Company Filing History:
Years Active: 2024
Title: John Myers: Innovator in Thermo-Chemical Processing of Coal
Introduction
John Myers is a notable inventor based in Laramie, WY (US). He has made significant contributions to the field of thermochemical processing, particularly in the extraction and conversion of coal into high-value products. His innovative approach has the potential to transform the way coal is utilized, moving beyond traditional combustion methods.
Latest Patents
John Myers holds a patent for "Thermo-chemical processing of coal via solvent extraction." This patent describes integrated thermochemical processes for the deliberate decomposition, extraction, and conversion of coal into valuable products. The systems and methods outlined in the patent are versatile and can generate a variety of high-value products, including chemicals such as aromatics, asphaltenes, naphthalenes, and phenols. Additionally, the processes can produce polymer composite products, agricultural materials, building materials, carbon fiber, and graphene products. These innovations offer substantial value compared to the energy generated through combustion.
Career Highlights
John Myers is affiliated with the University of Wyoming, where he continues to advance research in thermochemical processing. His work is characterized by a commitment to developing sustainable and economically viable methods for utilizing coal. With a focus on innovation, he has positioned himself as a leader in this emerging field.
Collaborations
Throughout his career, John has collaborated with esteemed colleagues such as William Schaffers and David Allen Bell. These partnerships have fostered a collaborative environment that enhances research and development efforts in thermochemical processing.
Conclusion
John Myers is a pioneering inventor whose work in thermo-chemical processing of coal is paving the way for more sustainable energy solutions. His contributions to the field are not only innovative but also essential for the future of energy production.