YTUP
Journals
About
Services
Guides
Sign InSubmit Article
HomeJournalsJournal of Sustainable Construction Materials and Technologies10.29187/2458-973X.1190
JoJournal of Sustainable Construction Materials and Technologies
Get Alerted Download PDF
AbstractKeywordsShare and CiteRelated Articles
Article Open Access1 January 2025

Ceramic Waste as Sustainable Material in Self-Compacting Concrete Experimental Study and ANN Predictive Modeling

Order Reprints Cite Share

Abderrezak Bouziane1, Houssam Slimanou1, Mohamed Amin Bouzidi1, and Nedjima Bouzidi2

1Faculty of Technology, Laboratory of Construction Engineering and Architecture (LGCA), University of Bejaia, 06000 Bejaia, Algeria
2University of Bejaia, Laboratory of Materials Technology and Process Engineering (LTMGP), 06000 Bejaia, Algeria

Journal of Sustainable Construction Materials and Technologies 2025, Vol. 10, Issue 3, pp. 1; doi.org/10.29187/2458-973X.1190

Download PDF View DOI record

Abstract

Recycling of ceramic waste in the construction sector is a promising option for reducing the environmental impacts of the concrete industry. The main objective of this study is the elaboration of a solid predictive model for ceramic waste based self-compacting (SCC) concrete properties, using artificial neural networks (ANN). This further, reduces its environmental impact without compromising satisfactory performance. An experimental approach was adopted with different substitution ratios: 0 to 30 wt% and particle sizes ranging from 3-8 mm and 8-15 mm. Tested properties of modified SCC as compressive strength at 7 and 28 days (fc7, fc28), spread (L), sieve stability segregation (ST), porosity (n), density (ρ) and absorption water (A) were investigated. Addition of ceramic waste affects the properties of the obtained material (SCC). The compressive strengths of all mixes composed were larger than that of the control sample. Despite the results workability property, which remain unsatisfactory; this shows that this parameter was within controlled limits. Moreover, predictive modeling of SCC properties was implemented through the artificial neural network (ANN). These models can predict the physico-mechanical properties according to the substitution percentages. As per the ANN, strong correlation between the experimental and predicted value proved the efficacy of the ANN for optimising the multi-response.This research highlights the potential of ceramic waste to produce durable and efficient SCC while leveraging advanced modeling tools to optimize formulations. It opens promising prospects for sustainable waste management in the construction industry.

Keywords: Ceramic waste recycling; Self-compacting concrete (SCC); Artificial neural network (ANN) modeling; Environmental impact

Share and Cite

Bouziane, A.; Slimanou, H.; Bouzidi, M.A.; Bouzidi, A.N. Ceramic Waste as Sustainable Material in Self-Compacting Concrete Experimental Study and ANN Predictive Modeling. Journal of Sustainable Construction Materials and Technologies 2025, Vol. 10, pp. 1. https://doi.org/10.29187/2458-973X.1190

Export:

Related Articles

Examining the role of nano-sized additives in boosting air conditioner efficiencyVijaykumar Kisan JAVANJAL, Lalit N. PATIL et al., 1 January 2025A Decision Support Model for Building Material and Component Reuse in the Context of Circular BuildingsHavva Aksel, 1 January 2025Behaviour of Internally Strengthening Hollow Stainless-Steel Hot-Rolled Circular Columns Filled With Crumb Rubber and Recycled Aggregate ConWadhah M. Tawfeeq, Mohammed M. Rasheed et al., 1 January 2025Comprehensive Risk Assessment for Construction Site Managers in Kosovo A Mixed-Method ApproachMuhamet Ahmeti and Besian Sinani, 1 January 2025
Publication History
Published1 January 2025
Versionv1
AccessOpen Access
10.29187/2458-973X.1190
Article Figures (9)
Figure 1Figure 2Figure 3Figure 4Figure 5Figure 6Figure 7Figure 8Figure 9
Related Articles
Examining the role of nano-sized additives in boosting air conditioner efficiencyVijaykumar Kisan JAVANJAL, Lalit N. PATIL et al.Journal of Sustainable Construction Materials and Technologies, 1 January 2025A Decision Support Model for Building Material and Component Reuse in the Context of Circular BuildingsHavva AkselJournal of Sustainable Construction Materials and Technologies, 1 January 2025Behaviour of Internally Strengthening Hollow Stainless-Steel Hot-Rolled Circular Columns Filled With Crumb Rubber and Recycled Aggregate ConWadhah M. Tawfeeq, Mohammed M. Rasheed et al.Journal of Sustainable Construction Materials and Technologies, 1 January 2025
Journal of Sustainable Construction Materials and Technologies coverJournal of Sustainable Construction Materials and Technologies Download PDF

Subscribe to YTUP

Stay connected and receive the latest research updates directly in your inbox.

YTUP — Yıldız Technical University Publishing

Advancing knowledge and fostering innovation through high-quality, peer-reviewed academic publications.

About YTU

Discover

  • ›Articles
  • ›Journals
  • ›Research Topics
  • ›Open Access Policy

Guidelines

  • ›Author guidelines
  • ›Services for authors
  • ›Policies and publication ethics
  • ›Editor guidelines
  • ›Fee policy

Explore

  • ›Articles
  • ›Research Topics
  • ›Journals
  • ›How we publish

Support

  • ›Help center
  • ›Emails and alerts
  • ›Contact us
  • ›Submit
  • ›Career opportunities
YTU Logo

© 2026 Yıldız Technical University (Istanbul, Turkey)

Terms and ConditionsTerms of UsePrivacy PolicyPrivacy SettingsDisclaimer
Like this platform? Join our teamHave feedback or questions?
Supervisor