Columbia, MD, United States of America

Michael Scott Ziebarth

USPTO Granted Patents = 27 

 

 

Average Co-Inventor Count = 4.0

ph-index = 9

Forward Citations = 297(Granted Patents)


Company Filing History:


Years Active: 1993-2021

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27 patents (USPTO):Explore Patents

Title: Innovations of Michael Scott Ziebarth: A Catalyst for Change

Introduction

Michael Scott Ziebarth, based in Columbia, MD, is an accomplished inventor with a significant portfolio of 27 patents. His innovations primarily focus on processes that enhance the effectiveness and efficiency of catalytic materials, paving the way for advancements in the chemical engineering sector.

Latest Patents

Two of Michael’s latest patents underline his expertise in the field. The first is a **Process to Peptize Alumina for Fluidizable Catalysts**, which details a method for preparing peptized alumina with increased solids and acid contents while reducing water content. This innovative process involves mixing boehmite or pseudoboehmite alumina with acid in a high-intensity mixer, yielding a solid particulate that drastically improves catalyst production rates and reduces costs due to its high solids concentration.

The second patent, **High Matrix Surface Area Catalytic Cracking Catalyst Stabilized with Magnesium and Silica**, describes particulate catalytic cracking catalysts that utilize zeolites to enhance catalytic activity. By avoiding rare earth metals, this innovation highlights an efficient way to improve coke and hydrogen selectivity in fluid catalytic cracking processes, demonstrating Michael's commitment to advancing environmental sustainability in industrial applications.

Career Highlights

Throughout his career, Ziebarth has made notable contributions to the field through his work at prestigious companies such as W.R. Grace & Co. and ExxonMobil Research and Engineering Company. His experience in these company environments has fortified his knowledge base and refined his inventive prowess.

Collaborations

Michael has also had the opportunity to collaborate with distinguished colleagues, including Terry G. Roberie and Arthur W. Chester. These partnerships have likely contributed to his innovative spirit, enabling him to cultivate groundbreaking solutions in the field of catalysis.

Conclusion

Michael Scott Ziebarth's innovations reflect a dedication to the advancement of catalytic processes within the chemical engineering realm. With a rich patent portfolio and impactful collaborations, he continues to drive change, marking his legacy as a vital contributor to modern industrial practices.

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