This inventor holds 2 USPTO granted patents and 3 EPO patents. Top assignee: Leibniz-Institut Fuer Plasmaforschung Und Technologie E.v., Inp Greifswald. Active years: 2017-2018.
Company Filing History:
Years Active: 2017-2018
Title: Inventor Profile: Uta Schnabel
Introduction
Uta Schnabel, an accomplished inventor based in Greifswald, Germany, has made significant contributions to the field of plasma technology. With a focus on advancing sterilization methods, her innovations are particularly important in the context of healthcare and materials science.
Latest Patents
Uta Schnabel holds two patents, the latest of which is a revolutionary plasma-generated gas sterilization method and device. This invention involves a process for quickly decontaminating and sterilizing thermolabile goods using a plasma gas that is generated from air. The method consists of generating a plasma from air, which produces reactive nitrogen and oxygen species. This process includes oxidizing nitrogen monoxide (NO) to form reactive nitrogen species at temperatures below 400°C, resulting in a plasma-activated gas mixture that has an NO content of at least 0.3%. The gas mixture is then humidified with water before being brought into contact with the objects needing decontamination or sterilization.
Career Highlights
Uta Schnabel's career is anchored at the Leibniz Institute for Plasma Research and Technology (INP Greifswald), where she has been integral in pioneering research in plasma technologies. Her innovations reflect a strong commitment to advancing safer and more efficient sterilization techniques.
Collaborations
Throughout her career, Uta has collaborated with notable colleagues such as Udo Krohmann and Joerg Ehlbeck. These partnerships highlight her dedication to collaborative research and innovation, fostering advancements in the field of plasma-based applications.
Conclusion
Uta Schnabel's work exemplifies the intersection of innovation and practical application in sterilization technologies. Her patents signify valuable advancements that could reshape how decontamination processes are approached, ensuring the safety and efficacy of materials in various industries. As she continues to develop her research, Uta remains a pivotal figure in the ongoing evolution of plasma technology.