The Realization of Clinker-Reduced, Performance-Based Sustainable Concrete by the Micro-Filler, Eco-Filler Concept

In times of climate change, the reduction in embodied greenhouse gas emissions is a premise for sustainable concrete infrastructure. As Portland cement clinker is mainly responsible for the high CO<sub>2</sub> emissions of concrete, its reduction is necessary. In order to be sustainable,...

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Main Authors: Joachim Juhart, Michael Autischer, Marlene Sakoparnig, Markus Krüger
Format: Article
Language:English
Published: MDPI AG 2021-08-01
Series:Materials
Subjects:
SCM
Online Access:https://www.mdpi.com/1996-1944/14/17/4958
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spelling doaj-39312041353b4307841f58146427ccd52021-09-09T13:51:17ZengMDPI AGMaterials1996-19442021-08-01144958495810.3390/ma14174958The Realization of Clinker-Reduced, Performance-Based Sustainable Concrete by the Micro-Filler, Eco-Filler ConceptJoachim Juhart0Michael Autischer1Marlene Sakoparnig2Markus Krüger3Institute of Technology and Testing of Construction Materials, Graz University of Technology, 8010 Graz, AustriaInstitute of Technology and Testing of Construction Materials, Graz University of Technology, 8010 Graz, AustriaInstitute of Technology and Testing of Construction Materials, Graz University of Technology, 8010 Graz, AustriaInstitute of Technology and Testing of Construction Materials, Graz University of Technology, 8010 Graz, AustriaIn times of climate change, the reduction in embodied greenhouse gas emissions is a premise for sustainable concrete infrastructure. As Portland cement clinker is mainly responsible for the high CO<sub>2</sub> emissions of concrete, its reduction is necessary. In order to be sustainable, the concrete must meet processing, mechanical and durability properties while taking cost aspects into account. The paper presents (i) the “micro-filler/eco-filler concept” for achieving a clinker reduced, optimised binder and (ii) a performance-based approach to put sustainable “Eco-concrete” into practice. Clinker is substituted by locally available inert fillers by at least two different particle size fractions and supplementary cementitious materials. The method is based on particle packing optimisation, reduction in water demand and optimisation of the mix ratio of the binder blend, which allows the performance requirements to be met. The new Eco-concretes deliver the desired performance in terms of processability, strength and durability (water penetration, frost, carbonation and chloride resistance) while lowering the environmental impact in comparison to standard concrete. One of the new mixes was used for a small animal passage tunnel. The direct comparison of the developed Eco-concrete and standard concrete showed a 24% reduction in CO<sub>2</sub>, while achieving satisfactory workability, stripping strength and durability performance.https://www.mdpi.com/1996-1944/14/17/4958sustainable concrete mix-designperformance-based designdurabilitySCMfiller
collection DOAJ
language English
format Article
sources DOAJ
author Joachim Juhart
Michael Autischer
Marlene Sakoparnig
Markus Krüger
spellingShingle Joachim Juhart
Michael Autischer
Marlene Sakoparnig
Markus Krüger
The Realization of Clinker-Reduced, Performance-Based Sustainable Concrete by the Micro-Filler, Eco-Filler Concept
Materials
sustainable concrete mix-design
performance-based design
durability
SCM
filler
author_facet Joachim Juhart
Michael Autischer
Marlene Sakoparnig
Markus Krüger
author_sort Joachim Juhart
title The Realization of Clinker-Reduced, Performance-Based Sustainable Concrete by the Micro-Filler, Eco-Filler Concept
title_short The Realization of Clinker-Reduced, Performance-Based Sustainable Concrete by the Micro-Filler, Eco-Filler Concept
title_full The Realization of Clinker-Reduced, Performance-Based Sustainable Concrete by the Micro-Filler, Eco-Filler Concept
title_fullStr The Realization of Clinker-Reduced, Performance-Based Sustainable Concrete by the Micro-Filler, Eco-Filler Concept
title_full_unstemmed The Realization of Clinker-Reduced, Performance-Based Sustainable Concrete by the Micro-Filler, Eco-Filler Concept
title_sort realization of clinker-reduced, performance-based sustainable concrete by the micro-filler, eco-filler concept
publisher MDPI AG
series Materials
issn 1996-1944
publishDate 2021-08-01
description In times of climate change, the reduction in embodied greenhouse gas emissions is a premise for sustainable concrete infrastructure. As Portland cement clinker is mainly responsible for the high CO<sub>2</sub> emissions of concrete, its reduction is necessary. In order to be sustainable, the concrete must meet processing, mechanical and durability properties while taking cost aspects into account. The paper presents (i) the “micro-filler/eco-filler concept” for achieving a clinker reduced, optimised binder and (ii) a performance-based approach to put sustainable “Eco-concrete” into practice. Clinker is substituted by locally available inert fillers by at least two different particle size fractions and supplementary cementitious materials. The method is based on particle packing optimisation, reduction in water demand and optimisation of the mix ratio of the binder blend, which allows the performance requirements to be met. The new Eco-concretes deliver the desired performance in terms of processability, strength and durability (water penetration, frost, carbonation and chloride resistance) while lowering the environmental impact in comparison to standard concrete. One of the new mixes was used for a small animal passage tunnel. The direct comparison of the developed Eco-concrete and standard concrete showed a 24% reduction in CO<sub>2</sub>, while achieving satisfactory workability, stripping strength and durability performance.
topic sustainable concrete mix-design
performance-based design
durability
SCM
filler
url https://www.mdpi.com/1996-1944/14/17/4958
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