• Bulletin of the Chinese Ceramic Society
  • Vol. 41, Issue 6, 2063 (2022)
ZHANG Tao1, GENG Jian2, LIU Genjin2, YANG Yudi2, and LIU Cijun3
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • 3[in Chinese]
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    DOI: Cite this Article
    ZHANG Tao, GENG Jian, LIU Genjin, YANG Yudi, LIU Cijun. Chloride Binding Mechanism in Cement-Fly Ash-Slag-Metakaolin Quaternary Cementitious Materials[J]. Bulletin of the Chinese Ceramic Society, 2022, 41(6): 2063 Copy Citation Text show less
    References

    [1] IPAVEC A, VUK T, GABROVEK R, et al. Chloride binding into hydrated blended cements: the influence of limestone and alkalinity[J]. Cement and Concrete Research, 2013, 48: 74-85.

    [2] THOMAS M D A, HOOTON R D, SCOTT A, et al. The effect of supplementary cementitious materials on chloride binding in hardened cement paste[J]. Cement and Concrete Research, 2012, 42(1): 1-7.

    [4] DING W W, HE Y J, LU L N, et al. Influence of metakaolin on the conversion and compressive strength of quaternary phase paste[J]. Journal of the American Ceramic Society, 2020, 103(12): 7213-7225.

    [5] HAN Y, OH S, WANG X Y, et al. Hydration-strength-workability-durability of binary, ternary, and quaternary composite pastes[J]. Materials, 2021, 15(1): 204.

    [6] TANG L P, NILSSON L O. Chloride binding capacity and binding isotherms of OPC pastes and mortars[J]. Cement and Concrete Research, 1993, 23(2): 247-253.

    [7] SCRIVENER K L, FüLLMANN T, GALLUCCI E, et al. Quantitative study of Portland cement hydration by X-ray diffraction/Rietveld analysis and independent methods[J]. Cement and Concrete Research, 2004, 34(9): 1541-1547.

    [8] MATSCHEI T, LOTHENBACH B, GLASSER F P. The AFm phase in Portland cement[J]. Cement and Concrete Research, 2007, 37(2): 118-130.

    [9] SHI H, YU Z Q, MA J, et al. Properties of Portland cement paste blended with coral sand powder[J]. Construction and Building Materials, 2019, 203: 662-669.

    [10] VOGLIS N, KAKALI G, CHANIOTAKIS E, et al. Portland-limestone cements. Their properties and hydration compared to those of other composite cements[J]. Cement and Concrete Composites, 2005, 27(2): 191-196.

    [11] WANG Y Y, SHUI Z H, GAO X, et al. Understanding the chloride binding and diffusion behaviors of marine concrete based on Portland limestone cement-alumina enriched pozzolans[J]. Construction and Building Materials, 2019, 198: 207-217.

    [12] PANE I, HANSEN W. Investigation of blended cement hydration by isothermal calorimetry and thermal analysis[J]. Cement and Concrete Research, 2005, 35(6): 1155-1164.

    [13] SURYAVANSHI A K, SWAMY R N. Stability of Friedel’s salt in carbonated concrete structural elements[J]. Cement and Concrete Research, 1996, 26(5): 729-741.

    [14] CHANG H L, FENG P, LYU K, et al. A novel method for assessing C-S-H chloride adsorption in cement pastes[J]. Construction and Building Materials, 2019, 225: 324-331.

    [15] CSIZMADIA J, BALZS G, TAMS F D. Chloride ion binding capacity of aluminoferrites[J]. Cement and Concrete Research, 2001, 31(4): 577-588.

    [16] SAIKIA N, KATO S, KOJIMA T. Thermogravimetric investigation on the chloride binding behaviour of MK-lime paste[J]. Thermochimica Acta, 2006, 444(1): 16-25.

    [17] QIAO C Y, SURANENI P, NATHALENE WEI YING T, et al. Chloride binding of cement pastes with fly ash exposed to CaCl2 solutions at 5 and 23 ℃[J]. Cement and Concrete Composites, 2019, 97: 43-53.

    [18] BIRNIN-YAURI U A, GLASSER F P. Friedel’s salt, Ca2Al(OH)6(Cl, OH)·2H2O: its solid solutions and their role in chloride binding[J]. Cement and Concrete Research, 1998, 28(12): 1713-1723.

    ZHANG Tao, GENG Jian, LIU Genjin, YANG Yudi, LIU Cijun. Chloride Binding Mechanism in Cement-Fly Ash-Slag-Metakaolin Quaternary Cementitious Materials[J]. Bulletin of the Chinese Ceramic Society, 2022, 41(6): 2063
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