REFERENCES
[1] I. Tole, Mechanical Activation of Clay. A Novel Route to Sustainable Cementitious Binders (Ligentiate Thesis), Lulea, 2019.
[2] G. Mucsi, „A review on mechanical activation and mechanical alloying in stirred
media mill,“ Chemical Engineering Research and Design, vol. 148, pp. 460-474, 2019.
[3] J. Manosa et al., „Potential reactivity assessment of mechanically activated kaolin
as alternative cement precursor,“ Applied Clay Science, no. 228, 2022.
[4] M. Wilczek et al., „meca-clay: Activated Clay without Calcination,“ Global Cement Magazine, pp. 14-17, 2024 (2).
[5] H. Heegn, Veränderung der Festkörpereigenschaften bei mechanischer Aktivierung und Feinzerkleinerung (PhD thesis), Freiberg, 1985.
[6] D. Londono-Zuluaga et al., „Report of RILEM TC 267-TRM phase 3“ Materials and Structures, vol. 55, 2022.
[7] A. T. M. Marsh et al., „Mineralogical characteristics influence the structure and pozzolanic reactivity of thermally and mechano-chemically activated meta-kaolinites,“ Journal of Materials Chemistry A, vol. 12, pp. 24260-24277, 2024.