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    Publications

    Papers in International JournalsChapters/ Papers in International BooksChapters/ Papers in National BooksCommunications in International ConferencesCommunications in National ConferencesMSc ThesesBooksProceedingsPatentsTechnical/ Scientific ReportsPhD Theses
    @JournalArticle {2458,
    	title = {Short-term compressive strength of fly ash and waste glass alkali-activated cement based binder (AACB) mortars with two biopolymers},
    	journal = {Journal of Materials in Civil Engineering},
    	year = {2017},
    	note = {

    Abdollahnejad, Z.; Kheradmand, M.; Pacheco-Torgal, F.. 2017. "Short-term compressive strength of fly ash and waste glass alkali-activated cement based binder (AACB) mortars with two biopolymers",\ Journal of Materials in Civil Engineering,

    }, month = {2017-03-29 00:00:00}, publisher = {ASCE-AMER Soc Civil Engineers}, abstract = {

    The Roadmap to a Resource Efficient Europe aims that by 2020, waste will be managed as a resource. Thus materials that have the ability for the reuse of several types of wastes, such as alkali-activated cement-based binders (AACBs), will merit special attention. Some wastes like fly ash deserve special attention because they are generated in high amounts and have a very low reuse rate. This paper reports experimental results regarding the influence of the mix design of fly ash and waste glass AACB mortars containing two different biopolymers (carrageenan and xanthan) on their short-term mechanical performance. Microstructure and cost analysis are also included. The results show that a mixture of 80\% fly ash, 10\% waste glass, and 10\% calcium hydroxide activated with an alkaline activator has the highest compressive strength. The results also show that the mortars with minor biopolymer carrageenan content are associated with a relevant increase in compressive strength and that the use of 0.1\% of carrageenan leads to optimum compressive strength in most mixtures. The use of xanthan shows no beneficial effects on the compressive strength of AACB mortars. Several mixtures with xanthan even show a reduction in the compressive strength.

    }, keywords = {AACB, biopolymers, cost analysis, Fly ash, Mechanical strength, waste glass, Waste reuse}, issn = {0899-1561 (print); 1943-5533 (online)}, doi = {10.1061/(ASCE)MT.1943-5533.0001920}, author = {Abdollahnejad, Z. and Kheradmand, M. and Pacheco-Torgal, F.} }

    About CTAC

    The Centre for Territory, Environment and Construction (CTAC) is a research unit of the School of Engineering of University of Minho (UMinho), recognised by the “FCT – Fundação para a Ciência e Tecnologia” (Foundation for Science and Technology), associated to the Department of Civil Engineering (DEC), with whom it shares resources and namely human resources.

    Currently CTAC aggregates 25 researchers holding a PhD of which 20 are faculty professors of the Civil Engineering Department. Read more


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    Centro de Território, Ambiente e Construção
    Escola de Engenharia da Universidade do Minho
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    Phone: + 351 253 510 200 (517 206)
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    Email: geral@ctac.uminho.pt


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