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  • Physio-chemical reactions in recycle aggregate concrete

    Author(s)
    Tam, Vivian WY
    Gao, XF
    Tam, CM
    Ng, KM
    Griffith University Author(s)
    Tam, Vivian WY.
    Year published
    2009
    Metadata
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    Abstract
    Concrete waste constitutes the major proportion of construction waste at about 50% of the total waste generated. An effective way to reduce concrete waste is to reuse it as recycled aggregate (RA) for the production of recycled aggregate concrete (RAC). This paper studies the physio-chemical reactions of cement paste around aggregate for normal aggregate concrete (NAC) and RAC mixed with normal mixing approach (NMA) and two-stage mixing approach (TSMA) by differential scanning calorimetry (DSC) and scanning electron microscopy (SEM). Four kinds of physio-chemical reactions have been recorded from the concrete samples, ...
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    Concrete waste constitutes the major proportion of construction waste at about 50% of the total waste generated. An effective way to reduce concrete waste is to reuse it as recycled aggregate (RA) for the production of recycled aggregate concrete (RAC). This paper studies the physio-chemical reactions of cement paste around aggregate for normal aggregate concrete (NAC) and RAC mixed with normal mixing approach (NMA) and two-stage mixing approach (TSMA) by differential scanning calorimetry (DSC) and scanning electron microscopy (SEM). Four kinds of physio-chemical reactions have been recorded from the concrete samples, including the dehydration of C3S2H3, iron-substituted ettringite, dehydroxylation of CH and development of C6S3H at about 90 ?C, 135 ?C, 441 ?C and 570 ?C, respectively. Fromthe DSC results, it is confirmed that the concrete samples with RA substitution have generated less amount of strength enhancement chemical products when compared to those without RA substitution. However, the results from the TSMA are found improving the RAC quality. The pre-mix procedure of the TSMA can effectively develop some strength enhancing chemical products including, C3S2H3, ettringite, CH and C6S3H, which shows that RAC made from the TSMA can improve the hydration processes.
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    Journal Title
    Journal of Hazardous Materials
    Volume
    163
    DOI
    https://doi.org/10.1016/j.jhazmat.2008.07.031
    Subject
    Chemical sciences
    Environmental sciences
    Engineering
    Construction engineering
    Publication URI
    http://hdl.handle.net/10072/29557
    Collection
    • Journal articles

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