This inventor holds 3 USPTO granted patents. Top assignees: Martin Marietta Energy Systems, Inc., Lockheed Martin Energy Systems, Inc.. Active years: 1994-1997.
Company Filing History:


Years Active: 1994-1997
Title: The Innovations of Brendlyn D. Faison: A Pioneer in Biochemical Engineering
Introduction
Brendlyn D. Faison is a distinguished inventor based in Knoxville, TN, known for his significant contributions to the field of biochemical engineering. With a portfolio of three patented innovations, he has made remarkable advancements in the enzymatic conversion of cellulosic materials into valuable fuels and chemicals.
Latest Patents
Brendlyn’s latest patents showcase a cutting-edge approach to enzyme hydrolysis of cellulosic materials, particularly waste paper. His process involves utilizing enzymatic hydrolysis to convert cellulose, the primary carbohydrate found in paper, into sugars and ethanol. In this innovative system, a waste paper slurry is treated with cellulase in an agitated hydrolyzer. The design incorporates an attritor and a cellobiase reactor, which are coupled to enhance reaction efficiency significantly. To further optimize the process, microfiltration, ultrafiltration, and reverse osmosis steps are integrated, ensuring maximum efficiency throughout the reaction. The sugars produced from this process are then transformed into a dilute product within a fluidized-bed bioreactor that employs biocatalysts, such as microorganisms, before being concentrated and purified for final use.
Career Highlights
Brendlyn D. Faison's professional journey includes significant tenures at Martin Marietta Energy Systems, Inc. and Lockheed Martin Energy Systems, Inc., where he honed his expertise in biochemical processes and innovations. His work in these prominent organizations has paved the way for breakthroughs in energy systems and sustainable chemical production.
Collaborations
Throughout his career, Brendlyn has collaborated with esteemed colleagues, including Charles D. Scott and Brian H. Davison. These partnerships have facilitated interdisciplinary approaches to tackling complex challenges in biochemical engineering, further enhancing the effectiveness and application of his inventions.
Conclusion
Brendlyn D. Faison continues to be a key figure in the realm of biotechnological advancements. With his innovative patents, he plays a vital role in promoting sustainable practices through the enzymatic conversion of cellulose into valuable resources. His dedication and ingenuity contribute to a future where waste materials can be repurposed, paving the way for cleaner energy solutions and reduced environmental impact.