Complete Real-Scale Application of Recycled Aggregates in a Port Loading Platform in Huelva, Spain
The application of recycled aggregates (RA) from construction and demolition waste and crushed concrete blocks is a very important challenge for the coming years from the environmental point of view, in order to reduce the exploitation of natural resources. In Spain, the use of these recycled materi...
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doaj-e3cfb79f28c54b0aac0aac593347ba3d2020-11-25T03:03:40ZengMDPI AGMaterials1996-19442020-06-01132651265110.3390/ma13112651Complete Real-Scale Application of Recycled Aggregates in a Port Loading Platform in Huelva, SpainFrancisco Agrela0Francisco González-Gallardo1Julia Rosales2Javier Tavira3Jesús Ayuso4Manuel Cabrera5Leonardo Da Vinci, Campus Rabanales, University of Córdoba, 14014 Córdoba, SpainArea of Construction Engineering, University of Cordoba, 14014 Cordoba, SpainArea of Construction Engineering, University of Cordoba, 14014 Cordoba, SpainArea of Construction Engineering, University of Cordoba, 14014 Cordoba, SpainArea of Construction Engineering, University of Cordoba, 14014 Cordoba, SpainArea of Construction Engineering, University of Cordoba, 14014 Cordoba, SpainThe application of recycled aggregates (RA) from construction and demolition waste and crushed concrete blocks is a very important challenge for the coming years from the environmental point of view, in order to reduce the exploitation of natural resources. In Spain, the use of these recycled materials in the construction of road bases and sub-bases is growing significantly. However, presently, there are few studies focused on the properties and behavior of RA in civil works such as road sections or seaport platforms. In this work, two types of RA were studied and used in a complete real-scale application. Firstly, recycled concrete aggregates (RCA) were applied in the granular base layer under bituminous superficial layers, and secondly mixed recycled aggregates (MRA) which contain a mix of ceramic, asphalt, and concrete particles were applied in the granular subbase layer, under the base layer made with RCA. Both RA were applied in a port loading platform in Huelva, applying a 100% recycling rate. This civil engineering work complied with the technical requirements of the current Spanish legislation required for the use of conventional aggregates. The environmental benefits of this work have been very relevant, and it should encourage the application of MRA and RCA in civil engineering works such as port platforms in a much more extended way. This is the first and documented real-scale application of RA to completely build the base and sub-base of a platform in the Huelva Port, Spain, replacing 100% of natural aggregates with recycled ones.https://www.mdpi.com/1996-1944/13/11/2651seaport loading platformrecycled aggregatescivil infrastructuresstructural granular layersconstruction and demolition waste |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Francisco Agrela Francisco González-Gallardo Julia Rosales Javier Tavira Jesús Ayuso Manuel Cabrera |
spellingShingle |
Francisco Agrela Francisco González-Gallardo Julia Rosales Javier Tavira Jesús Ayuso Manuel Cabrera Complete Real-Scale Application of Recycled Aggregates in a Port Loading Platform in Huelva, Spain Materials seaport loading platform recycled aggregates civil infrastructures structural granular layers construction and demolition waste |
author_facet |
Francisco Agrela Francisco González-Gallardo Julia Rosales Javier Tavira Jesús Ayuso Manuel Cabrera |
author_sort |
Francisco Agrela |
title |
Complete Real-Scale Application of Recycled Aggregates in a Port Loading Platform in Huelva, Spain |
title_short |
Complete Real-Scale Application of Recycled Aggregates in a Port Loading Platform in Huelva, Spain |
title_full |
Complete Real-Scale Application of Recycled Aggregates in a Port Loading Platform in Huelva, Spain |
title_fullStr |
Complete Real-Scale Application of Recycled Aggregates in a Port Loading Platform in Huelva, Spain |
title_full_unstemmed |
Complete Real-Scale Application of Recycled Aggregates in a Port Loading Platform in Huelva, Spain |
title_sort |
complete real-scale application of recycled aggregates in a port loading platform in huelva, spain |
publisher |
MDPI AG |
series |
Materials |
issn |
1996-1944 |
publishDate |
2020-06-01 |
description |
The application of recycled aggregates (RA) from construction and demolition waste and crushed concrete blocks is a very important challenge for the coming years from the environmental point of view, in order to reduce the exploitation of natural resources. In Spain, the use of these recycled materials in the construction of road bases and sub-bases is growing significantly. However, presently, there are few studies focused on the properties and behavior of RA in civil works such as road sections or seaport platforms. In this work, two types of RA were studied and used in a complete real-scale application. Firstly, recycled concrete aggregates (RCA) were applied in the granular base layer under bituminous superficial layers, and secondly mixed recycled aggregates (MRA) which contain a mix of ceramic, asphalt, and concrete particles were applied in the granular subbase layer, under the base layer made with RCA. Both RA were applied in a port loading platform in Huelva, applying a 100% recycling rate. This civil engineering work complied with the technical requirements of the current Spanish legislation required for the use of conventional aggregates. The environmental benefits of this work have been very relevant, and it should encourage the application of MRA and RCA in civil engineering works such as port platforms in a much more extended way. This is the first and documented real-scale application of RA to completely build the base and sub-base of a platform in the Huelva Port, Spain, replacing 100% of natural aggregates with recycled ones. |
topic |
seaport loading platform recycled aggregates civil infrastructures structural granular layers construction and demolition waste |
url |
https://www.mdpi.com/1996-1944/13/11/2651 |
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