[1] MOUMIN G, RYSSEL M, ZHAO L, et al. CO2 emission reduction in the cement industry by using a solar calciner[J]. Renewable Energy, 2020, 145: 1578-1596.
[2] SCRIVENER K, MARTIRENA F, BISHNOI S, et al. Calcined clay limestone cements (LC3)[J]. Cement and Concrete Research, 2018, 114: 49-56.
[3] ZUNINO F, SCRIVENER K. Microstructural developments of limestone calcined clay cement (LC3) pastes after long-term (3 years) hydration[J]. Cement and Concrete Research, 2022, 153: 106693.
[4] BLOUCH N, RASHID K, ZAFAR I, et al. Prioritization of low-grade kaolinite and mixed clays for performance evaluation of limestone calcined clay cement: multi-criteria assessment[J]. Applied Clay Science, 2023, 243: 107080.
[5] HOLLANDERS S, ADRIAENS R, SKIBSTED J, et al. Pozzolanic reactivity of pure calcined clays[J]. Applied Clay Science, 2016, 132: 552-560.
[6] TANG J, WEI S F, LI W F, et al. Synergistic effect of metakaolin and limestone on the hydration properties of Portland cement[J]. Construction and Building Materials, 2019, 223: 177-184.
[18] WANG H, HOU P K, LI Q F, et al. Synergistic effects of supplementary cementitious materials in limestone and calcined clay-replaced slag cement[J]. Construction and Building Materials, 2021, 282: 122648.
[19] TANG J, WEI S F, LI W F, et al. Synergistic effect of metakaolin and limestone on the hydration properties of Portland cement[J]. Construction and Building Materials, 2019, 223: 177-184.