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June 19, 2026Scientific ReportsOpen Access

Enhancing mechanical performance, durability, and environmental impact assessment of green concrete incorporating industrial and agricultural wastes

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Authors

SPSamia ParvezJamia Millia IslamiaSAS. S. AfsarJamia Millia IslamiaIRIbadur RahmanJamia Millia Islamia

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Implication

Randomized trial evaluates performance of green concrete using waste materials, suggesting an innovative ranking framework.

Key Points

  • The aim is to identify suitable sustainable materials for green concrete to reduce environmental impact and cement use.
  • Experimental evaluation of mechanical properties including compressive strength and split tensile strength.
  • Development of a hybrid methodology using Pearson correlation, AHP, and k-means clustering.
  • Ranking of materials based on performance metrics, including statistical validation with ANOVA.
  • Silica fume achieved 48.5 MPa compressive strength and was identified as the most optimal material.
  • Statistical analysis showed significant differences between performance clusters (p < 0.0001).
  • Performance weightages revealed compressive strength to be the most critical factor (37%).

Cite This Study

Parvez et al. (2026) studied this question.

synapsesocial.com/papers/6a34df7565a5b0777af2e913https://doi.org/10.1038/s41598-026-57664-2
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Explainable Machine Learning Framework for Strength Prediction of Sustainable Concrete Incorporating Industrial Waste SCMs with an Embodied Impact Assessment2026
  2. 2Sustainable Construction Materials in Green Concrete: A Comprehensive Review2026
  3. 3Evaluation and predictive modeling of rheological, durability, and integrity-related properties of concrete incorporating industrial waste ingredients2025
  4. 4PERFORMANCE OF CONCRETE SLABS WITH WASTE MATERIALS: A STUDY USING FINITE ELEMENT ANALYSIS2025
  5. 5Sustainable green concrete: multi-criteria optimization of bentonite–fly ash–silica fume ternary systems integrating life cycle assessment and mechanical performance analysis2026 · 1 citations