Leuna, Germany

Hannelore Grundmann


Average Co-Inventor Count = 8.0

ph-index = 1

Forward Citations = 16(Granted Patents)


Company Filing History:


Years Active: 1997

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1 patent (USPTO):Explore Patents

Title: Hannelore Grundmann - Innovator in Hydrodehalogenation Catalysis

Introduction

Hannelore Grundmann, an accomplished inventor based in Leuna, Germany, has made significant contributions to the field of catalysis. With a passion for innovation and a keen focus on environmental sustainability, she has developed a noteworthy hydrodehalogenation catalyst that has implications for the treatment of chlorinated hydrocarbons.

Latest Patents

Hannelore holds one patent for her hydrodehalogenation catalyst, which stands out for its efficiency and longevity. This catalyst is designed to completely convert halogenated hydrocarbons under mild conditions, showcasing a considerably longer lifetime compared to existing catalysts. It boasts a remarkable operational life of at least 2,500 hours, making it a reliable option for industrial applications. The catalyst, composed of a palladium aluminosilicate support, is free of chlorinated compounds and contains 0.5 to 8% by weight of palladium and 1 to 50% by weight of silica. A distinctive feature of this invention is the palladium concentration variability across the support, reaching a maximum between 50 to 250 μm beneath the surface.

Career Highlights

Hannelore's work at Leuna-Katalysatoren GmbH has positioned her as an invaluable member of the research community focused on catalysis. Her innovative approach has led to advancements in methods for hydrogenating dechlorination, with products that can be used economically and thermally without the need for further purification.

Collaborations

Throughout her career, Hannelore has collaborated with prominent colleagues such as Rainer Schoedel and Hans-Dieter Neubauer. Their collective expertise and teamwork have played a crucial role in advancing catalytic technology and fostering innovation within their research institution.

Conclusion

Hannelore Grundmann's contributions to the field of catalysis, particularly through her innovative hydrodehalogenation catalyst, demonstrate her commitment to environmental sustainability and technological advancement. Her work not only addresses critical challenges in the treatment of chlorinated hydrocarbons but also sets the stage for further innovations in catalytic processes. As the landscape of catalysis continues to evolve, inventors like Hannelore will remain at the forefront of driving meaningful change.

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