Acceso abierto

Circular Aggregates – Crushed Concrete Aggregates for Concrete Applications

,  y   
03 jul 2025

Cite
Descargar portada

The Swedish National Board of Housing, B.a.P., Miljöindikatorer – aktuell status (Enviromental indicators - current status). 2024. Search in Google Scholar

European Commission, Communication from the Commission to the European parliament and the council. Strategy for the sustainable competitiveness of the construction sector and its enterprises, in COM/2012/0433 final, E. Commission, Editor. 2012, Official Journal of the European Union. Search in Google Scholar

European Commission, Report From The Commission To The European Parliament, The Council, The European Economic And Social Committee And The Committee Of The Regions, in COM(2018) 656 final, E. Commission, Editor. 2018, Official Journal of the European Union: brussels. Search in Google Scholar

Council, S.C.P., 2024 Report of the Swedish Climate Policy Council. 2024. Search in Google Scholar

European Commission, Regulation (EU) 2021/1119 of the European Parliament and of the Council of 30 June 2021 establishing the framework for achieving climate neutrality and amending Regulations (EC) No 401/2009 and (EU) 2018/1999 (‘European Climate Law’), in PE/27/2021/REV/1, O.J.o.t.E. Union, Editor. 2021. Search in Google Scholar

European Commission, Directive (EU) 2022/2464 of the European Parliament and of the Council of 14 December 2022 amending Regulation (EU) No 537/2014, Directive 2004/109/EC, Directive 2006/43/EC and Directive 2013/34/EU, as regards corporate sustainability reporting, in PE/35/2022/REV/1, E. Commission, Editor. 2022, Official Journal of the European Union. Search in Google Scholar

Gagg, C.R., Cement and concrete as an engineering material: An historic appraisal and case study analysis. Engineering Failure Analysis, 2014. 40: p. 114-140. Search in Google Scholar

Agency, E.P., Avfall Sverige 2020, Uppkomst och behandling (Waste in Sweden 2020). 2022. Search in Google Scholar

Environmental Protection Agency, Avfall Sverige 2018, Uppkomst och behandling (Waste in Sweden 2018). 2020. Search in Google Scholar

Environmental Protection Agency. Avfall i Svergie 2022 (Waste in Sweden 2022). 2024 [cited; Available from: https://www.naturvardsverket.se/publikationer/7100/978-91-620-7161-5/. Search in Google Scholar

Lars-Ove Lång, E.N., Lena Maxe & Carola Lindeberg,, Fördjupad utvärdering av Grundvatten av god kvalitet 2023 (An indepth investigation of groundwater quality). 2022, Sveriges geologiska undersökning. Search in Google Scholar

Environmental Protection Agency, Vägledning täkter (Guidance on quarries). 2023, Naturvårdsverket. Search in Google Scholar

Pantini, S. and L. Rigamonti, Is selective demolition always a sustainable choice? Waste Management, 2020. 103: p. 169-176. Search in Google Scholar

Nagy.Agnes, S.M., Objektsorienterad selektiv rivning för cirkulär ekonomi och minskad klimatpåverkan (Object oriented selective demolition and reduced climate impact). 2023: Borås. Search in Google Scholar

BigRentz, The Science of Demolishing a Building [Complete Guide]. 2019. Search in Google Scholar

Coelho, A. and J. de Brito, Economic analysis of conventional versus selective demolition—A case study. Resources, Conservation and Recycling, 2011. 55(3): p. 382-392. Search in Google Scholar

Tam, V.W.Y., Comparing the implementation of concrete recycling in the Australian and Japanese construction industries. Journal of Cleaner Production, 2009. 17(7): p. 688-702. Search in Google Scholar

C3C. Sustainability & Environment: Focus on innovations and environmental technology. [cited; Available from: https://c3c.se/hallbarhet-miljo/. Search in Google Scholar

Sadagopan.Madumita, Recycling of concrete in new structural concrete. 2021, Högskolan i Borås. Search in Google Scholar

A. attanasio, V.T., A. Largo. Construction and Demolition Wastes as Aggregates for Structural Concrete: the European Project RE4. 2020 15.4.2020 [cited; Available from: http://www.re4.eu/documents/publications/scientific-publications. Search in Google Scholar

Swedish Standards Institute, Betong – Användning av SS-EN 206:2013+A2:2021 i Sverige (Concrete application standard), in Svensk standard, SS 137003:2021+T1:2024. 2024, SIS: Stockholm. Search in Google Scholar

Swedish Standards Institute, Betong - Fordringar, egenskaper, tillverkning och överensstämmelse (Concrete - Specification, performance, production and conformity), in Svensk standard, SS-EN 206:2013+A1:2016. 2016, SIS: Stockholm. Search in Google Scholar

Swedish Standards Institute, Ballast för betong (Aggregates for concrete), in Svensk standard, SS-EN 12620+A1:2008. 2008, SIS: Stockholm. Search in Google Scholar

European Commission: Joint Research, C., J. Nuno Pacheco, J. de Brito, and M. Lamperti Tornaghi, Use of recycled aggregates in concrete – Opportunities for upscaling in Europe. 2023: Publications Office of the European Union. Search in Google Scholar

project, V. Circular and climatereduced concrete element in new building. 2023 - 2025 [cited; Available from: https://www.vinnova.se/en/p/circular-and-climatereduced-concrete-element-in-new-buildings/. Search in Google Scholar

Kadawo, A., et al., Combination of LCA and circularity index for assessment of environmental impact of recycled aggregate concrete. Journal of Sustainable Cement-Based Materials, 2023. 12(1): p. 1-12. Search in Google Scholar

Etxeberria, M., E. Vázquez, A. Marí, and M. Barra, Influence of amount of recycled coarse aggregates and production process on properties of recycled aggregate concrete. Cement and Concrete Research, 2007. 37(5): p. 735-742. Search in Google Scholar

Bai, G., C. Zhu, C. Liu, and B. Liu, An evaluation of the recycled aggregate characteristics and the recycled aggregate concrete mechanical properties. Construction and Building Materials, 2020. 240: p. 117978. Search in Google Scholar

de Juan, M.S. and P.A. Gutiérrez, Study on the influence of attached mortar content on the properties of recycled concrete aggregate. Construction and Building Materials, 2009. 23(2): p. 872-877. Search in Google Scholar

Vázquez, E., Recycled Aggregates for Concrete: Problems and Possible Solutions. Int J Earth Environ Sci, 2016. 1(22). Search in Google Scholar

Madumita, S., Improving Recycled Aggregate Quality by Mechanical Pre-Processing. Materials, 2020. Search in Google Scholar

Danish, A. and M.A. Mosaberpanah, A review on recycled concrete aggregates (RCA) characteristics to promote RCA utilization in developing sustainable recycled aggregate concrete (RAC). European Journal of Environmental and Civil Engineering, 2022. 26(13): p. 6505-6539. Search in Google Scholar

Beltrán, M.G., et al., Effect of cement addition on the properties of recycled concretes to reach control concretes strengths. Journal of Cleaner Production, 2014. 79: p. 124-133. Search in Google Scholar

Oueslati, O. and J. Duchesne, The effect of SCMs on the corrosion of rebar embedded in mortars subjected to an acetic acid attack. Cement and Concrete Research, 2012. 42(2): p. 467-475. Search in Google Scholar

M.Shaban, W., et al., Quality Improvement Techniques for Recycled Concrete Aggregate: A review. Journal of Advanced Concrete Technology, 2019. 17: p. 151-167. Search in Google Scholar

Nagy, A., & Sadagopan, M.,, Cirkulärt, klimatreducerat betongelement för nybyggnation: Redovisningsrapport (Circular, climate reduced concrete elements for new construction: Review report). Diva, 2025. Search in Google Scholar

Tam, V.W.Y., X.F. Gao, C.M. Tam, and C.H. Chan, New approach in measuring water absorption of recycled aggregates. Construction and Building Materials, 2008. 22(3): p. 364-369. Search in Google Scholar

Sadagopan, M., Malaga.K., Nagy.A., Modified pycnometer method to measure the water absorption of crushed concrete aggregates. Journal of Sustainable Cement-Based Materials, 2020. 9(5): p. 259-269. Search in Google Scholar

Damineli, B., et al., Rapid method for measuring the water absorption of recycled aggregates. Materials and Structures, 2016. 49. Search in Google Scholar

Pedro, D., J. Brito, and L. Evangelista, Performance of concrete made with aggregates recycled from precasting industry waste: influence of the crushing process. Materials and Structures, 2015. 48: p. 3965-3978. Search in Google Scholar

Hubert, J., Z. Zhao, F. Michel, and L. Courard (2023) Effect of Crushing Method on the Properties of Produced Recycled Concrete Aggregates. Buildings Volume, DOI: 10.3390/buildings13092217 Search in Google Scholar

Kumar, A. and R.Y. Krishnan, A review on the technology of size reduction equipment. Int. J. ChemTech Res, 2020. 13(1): p. 48-54. Search in Google Scholar

Hickel, G.C., et al., Influence of crusher type in the shape of fine crushed aggregate grains. Revista IBRACON de Estruturas e Materiais, 2018. 11: p. 902-930. Search in Google Scholar

Andreu, G. and E. Miren, Experimental analysis of properties of high performance recycled aggregate concrete. Construction and Building Materials, 2014. 52: p. 227-235. Search in Google Scholar

Tabsh, S.W. and A.S. Abdelfatah, Influence of recycled concrete aggregates on strength properties of concrete. Construction and Building Materials, 2009. 23(2): p. 1163-1167. Search in Google Scholar

Idioma:
Inglés
Calendario de la edición:
2 veces al año
Temas de la revista:
Ciencia de los materiales, Procesamiento de materiales