[3] ABRAMS D A. Design of Concrete Mixtures[M]. Structural Materials Research Laboratory, Lewis Institute, Chicago, 1919, 1: 20.
[4] Atlas Portland Cement Company. Concrete construction about the home and on the farm[M]. Sweden: Atlas Portland Cement Company, 1915.
[5] The history of concrete[EB/OL]. [2024-06-15]. https://www.nachi. org/history-of-concrete.htm.
[6] WILDE R E. ACI: A century of progress[J]. Concrete International, 2004, 26(3): 1-123.
[8] HEWLETT P. Lea’s Chemistry of Cement and Concrete[M]. S.l.: Butterworth-Heinemann, 2004.
[9] GONNERMAN H F, LERCH W. Changes in characteristics of portland cement as exhibited by laboratory tests over the period 1904 to 1950[M]. Philadelphia: American Society for Testing Materials, 1952.
[13] ZHENG H B, CAMPBELL J W P. History of early reinforced concrete in modern Shanghai, 1890-1914[J]. Constr Hist, 2021, 36(2): 81-122.
[14] GLASSER F P, MATSCHEI T. Interactions between Portland cement and carbon dioxide[C]. Proceedings of the ICCC Conference, 2007.
[15] AVIJA B, LUKOVI M. Carbonation of cement paste: Understanding, challenges, and opportunities[J]. Constr Build Mater, 2016, 117: 285-301.
[17] VON GREVE-DIERFELD S, LOTHENBACH B, VOLLPRACHT A, et al. Understanding the carbonation of concrete with supplementary cementitious materials: A critical review by RILEM TC 281-CCC[J]. Mater Struct, 2020, 53(6): 136.
[19] CASEY W H, WESTRICH H R, ARNOLD G W, et al. The surface chemistry of dissolving labradorite feldspar[J]. Geochim Cosmochim Acta, 1989, 53(4): 821-832.
[20] FUJIMOTO K. Rate and mechanism of dissolution of silicate minerals into aqueous solution characterization of a mineral-aqueous solution interface[J]. Mining Geology, 1991, 41(227): 163-172.