An improved basis for characterizing the suitability of fly ash as a cement replacement agent

Author:

Oey Tandré1ORCID,Timmons Jason1,Stutzman Paul2,Bullard Jeffrey W.2ORCID,Balonis Magdalena34,Bauchy Mathieu1,Sant Gaurav15

Affiliation:

1. Laboratory for the Chemistry of Construction Materials (LC ); Department of Civil and Environmental Engineering; University of California; Los Angeles California

2. Engineering Laboratory; National Institute of Standards and Technology; Gaithersburg Maryland

3. Department of Materials Science and Engineering; University of California; Los Angeles California

4. Institute for Technology Advancement; University of California; Los Angeles California

5. California NanoSystems Institute; University of California; Los Angeles California

Funder

Federal Highway Administration

Consortium for Concrete Optimization using Mineral Admixtures (COMAX)

Publisher

Wiley

Subject

Materials Chemistry,Ceramics and Composites

Reference52 articles.

1. Carbon dioxide emissions from the global cement industry 1;Worrell;Annu Rev Energy Environ,2001

2. Sustainable cements and concrete for the climate change era-a review;Mehta;Second Int Conf Sustain Constr Mater Technol Italy Coventry Univ Univ Wis Milwaukee Cent -Prod Util,2010

3. Mehta PK High-performance, high-volume fly ash concrete for sustainable development Ames, IA Center for Transportation Research and Education, Iowa State University 2004 3 14

4. Advances in alternative cementitious binders;Juenger;Cem Concr Res,2011

5. Use of ternary blends containing silica fume and fly ash to suppress expansion due to alkali-silica reaction in concrete;Shehata;Cem Concr Res,2002

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