Tomball, TX, United States of America

Myron E Schroeder


Average Co-Inventor Count = 3.7

ph-index = 2

Forward Citations = 97(Granted Patents)


Company Filing History:


Years Active: 1995-2003

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2 patents (USPTO):Explore Patents

Title: Myron E. Schroeder: A Pioneer in Chemical Process Innovation

Introduction

Myron E. Schroeder, based in Tomball, Texas, is an accomplished inventor recognized for his significant contributions to chemical engineering through his innovative patents. With a solid background in process optimization, he has developed methods that enhance efficiency and reduce operational challenges in chemical processing.

Latest Patents

Myron holds two patents, showcasing his expertise in advanced chemical processes. His latest inventions include:

1. **Method for Chemical Addition Utilizing Adaptive Optimization** - This patent introduces a method for chemical addition that employs adaptive process control optimizations. It combines expert systems, neural networks, and genetic algorithms to enhance the precision and efficiency of chemical mixtures.

2. **Thermal Cracking Process with Reduced Coking** - This innovation addresses the challenge of coking in thermal cracking processes, significantly improving efficiency and operational effectiveness in chemical manufacturing.

Career Highlights

Throughout his career, Myron has worked with prestigious organizations, including Baker Hughes Corporation and Amoco Corporation. His work in these companies has allowed him to apply his inventive skills and contribute to advancements in chemical engineering practices.

Collaborations

Myron has collaborated with notable colleagues including Marilyn Wood Blaschke and Michael J. Zetlmeisl, fostering an environment of innovation and shared expertise in the field. These partnerships have played a crucial role in the development of his pioneering patents.

Conclusion

Myron E. Schroeder continues to be a significant figure in the realm of chemical engineering, with his innovative patents paving the way for improved processes. His work exemplifies the importance of continual advancement in technology to meet the challenges of modern chemical production.

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