Tajvidi, K.; Hausoul, P. J. C.; Palkovits, R. Hydrogenolysis of Cellulose over Cu-Based Catalysts—Analysis of the Reaction Network. ChemSusChem2014, 7, 1311–1317.
Palkovits, R.; Tajvidi, K.; Ruppert, A. M.; Procelewska, J. Heteropoly Acids as Efficient Acid Catalysts in the One-Step Conversion of Cellulose to Sugar Alcohols. Chemical Communications2011, 47, 576–578.
Palkovits, R.; Tajvidi, K.; Ruppert, A.; Procelewska, J. Conversion of Cellulose in Sugar Alcohols as Entry Point of a Biorefinery Concept. DGMK-Tagungsbericht2010, 2010-2, 33–40.
Palkovits, R.; Tajvidi, K.; Procelewska, J.; Ruppert, A. M. Efficient Conversion of Cellulose to Sugar Alcohols Combining Acid and Hydrogenation Catalysts. In Abstracts of Papers of the American Chemical Society; AMER CHEMICAL SOC: WASHINGTON, 2011; Vol. 241.
Palkovits, R.; Tajvidi, K.; Procelewska, J.; Ruppert, A. M. Catalyst Development and Modeling of the Hydrolytic Hydrogenation of Cellulose to Sugar Alcohols. In Abstracts of Papers of the American Chemical Society; AMER CHEMICAL SOC: WASHINGTON, 2011; Vol. 241.
Tajvidi, K. Hydrolytische Hydrierung und Hydrogenolyse von Cellulose - Katalysatoroptimierung und Aufklärung des Reaktionsnetzwerks. PhD Thesis, Rheinisch-Westfälische Technische Hochschule, Aachen, 2013.
Prof. Ferdi Schüth has been named an honorary fellow of the Chinese Chemical Society for his contributions to sustainable catalysis and international collaboration.
To mark the 100th anniversary of the Fischer-Tropsch synthesis, a scientific conference will be held in Mülheim next year. Our institute will of course be taking part.