Experimental Evaluation of Recycled Aggregates, Washing Water and Cement Sludge Recovered from Returned Concrete
Autor: | Alessandra Diotti, Luca Cominoli, Giovanni Plizzari, Sabrina Sorlini |
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Jazyk: | angličtina |
Rok vydání: | 2022 |
Předmět: |
Fluid Flow and Transfer Processes
Technology washing water QH301-705.5 Process Chemistry and Technology Physics QC1-999 circular economy General Engineering returned concrete recycled aggregates washing water sludge circular economy ready-mixed concrete plant recycled aggregates Engineering (General). Civil engineering (General) ready-mixed concrete plant Computer Science Applications Chemistry sludge General Materials Science returned concrete TA1-2040 Biology (General) Instrumentation QD1-999 |
Zdroj: | Applied Sciences, Vol 12, Iss 36, p 36 (2022) Applied Sciences; Volume 12; Issue 1; Pages: 36 |
ISSN: | 2076-3417 |
Popis: | In this paper, a new innovative technology for the treatment of returned concrete is proposed. This method is based on the application of physical–mechanical processes that allow to obtain new quality products: recycled aggregates, microfiltered water and cement sludge. Specifically, by means of a mechanical system equipped with buffer and Archimedes screws, fine (d < 5 mm) and coarse (d > 5 mm) aggregates are obtained. The water coming from the washing process is sent to a microfiltration process, where a filter membrane separates the liquid phase (microfiltered water) from the solid phase (cement sludge) and no type of potentially toxic additive is added. In this context, this paper investigates the feasibility of using all these components as new raw materials for sustainable concrete production. In particular, according to the requirements imposed by technical standards, an experimental program was developed, aimed at evaluating the physical, chemical, and mechanical properties of the analyzed materials. The results showed that both recycled aggregates, the microfiltered water and the cement sludge can be used to produce new structural concrete. In particular, it was proven that also the cement sludge, which generally represents the most critical component destined for disposal, can be reused as filler in the partial replacement of sand. |
Databáze: | OpenAIRE |
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