Houston, TX, United States of America

Khalid Azzam

USPTO Granted Patents = 1 


Average Co-Inventor Count = 9.0

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 2017

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1 patent (USPTO):Explore Patents

Title: Khalid Azzam: Innovator in Fischer-Tropsch Catalyst Technology

Introduction

Khalid Azzam, based in Houston, Texas, has made a significant contribution to the field of catalytic processes with his innovative approach to Fischer-Tropsch synthesis. As an inventor, he stands out for his unique method that enhances the efficiency of low-temperature slurry bed catalysts.

Latest Patents

Azzam holds a patent for his invention titled "Catalyst for Low Temperature Slurry Bed Fischer-Tropsch Synthesis." This method involves a systematic process of producing a hematite-containing Fischer-Tropsch catalyst. By combining an iron nitrate solution with a precipitating agent at controlled temperatures, he creates a hematite-containing precipitate. The process also includes a washing phase that enhances the catalyst's effectiveness, paving the way for improved synthesis operations. His work not only contributes to more effective catalysts but also stands to advance the industrial application of Fischer-Tropsch synthesis.

Career Highlights

Khalid Azzam is affiliated with Res USA, LLC, where he utilizes his expertise to drive innovations forward. His work in developing catalysts for low-temperature processes is pivotal for enhancing the efficiency of chemical reactions, particularly in the energy sector.

Collaborations

Throughout his career, Azzam has collaborated with talented individuals such as Dawid J. Duvenhage and Christine Schmidt. These partnerships reflect the collaborative spirit within the field, emphasizing how teamwork can lead to significant advancements in technology.

Conclusion

Khalid Azzam's innovative work in catalyst technology illustrates the critical role inventors play in advancing modern chemical processes. His patented methods contribute to the efficacy of Fischer-Tropsch synthesis, representing a key development in industrial applications. As the field of catalysis continues to evolve, Azzam's contributions will undoubtedly inspire future innovations.

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