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Featured researches published by Thomas Tacke.


Environmental Technology | 1993

Catalytical removal of nitrate and nitrite from drinking water: 1. Screening for hydrogenation catalysts and influence of reaction conditions on activity and selectivity

Sebastian Hörold; Thomas Tacke

Abstract The rising concentrations of nitrate in ground water make it necessary to use processes to remove nitrate from drinking water. Nitrate is removed at present either by physicochemical or biological processes. We describe here an efficient and rapid method to reduce nitrate and nitrite with hydrogen to nitrogen using supported precious metal catalysts. First, we screened for appropriate hydrogenation catalysts. Palladium on alumina was found to be favourable to reduce nitrite mainly to nitrogen. Ammonia as a by‐product is formed only in small amounts (98% nitrogen, 2% ammonia). Reduction of nitrate is possible by using bimetallic catalysts. We found the best results with a copper‐palladium bimetallic catalyst (nitrate removal activity of 3.13 mgNC3‐/(min∗gcat), ammonia formation of 18%. Compared to the biological denitrification, the catalysts show a 30 times higher nitrate removal activity.


Chemie Ingenieur Technik | 1989

Erste Schritte auf dem Weg zur edelmetallkatalysierten Nitrat- und Nitrit-Entfernung aus Trinkwasser

Klaus-Dieter Vorlop; Thomas Tacke


Chemie Ingenieur Technik | 1993

Kinetische Charakterisierung von Katalysatoren zur selektiven Entfernung von Nitrat und Nitrit aus Wasser

Thomas Tacke


Archive | 2010

METHOD FOR PRODUCING ALDEHYDES AND KETONES FROM PRIMARY AND SECONDARY ALCOHOLS

Uwe Dingerdissen; Jan Christoph Pfeffer; Thomas Tacke; Thomas Haas; Harald Schmidt; Florian Klasovsky; Roger A. Sheldon; Michiel Janssen; Michael Volland; Michael Rimbach; Stefanie Rinker


Archive | 1989

Process for removing the nitrite and/or nitrate content in water

Klaus-Dieter Vorlop; Thomas Tacke; Michael Sell; Guenther Strauss


Archive | 2010

Enzymatic method for producing aldehydes

Thomas Haas; Florian Klasovsky; Hendrik Krauter; Steffen Schaffer; Rene Schoebel; Thomas Tacke; Klaus-Dieter Vorlop; Thomas Willke; Mirja Wessel


Archive | 2011

Process for homogeneously catalyzed, highly selective direct amination of primary alcohols with ammonia to primary amines with a high volume ratio of liquid phase to gas phase and/or high pressures

Florian Klasovsky; Jan Christoph Pfeffer; Thomas Tacke; Thomas Haas; Matthias Beller; Angela Koeckritz; Jens Deutsch; Andreas Martin; Sebastian Imm


Archive | 2010

Method for producing 2,6-dioxabicyclo-(3.3.0)-octane-4,8-dione

Uwe Dingerdissen; Jan Christoph Pfeffer; Thomas Tacke; Thomas Haas; Harald Schmidt; Michael Volland; Michael Rimbach; Christian Lettmann; Roger A. Sheldon; Michiel Janssen


Archive | 2010

Method for producing a free acid from the salt thereof

Alexander Schraven; Thomas Tacke; Thomas Haas; Christoph Kobler; Dieter Buss; Axel Ronneburg; Olivier Zehnacker


Archive | 2011

Process for the direct amination of secondary alcohols with ammonia to give primary amines

Florian Klasovsky; Jan Christoph Pfeffer; Thomas Tacke; Thomas Haas; Andreas Martin; Jens Deutsch; Angela Koeckritz

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Klaus-Dieter Vorlop

Braunschweig University of Technology

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Michiel Janssen

Delft University of Technology

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Roger A. Sheldon

Delft University of Technology

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