Company Filing History:
Years Active: 2001-2025
Title: **Innovative Contributions of Andrea Brasch in Materials Science**
Introduction
Andrea Brasch, an accomplished inventor based in Meldorf, Germany, has made significant contributions to the field of materials science with her innovative work focusing on advanced materials and processes. With a total of 11 patents to her name, she stands out as a key figure in the development of efficient synthesis methods for various compounds.
Latest Patents
Among her latest patents, one notable invention is the "Process for the synthesis of magnesium aluminate spinels." In this innovation, magnesium aluminate spinels are produced by hydrothermally aging an aqueous slurry of a spinel precursor, which can include a mixture of boehmite alumina and a magnesium precursor, aluminum magnesium oxide or hydroxide, and other mixtures. The aged slurries are dried to remove excess water, resulting in a dried spinel precursor that is later calcined to create the final magnesium aluminate spinel.
Another significant patent pertains to the preparation of TiO/SiO mixed oxides or their hydrates. This process involves utilizing titanium alcoholates and aqueous silica sol to yield mixtures that comprise 0.5 to 95 wt % SiO, with the remainder being TiO. These mixed oxides can serve as effective catalyst carriers in various applications.
Career Highlights
Throughout her career, Andrea has worked within reputable companies such as Sasol Germany GmbH and RWE DEA Aktiengesellschaft für Mineraloel und Chemie. Her professional journey illustrates her strong background in chemical engineering and innovative material development.
Collaborations
Andrea has collaborated with several distinguished colleagues, including Klaus Diblitz and Klaus F. Noweck. Their teamwork has advanced research and development efforts, contributing to breakthroughs in her areas of expertise.
Conclusion
Andrea Brasch exemplifies the spirit of innovation, with her substantial contributions and patents showcasing her expertise in materials science. Her work not only drives forward scientific understanding but also has practical implications in various industries, particularly in catalysis and material synthesis.