Company Filing History:
Years Active: 2017-2023
Title: Delphine Marti: Innovator in Chemical-Looping Technologies
Introduction
Delphine Marti is a prominent inventor based in Lyons, France. She has made significant contributions to the field of chemical-looping technologies, particularly in the development of macroporous oxygen carrier solids. With a total of four patents to her name, her work is paving the way for advancements in combustion methods.
Latest Patents
Delphine Marti's latest patents include innovative methods for creating macroporous oxygen carrier solids. One of her notable inventions is a solid with an oxide ceramic matrix, which is utilized in a chemical-looping oxidation-reduction method. This invention focuses on an oxygen carrier solid that comprises an oxidation-reduction active mass made of metal oxides dispersed in a ceramic matrix. The matrix includes at least one oxide with a melting point higher than 1500°C, such as alumina, and features a specific macroporous texture. Another significant patent involves a macroporous oxygen carrier solid with a refractory feldspar or feldspathoid, which also serves in chemical-looping combustion. This solid is prepared from a precursor obtained from a macroporous zeolitic material and a precursor of the oxidation-reduction active mass.
Career Highlights
Throughout her career, Delphine Marti has worked with notable companies such as Ifp Energies Nouvelles and Total Raffinage Chimie. Her experience in these organizations has contributed to her expertise in the field of chemical engineering and innovation.
Collaborations
Delphine has collaborated with talented individuals in her field, including Arnold Lambert and Elodie Comte. These partnerships have fostered a collaborative environment that enhances the development of innovative technologies.
Conclusion
Delphine Marti is a remarkable inventor whose work in chemical-looping technologies is making a significant impact. Her patents reflect her dedication to advancing combustion methods and improving energy efficiency.