Please use this identifier to cite or link to this item: http://hdl.handle.net/1822/56090

TitleCarbon dioxide sequestration of fly ash alkaline-based mortars containing recycled aggregates and reinforced by hemp fibers: Mechanical properties and numerical simulation with a finite element method
Author(s)Mastali, Mohammad
Abdollahnejad, Zahra
Pacheco-Torgal, F.
KeywordsAlkali-activated mortars
Carbon dioxide sequestration
Fly ash
Hemp fibers
Recycled aggregates
Issue dateMay-2018
PublisherElsevier
CitationMastali M., Abdollahnejad Z., Pacheco-Torgal F. Carbon dioxide sequestration of fly ash alkaline-based mortars containing recycled aggregates and reinforced by hemp fibers: Mechanical properties and numerical simulation with a finite element method, Carbon Dioxide Sequestration in Cementitious Construction Materials, Vol. 1, Issue 1, pp. 373-391, doi: 10.1016/B978-0-08-102444-7.00015-0, 2018
Abstract(s)Natural fibers are a sustainable and renewable resource available almost all over the world having the advantage of being able to sequestrate atmospheric CO2 through photosynthesis. Being cost-effective and as stronger as synthetic fibers, they are of interest for the production of reinforced cementitious composites for the construction industry. This chapter discloses results of an investigation concerning the performance of fly ash/waste glass alkaline-based mortars with recycled aggregates reinforced by hemp fibers exposed to accelerated carbon dioxide curing. Compressive strength, flexural strength, and numerical simulations with a finite element method were studied on it.
TypebookPart
URIhttp://hdl.handle.net/1822/56090
DOI10.1016/B978-0-08-102444-7.00015-0
Peer-Reviewedyes
AccessembargoedAccess (1 Year)
Appears in Collections:C-TAC - Capítulos/Artigos em Livros Internacionais

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