a "Gasoline sulfur reduction catalyst for fluid catalytic cracking process." This invention focuses on catalyst compositions and processes capable of reducing sulfur compounds typically found in gasoline fraction streams during fluid catalytic cracking. The catalyst composition includes at least one Y-type zeolite with a kinetic conversion activity of at least about 3, combined with a Lewis acid-containing alumina composite that constitutes at least 50 weight percent of the composition. The resulting equilibrium catalyst composition achieves a kinetic conversion activity of at least about 2.

Career Highlights

Pilip Stephen Deitz is associated with W.R. Grace & Co. - Conn., where he has applied his expertise in catalytic processes. His work has been instrumental in advancing technologies that enhance the efficiency and environmental sustainability of gasoline production.

Collaborations

Throughout his career, Pilip has collaborated with esteemed colleagues, including Xinjin Zhao and Wu-Cheng Cheng. These partnerships have contributed to the development and refinement of innovative catalytic technologies.

Conclusion

Pilip Stephen Deitz is a distinguished inventor whose work in gasoline sulfur reduction technology exemplifies the intersection of innovation and environmental responsibility. His contributions continue to impact the field of catalytic processes positively.

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