共 19 条
- [1] BOUZIDI M A, TAHAKOURT A, BOUZIDI N, Et al., Synthesis and characterization of belite cement with high hydraulic reactivity and low environmental impact, Arab J Sci Eng, 39, 12, pp. 8659-8668, (2014)
- [2] SCRIVENER K L, KIRKPATRICK R J., Innovation in use and research on cementitious material, Cem Concr Res, 38, 2, pp. 128-136, (2008)
- [3] GARTNER E, HIRAO H., A review of alternative approaches to the reduction of CO2 emissions associated with the manufacture of the binder phase in concrete, Cem Concr Res, 78, pp. 126-142, (2015)
- [4] Guan X, Liu S, Zhang H, Et al., J Chin Ceram Soc, 46, 2, pp. 263-267, (2018)
- [5] Hou G, Lu B, Gao X, Et al., J Chin Ceram Soc, 44, 2, pp. 286-291, (2016)
- [6] MU Y, LIU Z, WANG F., Comparative study on the carbonation- activated calcium silicates as sustainable binders: reactivity, mechanical performance, and microstructure, ACS Sustain Chem Eng, 7, 7, pp. 7058-7070, (2019)
- [7] ARAI C, HOSAKA S, MURASE, Et al., Measurements of the relative humidity of saturated aqueous salt solutions, J Chem Eng Jpn, 9, 4, pp. 328-330, (1976)
- [8] WANG T, HUANG H, HU X, Et al., Accelerated mineral carbonation curing of cement paste for CO<sub>2</sub> sequestration and enhanced properties of blended calcium silicate, Chem Eng J, 323, pp. 320-329, (2017)
- [9] ALIZADEHHESARI K, GOLDING S D, BHATIA S K., Kinetics of the dehydroxylation of serpentine, Energy Fuels, 26, 2, pp. 783-790, (2012)
- [10] KASAOKA S, SAKATA Y, TONG C., Kinetic evaluation of the reactivity of various coal chars for gasification with carbon dioxide in comparison with Steam, Int Chem Eng, 22, pp. 160-175, (1985)