Silicate refractory brick waste as quartz sand filler replacement in MOC-based composites
The result's identifiers
Result code in IS VaVaI
<a href="https://www.isvavai.cz/riv?ss=detail&h=RIV%2F60461373%3A22310%2F25%3A43930452" target="_blank" >RIV/60461373:22310/25:43930452 - isvavai.cz</a>
Alternative codes found
RIV/68407700:21110/25:00378862
Result on the web
<a href="https://www.sciencedirect.com/science/article/pii/S2214509524013081#ack0005" target="_blank" >https://www.sciencedirect.com/science/article/pii/S2214509524013081#ack0005</a>
DOI - Digital Object Identifier
<a href="http://dx.doi.org/10.1016/j.cscm.2024.e04156" target="_blank" >10.1016/j.cscm.2024.e04156</a>
Alternative languages
Result language
angličtina
Original language name
Silicate refractory brick waste as quartz sand filler replacement in MOC-based composites
Original language description
This study focuses on the design and development of environmentally sustainable construction composites with an accent on the utilization of secondary raw material sources or wastes, whose secondary purpose was not discovered yet and are landfilled or downcycled only. This approach leads to a significant reduction in the environmental burden resulting from activities related to the construction industry and thus ensures its sustainability. Spent refractories are a potential candidate for this purpose. The presented experiment deals with the replacement of standard quartz sand filler by silicate refractory brick waste (SW) in magnesium oxychloride- (MOC-) based composite materials. The standard filler was replaced either partially, fully, or in excess in order to fully uncover the potential of SW as a filler in construction composites. As a matrix, MOC phase 5 (Mg3(OH)5Cl∙4 H2O), which is considered an eco-friendly alternative to Portland cement, was used, as it is known to be able to contain large amounts of filler of various origins. This way, three types of construction utilizing a waste material, which would otherwise end up landfilled, were prepared. To assess the effect of the filler replacement, a reference MOC-based composite using quartz sand as the only filler was prepared. In the SW-filled composites, the replacement ratio was 50, 100, and 150 % by weight. The introduction of SW caused an increase in compressive strength for all of the prepared samples, most significantly for composite SW50, in which the quartz sand was replaced by 50 wt%. The compressive strength of this composite reached a mean value of 101.30 MPa, which is 25 % higher than the reference composite. This value exceeds the lower compressive strength limit for a construction composite to work as a high-performance concrete by more than 20 MPa. Furthermore, all of the prepared composites show very high flexural strength values (over 30 MPa). The microstructural analysis also proved that the presence of capillary pores with a diameter range between 100 and 1000 nm, which are generally responsible for the water-induced damage in MOC-based composites was significantly decreased with the replacement of quartz sand by SW in the amount of 50 wt%. © 2024 The Authors
Czech name
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Czech description
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Classification
Type
J<sub>imp</sub> - Article in a specialist periodical, which is included in the Web of Science database
CEP classification
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OECD FORD branch
20101 - Civil engineering
Result continuities
Project
Result was created during the realization of more than one project. More information in the Projects tab.
Continuities
P - Projekt vyzkumu a vyvoje financovany z verejnych zdroju (s odkazem do CEP)
Others
Publication year
2025
Confidentiality
S - Úplné a pravdivé údaje o projektu nepodléhají ochraně podle zvláštních právních předpisů
Data specific for result type
Name of the periodical
Case Studies in Construction Materials
ISSN
2214-5095
e-ISSN
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Volume of the periodical
22
Issue of the periodical within the volume
červenec
Country of publishing house
ZA - SOUTH AFRICA
Number of pages
15
Pages from-to
nestránkováno
UT code for WoS article
001413468600001
EID of the result in the Scopus database
2-s2.0-85213519158