Impact of freeze–thaw weathering on integrity, internal structure and particle release from micro- and nanostructured cement composites

Author:

Funk Birgit123ORCID,Göhler Daniel45673ORCID,Sachsenhauser Bernhard893,Stintz Michael45673ORCID,Stahlmecke Burkhard10113ORCID,Johnson Blake A.1213143,Wohlleben Wendel1213143ORCID

Affiliation:

1. Zoz GmbH

2. D-57482 Wenden

3. Germany

4. Research Group Mechanical Process Engineering

5. Institute of Process Engineering and Environmental Technology

6. Technische Universität Dresden

7. D-01062 Dresden

8. BASF Construction Solutions GmbH

9. D-83308 Trostberg

10. Institute of Energy and Environmental Technology e.V. (IUTA)

11. D-47229 Duisburg

12. Advanced Materials Research

13. Department of Material Physics

14. D-67056 Ludwigshafen

Abstract

Micro- and nanomaterials can i) reduce cement consumption in concrete, ii) improve durability of cement-based constructions and iii) modulate particle release.

Funder

Bundesministerium für Bildung und Forschung

Publisher

Royal Society of Chemistry (RSC)

Subject

General Environmental Science,Materials Science (miscellaneous)

Reference56 articles.

1. VDZ 2016. Environmental Data of the German Cement Industry 2015 , Verein Deutscher Zementwerke e.V. , 2016

2. A. Ehrenberg , Granulated blast furnace slag - From laboratory into practice, Proceedings of the 14th International Congress on the Chemistry of Cement (ICCC), Beijing , 2015

3. M. Nili , A.Ehsani and K.Shabani , Influence of Nano-SiO2 and Microsilica on Concrete Performance, 2nd International Conference on Sustainable Construction Materials and Technologies , Acona, Italy , 2010 , ISBN 978-1-4507-1488-4

4. Interaction of silica fume with calcium hydroxide solutions and hydrated cement pastes

5. Properties of high-volume fly ash concrete incorporating nano-SiO2

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