Analysis of physical properties of coarse aggregates recovered from demolished concrete with a two-stage water jigs process for reuse as aggregates in concrete
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hdl:2117/415585
Document typeArticle
Defense date2024-07-19
PublisherMultidisciplinary Digital Publishing Institute (MDPI)
Rights accessOpen Access
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Abstract
The present work analyses the physical characteristics of aggregates recovered with the waterjigging process from comminuted concrete. In this work, conventional concrete (C16/20) was crushed to a top size of 20 mm with a jaw crusher and classified in a size range of 5 to 20 mm. The densimetric distribution analysis was carried out in a densimetric range of 2.4 to 2.8 g/cm3, and the cement paste was dissolved from all granulometric ranges to analyze the composition (sand, cement paste, and aggregates) of each part and define the possibilities of materials to recover. A two-stage water jig concentration process was used, generating a cleaner material in the first stage and a re-cleaner material in the second jigging stage. The physical properties of the material inserted in the feed and the material generated in the first and second stages were analyzed to compare them with natural aggregates. The results indicate the viability of recovering 47.8% of the coarse aggregates present in the concrete feed in the re-cleaner material, with 84% of particles having a density higher than 2.6 g/cm3. These characteristics are similar to those found in natural aggregates.
CitationBressanelli, A. [et al.]. Analysis of physical properties of coarse aggregates recovered from demolished concrete with a two-stage water jigs process for reuse as aggregates in concrete. "Buildings", 19 Juliol 2024, vol. 14, núm. 7, article 2226.
ISSN2075-5309
Publisher versionhttps://www.mdpi.com/2075-5309/14/7/2226
Collections
- Departament d'Enginyeria Minera, Industrial i TIC - Articles de revista [379]
- RIIS - Grup de Recerca en Recursos i Indústries Intel·ligents i Sostenibles - Articles de revista [77]
- Doctorat en Recursos Naturals i Medi Ambient - Articles de revista [54]
- R2EM - Resource Recovery and Environmental Management - Articles de revista [236]
- Departament d'Enginyeria Química - Articles de revista [2.346]
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