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February 9, 2026Recycling0 citationsOpen Access

Using Marble Waste in the Production of Concrete and Pervious Paver Blocks

ABAna Carolina Valdevieso BuzzoMFMaria Eliana Camargo FerreiraWOWillian Luís de Oliveira

Key Points

  • To assess the technical and environmental feasibility of using marble waste in concrete and pervious paver blocks.
  • Characterization of marble waste
  • Production of test specimens with different percentages of cement replacement (0%, 10%, 20%, 30%)
  • Performance tests including permeability and compressive strength
  • Statistical analyses of results
  • Significant impact of marble waste on concrete properties
  • Highest permeability rates in control and 30% marble waste treatment
  • Maximum water absorption observed at 20% marble waste for concrete paver blocks
  • 10% marble waste formulation matched compressive strength of control

Abstract

This study aimed to evaluate the technical and environmental feasibility of producing concrete paver blocks and pervious concrete paver blocks by incorporating marble waste to evaluate its filler effect within the cementitious matrix. The methodology included the characterization of marble waste, the production of test specimens with the control (0%), 10%, 20%, and 30% of cement replacement, and the execution of performance tests, supplemented by statistical analyses. The results indicated that marble waste replacement significantly impacted the properties. In terms of pervious concrete paver block permeability, the highest rates were observed in the control and 30% treatments. For water absorption, concrete paver blocks showed higher values at a maximum of 20%, while pervious concrete paver blocks maintained statistically analogous values for 10% and 20%. Regarding compressive strength, the concrete paver block formulation with 10% marble waste was statistically compatible with the control. It is concluded that the incorporation of marble waste into concrete and pervious concrete paver blocks is environmentally advantageous as it valorizes an industrial waste. However, mix design optimization is essential, given that excessive replacement (above 10%) resulted in a reduction in compressive strength.

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Cite This Study

Buzzo et al. (2026) studied this question.

synapsesocial.com/papers/69897983f0ec2af6756e745chttps://doi.org/10.3390/recycling11020038
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