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Dive into the research topics where Christian Steinlein is active.

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Featured researches published by Christian Steinlein.


Applied Catalysis A-general | 2001

Trends in industrial catalysis in the polyurethane industry

Gerhard Wegener; Matthias Brandt; Lothar Duda; Jörg Hofmann; Bert Klesczewski; Daniel Koch; Robert-Joseph Kumpf; Holger Orzesek; Hans-Georg Pirkl; Christian Six; Christian Steinlein; Markus Weisbeck

Catalysis has been an important field for polyurethane chemistry and many improvements have been accomplished in recent years. Some of the greatest challenges however still remain. There is not yet a satisfactory catalytic way for the direct oxidation of propene to propene oxide in spite of ruthless activities by all major players over decades. New methods of catalysts screening and improved tools for catalyst characterization may help to solve this problem in the near future. Catalyst development in the area of polyether synthesis has recently opened new routes to completely new products. New raw materials may become attractive and new polyether polyol structures will be accessible with new catalysts. The range of new polymers will open up new opportunities. In the field of isocyanates the optimization of all manufacturing steps (nitration, hydrogenation, phosgenation) is an ongoing process since commercial production started an incremental improvements are accomplished and implemented constantly. Major improvements for existing processes, including all their catalytic reaction steps, are not to be expected in the near future. Significant improvements seem only possible by alternative ways of isocyanate manufacturing. In this area, catalytic reactions and the modern tools of catalysts research will play a key-role. However, as for all new developments, they will have only a chance on realization on a commercial scale, if they are economically competitive to well established processes.


Archive | 2002

Process for the preparation of polyether polyols

Jörg Hofmann; Stephan Ehlers; Bernd Klinksiek; Lars Obendorf; Christian Steinlein; Bert Klesczewski; Jose F. Pazos


Archive | 2002

Aliphatic polycarbonate homo-and co-polymers produced by DMC catalysis and the process for their production

Jörg Hofmann; Walter Schafer; Christian Steinlein


Archive | 2001

Production of aliphatic polycarbonate polymer e.g. poly(ether-carbonate) polyol, involves ring-opening polymerization of cyclic carbonate in the presence of double metal cyanide catalyst

Joerg Hofmann; Walter Dr Schaefer; Christian Steinlein


Archive | 1998

Method for producing a dinitronaphthalene-isomer mixture having a high 1,5-dinitronaphthalene proportion

Christian Steinlein; Gerhard Wegener


Archive | 2003

Processes for preparing ethylene oxide-capped polyols

Stephan Ehlers; Jose F. Pazos; Christian Steinlein; Michael Schneider; Jörg Hofmann; Majid Keyvani; John E. Hayes


Archive | 2002

Improved method for producing polyether polyols

Joerg Hofmann; Stephan Ehlers; Bernd Klinksiek; Bert Klesczewski; Christian Steinlein; Lars Obendorf; Harald Pielartzik; Jose F. Pazos


Archive | 2000

Method for preparing polyetherpolyols

Stephan Ehlers; Jörg Hofmann; Manfred Dietrich; Pramod Gupta; Christian Steinlein; Horst Zwick


Archive | 2002

Process for producing polyether polyols

Jörg Hofmann; Stephan Ehlers; Bernd Klinksiek; Bert Klesczewski; Christian Steinlein; Lars Obendorf; Harald Pielartzik; Jose F. Pazos


Archive | 2002

Aliphatic polycarbonate homopolymers and copolymers produced by double metal cyanide catalysis

Joerg Hofmann; Walter Dr Schaefer; Christian Steinlein

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