Pasadena, TX, United States of America

Marlon L Jordan


Average Co-Inventor Count = 9.0

ph-index = 1


Company Filing History:


Years Active: 2025

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1 patent (USPTO):Explore Patents

Title: Marlon L. Jordan: Innovator in Chromium Catalyst Activation

Introduction

Marlon L. Jordan is a notable inventor based in Pasadena, Texas. He has made significant contributions to the field of chemical engineering, particularly in the development of advanced catalyst systems. His work focuses on enhancing the efficiency and effectiveness of chromium catalysts used in polymer production.

Latest Patents

Marlon L. Jordan holds a patent for "Systems and methods for chromium catalyst activation." This patent describes processes for producing activated chromium catalysts, such as chromium/silica and titanated chromium/silica catalysts. The innovative processes involve a multistep approach that includes exposure to inert and oxidizing atmospheres at specific temperature conditions. The resulting activated chromium catalysts exhibit unexpectedly high melt index potential, enabling the production of ethylene-based polymers with lower gel counts and higher melt indices. Additionally, the activation systems allow for the adjustment of the fluidizing gas entering the fluidized bed vessel, which can be an inert gas, an oxygen-containing gas, or a mixture of both, to minimize or prevent exotherms.

Career Highlights

Marlon L. Jordan is currently employed at Chevron Phillips Chemical Company LP, where he continues to advance his research and development efforts in catalyst technology. His work has been instrumental in improving the performance of catalysts used in various chemical processes.

Collaborations

Marlon has collaborated with esteemed colleagues, including Max P. McDaniel and Zhihui Gu, to further enhance the capabilities of chromium catalysts and their applications in the industry.

Conclusion

Marlon L. Jordan's innovative work in chromium catalyst activation has the potential to significantly impact the production of ethylene-based polymers. His contributions to the field exemplify the importance of research and development in advancing chemical engineering technologies.

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