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2024 | OriginalPaper | Buchkapitel

Effect of Thermal Activation of Powders Obtained from Multi-Recycled Concrete on the Performance of Cementitious Materials

verfasst von : Jeonghyun Kim, Haneol Jang

Erschienen in: Sustainable Construction Resources in Geotechnical Engineering

Verlag: Springer Nature Singapore

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Abstract

Utilizing supplementary cementitious materials to reduce cement usage is a promising solution to mitigate carbon emissions in the cement industry. Generally, the powder generated during the recycling process of concrete (i.e., recycled concrete powder, RCP) has an unfavorable effect on the performance of cementitious mixtures due to its low activity, but it can be improved by dehydration at high temperatures. In this study, RCP obtained in the crushing process of repeatedly recycled coarse aggregate concrete was thermally activated at various temperatures (200–800 °C), and its effect on the properties of cementitious mixtures as a partial cement replacement was discussed. The results showed that the properties of cementitious mixtures containing RCP heated at 200 °C and 400 °C did not show significant differences with those containing unheated RCP, whereas RCP activated at 600 °C and 800 °C contributed to the improvement of mechanical strength, drying shrinkage, and water absorption of cementitious mixtures than non-heated RCP, proving that thermal activation of RCP at these temperatures is effective for the utilization of repeatedly recycled concrete powder.

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Literatur
1.
Zurück zum Zitat Kim J, Jang H (2022) Closed-loop recycling of C&D waste: Mechanical properties of concrete with the repeatedly recycled C&D powder as partial cement replacement. J Clean Prod 343:130977CrossRef Kim J, Jang H (2022) Closed-loop recycling of C&D waste: Mechanical properties of concrete with the repeatedly recycled C&D powder as partial cement replacement. J Clean Prod 343:130977CrossRef
2.
Zurück zum Zitat Kim J, Kim N (2023) Exploring the role of thermal activation of cement exposed to the external environment on the improvement of concrete properties. J Market Res 24:2868–2878 Kim J, Kim N (2023) Exploring the role of thermal activation of cement exposed to the external environment on the improvement of concrete properties. J Market Res 24:2868–2878
3.
Zurück zum Zitat Wu H, Liang C, Wang C, Ma Z (2022) Properties of green mortar blended with waste concrete-brick powder at various components, replacement ratios and particle sizes. Constr Build Mater 342:128050CrossRef Wu H, Liang C, Wang C, Ma Z (2022) Properties of green mortar blended with waste concrete-brick powder at various components, replacement ratios and particle sizes. Constr Build Mater 342:128050CrossRef
4.
Zurück zum Zitat Bogas JA, Carriço A, Pereira MFC (2019) Mechanical characterization of thermal activated low-carbon recycled cement mortars. J Clean Prod 218:377–389CrossRef Bogas JA, Carriço A, Pereira MFC (2019) Mechanical characterization of thermal activated low-carbon recycled cement mortars. J Clean Prod 218:377–389CrossRef
Metadaten
Titel
Effect of Thermal Activation of Powders Obtained from Multi-Recycled Concrete on the Performance of Cementitious Materials
verfasst von
Jeonghyun Kim
Haneol Jang
Copyright-Jahr
2024
Verlag
Springer Nature Singapore
DOI
https://doi.org/10.1007/978-981-99-9227-0_39