Mechanochemical Activation of the C‐S‐H binder Celitement

Author:

Hinder Daniel1,Zimmermann Adrian1,Fylak Marc2

Affiliation:

1. Celitement GmbH & Co. KG Karlsruhe Germany

2. Schwenk Zement GmbH & Co. KG Ulm Germany

Abstract

AbstractThe hydraulic binder Celitement is produced by a mechanochemical activation of an X‐ray amorphous CSH phase. This process step not only chemically activates the material, but also reduces its specific surface area. Thus, both strength and workability of Celitement based systems can be controlled. In this paper the effect of the duration of the activation milling on chemical and microstructural changes of Celitement is focused. Therefore ATR‐FTIR Spectroscopy, Thermogravimetry, Heatflow Calorimetry, Scanning Electron Microscopy and BET (N2) specific surface area measurements are used aside classical experiments on the flow spread and compressive strength of Celitement based mortars. As a result, it is shown that micro structural changes and chemical activation occur already at the beginning of the activation milling and significantly influence the practical performance of mortars.

Publisher

Wiley

Subject

General Earth and Planetary Sciences,General Environmental Science

Reference18 articles.

1. Celitement - a sustainable prospect for the cement industry;Stemmermann P.;Cem. Int. 5/2010,2010

2. Link L.(2017)Entwicklung und Untersuchung von alternativen Dicalciumsilikat-Bindern auf der Basis von α-C2SH. PhD-Thesis at the F.A. Finger-Institute for Building Materials Science of the Bauhaus-University Weimar; ISBN 978-3-00-058866-2.

3. Stemmermann P. Garbev K. Schweike U. Beuchle G.(2005)Verfahren zur Herstellung von Belit-Bindemittel. Patent DE 10 2005 037 771 B4.

4. Beuchle G. Garbev K. Schweike U. Stemmermann P.(2007)Einphasiges hydraulisches Bindemittel Verfahren zu seiner Herstellung und mit diesem Bindemittel hergestellter Baustoff. Patent DE 10 2007 035 257 B3.

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