• Title of article

    Is alkali–carbonate reaction just a variant of alkali–silica reaction ACR = ASR?

  • Author/Authors

    P.E. Grattan-Bellew، نويسنده , , L.D. Mitchell، نويسنده , , James Margeson، نويسنده , , Deng Min، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2010
  • Pages
    7
  • From page
    556
  • To page
    562
  • Abstract
    The mechanism of the alkali–carbonate reaction (ACR) has been recognized as being different from that of the more common alkali–silica reaction (ASR). However, the identification of alkali–silica gel in ACR concrete from Cornwall, Ontario, Canada by Katayama, in 1992 raised the possibility that ASR was at least playing a role in the ACR reaction. The acid insoluble residues of the ACR aggregate from Kingston, along with two other aggregates were analyzed to determine what might be contributing to the reaction. The acid insoluble residue of the ACR Kingston rock contains 96% quartz of high solubility in NaOH. Good correlation was found between the amount of quartz and expansion of concrete prisms indicating that the expansion was due mainly to an alkali–silica reaction. This conclusion is supported by observations, in 2008, by Katayama of gel in thin sections of concrete made with the Kingston aggregate. It is concluded that ACR = ASR.
  • Keywords
    Alkali–aggregate reaction (C) , Reaction (A) , Alkali–carbonate reaction , Characterization (B)
  • Journal title
    CEMENT AND CONCRETE RESEARCH
  • Serial Year
    2010
  • Journal title
    CEMENT AND CONCRETE RESEARCH
  • Record number

    1216762