Novi, MI, United States of America

Kyle Matthew Kilponen


Average Co-Inventor Count = 4.0

ph-index = 1


Company Filing History:


Years Active: 2025

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1 patent (USPTO):Explore Patents

Title: Innovations by Kyle Matthew Kilponen

Introduction

Kyle Matthew Kilponen is an accomplished inventor based in Novi, MI (US). He has made significant contributions to the field of cellulose hydrolysis through his innovative methods. His work focuses on enhancing the efficiency of hydrolyzing cellulosic materials, which has important implications for various industries.

Latest Patents

Kilponen holds a patent for "Methods for cellulose hydrolysis using sulfonated polyaromatic catalysts." This patent describes a method for hydrolyzing cellulosic material by combining it with a sulfonated polyaromatic catalyst in water. The process results in the formation of a monosaccharide hydrolysis product, creating a reaction mixture that includes an aqueous phase with the product in solution and a dispersed phase containing the catalyst and any non-hydrolyzed material. The sulfonated polyaromatic catalyst is designed to be substantially insoluble in the aqueous phase, allowing it to preferentially exhibit catalytic activity on the water-insoluble cellulosic substrate. The monosaccharide hydrolysis product can be effectively recovered from the aqueous phase of the reaction mixture. Kilponen has 1 patent to his name.

Career Highlights

Kyle Matthew Kilponen is affiliated with Michigan State University, where he continues to advance his research and innovations. His work is pivotal in the exploration of sustainable methods for processing cellulosic materials, which can lead to more environmentally friendly practices in various sectors.

Collaborations

Kilponen collaborates with notable colleagues, including Mikhail Y Redko and James E Jackson. Their combined expertise contributes to the advancement of research in cellulose hydrolysis and related fields.

Conclusion

Kyle Matthew Kilponen is a notable inventor whose work in cellulose hydrolysis showcases his innovative approach to solving complex problems. His contributions are significant in promoting sustainable practices in material processing.

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